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HomeMy WebLinkAboutAPPROVED WS 35 - Truss Package6904 Parke East Blvd.
Tampa, FL 33610-4115
MiTek USA, Inc. RE: WS0035 -
Design Code: FBC2020/TPI2014
Wind Code: N/A Wind Speed: 165 mph
Roof Load: 37.0 psf
Design Program: MiTek 20/20 8.4
1 of 2
This package includes 32 individual, Truss Design Drawings and 0 Additional Drawings.
With my seal affixed to this sheet, I hereby certify that I am the Truss Design Engineer and this index sheet
conforms to 61G15-31.003, section 5 of the Florida Board of Professional Engineers Rules.
General Truss Engineering Criteria & Design Loads (Individual Truss Design Drawings Show Special
Loading Conditions):
Floor Load: N/A psf
Site Information:
Lot/Block: 35
Customer Info: K Hovnanaian Homes Project Name: WS0035 Model: Lelia-B
Subdivision: Waterstone
Address: 5125 Armina Place, .
State: FLCity: Fort Pierce
Name Address and License # of Structural Engineer of Record, If there is one, for the building.
Name: License #:
Address:
City: State:
April 9,2021
ORegan, Philip
The truss drawing(s) referenced above have been prepared by
MiTek USA, Inc. under my direct supervision based on the parameters
provided by Builders FirstSource - Plant City.
Truss Design Engineer's Name: ORegan, Philip
My license renewal date for the state of Florida is February 28, 2023.
Lumber design values are in accordance with ANSI/TPI 1 section 6.3
These truss designs rely on lumber values established by others.
IMPORTANT NOTE: The seal on these truss component designs is a certification
that the engineer named is licensed in the jurisdiction(s) identified and that the
designs comply with ANSI/TPI 1. These designs are based upon parameters
shown (e.g., loads, supports, dimensions, shapes and design codes), which were
given to MiTek or TRENCO. Any project specific information included is for MiTek's or
TRENCO's customers file reference purpose only, and was not taken into account in the
preparation of these designs. MiTek or TRENCO has not independently verified the
applicability of the design parameters or the designs for any particular building. Before use,
the building designer should verify applicability of design parameters and properly
incorporate these designs into the overall building design per ANSI/TPI 1, Chapter 2.
No.Seal#Truss Name
1 T23503243 CJ1
Date
4/9/212T23503244CJ34/9/213T23503245CJ54/9/214T23503246EJ24/9/215T23503247EJ44/9/216T23503248EJ74/9/217T23503249HJ24/9/218T23503250HJ44/9/219T23503251HJ54/9/2110T23503252HJ74/9/2111T23503253T084/9/2112T23503254T094/9/2113T23503255T104/9/2114T23503256T114/9/21
No.Seal#Truss Name
15 T23503257 T12
Date
4/9/2116T23503258T134/9/2117T23503259T144/9/2118T23503260T14A4/9/2119T23503261T154/9/2120T23503262T164/9/2121T23503263T174/9/2122T23503264T184/9/2123T23503265T194/9/2124T23503266T204/9/2125T23503267T214/9/2126T23503268T224/9/2127T23503269T234/9/2128T23503270T244/9/21
This item has been electronically signed and sealed by ORegan, Philip, PE using a Digital Signature.
Printed copies of this document are not considered signed and sealed and the signature must be verified on any electronic copies
6904 Parke East Blvd.
Tampa, FL 33610-4115
MiTek USA, Inc. RE: WS0035 -
2 of 2
Site Information:
Lot/Block: 35
Customer Info: K Hovnanaian Homes Project Name: WS0035 Model: Lelia-B
Subdivision: Waterstone
Address: 5125 Armina Place, .
State: FLCity: Fort Pierce
No.Seal#Truss Name
29 T23503271 T25
Date
4/9/2130T23503272T264/9/2131T23503273V014/9/2132T23503274V024/9/21
Design valid for use only with MiTek® connectors. This design is based only upon parameters shown, and is for an individual building component, not
a truss system. Before use, the building designer must verify the applicability of design parameters and properly incorporate this design into the overall
building design. Bracing indicated is to prevent buckling of individual truss web and/or chord members only. Additional temporary and permanent bracing
is always required for stability and to prevent collapse with possible personal injury and property damage. For general guidance regarding the
fabrication, storage, delivery, erection and bracing of trusses and truss systems, see ANSI/TPI1 Quality Criteria, DSB-89 and BCSI Building Component
available from Truss Plate Institute, 2670 Crain Highway, Suite 203 Waldorf, MD 20601Safety Information
WARNING - Verify design parameters and READ NOTES ON THIS AND INCLUDED MITEK REFERENCE PAGE MII-7473 rev. 5/19/2020 BEFORE USE.
6904 Parke East Blvd.
Tampa, FL 36610
Job
WS0035
Truss
CJ1
Truss Type
CORNER JACK
Qty
12
Ply
1
Job Reference (optional)
T23503243
8.430 s Mar 22 2021 MiTek Industries, Inc. Thu Apr 8 08:47:48 2021 Page 1 Builders FirstSource (Tampa, FL), Tampa, FL - 33564,
ID:JbsSUYEphcZuYTshvwE3BRyhOBX-5_BTHLTwa6za3iJ_mLX2Tg3iWfzyjrWin1AzP6zSqTv
Scale = 1:6.5
1
2
3
4
2x4 ST1.5x8 STP
1-0-0
1-0-0
-1-0-0
1-0-0
1-0-0
1-0-0
0-4-10-9-10-4-100-9-15.00 12
Plate Offsets (X,Y)-- [2:0-1-14,0-0-10]
LOADING (psf)
TCLL
TCDL
BCLL
BCDL
20.0
7.0
0.0 *
10.0
SPACING-
Plate Grip DOL
Lumber DOL
Rep Stress Incr
Code
2-0-0
1.25
1.25
YES
FBC2020/TPI2014
CSI.
TC
BC
WB
Matrix-P
0.15
0.01
0.00
DEFL.
Vert(LL)
Vert(CT)
Horz(CT)
in
-0.00
-0.00
-0.00
(loc)
2
2
3
l/defl
>999
>999
n/a
L/d
240
180
n/a
PLATES
MT20
Weight: 5 lb FT = 20%
GRIP
244/190
LUMBER-
TOP CHORD 2x4 SP No.3
BOT CHORD 2x4 SP No.3
BRACING-
TOP CHORD Structural wood sheathing directly applied or 1-0-0 oc purlins.
BOT CHORD Rigid ceiling directly applied or 10-0-0 oc bracing.
REACTIONS. (size)3=Mechanical, 2=0-8-0, 4=Mechanical
Max Horz 2=40(LC 12)
Max Uplift 3=-8(LC 1), 2=-97(LC 12)
Max Grav 3=18(LC 12), 2=125(LC 1), 4=18(LC 3)
FORCES.(lb) - Max. Comp./Max. Ten. - All forces 250 (lb) or less except when shown.
NOTES-(7)
1) Wind: ASCE 7-16; Vult=165mph (3-second gust) Vasd=128mph; TCDL=4.2psf; BCDL=3.0psf; h=15ft; B=45ft; L=28ft; eave=4ft; Cat.
II; Exp B; Encl., GCpi=0.18; MWFRS (directional) and C-C Exterior(2E) zone; cantilever left and right exposed ; end vertical left and
right exposed;C-C for members and forces & MWFRS for reactions shown; Lumber DOL=1.60 plate grip DOL=1.60
2) Building Designer / Project engineer responsible for verifying applied roof live load shown covers rain loading requirements specific
to the use of this truss component.
3) This truss has been designed for a 10.0 psf bottom chord live load nonconcurrent with any other live loads.
4) * This truss has been designed for a live load of 20.0psf on the bottom chord in all areas where a rectangle 3-6-0 tall by 2-0-0 wide
will fit between the bottom chord and any other members.
5) Refer to girder(s) for truss to truss connections.
6) Provide mechanical connection (by others) of truss to bearing plate capable of withstanding 8 lb uplift at joint 3 and 97 lb uplift at
joint 2.
7) "This manufactured product is designed as an individual building component. The suitability and use of this component for any
particular building is the responsibility of the building designer per ANSI TPI 1 as referenced by the building code."This item has been
electronically signed and
sealed by ORegan, Philip, PE
using a Digital Signature.
Printed copies of this
document are not considered
signed and sealed and the
signature must be verified
on any electronic copies.
April 9,2021
Design valid for use only with MiTek® connectors. This design is based only upon parameters shown, and is for an individual building component, not
a truss system. Before use, the building designer must verify the applicability of design parameters and properly incorporate this design into the overall
building design. Bracing indicated is to prevent buckling of individual truss web and/or chord members only. Additional temporary and permanent bracing
is always required for stability and to prevent collapse with possible personal injury and property damage. For general guidance regarding the
fabrication, storage, delivery, erection and bracing of trusses and truss systems, see ANSI/TPI1 Quality Criteria, DSB-89 and BCSI Building Component
available from Truss Plate Institute, 2670 Crain Highway, Suite 203 Waldorf, MD 20601Safety Information
WARNING - Verify design parameters and READ NOTES ON THIS AND INCLUDED MITEK REFERENCE PAGE MII-7473 rev. 5/19/2020 BEFORE USE.
6904 Parke East Blvd.
Tampa, FL 36610
Job
WS0035
Truss
CJ3
Truss Type
Corner Jack
Qty
8
Ply
1
Job Reference (optional)
T23503244
8.430 s Mar 22 2021 MiTek Industries, Inc. Thu Apr 8 08:47:49 2021 Page 1 Builders FirstSource (Tampa, FL), Tampa, FL - 33564,
ID:JbsSUYEphcZuYTshvwE3BRyhOBX-ZBlrVhUZKQ5RhsuAK23H?tbs33HPSIms0hwXxYzSqTu
Scale = 1:10.8
1
2
5
3
4
2x4
ST1.5x8 STP 3-0-0
3-0-0
-1-0-0
1-0-0
3-0-0
3-0-0
0-4-11-7-11-2-101-7-15.00 12
Plate Offsets (X,Y)-- [2:0-1-14,0-0-10]
LOADING (psf)
TCLL
TCDL
BCLL
BCDL
20.0
7.0
0.0 *
10.0
SPACING-
Plate Grip DOL
Lumber DOL
Rep Stress Incr
Code
2-0-0
1.25
1.25
YES
FBC2020/TPI2014
CSI.
TC
BC
WB
Matrix-P
0.23
0.13
0.00
DEFL.
Vert(LL)
Vert(CT)
Horz(CT)
in
-0.00
-0.01
-0.00
(loc)
2-4
2-4
3
l/defl
>999
>999
n/a
L/d
240
180
n/a
PLATES
MT20
Weight: 11 lb FT = 20%
GRIP
244/190
LUMBER-
TOP CHORD 2x4 SP No.3
BOT CHORD 2x4 SP No.3
BRACING-
TOP CHORD Structural wood sheathing directly applied or 3-0-0 oc purlins.
BOT CHORD Rigid ceiling directly applied or 10-0-0 oc bracing.
REACTIONS. (size)3=Mechanical, 2=0-8-0, 4=Mechanical
Max Horz 2=71(LC 12)
Max Uplift 3=-32(LC 12), 2=-106(LC 12)
Max Grav 3=54(LC 17), 2=187(LC 1), 4=52(LC 3)
FORCES.(lb) - Max. Comp./Max. Ten. - All forces 250 (lb) or less except when shown.
NOTES-(7)
1) Wind: ASCE 7-16; Vult=165mph (3-second gust) Vasd=128mph; TCDL=4.2psf; BCDL=3.0psf; h=15ft; B=45ft; L=28ft; eave=4ft; Cat.
II; Exp B; Encl., GCpi=0.18; MWFRS (directional) and C-C Exterior(2E) -1-0-0 to 2-0-0, Interior(1) 2-0-0 to 2-11-4 zone; cantilever left
and right exposed ; end vertical left and right exposed;C-C for members and forces & MWFRS for reactions shown; Lumber
DOL=1.60 plate grip DOL=1.60
2) Building Designer / Project engineer responsible for verifying applied roof live load shown covers rain loading requirements specific
to the use of this truss component.
3) This truss has been designed for a 10.0 psf bottom chord live load nonconcurrent with any other live loads.
4) * This truss has been designed for a live load of 20.0psf on the bottom chord in all areas where a rectangle 3-6-0 tall by 2-0-0 wide
will fit between the bottom chord and any other members.
5) Refer to girder(s) for truss to truss connections.
6) Provide mechanical connection (by others) of truss to bearing plate capable of withstanding 32 lb uplift at joint 3 and 106 lb uplift at
joint 2.
7) "This manufactured product is designed as an individual building component. The suitability and use of this component for any
particular building is the responsibility of the building designer per ANSI TPI 1 as referenced by the building code."This item has been
electronically signed and
sealed by ORegan, Philip, PE
using a Digital Signature.
Printed copies of this
document are not considered
signed and sealed and the
signature must be verified
on any electronic copies.
April 9,2021
Design valid for use only with MiTek® connectors. This design is based only upon parameters shown, and is for an individual building component, not
a truss system. Before use, the building designer must verify the applicability of design parameters and properly incorporate this design into the overall
building design. Bracing indicated is to prevent buckling of individual truss web and/or chord members only. Additional temporary and permanent bracing
is always required for stability and to prevent collapse with possible personal injury and property damage. For general guidance regarding the
fabrication, storage, delivery, erection and bracing of trusses and truss systems, see ANSI/TPI1 Quality Criteria, DSB-89 and BCSI Building Component
available from Truss Plate Institute, 2670 Crain Highway, Suite 203 Waldorf, MD 20601Safety Information
WARNING - Verify design parameters and READ NOTES ON THIS AND INCLUDED MITEK REFERENCE PAGE MII-7473 rev. 5/19/2020 BEFORE USE.
6904 Parke East Blvd.
Tampa, FL 36610
Job
WS0035
Truss
CJ5
Truss Type
Corner Jack
Qty
4
Ply
1
Job Reference (optional)
T23503245
8.430 s Mar 22 2021 MiTek Industries, Inc. Thu Apr 8 08:47:50 2021 Page 1 Builders FirstSource (Tampa, FL), Tampa, FL - 33564,
ID:JbsSUYEphcZuYTshvwE3BRyhOBX-1NJDi1UB5jDIJ0TNumaWY58zPTbaBl0?FLf4T_zSqTt
Scale = 1:15.8
1
2
5
6
3
4
2x4
ST1.5x8 STP
5-0-0
5-0-0
-1-0-0
1-0-0
5-0-0
5-0-0
0-4-12-5-12-0-102-5-15.00 12
Plate Offsets (X,Y)-- [2:0-1-14,0-0-10]
LOADING (psf)
TCLL
TCDL
BCLL
BCDL
20.0
7.0
0.0 *
10.0
SPACING-
Plate Grip DOL
Lumber DOL
Rep Stress Incr
Code
2-0-0
1.25
1.25
YES
FBC2020/TPI2014
CSI.
TC
BC
WB
Matrix-P
0.45
0.26
0.00
DEFL.
Vert(LL)
Vert(CT)
Horz(CT)
in
-0.03
-0.05
-0.00
(loc)
2-4
2-4
3
l/defl
>999
>999
n/a
L/d
240
180
n/a
PLATES
MT20
Weight: 17 lb FT = 20%
GRIP
244/190
LUMBER-
TOP CHORD 2x4 SP No.2
BOT CHORD 2x4 SP No.2
BRACING-
TOP CHORD Structural wood sheathing directly applied or 5-0-0 oc purlins.
BOT CHORD Rigid ceiling directly applied or 10-0-0 oc bracing.
REACTIONS. (size)3=Mechanical, 2=0-8-0, 4=Mechanical
Max Horz 2=103(LC 12)
Max Uplift 3=-77(LC 12), 2=-116(LC 12)
Max Grav 3=114(LC 17), 2=253(LC 1), 4=92(LC 3)
FORCES.(lb) - Max. Comp./Max. Ten. - All forces 250 (lb) or less except when shown.
NOTES-(7)
1) Wind: ASCE 7-16; Vult=165mph (3-second gust) Vasd=128mph; TCDL=4.2psf; BCDL=3.0psf; h=15ft; B=45ft; L=28ft; eave=4ft; Cat.
II; Exp B; Encl., GCpi=0.18; MWFRS (directional) and C-C Exterior(2E) -1-0-0 to 2-0-0, Interior(1) 2-0-0 to 4-11-4 zone; cantilever left
and right exposed ; end vertical left and right exposed;C-C for members and forces & MWFRS for reactions shown; Lumber
DOL=1.60 plate grip DOL=1.60
2) Building Designer / Project engineer responsible for verifying applied roof live load shown covers rain loading requirements specific
to the use of this truss component.
3) This truss has been designed for a 10.0 psf bottom chord live load nonconcurrent with any other live loads.
4) * This truss has been designed for a live load of 20.0psf on the bottom chord in all areas where a rectangle 3-6-0 tall by 2-0-0 wide
will fit between the bottom chord and any other members.
5) Refer to girder(s) for truss to truss connections.
6) Provide mechanical connection (by others) of truss to bearing plate capable of withstanding 77 lb uplift at joint 3 and 116 lb uplift at
joint 2.
7) "This manufactured product is designed as an individual building component. The suitability and use of this component for any
particular building is the responsibility of the building designer per ANSI TPI 1 as referenced by the building code."This item has been
electronically signed and
sealed by ORegan, Philip, PE
using a Digital Signature.
Printed copies of this
document are not considered
signed and sealed and the
signature must be verified
on any electronic copies.
April 9,2021
Design valid for use only with MiTek® connectors. This design is based only upon parameters shown, and is for an individual building component, not
a truss system. Before use, the building designer must verify the applicability of design parameters and properly incorporate this design into the overall
building design. Bracing indicated is to prevent buckling of individual truss web and/or chord members only. Additional temporary and permanent bracing
is always required for stability and to prevent collapse with possible personal injury and property damage. For general guidance regarding the
fabrication, storage, delivery, erection and bracing of trusses and truss systems, see ANSI/TPI1 Quality Criteria, DSB-89 and BCSI Building Component
available from Truss Plate Institute, 2670 Crain Highway, Suite 203 Waldorf, MD 20601Safety Information
WARNING - Verify design parameters and READ NOTES ON THIS AND INCLUDED MITEK REFERENCE PAGE MII-7473 rev. 5/19/2020 BEFORE USE.
6904 Parke East Blvd.
Tampa, FL 36610
Job
WS0035
Truss
EJ2
Truss Type
Jack-Open Structural Gable
Qty
9
Ply
1
Job Reference (optional)
T23503246
8.430 s Mar 22 2021 MiTek Industries, Inc. Thu Apr 8 08:47:51 2021 Page 1 Builders FirstSource (Tampa, FL), Tampa, FL - 33564,
ID:JbsSUYEphcZuYTshvwE3BRyhOBX-WZscwNVps1L9w92ZST5l5IhDlt_GwCG8U_Pd?QzSqTs
Scale = 1:8.7
1
2
3
4
2x4
ST1.5x8 STP
2-0-0
2-0-0
-1-0-0
1-0-0
2-0-0
2-0-0
0-4-11-2-15.00 12
Plate Offsets (X,Y)-- [2:0-1-14,0-0-10]
LOADING (psf)
TCLL
TCDL
BCLL
BCDL
20.0
7.0
0.0 *
10.0
SPACING-
Plate Grip DOL
Lumber DOL
Rep Stress Incr
Code
2-0-0
1.25
1.25
YES
FBC2020/TPI2014
CSI.
TC
BC
WB
Matrix-P
0.09
0.04
0.00
DEFL.
Vert(LL)
Vert(CT)
Horz(CT)
in
-0.00
-0.00
-0.00
(loc)
2
2-4
3
l/defl
>999
>999
n/a
L/d
240
180
n/a
PLATES
MT20
Weight: 8 lb FT = 20%
GRIP
244/190
LUMBER-
TOP CHORD 2x4 SP No.2
BOT CHORD 2x4 SP No.2
BRACING-
TOP CHORD Structural wood sheathing directly applied or 2-0-0 oc purlins.
BOT CHORD Rigid ceiling directly applied or 10-0-0 oc bracing.
REACTIONS. (size)2=0-8-0, 4=Mechanical, 3=Mechanical
Max Horz 2=56(LC 12)
Max Uplift 2=-87(LC 12), 3=-20(LC 9)
Max Grav 2=145(LC 1), 4=38(LC 3), 3=38(LC 17)
FORCES.(lb) - Max. Comp./Max. Ten. - All forces 250 (lb) or less except when shown.
NOTES-(9)
1) Wind: ASCE 7-16; Vult=165mph (3-second gust) Vasd=128mph; TCDL=4.2psf; BCDL=3.0psf; h=15ft; B=45ft; L=28ft; eave=4ft; Cat.
II; Exp B; Encl., GCpi=0.18; MWFRS (directional) and C-C Exterior(2E) zone; cantilever left and right exposed ; end vertical left and
right exposed;C-C for members and forces & MWFRS for reactions shown; Lumber DOL=1.60 plate grip DOL=1.60
2) Truss designed for wind loads in the plane of the truss only. For studs exposed to wind (normal to the face), see Standard Industry
Gable End Details as applicable, or consult qualified building designer as per ANSI/TPI 1.
3) Building Designer / Project engineer responsible for verifying applied roof live load shown covers rain loading requirements specific
to the use of this truss component.
4) Gable studs spaced at 2-0-0 oc.
5) This truss has been designed for a 10.0 psf bottom chord live load nonconcurrent with any other live loads.
6) * This truss has been designed for a live load of 20.0psf on the bottom chord in all areas where a rectangle 3-6-0 tall by 2-0-0 wide
will fit between the bottom chord and any other members.
7) Refer to girder(s) for truss to truss connections.
8) Provide mechanical connection (by others) of truss to bearing plate capable of withstanding 87 lb uplift at joint 2 and 20 lb uplift at
joint 3.
9) "This manufactured product is designed as an individual building component. The suitability and use of this component for any
particular building is the responsibility of the building designer per ANSI TPI 1 as referenced by the building code."
This item has been
electronically signed and
sealed by ORegan, Philip, PE
using a Digital Signature.
Printed copies of this
document are not considered
signed and sealed and the
signature must be verified
on any electronic copies.
April 9,2021
Design valid for use only with MiTek® connectors. This design is based only upon parameters shown, and is for an individual building component, not
a truss system. Before use, the building designer must verify the applicability of design parameters and properly incorporate this design into the overall
building design. Bracing indicated is to prevent buckling of individual truss web and/or chord members only. Additional temporary and permanent bracing
is always required for stability and to prevent collapse with possible personal injury and property damage. For general guidance regarding the
fabrication, storage, delivery, erection and bracing of trusses and truss systems, see ANSI/TPI1 Quality Criteria, DSB-89 and BCSI Building Component
available from Truss Plate Institute, 2670 Crain Highway, Suite 203 Waldorf, MD 20601Safety Information
WARNING - Verify design parameters and READ NOTES ON THIS AND INCLUDED MITEK REFERENCE PAGE MII-7473 rev. 5/19/2020 BEFORE USE.
6904 Parke East Blvd.
Tampa, FL 36610
Job
WS0035
Truss
EJ4
Truss Type
Jack-Open
Qty
4
Ply
1
Job Reference (optional)
T23503247
8.430 s Mar 22 2021 MiTek Industries, Inc. Thu Apr 8 08:47:52 2021 Page 1 Builders FirstSource (Tampa, FL), Tampa, FL - 33564,
ID:JbsSUYEphcZuYTshvwE3BRyhOBX-_mQ_7jWRdLT0YJdl?Ac_dWDM4GIjffWIie8BYtzSqTr
Scale = 1:12.8
1
2
5
6
3
4
2x4
ST1.5x8 STP
4-0-0
4-0-0
-1-0-0
1-0-0
4-0-0
4-0-0
0-4-12-0-15.00 12
Plate Offsets (X,Y)-- [2:0-1-14,0-0-10]
LOADING (psf)
TCLL
TCDL
BCLL
BCDL
20.0
7.0
0.0 *
10.0
SPACING-
Plate Grip DOL
Lumber DOL
Rep Stress Incr
Code
2-0-0
1.25
1.25
YES
FBC2020/TPI2014
CSI.
TC
BC
WB
Matrix-P
0.25
0.15
0.00
DEFL.
Vert(LL)
Vert(CT)
Horz(CT)
in
-0.01
-0.02
-0.00
(loc)
2-4
2-4
3
l/defl
>999
>999
n/a
L/d
240
180
n/a
PLATES
MT20
Weight: 14 lb FT = 20%
GRIP
244/190
LUMBER-
TOP CHORD 2x4 SP No.2
BOT CHORD 2x4 SP No.2
BRACING-
TOP CHORD Structural wood sheathing directly applied or 4-0-0 oc purlins.
BOT CHORD Rigid ceiling directly applied or 10-0-0 oc bracing.
REACTIONS. (size)3=Mechanical, 2=0-8-0, 4=Mechanical
Max Horz 2=87(LC 12)
Max Uplift 3=-56(LC 12), 2=-110(LC 12)
Max Grav 3=85(LC 17), 2=219(LC 1), 4=72(LC 3)
FORCES.(lb) - Max. Comp./Max. Ten. - All forces 250 (lb) or less except when shown.
NOTES-(7)
1) Wind: ASCE 7-16; Vult=165mph (3-second gust) Vasd=128mph; TCDL=4.2psf; BCDL=3.0psf; h=15ft; B=45ft; L=28ft; eave=4ft; Cat.
II; Exp B; Encl., GCpi=0.18; MWFRS (directional) and C-C Exterior(2E) -1-0-0 to 2-0-0, Interior(1) 2-0-0 to 3-11-4 zone; cantilever left
and right exposed ; end vertical left and right exposed;C-C for members and forces & MWFRS for reactions shown; Lumber
DOL=1.60 plate grip DOL=1.60
2) Building Designer / Project engineer responsible for verifying applied roof live load shown covers rain loading requirements specific
to the use of this truss component.
3) This truss has been designed for a 10.0 psf bottom chord live load nonconcurrent with any other live loads.
4) * This truss has been designed for a live load of 20.0psf on the bottom chord in all areas where a rectangle 3-6-0 tall by 2-0-0 wide
will fit between the bottom chord and any other members.
5) Refer to girder(s) for truss to truss connections.
6) Provide mechanical connection (by others) of truss to bearing plate capable of withstanding 56 lb uplift at joint 3 and 110 lb uplift at
joint 2.
7) "This manufactured product is designed as an individual building component. The suitability and use of this component for any
particular building is the responsibility of the building designer per ANSI TPI 1 as referenced by the building code."This item has been
electronically signed and
sealed by ORegan, Philip, PE
using a Digital Signature.
Printed copies of this
document are not considered
signed and sealed and the
signature must be verified
on any electronic copies.
April 9,2021
Design valid for use only with MiTek® connectors. This design is based only upon parameters shown, and is for an individual building component, not
a truss system. Before use, the building designer must verify the applicability of design parameters and properly incorporate this design into the overall
building design. Bracing indicated is to prevent buckling of individual truss web and/or chord members only. Additional temporary and permanent bracing
is always required for stability and to prevent collapse with possible personal injury and property damage. For general guidance regarding the
fabrication, storage, delivery, erection and bracing of trusses and truss systems, see ANSI/TPI1 Quality Criteria, DSB-89 and BCSI Building Component
available from Truss Plate Institute, 2670 Crain Highway, Suite 203 Waldorf, MD 20601Safety Information
WARNING - Verify design parameters and READ NOTES ON THIS AND INCLUDED MITEK REFERENCE PAGE MII-7473 rev. 5/19/2020 BEFORE USE.
6904 Parke East Blvd.
Tampa, FL 36610
Job
WS0035
Truss
EJ7
Truss Type
Jack-Open
Qty
12
Ply
1
Job Reference (optional)
T23503248
8.430 s Mar 22 2021 MiTek Industries, Inc. Thu Apr 8 08:47:52 2021 Page 1 Builders FirstSource (Tampa, FL), Tampa, FL - 33564,
ID:JbsSUYEphcZuYTshvwE3BRyhOBX-_mQ_7jWRdLT0YJdl?Ac_dWDFPGDcffWIie8BYtzSqTr
Scale = 1:19.8
1
2
5
6
3
43x4
ST1.5x8 STP
7-0-0
7-0-0
-1-0-0
1-0-0
7-0-0
7-0-0
0-4-13-3-12-10-103-3-15.00 12
Plate Offsets (X,Y)-- [2:0-0-10,Edge]
LOADING (psf)
TCLL
TCDL
BCLL
BCDL
20.0
7.0
0.0 *
10.0
SPACING-
Plate Grip DOL
Lumber DOL
Rep Stress Incr
Code
2-0-0
1.25
1.25
YES
FBC2020/TPI2014
CSI.
TC
BC
WB
Matrix-SH
0.67
0.48
0.00
DEFL.
Vert(LL)
Vert(CT)
Horz(CT)
in
0.10
-0.18
-0.00
(loc)
2-4
2-4
3
l/defl
>773
>431
n/a
L/d
240
180
n/a
PLATES
MT20
Weight: 23 lb FT = 20%
GRIP
244/190
LUMBER-
TOP CHORD 2x4 SP No.2
BOT CHORD 2x4 SP No.2
BRACING-
TOP CHORD Structural wood sheathing directly applied or 6-0-0 oc purlins.
BOT CHORD Rigid ceiling directly applied or 10-0-0 oc bracing.
REACTIONS. (size)3=Mechanical, 2=0-8-0, 4=Mechanical
Max Horz 2=136(LC 12)
Max Uplift 3=-103(LC 12), 2=-130(LC 12)
Max Grav 3=159(LC 1), 2=324(LC 1), 4=121(LC 3)
FORCES.(lb) - Max. Comp./Max. Ten. - All forces 250 (lb) or less except when shown.
NOTES-(7)
1) Wind: ASCE 7-16; Vult=165mph (3-second gust) Vasd=128mph; TCDL=4.2psf; BCDL=3.0psf; h=15ft; B=45ft; L=28ft; eave=4ft; Cat.
II; Exp B; Encl., GCpi=0.18; MWFRS (directional) and C-C Exterior(2E) -1-0-0 to 2-0-0, Interior(1) 2-0-0 to 6-11-4 zone; cantilever left
and right exposed ; end vertical left and right exposed;C-C for members and forces & MWFRS for reactions shown; Lumber
DOL=1.60 plate grip DOL=1.60
2) Building Designer / Project engineer responsible for verifying applied roof live load shown covers rain loading requirements specific
to the use of this truss component.
3) This truss has been designed for a 10.0 psf bottom chord live load nonconcurrent with any other live loads.
4) * This truss has been designed for a live load of 20.0psf on the bottom chord in all areas where a rectangle 3-6-0 tall by 2-0-0 wide
will fit between the bottom chord and any other members.
5) Refer to girder(s) for truss to truss connections.
6) Provide mechanical connection (by others) of truss to bearing plate capable of withstanding 103 lb uplift at joint 3 and 130 lb uplift at
joint 2.
7) "This manufactured product is designed as an individual building component. The suitability and use of this component for any
particular building is the responsibility of the building designer per ANSI TPI 1 as referenced by the building code."This item has been
electronically signed and
sealed by ORegan, Philip, PE
using a Digital Signature.
Printed copies of this
document are not considered
signed and sealed and the
signature must be verified
on any electronic copies.
April 9,2021
Design valid for use only with MiTek® connectors. This design is based only upon parameters shown, and is for an individual building component, not
a truss system. Before use, the building designer must verify the applicability of design parameters and properly incorporate this design into the overall
building design. Bracing indicated is to prevent buckling of individual truss web and/or chord members only. Additional temporary and permanent bracing
is always required for stability and to prevent collapse with possible personal injury and property damage. For general guidance regarding the
fabrication, storage, delivery, erection and bracing of trusses and truss systems, see ANSI/TPI1 Quality Criteria, DSB-89 and BCSI Building Component
available from Truss Plate Institute, 2670 Crain Highway, Suite 203 Waldorf, MD 20601Safety Information
WARNING - Verify design parameters and READ NOTES ON THIS AND INCLUDED MITEK REFERENCE PAGE MII-7473 rev. 5/19/2020 BEFORE USE.
6904 Parke East Blvd.
Tampa, FL 36610
Job
WS0035
Truss
HJ2
Truss Type
Diagonal Hip Girder
Qty
2
Ply
1
Job Reference (optional)
T23503249
8.430 s Mar 22 2021 MiTek Industries, Inc. Thu Apr 8 08:47:53 2021 Page 1 Builders FirstSource (Tampa, FL), Tampa, FL - 33564,
ID:JbsSUYEphcZuYTshvwE3BRyhOBX-Sy_MK2X3OebtATCyZu7DAjmXegfIO6mRxIuk4JzSqTq
Scale = 1:8.5
1
2
5
3
6 4
2x4
2-9-3
2-9-3
-1-5-0
1-5-0
2-9-3
2-9-3
0-4-11-1-133.54 12
LOADING (psf)
TCLL
TCDL
BCLL
BCDL
20.0
7.0
0.0 *
10.0
SPACING-
Plate Grip DOL
Lumber DOL
Rep Stress Incr
Code
2-0-0
1.25
1.25
NO
FBC2020/TPI2014
CSI.
TC
BC
WB
Matrix-P
0.19
0.07
0.00
DEFL.
Vert(LL)
Vert(CT)
Horz(CT)
in
-0.00
-0.00
-0.00
(loc)
2-4
2-4
3
l/defl
>999
>999
n/a
L/d
240
180
n/a
PLATES
MT20
Weight: 11 lb FT = 20%
GRIP
244/190
LUMBER-
TOP CHORD 2x4 SP No.2
BOT CHORD 2x4 SP No.2
BRACING-
TOP CHORD Structural wood sheathing directly applied or 2-9-3 oc purlins.
BOT CHORD Rigid ceiling directly applied or 10-0-0 oc bracing.
REACTIONS. (size)3=Mechanical, 2=0-10-15, 4=Mechanical
Max Horz 2=55(LC 8)
Max Uplift 3=-46(LC 14), 2=-161(LC 8)
Max Grav 3=10(LC 1), 2=194(LC 1), 4=47(LC 3)
FORCES.(lb) - Max. Comp./Max. Ten. - All forces 250 (lb) or less except when shown.
NOTES-(11)
1) Wind: ASCE 7-16; Vult=165mph (3-second gust) Vasd=128mph; TCDL=4.2psf; BCDL=3.0psf; h=15ft; B=45ft; L=28ft; eave=4ft; Cat.
II; Exp B; Encl., GCpi=0.18; MWFRS (directional); cantilever left and right exposed ; end vertical left and right exposed; Lumber
DOL=1.60 plate grip DOL=1.60
2) Truss designed for wind loads in the plane of the truss only. For studs exposed to wind (normal to the face), see Standard Industry
Gable End Details as applicable, or consult qualified building designer as per ANSI/TPI 1.
3) Building Designer / Project engineer responsible for verifying applied roof live load shown covers rain loading requirements specific
to the use of this truss component.
4) Gable studs spaced at 2-0-0 oc.
5) This truss has been designed for a 10.0 psf bottom chord live load nonconcurrent with any other live loads.
6) * This truss has been designed for a live load of 20.0psf on the bottom chord in all areas where a rectangle 3-6-0 tall by 2-0-0 wide
will fit between the bottom chord and any other members.
7) Refer to girder(s) for truss to truss connections.
8) Provide mechanical connection (by others) of truss to bearing plate capable of withstanding 46 lb uplift at joint 3 and 161 lb uplift at
joint 2.
9) Hanger(s) or other connection device(s) shall be provided sufficient to support concentrated load(s) 75 lb up at 1-4-15, and 75 lb up
at 1-4-15 on top chord, and at 1-4-15, and at 1-4-15 on bottom chord. The design/selection of such connection device(s) is the
responsibility of others.
10) In the LOAD CASE(S) section, loads applied to the face of the truss are noted as front (F) or back (B).
11) "This manufactured product is designed as an individual building component. The suitability and use of this component for any
particular building is the responsibility of the building designer per ANSI TPI 1 as referenced by the building code."
LOAD CASE(S) Standard
1) Dead + Roof Live (balanced): Lumber Increase=1.25, Plate Increase=1.25
Uniform Loads (plf)
Vert: 1-3=-54, 2-4=-20
Concentrated Loads (lb)
Vert: 5=42(F=21, B=21)
This item has been
electronically signed and
sealed by ORegan, Philip, PE
using a Digital Signature.
Printed copies of this
document are not considered
signed and sealed and the
signature must be verified
on any electronic copies.
April 9,2021
Design valid for use only with MiTek® connectors. This design is based only upon parameters shown, and is for an individual building component, not
a truss system. Before use, the building designer must verify the applicability of design parameters and properly incorporate this design into the overall
building design. Bracing indicated is to prevent buckling of individual truss web and/or chord members only. Additional temporary and permanent bracing
is always required for stability and to prevent collapse with possible personal injury and property damage. For general guidance regarding the
fabrication, storage, delivery, erection and bracing of trusses and truss systems, see ANSI/TPI1 Quality Criteria, DSB-89 and BCSI Building Component
available from Truss Plate Institute, 2670 Crain Highway, Suite 203 Waldorf, MD 20601Safety Information
WARNING - Verify design parameters and READ NOTES ON THIS AND INCLUDED MITEK REFERENCE PAGE MII-7473 rev. 5/19/2020 BEFORE USE.
6904 Parke East Blvd.
Tampa, FL 36610
Job
WS0035
Truss
HJ4
Truss Type
Diagonal Hip Girder
Qty
1
Ply
1
Job Reference (optional)
T23503250
8.430 s Mar 22 2021 MiTek Industries, Inc. Thu Apr 8 08:47:54 2021 Page 1 Builders FirstSource (Tampa, FL), Tampa, FL - 33564,
ID:JbsSUYEphcZuYTshvwE3BRyhOBX-w8YkYOYh9yjkndn87beSixJg34xm7Z?bAydHclzSqTp
Scale = 1:13.2
1
2
5
6
3
7 8 4
2x4
5-7-2
5-7-2
-1-5-0
1-5-0
5-7-2
5-7-2
0-4-11-11-133.54 12
LOADING (psf)
TCLL
TCDL
BCLL
BCDL
20.0
7.0
0.0 *
10.0
SPACING-
Plate Grip DOL
Lumber DOL
Rep Stress Incr
Code
2-0-0
1.25
1.25
NO
FBC2020/TPI2014
CSI.
TC
BC
WB
Matrix-P
0.34
0.37
0.00
DEFL.
Vert(LL)
Vert(CT)
Horz(CT)
in
-0.04
-0.09
-0.00
(loc)
2-4
2-4
3
l/defl
>999
>712
n/a
L/d
240
180
n/a
PLATES
MT20
Weight: 19 lb FT = 20%
GRIP
244/190
LUMBER-
TOP CHORD 2x4 SP No.2
BOT CHORD 2x4 SP No.2
BRACING-
TOP CHORD Structural wood sheathing directly applied or 5-7-2 oc purlins.
BOT CHORD Rigid ceiling directly applied or 10-0-0 oc bracing.
REACTIONS. (size)3=Mechanical, 2=0-10-15, 4=Mechanical
Max Horz 2=87(LC 8)
Max Uplift 3=-82(LC 8), 2=-180(LC 8)
Max Grav 3=115(LC 1), 2=268(LC 1), 4=104(LC 3)
FORCES.(lb) - Max. Comp./Max. Ten. - All forces 250 (lb) or less except when shown.
NOTES-(9)
1) Wind: ASCE 7-16; Vult=165mph (3-second gust) Vasd=128mph; TCDL=4.2psf; BCDL=3.0psf; h=15ft; B=45ft; L=28ft; eave=4ft; Cat.
II; Exp B; Encl., GCpi=0.18; MWFRS (directional); cantilever left and right exposed ; end vertical left and right exposed; Lumber
DOL=1.60 plate grip DOL=1.60
2) Building Designer / Project engineer responsible for verifying applied roof live load shown covers rain loading requirements specific
to the use of this truss component.
3) This truss has been designed for a 10.0 psf bottom chord live load nonconcurrent with any other live loads.
4) * This truss has been designed for a live load of 20.0psf on the bottom chord in all areas where a rectangle 3-6-0 tall by 2-0-0 wide
will fit between the bottom chord and any other members.
5) Refer to girder(s) for truss to truss connections.
6) Provide mechanical connection (by others) of truss to bearing plate capable of withstanding 82 lb uplift at joint 3 and 180 lb uplift at
joint 2.
7) Hanger(s) or other connection device(s) shall be provided sufficient to support concentrated load(s) 78 lb up at 1-4-15, 78 lb up at
1-4-15, and 44 lb up at 4-2-15, and 44 lb up at 4-2-15 on top chord, and at 1-4-15, at 1-4-15, and at 4-2-15, and at 4-2-15 on
bottom chord. The design/selection of such connection device(s) is the responsibility of others.
8) In the LOAD CASE(S) section, loads applied to the face of the truss are noted as front (F) or back (B).
9) "This manufactured product is designed as an individual building component. The suitability and use of this component for any
particular building is the responsibility of the building designer per ANSI TPI 1 as referenced by the building code."
LOAD CASE(S) Standard
1) Dead + Roof Live (balanced): Lumber Increase=1.25, Plate Increase=1.25
Uniform Loads (plf)
Vert: 1-3=-54, 2-4=-20
Concentrated Loads (lb)
Vert: 5=44(F=22, B=22)
This item has been
electronically signed and
sealed by ORegan, Philip, PE
using a Digital Signature.
Printed copies of this
document are not considered
signed and sealed and the
signature must be verified
on any electronic copies.
April 9,2021
Design valid for use only with MiTek® connectors. This design is based only upon parameters shown, and is for an individual building component, not
a truss system. Before use, the building designer must verify the applicability of design parameters and properly incorporate this design into the overall
building design. Bracing indicated is to prevent buckling of individual truss web and/or chord members only. Additional temporary and permanent bracing
is always required for stability and to prevent collapse with possible personal injury and property damage. For general guidance regarding the
fabrication, storage, delivery, erection and bracing of trusses and truss systems, see ANSI/TPI1 Quality Criteria, DSB-89 and BCSI Building Component
available from Truss Plate Institute, 2670 Crain Highway, Suite 203 Waldorf, MD 20601Safety Information
WARNING - Verify design parameters and READ NOTES ON THIS AND INCLUDED MITEK REFERENCE PAGE MII-7473 rev. 5/19/2020 BEFORE USE.
6904 Parke East Blvd.
Tampa, FL 36610
Job
WS0035
Truss
HJ5
Truss Type
Roof Special Girder
Qty
1
Ply
1
Job Reference (optional)
T23503251
8.430 s Nov 30 2020 MiTek Industries, Inc. Fri Apr 9 11:27:16 2021 Page 1 Builders FirstSource, Tampa, Plant City, Florida 33566
ID:JbsSUYEphcZuYTshvwE3BRyhOBX-1vcdrl98lwgWrp_kB1iNdzfevmxii?jTnfCgMJzSTwf
Scale: 3/4"=1'
1
2
3 4
6 5
8
9
7
10
3x4
2x4
2x4
1-3-7
1-3-7
6-9-6
5-5-15
7-0-14
0-3-8
-1-5-0
1-5-0
6-9-6
6-9-6
7-0-14
0-3-8
0-3-132-4-133.54 12
Plate Offsets (X,Y)-- [2:0-4-1,0-0-8]
LOADING (psf)
TCLL
TCDL
BCLL
BCDL
20.0
7.0
0.0 *
10.0
SPACING-
Plate Grip DOL
Lumber DOL
Rep Stress Incr
Code
2-0-0
1.25
1.25
NO
FBC2020/TPI2014
CSI.
TC
BC
WB
Matrix-SH
0.56
0.40
0.03
DEFL.
Vert(LL)
Vert(CT)
Horz(CT)
in
-0.03
-0.05
0.00
(loc)
6-7
6-7
l/defl
>999
>999
n/a
L/d
240
180
n/a
PLATES
MT20
Weight: 26 lb FT = 20%
GRIP
244/190
LUMBER-
TOP CHORD 2x4 SP No.2
BOT CHORD 2x4 SP No.2
WEBS 2x4 SP No.3
BRACING-
TOP CHORD Structural wood sheathing directly applied or 6-0-0 oc purlins.
BOT CHORD Rigid ceiling directly applied or 10-0-0 oc bracing.
REACTIONS.(lb/size)2=68/1-5-0, 6=189/0-5-5, 7=287/0-3-0
Max Horz 2=104(LC 8)
Max Uplift 2=-102(LC 8), 6=-83(LC 8), 7=-86(LC 8)
FORCES.(lb) - Max. Comp./Max. Ten. - All forces 250 (lb) or less except when shown.
NOTES-(10)
1) Wind: ASCE 7-16; Vult=165mph (3-second gust) Vasd=128mph; TCDL=4.2psf; BCDL=3.0psf; h=15ft; B=45ft; L=28ft; eave=4ft; Cat.
II; Exp B; Encl., GCpi=0.18; MWFRS (directional); cantilever left and right exposed ; end vertical left and right exposed; Lumber
DOL=1.60 plate grip DOL=1.60
2) Truss designed for wind loads in the plane of the truss only. For studs exposed to wind (normal to the face), see Standard Industry
Gable End Details as applicable, or consult qualified building designer as per ANSI/TPI 1.
3) Building Designer / Project engineer responsible for verifying applied roof live load shown covers rain loading requirements specific to
the use of this truss component.
4) Gable studs spaced at 2-0-0 oc.
5) This truss has been designed for a 10.0 psf bottom chord live load nonconcurrent with any other live loads.
6) * This truss has been designed for a live load of 20.0psf on the bottom chord in all areas where a rectangle 3-6-0 tall by 2-0-0 wide
will fit between the bottom chord and any other members.
7) Provide mechanical connection (by others) of truss to bearing plate capable of withstanding 102 lb uplift at joint 2, 83 lb uplift at joint 6
and 86 lb uplift at joint 7.
8) Hanger(s) or other connection device(s) shall be provided sufficient to support concentrated load(s) 79 lb up at 1-5-12, 79 lb up at
1-5-12, and 44 lb up at 4-3-11, and 44 lb up at 4-3-11 on top chord, and at 1-5-12, at 1-5-12, and at 4-3-11, and at 4-3-11 on
bottom chord. The design/selection of such connection device(s) is the responsibility of others.
9) In the LOAD CASE(S) section, loads applied to the face of the truss are noted as front (F) or back (B).
10) "This manufactured product is designed as an individual building component. The suitability and use of this component for any
particular building is the responsibility of the building designer per ANSI TPI 1 as referenced by the building code."
LOAD CASE(S) Standard
1) Dead + Roof Live (balanced): Lumber Increase=1.25, Plate Increase=1.25
Uniform Loads (plf)
Vert: 1-3=-54, 3-4=-14, 2-5=-20
Concentrated Loads (lb)
Vert: 8=44(F=22, B=22)
This item has been
electronically signed and
sealed by ORegan, Philip, PE
using a Digital Signature.
Printed copies of this
document are not considered
signed and sealed and the
signature must be verified
on any electronic copies.
April 9,2021
Design valid for use only with MiTek® connectors. This design is based only upon parameters shown, and is for an individual building component, not
a truss system. Before use, the building designer must verify the applicability of design parameters and properly incorporate this design into the overall
building design. Bracing indicated is to prevent buckling of individual truss web and/or chord members only. Additional temporary and permanent bracing
is always required for stability and to prevent collapse with possible personal injury and property damage. For general guidance regarding the
fabrication, storage, delivery, erection and bracing of trusses and truss systems, see ANSI/TPI1 Quality Criteria, DSB-89 and BCSI Building Component
available from Truss Plate Institute, 2670 Crain Highway, Suite 203 Waldorf, MD 20601Safety Information
WARNING - Verify design parameters and READ NOTES ON THIS AND INCLUDED MITEK REFERENCE PAGE MII-7473 rev. 5/19/2020 BEFORE USE.
6904 Parke East Blvd.
Tampa, FL 36610
Job
WS0035
Truss
HJ7
Truss Type
Diagonal Hip Girder
Qty
2
Ply
1
Job Reference (optional)
T23503252
8.430 s Mar 22 2021 MiTek Industries, Inc. Thu Apr 8 08:47:55 2021 Page 1 Builders FirstSource (Tampa, FL), Tampa, FL - 33564,
ID:JbsSUYEphcZuYTshvwE3BRyhOBX-OL66lkYJwGrbPnLKhJ9hF8rsZUGpsy0kOcNr8CzSqTo
Scale = 1:20.6
1
2
3
7 6
8
9
10
4
11 12 13
52x4
3x4
3x4
2x4
5-8-1
5-8-1
9-10-1
4-1-15
-1-5-0
1-5-0
5-8-1
5-8-1
9-10-1
4-1-15
0-4-13-2-133.54 12
LOADING (psf)
TCLL
TCDL
BCLL
BCDL
20.0
7.0
0.0 *
10.0
SPACING-
Plate Grip DOL
Lumber DOL
Rep Stress Incr
Code
2-0-0
1.25
1.25
NO
FBC2020/TPI2014
CSI.
TC
BC
WB
Matrix-SH
0.29
0.38
0.27
DEFL.
Vert(LL)
Vert(CT)
Horz(CT)
in
-0.02
-0.05
0.01
(loc)
6-7
6-7
5
l/defl
>999
>999
n/a
L/d
240
180
n/a
PLATES
MT20
Weight: 40 lb FT = 20%
GRIP
244/190
LUMBER-
TOP CHORD 2x4 SP No.2
BOT CHORD 2x4 SP No.2
WEBS 2x4 SP No.3
BRACING-
TOP CHORD Structural wood sheathing directly applied or 6-0-0 oc purlins.
BOT CHORD Rigid ceiling directly applied or 10-0-0 oc bracing.
REACTIONS. (size)4=Mechanical, 2=0-10-15, 5=Mechanical
Max Horz 2=135(LC 8)
Max Uplift 4=-68(LC 8), 2=-237(LC 8), 5=-101(LC 8)
Max Grav 4=104(LC 1), 2=445(LC 1), 5=310(LC 1)
FORCES.(lb) - Max. Comp./Max. Ten. - All forces 250 (lb) or less except when shown.
TOP CHORD 2-3=-714/203
BOT CHORD 2-7=-269/652, 6-7=-269/652
WEBS 3-6=-713/294, 3-7=0/290
NOTES-(9)
1) Wind: ASCE 7-16; Vult=165mph (3-second gust) Vasd=128mph; TCDL=4.2psf; BCDL=3.0psf; h=15ft; B=45ft; L=28ft; eave=4ft; Cat.
II; Exp B; Encl., GCpi=0.18; MWFRS (directional); cantilever left and right exposed ; end vertical left and right exposed; Lumber
DOL=1.60 plate grip DOL=1.60
2) Building Designer / Project engineer responsible for verifying applied roof live load shown covers rain loading requirements specific
to the use of this truss component.
3) This truss has been designed for a 10.0 psf bottom chord live load nonconcurrent with any other live loads.
4) * This truss has been designed for a live load of 20.0psf on the bottom chord in all areas where a rectangle 3-6-0 tall by 2-0-0 wide
will fit between the bottom chord and any other members.
5) Refer to girder(s) for truss to truss connections.
6) Provide mechanical connection (by others) of truss to bearing plate capable of withstanding 68 lb uplift at joint 4, 237 lb uplift at joint
2 and 101 lb uplift at joint 5.
7) Hanger(s) or other connection device(s) shall be provided sufficient to support concentrated load(s) 78 lb up at 1-4-15, 78 lb up at
1-4-15, 44 lb up at 4-2-15, 44 lb up at 4-2-15, and 38 lb down and 99 lb up at 7-0-14, and 38 lb down and 99 lb up at 7-0-14 on top
chord, and at 1-4-15, at 1-4-15, at 4-2-15, at 4-2-15, and 36 lb down at 7-0-14, and 36 lb down at 7-0-14 on bottom chord. The
design/selection of such connection device(s) is the responsibility of others.
8) In the LOAD CASE(S) section, loads applied to the face of the truss are noted as front (F) or back (B).
9) "This manufactured product is designed as an individual building component. The suitability and use of this component for any
particular building is the responsibility of the building designer per ANSI TPI 1 as referenced by the building code."
LOAD CASE(S) Standard
1) Dead + Roof Live (balanced): Lumber Increase=1.25, Plate Increase=1.25
Uniform Loads (plf)
Vert: 1-4=-54, 2-5=-20
Concentrated Loads (lb)
Vert: 8=44(F=22, B=22) 10=-75(F=-38, B=-38) 13=-36(F=-18, B=-18)
This item has been
electronically signed and
sealed by ORegan, Philip, PE
using a Digital Signature.
Printed copies of this
document are not considered
signed and sealed and the
signature must be verified
on any electronic copies.
April 9,2021
Design valid for use only with MiTek® connectors. This design is based only upon parameters shown, and is for an individual building component, not
a truss system. Before use, the building designer must verify the applicability of design parameters and properly incorporate this design into the overall
building design. Bracing indicated is to prevent buckling of individual truss web and/or chord members only. Additional temporary and permanent bracing
is always required for stability and to prevent collapse with possible personal injury and property damage. For general guidance regarding the
fabrication, storage, delivery, erection and bracing of trusses and truss systems, see ANSI/TPI1 Quality Criteria, DSB-89 and BCSI Building Component
available from Truss Plate Institute, 2670 Crain Highway, Suite 203 Waldorf, MD 20601Safety Information
WARNING - Verify design parameters and READ NOTES ON THIS AND INCLUDED MITEK REFERENCE PAGE MII-7473 rev. 5/19/2020 BEFORE USE.
6904 Parke East Blvd.
Tampa, FL 36610
Job
WS0035
Truss
T08
Truss Type
Roof Special
Qty
1
Ply
1
Job Reference (optional)
T23503253
8.430 s Mar 22 2021 MiTek Industries, Inc. Thu Apr 8 08:47:56 2021 Page 1 Builders FirstSource (Tampa, FL), Tampa, FL - 33564,
ID:JbsSUYEphcZuYTshvwE3BRyhOBX-sXgVz4ZyhZzR1xwXE0hwoMOxWuYEbEOudG6OhezSqTn
Scale = 1:64.8
1 2
3 4
5
6
7
8
9 10
16 15 14 13 12 11
17
18 19 20
21 22
23
24 25
5x12
ST1.5x8 STP
ST1.5x8 STP
ST1.5x8 STP
4x6
4x6
3x6
3x4 3x6
2x4
5x12
3x4
3x4 5x6
3x4
3x4 2x4
5-0-0
5-0-0
9-8-0
4-8-0
16-3-11
6-7-11
23-4-5
7-0-11
29-9-13
6-5-8
35-0-0
5-2-3
-1-0-0
1-0-0
5-0-0
5-0-0
9-8-0
4-8-0
12-2-8
2-6-9
19-10-0
7-7-8
27-5-8
7-7-8
35-0-0
7-6-8
36-0-0
1-0-0
0-4-12-5-16-7-140-4-12-5-15.00 12
Plate Offsets (X,Y)-- [2:0-2-0,Edge], [3:0-10-4,0-2-12], [9:0-3-0,0-1-8], [12:0-3-0,0-3-0]
LOADING (psf)
TCLL
TCDL
BCLL
BCDL
20.0
7.0
0.0 *
10.0
SPACING-
Plate Grip DOL
Lumber DOL
Rep Stress Incr
Code
2-0-0
1.25
1.25
YES
FBC2020/TPI2014
CSI.
TC
BC
WB
Matrix-SH
0.67
0.69
0.97
DEFL.
Vert(LL)
Vert(CT)
Horz(CT)
in
-0.17
-0.29
0.04
(loc)
12-13
12-13
9
l/defl
>999
>999
n/a
L/d
240
180
n/a
PLATES
MT20
Weight: 171 lb FT = 20%
GRIP
244/190
LUMBER-
TOP CHORD 2x4 SP No.2
BOT CHORD 2x4 SP No.2
WEBS 2x4 SP No.3
BRACING-
TOP CHORD Structural wood sheathing directly applied or 3-4-11 oc purlins.
BOT CHORD Rigid ceiling directly applied or 4-9-4 oc bracing.
REACTIONS. (size)2=0-8-0, 16=0-8-0, 9=0-8-0
Max Horz 2=-162(LC 10)
Max Uplift 2=-376(LC 18), 16=-606(LC 12), 9=-398(LC 12)
Max Grav 2=38(LC 12), 16=2138(LC 17), 9=1196(LC 18)
FORCES.(lb) - Max. Comp./Max. Ten. - All forces 250 (lb) or less except when shown.
TOP CHORD 2-3=-463/1478, 3-4=-919/374, 4-5=-1020/426, 5-6=-1517/598, 6-8=-1689/645,
8-9=-2341/754
BOT CHORD 2-16=-1294/491, 15-16=-1417/543, 13-15=-440/1435, 12-13=-285/1195, 11-12=-624/1907,
9-11=-609/2080
WEBS 3-16=-1936/752, 3-15=-883/2565, 4-15=-478/231, 5-15=-644/287, 6-13=-70/387,
6-12=-174/707, 8-12=-575/321, 8-11=0/304
NOTES-(8)
1) Unbalanced roof live loads have been considered for this design.
2) Wind: ASCE 7-16; Vult=165mph (3-second gust) Vasd=128mph; TCDL=4.2psf; BCDL=3.0psf; h=15ft; B=45ft; L=28ft; eave=5ft; Cat.
II; Exp B; Encl., GCpi=0.18; MWFRS (directional) and C-C Exterior(2E) -1-0-0 to 2-0-0, Interior(1) 2-0-0 to 5-0-0, Exterior(2R) 5-0-0
to 8-0-0, Interior(1) 8-0-0 to 19-10-0, Exterior(2R) 19-10-0 to 22-10-0, Interior(1) 22-10-0 to 36-0-0 zone; cantilever left and right
exposed ; end vertical left and right exposed;C-C for members and forces & MWFRS for reactions shown; Lumber DOL=1.60 plate
grip DOL=1.60
3) Building Designer / Project engineer responsible for verifying applied roof live load shown covers rain loading requirements specific
to the use of this truss component.
4) Provide adequate drainage to prevent water ponding.
5) This truss has been designed for a 10.0 psf bottom chord live load nonconcurrent with any other live loads.
6) * This truss has been designed for a live load of 20.0psf on the bottom chord in all areas where a rectangle 3-6-0 tall by 2-0-0 wide
will fit between the bottom chord and any other members, with BCDL = 10.0psf.
7) Provide mechanical connection (by others) of truss to bearing plate capable of withstanding 376 lb uplift at joint 2, 606 lb uplift at
joint 16 and 398 lb uplift at joint 9.
8) "This manufactured product is designed as an individual building component. The suitability and use of this component for any
particular building is the responsibility of the building designer per ANSI TPI 1 as referenced by the building code."
This item has been
electronically signed and
sealed by ORegan, Philip, PE
using a Digital Signature.
Printed copies of this
document are not considered
signed and sealed and the
signature must be verified
on any electronic copies.
April 9,2021
Design valid for use only with MiTek® connectors. This design is based only upon parameters shown, and is for an individual building component, not
a truss system. Before use, the building designer must verify the applicability of design parameters and properly incorporate this design into the overall
building design. Bracing indicated is to prevent buckling of individual truss web and/or chord members only. Additional temporary and permanent bracing
is always required for stability and to prevent collapse with possible personal injury and property damage. For general guidance regarding the
fabrication, storage, delivery, erection and bracing of trusses and truss systems, see ANSI/TPI1 Quality Criteria, DSB-89 and BCSI Building Component
available from Truss Plate Institute, 2670 Crain Highway, Suite 203 Waldorf, MD 20601Safety Information
WARNING - Verify design parameters and READ NOTES ON THIS AND INCLUDED MITEK REFERENCE PAGE MII-7473 rev. 5/19/2020 BEFORE USE.
6904 Parke East Blvd.
Tampa, FL 36610
Job
WS0035
Truss
T09
Truss Type
Roof Special
Qty
1
Ply
1
Job Reference (optional)
T23503254
8.430 s Mar 22 2021 MiTek Industries, Inc. Thu Apr 8 08:47:57 2021 Page 1 Builders FirstSource (Tampa, FL), Tampa, FL - 33564,
ID:JbsSUYEphcZuYTshvwE3BRyhOBX-KjEtAQaaSt5Ie4VjokC9KZx3pHsuKmC1swsyD4zSqTm
Scale = 1:64.8
1 2
3
4
5
6
7
8 9
14 13 12 11 10
15
16 17
18 19
20
21 22
5x6
ST1.5x8 STP
ST1.5x8 STP
ST1.5x8 STP
5x6
4x6
3x6
3x4 5x8
3x4
3x6 3x4 5x6
3x4
2x4
5-0-0
5-0-0
7-0-0
2-0-0
11-8-0
4-8-0
16-3-11
4-7-11
19-10-0
3-6-5
23-4-5
3-6-5
29-9-12
6-5-7
35-0-0
5-2-4
-1-0-0
1-0-0
7-0-0
7-0-0
11-8-0
4-8-0
12-2-10
0-6-10
16-3-11
4-1-1
19-10-0
3-6-5
27-5-7
7-7-7
29-9-12
2-4-5
35-0-0
5-2-4
36-0-0
1-0-0
0-4-13-3-16-7-140-4-13-3-15.00 12
Plate Offsets (X,Y)-- [2:0-1-2,Edge], [3:0-3-0,0-2-4], [11:0-3-0,0-3-0], [13:0-2-0,0-3-0]
LOADING (psf)
TCLL
TCDL
BCLL
BCDL
20.0
7.0
0.0 *
10.0
SPACING-
Plate Grip DOL
Lumber DOL
Rep Stress Incr
Code
2-0-0
1.25
1.25
YES
FBC2020/TPI2014
CSI.
TC
BC
WB
Matrix-SH
0.89
0.73
0.68
DEFL.
Vert(LL)
Vert(CT)
Horz(CT)
in
-0.18
-0.31
0.05
(loc)
11-12
11-12
8
l/defl
>999
>999
n/a
L/d
240
180
n/a
PLATES
MT20
Weight: 170 lb FT = 20%
GRIP
244/190
LUMBER-
TOP CHORD 2x4 SP No.2 *Except*
4-5: 2x4 SP No.1
BOT CHORD 2x4 SP No.2
WEBS 2x4 SP No.3
BRACING-
TOP CHORD Structural wood sheathing directly applied.
BOT CHORD Rigid ceiling directly applied or 5-0-9 oc bracing.
REACTIONS. (size)2=0-8-0, 14=0-8-0, 8=0-8-0
Max Horz 2=-162(LC 10)
Max Uplift 2=-310(LC 18), 14=-557(LC 12), 8=-409(LC 12)
Max Grav 2=7(LC 9), 14=2032(LC 17), 8=1226(LC 18)
FORCES.(lb) - Max. Comp./Max. Ten. - All forces 250 (lb) or less except when shown.
TOP CHORD 2-3=-440/1383, 3-4=-1561/667, 4-5=-1610/643, 5-7=-1769/683, 7-8=-2413/792
BOT CHORD 2-14=-1202/485, 12-13=-516/1630, 11-12=-326/1263, 10-11=-657/1975, 8-10=-644/2145
WEBS 3-14=-2138/848, 4-13=-794/367, 5-12=-79/412, 4-12=-303/181, 5-11=-168/713,
7-11=-567/315, 7-10=0/298, 3-13=-601/1791
NOTES-(8)
1) Unbalanced roof live loads have been considered for this design.
2) Wind: ASCE 7-16; Vult=165mph (3-second gust) Vasd=128mph; TCDL=4.2psf; BCDL=3.0psf; h=15ft; B=45ft; L=28ft; eave=5ft; Cat.
II; Exp B; Encl., GCpi=0.18; MWFRS (directional) and C-C Exterior(2E) -1-0-0 to 2-0-0, Interior(1) 2-0-0 to 7-0-0, Exterior(2R) 7-0-0
to 10-0-0, Interior(1) 10-0-0 to 19-10-0, Exterior(2R) 19-10-0 to 22-10-0, Interior(1) 22-10-0 to 36-0-0 zone; cantilever left and right
exposed ; end vertical left and right exposed;C-C for members and forces & MWFRS for reactions shown; Lumber DOL=1.60 plate
grip DOL=1.60
3) Building Designer / Project engineer responsible for verifying applied roof live load shown covers rain loading requirements specific
to the use of this truss component.
4) Provide adequate drainage to prevent water ponding.
5) This truss has been designed for a 10.0 psf bottom chord live load nonconcurrent with any other live loads.
6) * This truss has been designed for a live load of 20.0psf on the bottom chord in all areas where a rectangle 3-6-0 tall by 2-0-0 wide
will fit between the bottom chord and any other members, with BCDL = 10.0psf.
7) Provide mechanical connection (by others) of truss to bearing plate capable of withstanding 310 lb uplift at joint 2, 557 lb uplift at
joint 14 and 409 lb uplift at joint 8.
8) "This manufactured product is designed as an individual building component. The suitability and use of this component for any
particular building is the responsibility of the building designer per ANSI TPI 1 as referenced by the building code."
This item has been
electronically signed and
sealed by ORegan, Philip, PE
using a Digital Signature.
Printed copies of this
document are not considered
signed and sealed and the
signature must be verified
on any electronic copies.
April 9,2021
Design valid for use only with MiTek® connectors. This design is based only upon parameters shown, and is for an individual building component, not
a truss system. Before use, the building designer must verify the applicability of design parameters and properly incorporate this design into the overall
building design. Bracing indicated is to prevent buckling of individual truss web and/or chord members only. Additional temporary and permanent bracing
is always required for stability and to prevent collapse with possible personal injury and property damage. For general guidance regarding the
fabrication, storage, delivery, erection and bracing of trusses and truss systems, see ANSI/TPI1 Quality Criteria, DSB-89 and BCSI Building Component
available from Truss Plate Institute, 2670 Crain Highway, Suite 203 Waldorf, MD 20601Safety Information
WARNING - Verify design parameters and READ NOTES ON THIS AND INCLUDED MITEK REFERENCE PAGE MII-7473 rev. 5/19/2020 BEFORE USE.
6904 Parke East Blvd.
Tampa, FL 36610
Job
WS0035
Truss
T10
Truss Type
Roof Special
Qty
1
Ply
1
Job Reference (optional)
T23503255
8.430 s Mar 22 2021 MiTek Industries, Inc. Thu Apr 8 08:47:58 2021 Page 1 Builders FirstSource (Tampa, FL), Tampa, FL - 33564,
ID:JbsSUYEphcZuYTshvwE3BRyhOBX-ownFOmbCDBD9GE4vMRjOtnTEfhBZ3BlA5abVlWzSqTl
Scale = 1:64.8
1 2
3
4
5
6
7 8
9 10
16 15 14 13 12 11
17
18 19
20 21
22
23 24
4x6
ST1.5x8 STP
ST1.5x8 STP
ST1.5x8 STP
4x6
4x6
3x6
3x4 3x6 5x8
3x6
3x6 5x6
3x4
2x4 3x4
2x4
5-0-0
5-0-0
9-0-0
4-0-0
13-8-0
4-8-0
16-3-11
2-7-11
19-10-0
3-6-5
23-4-5
3-6-5
27-1-2
3-8-13
29-4-11
2-3-9
35-0-0
5-7-5
-1-0-0
1-0-0
5-5-0
5-5-0
9-0-0
3-7-0
13-8-0
4-8-0
19-10-0
6-2-0
26-0-0
6-2-0
27-1-2
1-1-2
35-0-0
7-10-14
36-0-0
1-0-0
0-4-14-1-16-7-140-4-14-1-15.00 12
Plate Offsets (X,Y)-- [9:0-0-10,Edge], [12:0-3-0,0-3-0]
LOADING (psf)
TCLL
TCDL
BCLL
BCDL
20.0
7.0
0.0 *
10.0
SPACING-
Plate Grip DOL
Lumber DOL
Rep Stress Incr
Code
2-0-0
1.25
1.25
YES
FBC2020/TPI2014
CSI.
TC
BC
WB
Matrix-SH
0.88
0.83
0.78
DEFL.
Vert(LL)
Vert(CT)
Horz(CT)
in
-0.17
-0.29
0.05
(loc)
12-13
12-13
9
l/defl
>999
>999
n/a
L/d
240
180
n/a
PLATES
MT20
Weight: 176 lb FT = 20%
GRIP
244/190
LUMBER-
TOP CHORD 2x4 SP No.2
BOT CHORD 2x4 SP No.2
WEBS 2x4 SP No.3
BRACING-
TOP CHORD Structural wood sheathing directly applied.
BOT CHORD Rigid ceiling directly applied or 5-6-14 oc bracing.
REACTIONS. (size)2=0-8-0, 9=0-8-0, 16=0-8-0
Max Horz 2=-162(LC 10)
Max Uplift 2=-275(LC 18), 9=-407(LC 12), 16=-566(LC 12)
Max Grav 2=15(LC 9), 9=1230(LC 18), 16=2006(LC 17)
FORCES.(lb) - Max. Comp./Max. Ten. - All forces 250 (lb) or less except when shown.
TOP CHORD 2-3=-405/1244, 3-4=-721/333, 4-5=-633/326, 5-6=-1627/677, 6-8=-1800/723,
8-9=-2368/770
BOT CHORD 2-16=-1095/432, 15-16=-762/294, 13-15=-490/1573, 12-13=-316/1246, 11-12=-603/1858,
9-11=-606/2089
WEBS 3-15=-513/1564, 6-12=-232/777, 8-12=-524/304, 8-11=-5/338, 6-13=-135/492,
5-13=-252/195, 5-15=-1168/454, 3-16=-1858/723
NOTES-(8)
1) Unbalanced roof live loads have been considered for this design.
2) Wind: ASCE 7-16; Vult=165mph (3-second gust) Vasd=128mph; TCDL=4.2psf; BCDL=3.0psf; h=15ft; B=45ft; L=28ft; eave=5ft; Cat.
II; Exp B; Encl., GCpi=0.18; MWFRS (directional) and C-C Exterior(2E) -1-0-0 to 2-0-0, Interior(1) 2-0-0 to 9-0-0, Exterior(2R) 9-0-0
to 12-0-0, Interior(1) 12-0-0 to 19-10-0, Exterior(2R) 19-10-0 to 22-10-0, Interior(1) 22-10-0 to 36-0-0 zone; cantilever left and right
exposed ; end vertical left and right exposed;C-C for members and forces & MWFRS for reactions shown; Lumber DOL=1.60 plate
grip DOL=1.60
3) Building Designer / Project engineer responsible for verifying applied roof live load shown covers rain loading requirements specific
to the use of this truss component.
4) Provide adequate drainage to prevent water ponding.
5) This truss has been designed for a 10.0 psf bottom chord live load nonconcurrent with any other live loads.
6) * This truss has been designed for a live load of 20.0psf on the bottom chord in all areas where a rectangle 3-6-0 tall by 2-0-0 wide
will fit between the bottom chord and any other members, with BCDL = 10.0psf.
7) Provide mechanical connection (by others) of truss to bearing plate capable of withstanding 275 lb uplift at joint 2, 407 lb uplift at
joint 9 and 566 lb uplift at joint 16.
8) "This manufactured product is designed as an individual building component. The suitability and use of this component for any
particular building is the responsibility of the building designer per ANSI TPI 1 as referenced by the building code."
This item has been
electronically signed and
sealed by ORegan, Philip, PE
using a Digital Signature.
Printed copies of this
document are not considered
signed and sealed and the
signature must be verified
on any electronic copies.
April 9,2021
Design valid for use only with MiTek® connectors. This design is based only upon parameters shown, and is for an individual building component, not
a truss system. Before use, the building designer must verify the applicability of design parameters and properly incorporate this design into the overall
building design. Bracing indicated is to prevent buckling of individual truss web and/or chord members only. Additional temporary and permanent bracing
is always required for stability and to prevent collapse with possible personal injury and property damage. For general guidance regarding the
fabrication, storage, delivery, erection and bracing of trusses and truss systems, see ANSI/TPI1 Quality Criteria, DSB-89 and BCSI Building Component
available from Truss Plate Institute, 2670 Crain Highway, Suite 203 Waldorf, MD 20601Safety Information
WARNING - Verify design parameters and READ NOTES ON THIS AND INCLUDED MITEK REFERENCE PAGE MII-7473 rev. 5/19/2020 BEFORE USE.
6904 Parke East Blvd.
Tampa, FL 36610
Job
WS0035
Truss
T11
Truss Type
Roof Special
Qty
1
Ply
1
Job Reference (optional)
T23503256
8.430 s Mar 22 2021 MiTek Industries, Inc. Thu Apr 8 08:47:59 2021 Page 1 Builders FirstSource (Tampa, FL), Tampa, FL - 33564,
ID:JbsSUYEphcZuYTshvwE3BRyhOBX-H6Ldb6bq_UM0uOf5w8EdP_0PX5XsojzKJEL2HzzSqTk
Scale = 1:64.8
1 2
3
4
5
6
7 8
9 10
16 15 14 13 12 11
17
18 19
20 21
22
23 24
5x8
ST1.5x8 STP
ST1.5x8 STP
ST1.5x8 STP
4x6
4x6
3x6
3x4 3x6
2x4
3x8
3x4
3x8 5x6
3x4
3x6 2x4
5-0-0
5-0-0
11-0-0
6-0-0
15-8-0
4-8-0
23-4-5
7-8-5
29-4-11
6-0-6
35-0-0
5-7-5
-1-0-0
1-0-0
6-8-2
6-8-2
11-0-0
4-3-14
15-8-0
4-8-0
19-10-0
4-2-0
26-0-0
6-2-0
35-0-0
9-0-0
36-0-0
1-0-0
0-4-14-11-16-7-140-4-14-11-15.00 12
Plate Offsets (X,Y)-- [4:0-5-12,0-2-8], [9:0-0-10,Edge], [12:0-3-0,0-3-0]
LOADING (psf)
TCLL
TCDL
BCLL
BCDL
20.0
7.0
0.0 *
10.0
SPACING-
Plate Grip DOL
Lumber DOL
Rep Stress Incr
Code
2-0-0
1.25
1.25
YES
FBC2020/TPI2014
CSI.
TC
BC
WB
Matrix-SH
0.87
0.83
0.47
DEFL.
Vert(LL)
Vert(CT)
Horz(CT)
in
-0.22
-0.38
0.05
(loc)
12-13
12-13
9
l/defl
>999
>951
n/a
L/d
240
180
n/a
PLATES
MT20
Weight: 181 lb FT = 20%
GRIP
244/190
LUMBER-
TOP CHORD 2x4 SP No.2
BOT CHORD 2x4 SP No.2
WEBS 2x4 SP No.3
BRACING-
TOP CHORD Structural wood sheathing directly applied.
BOT CHORD Rigid ceiling directly applied or 5-7-15 oc bracing.
REACTIONS. (size)2=0-8-0, 16=0-8-0, 9=0-8-0
Max Horz 2=-162(LC 10)
Max Uplift 2=-239(LC 24), 16=-542(LC 12), 9=-411(LC 12)
Max Grav 2=5(LC 9), 16=1951(LC 17), 9=1246(LC 18)
FORCES.(lb) - Max. Comp./Max. Ten. - All forces 250 (lb) or less except when shown.
TOP CHORD 2-3=-392/1161, 3-4=-1070/479, 4-5=-1548/671, 5-6=-1739/784, 6-8=-1849/742,
8-9=-2400/791
BOT CHORD 2-16=-1009/421, 13-15=-251/995, 12-13=-332/1259, 11-12=-622/1900, 9-11=-626/2119
WEBS 3-16=-1952/794, 3-15=-326/1122, 4-15=-421/198, 4-13=-300/901, 5-13=-848/450,
6-13=-255/613, 6-12=-232/814, 8-12=-519/309, 8-11=-6/320
NOTES-(8)
1) Unbalanced roof live loads have been considered for this design.
2) Wind: ASCE 7-16; Vult=165mph (3-second gust) Vasd=128mph; TCDL=4.2psf; BCDL=3.0psf; h=15ft; B=45ft; L=28ft; eave=5ft; Cat.
II; Exp B; Encl., GCpi=0.18; MWFRS (directional) and C-C Exterior(2E) -1-0-0 to 2-0-0, Interior(1) 2-0-0 to 11-0-0, Exterior(2R)
11-0-0 to 14-0-0, Interior(1) 14-0-0 to 19-10-0, Exterior(2R) 19-10-0 to 22-10-0, Interior(1) 22-10-0 to 36-0-0 zone; cantilever left and
right exposed ; end vertical left and right exposed;C-C for members and forces & MWFRS for reactions shown; Lumber DOL=1.60
plate grip DOL=1.60
3) Building Designer / Project engineer responsible for verifying applied roof live load shown covers rain loading requirements specific
to the use of this truss component.
4) Provide adequate drainage to prevent water ponding.
5) This truss has been designed for a 10.0 psf bottom chord live load nonconcurrent with any other live loads.
6) * This truss has been designed for a live load of 20.0psf on the bottom chord in all areas where a rectangle 3-6-0 tall by 2-0-0 wide
will fit between the bottom chord and any other members, with BCDL = 10.0psf.
7) Provide mechanical connection (by others) of truss to bearing plate capable of withstanding 239 lb uplift at joint 2, 542 lb uplift at
joint 16 and 411 lb uplift at joint 9.
8) "This manufactured product is designed as an individual building component. The suitability and use of this component for any
particular building is the responsibility of the building designer per ANSI TPI 1 as referenced by the building code."
This item has been
electronically signed and
sealed by ORegan, Philip, PE
using a Digital Signature.
Printed copies of this
document are not considered
signed and sealed and the
signature must be verified
on any electronic copies.
April 9,2021
Design valid for use only with MiTek® connectors. This design is based only upon parameters shown, and is for an individual building component, not
a truss system. Before use, the building designer must verify the applicability of design parameters and properly incorporate this design into the overall
building design. Bracing indicated is to prevent buckling of individual truss web and/or chord members only. Additional temporary and permanent bracing
is always required for stability and to prevent collapse with possible personal injury and property damage. For general guidance regarding the
fabrication, storage, delivery, erection and bracing of trusses and truss systems, see ANSI/TPI1 Quality Criteria, DSB-89 and BCSI Building Component
available from Truss Plate Institute, 2670 Crain Highway, Suite 203 Waldorf, MD 20601Safety Information
WARNING - Verify design parameters and READ NOTES ON THIS AND INCLUDED MITEK REFERENCE PAGE MII-7473 rev. 5/19/2020 BEFORE USE.
6904 Parke East Blvd.
Tampa, FL 36610
Job
WS0035
Truss
T12
Truss Type
Roof Special
Qty
1
Ply
1
Job Reference (optional)
T23503257
8.430 s Mar 22 2021 MiTek Industries, Inc. Thu Apr 8 08:48:00 2021 Page 1 Builders FirstSource (Tampa, FL), Tampa, FL - 33564,
ID:JbsSUYEphcZuYTshvwE3BRyhOBX-lIv?oScSloUtVYEITslsyCYaBVsxX5RTYu4cqPzSqTj
Scale = 1:64.8
1 2
3
4
5
6
7 8
9 10
16 15 14 13 12 11
17
18 19 20
21
22
23 24
4x6
ST1.5x8 STP
ST1.5x8 STP
ST1.5x8 STP
4x12
4x6
3x6
3x4 3x6
3x4
3x4
3x8 3x4 5x6
3x4
3x6 2x4
5-0-0
5-0-0
13-0-0
8-0-0
17-8-0
4-8-0
23-4-5
5-8-5
29-4-11
6-0-6
35-0-0
5-7-5
-1-0-0
1-0-0
7-9-7
7-9-7
13-0-0
5-2-9
17-8-0
4-8-0
19-10-0
2-2-0
26-0-0
6-2-0
35-0-0
9-0-0
36-0-0
1-0-0
0-4-15-9-16-7-140-4-15-9-15.00 12
Plate Offsets (X,Y)-- [2:0-0-14,Edge], [9:0-0-10,Edge], [12:0-3-0,0-3-0]
LOADING (psf)
TCLL
TCDL
BCLL
BCDL
20.0
7.0
0.0 *
10.0
SPACING-
Plate Grip DOL
Lumber DOL
Rep Stress Incr
Code
2-0-0
1.25
1.25
YES
FBC2020/TPI2014
CSI.
TC
BC
WB
Matrix-SH
0.88
0.84
0.77
DEFL.
Vert(LL)
Vert(CT)
Horz(CT)
in
-0.14
-0.24
0.06
(loc)
12-13
12-13
9
l/defl
>999
>999
n/a
L/d
240
180
n/a
PLATES
MT20
Weight: 186 lb FT = 20%
GRIP
244/190
LUMBER-
TOP CHORD 2x4 SP No.2
BOT CHORD 2x4 SP No.2
WEBS 2x4 SP No.3
BRACING-
TOP CHORD Structural wood sheathing directly applied.
BOT CHORD Rigid ceiling directly applied or 6-0-0 oc bracing.
REACTIONS. (size)2=0-8-0, 16=0-8-0, 9=0-8-0
Max Horz 2=162(LC 11)
Max Uplift 2=-177(LC 24), 16=-498(LC 12), 9=-417(LC 12)
Max Grav 2=17(LC 21), 16=1832(LC 17), 9=1259(LC 18)
FORCES.(lb) - Max. Comp./Max. Ten. - All forces 250 (lb) or less except when shown.
TOP CHORD 2-3=-311/952, 3-4=-1278/566, 4-5=-1137/551, 5-6=-1620/766, 6-8=-1868/771,
8-9=-2444/817
BOT CHORD 2-16=-824/364, 14-16=-213/647, 13-14=-432/1485, 12-13=-356/1292, 11-12=-647/1923,
9-11=-650/2158
WEBS 3-16=-2026/831, 3-14=-128/726, 4-14=-43/288, 5-14=-571/207, 5-13=-420/263,
6-13=-260/596, 6-12=-236/762, 8-12=-529/308, 8-11=-4/345
NOTES-(8)
1) Unbalanced roof live loads have been considered for this design.
2) Wind: ASCE 7-16; Vult=165mph (3-second gust) Vasd=128mph; TCDL=4.2psf; BCDL=3.0psf; h=15ft; B=45ft; L=28ft; eave=5ft; Cat.
II; Exp B; Encl., GCpi=0.18; MWFRS (directional) and C-C Exterior(2E) -1-0-0 to 2-0-0, Interior(1) 2-0-0 to 13-0-0, Exterior(2R)
13-0-0 to 16-0-0, Interior(1) 16-0-0 to 19-10-0, Exterior(2R) 19-10-0 to 22-10-0, Interior(1) 22-10-0 to 36-0-0 zone; cantilever left and
right exposed ; end vertical left and right exposed;C-C for members and forces & MWFRS for reactions shown; Lumber DOL=1.60
plate grip DOL=1.60
3) Building Designer / Project engineer responsible for verifying applied roof live load shown covers rain loading requirements specific
to the use of this truss component.
4) Provide adequate drainage to prevent water ponding.
5) This truss has been designed for a 10.0 psf bottom chord live load nonconcurrent with any other live loads.
6) * This truss has been designed for a live load of 20.0psf on the bottom chord in all areas where a rectangle 3-6-0 tall by 2-0-0 wide
will fit between the bottom chord and any other members, with BCDL = 10.0psf.
7) Provide mechanical connection (by others) of truss to bearing plate capable of withstanding 177 lb uplift at joint 2, 498 lb uplift at
joint 16 and 417 lb uplift at joint 9.
8) "This manufactured product is designed as an individual building component. The suitability and use of this component for any
particular building is the responsibility of the building designer per ANSI TPI 1 as referenced by the building code."
This item has been
electronically signed and
sealed by ORegan, Philip, PE
using a Digital Signature.
Printed copies of this
document are not considered
signed and sealed and the
signature must be verified
on any electronic copies.
April 9,2021
Design valid for use only with MiTek® connectors. This design is based only upon parameters shown, and is for an individual building component, not
a truss system. Before use, the building designer must verify the applicability of design parameters and properly incorporate this design into the overall
building design. Bracing indicated is to prevent buckling of individual truss web and/or chord members only. Additional temporary and permanent bracing
is always required for stability and to prevent collapse with possible personal injury and property damage. For general guidance regarding the
fabrication, storage, delivery, erection and bracing of trusses and truss systems, see ANSI/TPI1 Quality Criteria, DSB-89 and BCSI Building Component
available from Truss Plate Institute, 2670 Crain Highway, Suite 203 Waldorf, MD 20601Safety Information
WARNING - Verify design parameters and READ NOTES ON THIS AND INCLUDED MITEK REFERENCE PAGE MII-7473 rev. 5/19/2020 BEFORE USE.
6904 Parke East Blvd.
Tampa, FL 36610
Job
WS0035
Truss
T13
Truss Type
Roof Special
Qty
1
Ply
1
Job Reference (optional)
T23503258
8.430 s Mar 22 2021 MiTek Industries, Inc. Thu Apr 8 08:48:01 2021 Page 1 Builders FirstSource (Tampa, FL), Tampa, FL - 33564,
ID:JbsSUYEphcZuYTshvwE3BRyhOBX-DUTN0nd4W6ck7ipU1ZG5VP5m9vDyGgHdnYq9MrzSqTi
Scale = 1:64.8
1 2
3
4
5 6
7
8
9 10
16 15 14 13 12 11
17
18
19 20
21
22
3x6
ST1.5x8 STP ST1.5x8 STP
5x8 4x6
3x6
3x6 4x6
3x4
2x4 3x4
3x4
2x4 4x6 3x6 3x8
7-4-11
7-4-11
15-0-0
7-7-5
19-8-0
4-8-0
20-0-0
0-4-0
27-7-6
7-7-6
35-0-0
7-4-10
-1-0-0
1-0-0
7-4-11
7-4-11
15-0-0
7-7-5
19-8-0
4-8-0
19-10-0
0-2-0
20-0-0
0-2-0
27-7-6
7-7-6
35-0-0
7-4-10
36-0-0
1-0-0
0-4-16-7-10-4-16-7-15.00 12
Plate Offsets (X,Y)-- [5:0-5-12,0-2-8]
LOADING (psf)
TCLL
TCDL
BCLL
BCDL
20.0
7.0
0.0 *
10.0
SPACING-
Plate Grip DOL
Lumber DOL
Rep Stress Incr
Code
2-0-0
1.25
1.25
YES
FBC2020/TPI2014
CSI.
TC
BC
WB
Matrix-SH
0.80
0.79
0.29
DEFL.
Vert(LL)
Vert(CT)
Horz(CT)
in
-0.17
-0.37
0.13
(loc)
14
14-16
9
l/defl
>999
>999
n/a
L/d
240
180
n/a
PLATES
MT20
Weight: 173 lb FT = 20%
GRIP
244/190
LUMBER-
TOP CHORD 2x4 SP No.2
BOT CHORD 2x4 SP No.2
WEBS 2x4 SP No.3
BRACING-
TOP CHORD Structural wood sheathing directly applied.
BOT CHORD Rigid ceiling directly applied or 6-2-4 oc bracing.
WEBS 1 Row at midpt 3-14, 8-13
REACTIONS. (size)2=0-8-0, 9=0-8-0
Max Horz 2=-160(LC 10)
Max Uplift 2=-483(LC 12), 9=-483(LC 12)
Max Grav 2=1342(LC 1), 9=1342(LC 1)
FORCES.(lb) - Max. Comp./Max. Ten. - All forces 250 (lb) or less except when shown.
TOP CHORD 2-3=-2686/1052, 3-5=-1940/845, 5-6=-1719/842, 6-8=-1941/845, 8-9=-2686/1052
BOT CHORD 2-16=-880/2398, 14-16=-880/2398, 13-14=-553/1718, 11-13=-884/2398, 9-11=-884/2398
WEBS 3-16=0/327, 3-14=-751/354, 5-14=-95/441, 8-11=0/327, 6-13=-104/442, 8-13=-751/354
NOTES-(8)
1) Unbalanced roof live loads have been considered for this design.
2) Wind: ASCE 7-16; Vult=165mph (3-second gust) Vasd=128mph; TCDL=4.2psf; BCDL=3.0psf; h=15ft; B=45ft; L=28ft; eave=5ft; Cat.
II; Exp B; Encl., GCpi=0.18; MWFRS (directional) and C-C Exterior(2E) -1-0-0 to 2-0-0, Interior(1) 2-0-0 to 15-0-0, Exterior(2R)
15-0-0 to 18-0-0, Interior(1) 18-0-0 to 20-0-0, Exterior(2R) 20-0-0 to 23-0-0, Interior(1) 23-0-0 to 36-0-0 zone; cantilever left and right
exposed ; end vertical left and right exposed;C-C for members and forces & MWFRS for reactions shown; Lumber DOL=1.60 plate
grip DOL=1.60
3) Building Designer / Project engineer responsible for verifying applied roof live load shown covers rain loading requirements specific
to the use of this truss component.
4) Provide adequate drainage to prevent water ponding.
5) This truss has been designed for a 10.0 psf bottom chord live load nonconcurrent with any other live loads.
6) * This truss has been designed for a live load of 20.0psf on the bottom chord in all areas where a rectangle 3-6-0 tall by 2-0-0 wide
will fit between the bottom chord and any other members.
7) Provide mechanical connection (by others) of truss to bearing plate capable of withstanding 483 lb uplift at joint 2 and 483 lb uplift at
joint 9.
8) "This manufactured product is designed as an individual building component. The suitability and use of this component for any
particular building is the responsibility of the building designer per ANSI TPI 1 as referenced by the building code."
This item has been
electronically signed and
sealed by ORegan, Philip, PE
using a Digital Signature.
Printed copies of this
document are not considered
signed and sealed and the
signature must be verified
on any electronic copies.
April 9,2021
Design valid for use only with MiTek® connectors. This design is based only upon parameters shown, and is for an individual building component, not
a truss system. Before use, the building designer must verify the applicability of design parameters and properly incorporate this design into the overall
building design. Bracing indicated is to prevent buckling of individual truss web and/or chord members only. Additional temporary and permanent bracing
is always required for stability and to prevent collapse with possible personal injury and property damage. For general guidance regarding the
fabrication, storage, delivery, erection and bracing of trusses and truss systems, see ANSI/TPI1 Quality Criteria, DSB-89 and BCSI Building Component
available from Truss Plate Institute, 2670 Crain Highway, Suite 203 Waldorf, MD 20601Safety Information
WARNING - Verify design parameters and READ NOTES ON THIS AND INCLUDED MITEK REFERENCE PAGE MII-7473 rev. 5/19/2020 BEFORE USE.
6904 Parke East Blvd.
Tampa, FL 36610
Job
WS0035
Truss
T14
Truss Type
Hip
Qty
1
Ply
1
Job Reference (optional)
T23503259
8.430 s Mar 22 2021 MiTek Industries, Inc. Thu Apr 8 08:48:02 2021 Page 1 Builders FirstSource (Tampa, FL), Tampa, FL - 33564,
ID:JbsSUYEphcZuYTshvwE3BRyhOBX-hh1mD7eiGPkblsOgbHnK1de0jIa??1?m?CZjuIzSqTh
Scale = 1:64.8
1 2
3
4
5
6 7 8
9
10
11
12 13
18 17 16 15 14
19
20
21
22
23 24
3x6
ST1.5x8 STP ST1.5x8 STP
3x6 3x6
3x6
3x6 4x6 3x4
2x4
3x4
3x8
3x4
3x4
2x4
4x6 3x6
3x6
8-9-9
8-9-9
17-0-0
8-2-7
17-6-0
0-6-0
18-0-0
0-6-0
26-2-7
8-2-7
35-0-0
8-9-9
-1-0-0
1-0-0
6-1-3
6-1-3
12-3-13
6-2-10
17-0-0
4-8-3
17-6-0
0-6-0
18-0-0
0-6-0
22-8-3
4-8-3
28-10-13
6-2-10
35-0-0
6-1-3
36-0-0
1-0-0
0-4-17-5-10-4-17-5-15.00 12
Plate Offsets (X,Y)-- [6:0-3-0,0-2-4], [8:0-3-0,0-2-4]
LOADING (psf)
TCLL
TCDL
BCLL
BCDL
20.0
7.0
0.0 *
10.0
SPACING-
Plate Grip DOL
Lumber DOL
Rep Stress Incr
Code
2-0-0
1.25
1.25
YES
FBC2020/TPI2014
CSI.
TC
BC
WB
Matrix-SH
0.49
0.73
0.70
DEFL.
Vert(LL)
Vert(CT)
Horz(CT)
in
-0.26
-0.45
0.12
(loc)
14-16
14-16
12
l/defl
>999
>909
n/a
L/d
240
180
n/a
PLATES
MT20
Weight: 171 lb FT = 20%
GRIP
244/190
LUMBER-
TOP CHORD 2x4 SP No.2
BOT CHORD 2x4 SP No.1
WEBS 2x4 SP No.3
BRACING-
TOP CHORD Structural wood sheathing directly applied or 2-11-13 oc purlins.
BOT CHORD Rigid ceiling directly applied or 6-10-2 oc bracing.
REACTIONS. (size)2=0-8-0, 12=0-8-0
Max Horz 2=-180(LC 10)
Max Uplift 2=-483(LC 12), 12=-483(LC 12)
Max Grav 2=1492(LC 17), 12=1492(LC 18)
FORCES.(lb) - Max. Comp./Max. Ten. - All forces 250 (lb) or less except when shown.
TOP CHORD 2-3=-2945/999, 3-5=-2734/929, 5-6=-1883/734, 6-7=-1696/704, 7-8=-1696/704,
8-9=-1883/734, 9-11=-2735/929, 11-12=-2946/999
BOT CHORD 2-18=-832/2789, 16-18=-608/2218, 14-16=-618/2123, 12-14=-842/2654
WEBS 3-18=-297/215, 5-18=-113/637, 5-16=-689/320, 9-16=-689/320, 9-14=-113/637,
11-14=-297/215, 7-16=-381/1191
NOTES-(8)
1) Unbalanced roof live loads have been considered for this design.
2) Wind: ASCE 7-16; Vult=165mph (3-second gust) Vasd=128mph; TCDL=4.2psf; BCDL=3.0psf; h=15ft; B=45ft; L=28ft; eave=5ft; Cat.
II; Exp B; Encl., GCpi=0.18; MWFRS (directional) and C-C Exterior(2E) -1-0-0 to 2-0-0, Interior(1) 2-0-0 to 17-0-0, Exterior(2E)
17-0-0 to 18-0-0, Exterior(2R) 18-0-0 to 22-2-15, Interior(1) 22-2-15 to 36-0-0 zone; cantilever left and right exposed ; end vertical left
and right exposed;C-C for members and forces & MWFRS for reactions shown; Lumber DOL=1.60 plate grip DOL=1.60
3) Building Designer / Project engineer responsible for verifying applied roof live load shown covers rain loading requirements specific
to the use of this truss component.
4) Provide adequate drainage to prevent water ponding.
5) This truss has been designed for a 10.0 psf bottom chord live load nonconcurrent with any other live loads.
6) * This truss has been designed for a live load of 20.0psf on the bottom chord in all areas where a rectangle 3-6-0 tall by 2-0-0 wide
will fit between the bottom chord and any other members, with BCDL = 10.0psf.
7) Provide mechanical connection (by others) of truss to bearing plate capable of withstanding 483 lb uplift at joint 2 and 483 lb uplift at
joint 12.
8) "This manufactured product is designed as an individual building component. The suitability and use of this component for any
particular building is the responsibility of the building designer per ANSI TPI 1 as referenced by the building code."
This item has been
electronically signed and
sealed by ORegan, Philip, PE
using a Digital Signature.
Printed copies of this
document are not considered
signed and sealed and the
signature must be verified
on any electronic copies.
April 9,2021
Design valid for use only with MiTek® connectors. This design is based only upon parameters shown, and is for an individual building component, not
a truss system. Before use, the building designer must verify the applicability of design parameters and properly incorporate this design into the overall
building design. Bracing indicated is to prevent buckling of individual truss web and/or chord members only. Additional temporary and permanent bracing
is always required for stability and to prevent collapse with possible personal injury and property damage. For general guidance regarding the
fabrication, storage, delivery, erection and bracing of trusses and truss systems, see ANSI/TPI1 Quality Criteria, DSB-89 and BCSI Building Component
available from Truss Plate Institute, 2670 Crain Highway, Suite 203 Waldorf, MD 20601Safety Information
WARNING - Verify design parameters and READ NOTES ON THIS AND INCLUDED MITEK REFERENCE PAGE MII-7473 rev. 5/19/2020 BEFORE USE.
6904 Parke East Blvd.
Tampa, FL 36610
Job
WS0035
Truss
T14A
Truss Type
Hip
Qty
1
Ply
1
Job Reference (optional)
T23503260
8.430 s Mar 22 2021 MiTek Industries, Inc. Thu Apr 8 08:48:03 2021 Page 1 Builders FirstSource (Tampa, FL), Tampa, FL - 33564,
ID:JbsSUYEphcZuYTshvwE3BRyhOBX-9tb8RTfL1jsSM?zt9_JZaqA92ivGkQ_vEsJGQkzSqTg
Scale = 1:66.0
1 2
3
4
5
6 7
8
9
10
11
12 13
15 14
18 17 16
21 20 19
22
23 24
25
3x6
ST1.5x8 STP ST1.5x8 STP
4x6 4x6
3x6
3x4
2x4
3x8
2x4 4x10 MT20HS
2x4
2x4 3x6
3x4
5x6
5x8
3x4
5x8 3x4
3x6
7-2-10
7-2-10
11-3-4
4-0-10
17-0-0
5-8-12
20-8-0
3-8-0
27-1-12
6-5-12
35-0-0
7-10-4
-1-0-0
1-0-0
4-10-13
4-10-13
11-3-4
6-4-7
17-0-0
5-8-12
18-0-0
1-0-0
20-8-0
2-8-0
23-5-6
2-9-6
27-1-12
3-8-5
29-1-10
1-11-14
35-0-0
5-10-6
36-0-0
1-0-0
0-4-17-5-10-4-12-0-07-5-15.00 12
Plate Offsets (X,Y)-- [16:0-5-8,0-3-8], [18:0-5-8,0-3-4], [20:0-2-12,0-3-0]
LOADING (psf)
TCLL
TCDL
BCLL
BCDL
20.0
7.0
0.0 *
10.0
SPACING-
Plate Grip DOL
Lumber DOL
Rep Stress Incr
Code
2-0-0
1.25
1.25
YES
FBC2020/TPI2014
CSI.
TC
BC
WB
Matrix-SH
0.58
0.80
0.91
DEFL.
Vert(LL)
Vert(CT)
Horz(CT)
in
-0.23
-0.45
0.19
(loc)
18
19-20
12
l/defl
>999
>925
n/a
L/d
240
180
n/a
PLATES
MT20
MT20HS
Weight: 209 lb FT = 20%
GRIP
244/190
187/143
LUMBER-
TOP CHORD 2x4 SP No.2
BOT CHORD 2x4 SP No.2
WEBS 2x4 SP No.3
BRACING-
TOP CHORD Structural wood sheathing directly applied or 2-9-1 oc purlins.
BOT CHORD Rigid ceiling directly applied or 6-4-12 oc bracing.
REACTIONS. (size)12=0-8-0, 2=0-8-0
Max Horz 2=180(LC 11)
Max Uplift 12=-483(LC 12), 2=-483(LC 12)
Max Grav 12=1342(LC 1), 2=1342(LC 1)
FORCES.(lb) - Max. Comp./Max. Ten. - All forces 250 (lb) or less except when shown.
TOP CHORD 2-3=-2704/1019, 3-5=-2509/955, 5-6=-2365/917, 6-7=-2145/886, 7-8=-2341/939,
8-10=-2988/1112, 10-11=-2507/957, 11-12=-2664/980
BOT CHORD 12-14=-823/2378, 17-18=-573/2140, 16-17=-823/2711, 2-21=-861/2436, 20-21=-643/2034
WEBS 5-21=-110/351, 6-18=-244/741, 8-16=-215/749, 5-20=-608/258, 18-20=-678/2144,
10-14=-499/219, 14-16=-789/2396, 10-16=-63/436, 7-17=-336/814, 8-17=-983/431
NOTES-(9)
1) Unbalanced roof live loads have been considered for this design.
2) Wind: ASCE 7-16; Vult=165mph (3-second gust) Vasd=128mph; TCDL=4.2psf; BCDL=3.0psf; h=15ft; B=45ft; L=28ft; eave=5ft; Cat.
II; Exp B; Encl., GCpi=0.18; MWFRS (directional) and C-C Exterior(2E) -1-0-0 to 2-0-0, Interior(1) 2-0-0 to 17-0-0, Exterior(2E)
17-0-0 to 18-0-0, Exterior(2R) 18-0-0 to 22-2-15, Interior(1) 22-2-15 to 36-0-0 zone; cantilever left and right exposed ; end vertical left
and right exposed;C-C for members and forces & MWFRS for reactions shown; Lumber DOL=1.60 plate grip DOL=1.60
3) Building Designer / Project engineer responsible for verifying applied roof live load shown covers rain loading requirements specific
to the use of this truss component.
4) Provide adequate drainage to prevent water ponding.
5) All plates are MT20 plates unless otherwise indicated.
6) This truss has been designed for a 10.0 psf bottom chord live load nonconcurrent with any other live loads.
7) * This truss has been designed for a live load of 20.0psf on the bottom chord in all areas where a rectangle 3-6-0 tall by 2-0-0 wide
will fit between the bottom chord and any other members.
8) Provide mechanical connection (by others) of truss to bearing plate capable of withstanding 483 lb uplift at joint 12 and 483 lb uplift
at joint 2.
9) "This manufactured product is designed as an individual building component. The suitability and use of this component for any
particular building is the responsibility of the building designer per ANSI TPI 1 as referenced by the building code."
This item has been
electronically signed and
sealed by ORegan, Philip, PE
using a Digital Signature.
Printed copies of this
document are not considered
signed and sealed and the
signature must be verified
on any electronic copies.
April 9,2021
Design valid for use only with MiTek® connectors. This design is based only upon parameters shown, and is for an individual building component, not
a truss system. Before use, the building designer must verify the applicability of design parameters and properly incorporate this design into the overall
building design. Bracing indicated is to prevent buckling of individual truss web and/or chord members only. Additional temporary and permanent bracing
is always required for stability and to prevent collapse with possible personal injury and property damage. For general guidance regarding the
fabrication, storage, delivery, erection and bracing of trusses and truss systems, see ANSI/TPI1 Quality Criteria, DSB-89 and BCSI Building Component
available from Truss Plate Institute, 2670 Crain Highway, Suite 203 Waldorf, MD 20601Safety Information
WARNING - Verify design parameters and READ NOTES ON THIS AND INCLUDED MITEK REFERENCE PAGE MII-7473 rev. 5/19/2020 BEFORE USE.
6904 Parke East Blvd.
Tampa, FL 36610
Job
WS0035
Truss
T15
Truss Type
Hip
Qty
10
Ply
1
Job Reference (optional)
T23503261
8.430 s Mar 22 2021 MiTek Industries, Inc. Thu Apr 8 08:48:04 2021 Page 1 Builders FirstSource (Tampa, FL), Tampa, FL - 33564,
ID:JbsSUYEphcZuYTshvwE3BRyhOBX-d39Wepfzo1_J_9X3iiqo62jMD6FTTwL3TW2pzAzSqTf
Scale = 1:62.4
1 2
3
4
5
6
7
8
9
10 11
16 15 14 13 12
17
18 19
20
21 22
3x6
ST1.5x8 STP ST1.5x8 STP
4x6
3x6
3x6 4x6 3x4
2x4
3x4
3x8
3x4
3x4
2x4
4x6 3x6
8-9-9
8-9-9
17-0-0
8-2-7
17-6-0
0-6-0
18-0-0
0-6-0
26-2-7
8-2-7
35-0-0
8-9-9
-1-0-0
1-0-0
6-1-3
6-1-3
12-3-13
6-2-10
17-0-0
4-8-3
17-6-0
0-6-0
18-0-0
0-6-0
22-8-3
4-8-3
28-10-13
6-2-10
35-0-0
6-1-3
36-0-0
1-0-0
0-4-17-7-90-4-15.00 12
LOADING (psf)
TCLL
TCDL
BCLL
BCDL
20.0
7.0
0.0 *
10.0
SPACING-
Plate Grip DOL
Lumber DOL
Rep Stress Incr
Code
2-0-0
1.25
1.25
YES
FBC2020/TPI2014
CSI.
TC
BC
WB
Matrix-SH
0.49
0.73
0.71
DEFL.
Vert(LL)
Vert(CT)
Horz(CT)
in
-0.26
-0.45
0.12
(loc)
12-14
12-14
10
l/defl
>999
>914
n/a
L/d
240
180
n/a
PLATES
MT20
Weight: 172 lb FT = 20%
GRIP
244/190
LUMBER-
TOP CHORD 2x4 SP No.2
BOT CHORD 2x4 SP No.1
WEBS 2x4 SP No.3
BRACING-
TOP CHORD Structural wood sheathing directly applied or 2-11-9 oc purlins.
BOT CHORD Rigid ceiling directly applied or 6-10-1 oc bracing.
REACTIONS. (size)2=0-8-0, 10=0-8-0
Max Horz 2=-185(LC 10)
Max Uplift 2=-483(LC 12), 10=-483(LC 12)
Max Grav 2=1490(LC 17), 10=1490(LC 18)
FORCES.(lb) - Max. Comp./Max. Ten. - All forces 250 (lb) or less except when shown.
TOP CHORD 2-3=-2940/1003, 3-5=-2730/934, 5-6=-1881/747, 6-7=-1881/747, 7-9=-2731/934,
9-10=-2940/1003
BOT CHORD 2-16=-839/2787, 14-16=-619/2220, 12-14=-623/2126, 10-12=-844/2649
WEBS 3-16=-295/212, 5-16=-110/634, 5-14=-699/323, 7-14=-699/323, 7-12=-110/634,
9-12=-295/212, 6-14=-388/1205
NOTES-(7)
1) Unbalanced roof live loads have been considered for this design.
2) Wind: ASCE 7-16; Vult=165mph (3-second gust) Vasd=128mph; TCDL=4.2psf; BCDL=3.0psf; h=15ft; B=45ft; L=28ft; eave=5ft; Cat.
II; Exp B; Encl., GCpi=0.18; MWFRS (directional) and C-C Exterior(2E) -1-0-0 to 2-0-0, Interior(1) 2-0-0 to 17-6-0, Exterior(2R)
17-6-0 to 20-6-0, Interior(1) 20-6-0 to 36-0-0 zone; cantilever left and right exposed ; end vertical left and right exposed;C-C for
members and forces & MWFRS for reactions shown; Lumber DOL=1.60 plate grip DOL=1.60
3) Building Designer / Project engineer responsible for verifying applied roof live load shown covers rain loading requirements specific
to the use of this truss component.
4) This truss has been designed for a 10.0 psf bottom chord live load nonconcurrent with any other live loads.
5) * This truss has been designed for a live load of 20.0psf on the bottom chord in all areas where a rectangle 3-6-0 tall by 2-0-0 wide
will fit between the bottom chord and any other members, with BCDL = 10.0psf.
6) Provide mechanical connection (by others) of truss to bearing plate capable of withstanding 483 lb uplift at joint 2 and 483 lb uplift at
joint 10.
7) "This manufactured product is designed as an individual building component. The suitability and use of this component for any
particular building is the responsibility of the building designer per ANSI TPI 1 as referenced by the building code."
This item has been
electronically signed and
sealed by ORegan, Philip, PE
using a Digital Signature.
Printed copies of this
document are not considered
signed and sealed and the
signature must be verified
on any electronic copies.
April 9,2021
Design valid for use only with MiTek® connectors. This design is based only upon parameters shown, and is for an individual building component, not
a truss system. Before use, the building designer must verify the applicability of design parameters and properly incorporate this design into the overall
building design. Bracing indicated is to prevent buckling of individual truss web and/or chord members only. Additional temporary and permanent bracing
is always required for stability and to prevent collapse with possible personal injury and property damage. For general guidance regarding the
fabrication, storage, delivery, erection and bracing of trusses and truss systems, see ANSI/TPI1 Quality Criteria, DSB-89 and BCSI Building Component
available from Truss Plate Institute, 2670 Crain Highway, Suite 203 Waldorf, MD 20601Safety Information
WARNING - Verify design parameters and READ NOTES ON THIS AND INCLUDED MITEK REFERENCE PAGE MII-7473 rev. 5/19/2020 BEFORE USE.
6904 Parke East Blvd.
Tampa, FL 36610
Job
WS0035
Truss
T16
Truss Type
Hip
Qty
1
Ply
1
Job Reference (optional)
T23503262
8.430 s Mar 22 2021 MiTek Industries, Inc. Thu Apr 8 08:48:05 2021 Page 1 Builders FirstSource (Tampa, FL), Tampa, FL - 33564,
ID:JbsSUYEphcZuYTshvwE3BRyhOBX-5Gjus9gbZK6AcJ6FGPL1fFGS9WauCUHCiAoNVczSqTe
Scale = 1:64.8
1 2
3
4
5 6
7
8
9 10
16 15 14 13 12 11
17
18
19 20
21
22
3x6
ST1.5x8 STP ST1.5x8 STP
5x8 4x6
3x6
3x6 4x6
3x4
2x4 3x4 3x8
3x4
2x4 4x6 3x6
7-4-11
7-4-11
15-0-0
7-7-5
20-0-0
5-0-0
27-7-5
7-7-5
35-0-0
7-4-11
-1-0-0
1-0-0
7-4-11
7-4-11
15-0-0
7-7-5
20-0-0
5-0-0
27-7-5
7-7-5
35-0-0
7-4-11
36-0-0
1-0-0
0-4-16-7-10-4-16-7-15.00 12
Plate Offsets (X,Y)-- [5:0-5-12,0-2-8]
LOADING (psf)
TCLL
TCDL
BCLL
BCDL
20.0
7.0
0.0 *
10.0
SPACING-
Plate Grip DOL
Lumber DOL
Rep Stress Incr
Code
2-0-0
1.25
1.25
YES
FBC2020/TPI2014
CSI.
TC
BC
WB
Matrix-SH
0.80
0.79
0.29
DEFL.
Vert(LL)
Vert(CT)
Horz(CT)
in
-0.17
-0.37
0.13
(loc)
14
14-16
9
l/defl
>999
>999
n/a
L/d
240
180
n/a
PLATES
MT20
Weight: 173 lb FT = 20%
GRIP
244/190
LUMBER-
TOP CHORD 2x4 SP No.2
BOT CHORD 2x4 SP No.2
WEBS 2x4 SP No.3
BRACING-
TOP CHORD Structural wood sheathing directly applied.
BOT CHORD Rigid ceiling directly applied or 6-3-8 oc bracing.
WEBS 1 Row at midpt 3-14, 8-13
REACTIONS. (size)2=0-8-0, 9=0-8-0
Max Horz 2=160(LC 11)
Max Uplift 2=-483(LC 12), 9=-483(LC 12)
Max Grav 2=1342(LC 1), 9=1342(LC 1)
FORCES.(lb) - Max. Comp./Max. Ten. - All forces 250 (lb) or less except when shown.
TOP CHORD 2-3=-2686/1019, 3-5=-1940/809, 5-6=-1719/804, 6-8=-1941/809, 8-9=-2686/1019
BOT CHORD 2-16=-844/2398, 14-16=-844/2398, 13-14=-516/1718, 11-13=-854/2398, 9-11=-854/2398
WEBS 3-16=0/327, 3-14=-751/356, 5-14=-96/441, 6-13=-103/442, 8-13=-751/356, 8-11=0/327
NOTES-(8)
1) Unbalanced roof live loads have been considered for this design.
2) Wind: ASCE 7-16; Vult=165mph (3-second gust) Vasd=128mph; TCDL=4.2psf; BCDL=3.0psf; h=15ft; B=45ft; L=28ft; eave=5ft; Cat.
II; Exp B; Encl., GCpi=0.18; MWFRS (directional) and C-C Exterior(2E) -1-0-0 to 2-0-0, Interior(1) 2-0-0 to 15-0-0, Exterior(2R)
15-0-0 to 19-2-15, Interior(1) 19-2-15 to 20-0-0, Exterior(2R) 20-0-0 to 24-2-15, Interior(1) 24-2-15 to 36-0-0 zone; cantilever left and
right exposed ; end vertical left and right exposed;C-C for members and forces & MWFRS for reactions shown; Lumber DOL=1.60
plate grip DOL=1.60
3) Building Designer / Project engineer responsible for verifying applied roof live load shown covers rain loading requirements specific
to the use of this truss component.
4) Provide adequate drainage to prevent water ponding.
5) This truss has been designed for a 10.0 psf bottom chord live load nonconcurrent with any other live loads.
6) * This truss has been designed for a live load of 20.0psf on the bottom chord in all areas where a rectangle 3-6-0 tall by 2-0-0 wide
will fit between the bottom chord and any other members.
7) Provide mechanical connection (by others) of truss to bearing plate capable of withstanding 483 lb uplift at joint 2 and 483 lb uplift at
joint 9.
8) "This manufactured product is designed as an individual building component. The suitability and use of this component for any
particular building is the responsibility of the building designer per ANSI TPI 1 as referenced by the building code."
This item has been
electronically signed and
sealed by ORegan, Philip, PE
using a Digital Signature.
Printed copies of this
document are not considered
signed and sealed and the
signature must be verified
on any electronic copies.
April 9,2021
Design valid for use only with MiTek® connectors. This design is based only upon parameters shown, and is for an individual building component, not
a truss system. Before use, the building designer must verify the applicability of design parameters and properly incorporate this design into the overall
building design. Bracing indicated is to prevent buckling of individual truss web and/or chord members only. Additional temporary and permanent bracing
is always required for stability and to prevent collapse with possible personal injury and property damage. For general guidance regarding the
fabrication, storage, delivery, erection and bracing of trusses and truss systems, see ANSI/TPI1 Quality Criteria, DSB-89 and BCSI Building Component
available from Truss Plate Institute, 2670 Crain Highway, Suite 203 Waldorf, MD 20601Safety Information
WARNING - Verify design parameters and READ NOTES ON THIS AND INCLUDED MITEK REFERENCE PAGE MII-7473 rev. 5/19/2020 BEFORE USE.
6904 Parke East Blvd.
Tampa, FL 36610
Job
WS0035
Truss
T17
Truss Type
Hip
Qty
1
Ply
1
Job Reference (optional)
T23503263
8.430 s Mar 22 2021 MiTek Industries, Inc. Thu Apr 8 08:48:07 2021 Page 1 Builders FirstSource (Tampa, FL), Tampa, FL - 33564,
ID:JbsSUYEphcZuYTshvwE3BRyhOBX-2eqfHrir5yMurdGeOqNVkgLmoJD3gKSV9UHUaVzSqTc
Scale: 3/16"=1'
1 2
3
4 5 6
7
8 9
15 14 13 12 11 10
16
17
18 19
20
21
22 23
4x6
ST1.5x8 STP ST1.5x8 STP
4x6
3x6 4x6
3x4
2x4 3x8
3x4
3x8
3x4
2x4 4x6 3x6
7-7-12
7-7-12
13-0-0
5-4-4
22-0-0
9-0-0
27-4-4
5-4-4
35-0-0
7-7-12
-1-0-0
1-0-0
7-7-12
7-7-12
13-0-0
5-4-4
17-6-0
4-6-0
22-0-0
4-6-0
27-4-4
5-4-4
35-0-0
7-7-12
36-0-0
1-0-0
0-4-15-9-10-4-15-9-15.00 12
LOADING (psf)
TCLL
TCDL
BCLL
BCDL
20.0
7.0
0.0 *
10.0
SPACING-
Plate Grip DOL
Lumber DOL
Rep Stress Incr
Code
2-0-0
1.25
1.25
YES
FBC2020/TPI2014
CSI.
TC
BC
WB
Matrix-SH
0.85
1.00
0.50
DEFL.
Vert(LL)
Vert(CT)
Horz(CT)
in
-0.35
-0.62
0.14
(loc)
12-13
12-13
8
l/defl
>999
>664
n/a
L/d
240
180
n/a
PLATES
MT20
Weight: 173 lb FT = 20%
GRIP
244/190
LUMBER-
TOP CHORD 2x4 SP No.2
BOT CHORD 2x4 SP No.2
WEBS 2x4 SP No.3
BRACING-
TOP CHORD Structural wood sheathing directly applied or 2-2-0 oc purlins.
BOT CHORD Rigid ceiling directly applied or 2-2-0 oc bracing.
REACTIONS. (size)2=0-8-0, 8=0-8-0
Max Horz 2=-140(LC 10)
Max Uplift 2=-483(LC 12), 8=-483(LC 12)
Max Grav 2=1490(LC 17), 8=1490(LC 18)
FORCES.(lb) - Max. Comp./Max. Ten. - All forces 250 (lb) or less except when shown.
TOP CHORD 2-3=-2916/1008, 3-4=-2307/862, 4-5=-2102/837, 5-6=-2102/837, 6-7=-2307/862,
7-8=-2916/1008
BOT CHORD 2-15=-826/2709, 13-15=-826/2709, 12-13=-654/2209, 10-12=-837/2605, 8-10=-837/2605
WEBS 3-15=0/252, 3-13=-654/290, 4-13=-178/682, 5-13=-293/119, 5-12=-293/119,
6-12=-178/682, 7-12=-655/290, 7-10=0/252
NOTES-(8)
1) Unbalanced roof live loads have been considered for this design.
2) Wind: ASCE 7-16; Vult=165mph (3-second gust) Vasd=128mph; TCDL=4.2psf; BCDL=3.0psf; h=15ft; B=45ft; L=28ft; eave=5ft; Cat.
II; Exp B; Encl., GCpi=0.18; MWFRS (directional) and C-C Exterior(2E) -1-0-0 to 2-0-0, Interior(1) 2-0-0 to 13-0-0, Exterior(2R)
13-0-0 to 17-6-0, Interior(1) 17-6-0 to 22-0-0, Exterior(2R) 22-0-0 to 26-2-15, Interior(1) 26-2-15 to 36-0-0 zone; cantilever left and
right exposed ; end vertical left and right exposed;C-C for members and forces & MWFRS for reactions shown; Lumber DOL=1.60
plate grip DOL=1.60
3) Building Designer / Project engineer responsible for verifying applied roof live load shown covers rain loading requirements specific
to the use of this truss component.
4) Provide adequate drainage to prevent water ponding.
5) This truss has been designed for a 10.0 psf bottom chord live load nonconcurrent with any other live loads.
6) * This truss has been designed for a live load of 20.0psf on the bottom chord in all areas where a rectangle 3-6-0 tall by 2-0-0 wide
will fit between the bottom chord and any other members, with BCDL = 10.0psf.
7) Provide mechanical connection (by others) of truss to bearing plate capable of withstanding 483 lb uplift at joint 2 and 483 lb uplift at
joint 8.
8) "This manufactured product is designed as an individual building component. The suitability and use of this component for any
particular building is the responsibility of the building designer per ANSI TPI 1 as referenced by the building code."
This item has been
electronically signed and
sealed by ORegan, Philip, PE
using a Digital Signature.
Printed copies of this
document are not considered
signed and sealed and the
signature must be verified
on any electronic copies.
April 9,2021
Design valid for use only with MiTek® connectors. This design is based only upon parameters shown, and is for an individual building component, not
a truss system. Before use, the building designer must verify the applicability of design parameters and properly incorporate this design into the overall
building design. Bracing indicated is to prevent buckling of individual truss web and/or chord members only. Additional temporary and permanent bracing
is always required for stability and to prevent collapse with possible personal injury and property damage. For general guidance regarding the
fabrication, storage, delivery, erection and bracing of trusses and truss systems, see ANSI/TPI1 Quality Criteria, DSB-89 and BCSI Building Component
available from Truss Plate Institute, 2670 Crain Highway, Suite 203 Waldorf, MD 20601Safety Information
WARNING - Verify design parameters and READ NOTES ON THIS AND INCLUDED MITEK REFERENCE PAGE MII-7473 rev. 5/19/2020 BEFORE USE.
6904 Parke East Blvd.
Tampa, FL 36610
Job
WS0035
Truss
T18
Truss Type
Hip
Qty
1
Ply
1
Job Reference (optional)
T23503264
8.430 s Mar 22 2021 MiTek Industries, Inc. Thu Apr 8 08:48:08 2021 Page 1 Builders FirstSource (Tampa, FL), Tampa, FL - 33564,
ID:JbsSUYEphcZuYTshvwE3BRyhOBX-WrO1UBiTsFUkTnrqxXukHuu?njdIPrlfO8016xzSqTb
Scale: 3/16"=1'
1 2
3
4 5 6
7
8 9
16 15 14 13 12 11 10
17
18 19 20 21
22
5x8
ST1.5x8 STP ST1.5x8 STP
5x8
3x6 3x6
3x4
2x4
3x4
3x8
2x4
3x4
3x4
2x4
3x6
3x6
6-6-5
6-6-5
11-0-0
4-5-11
17-6-0
6-6-0
24-0-0
6-6-0
28-5-11
4-5-11
35-0-0
6-6-5
-1-0-0
1-0-0
6-6-5
6-6-5
11-0-0
4-5-11
17-6-0
6-6-0
24-0-0
6-6-0
28-5-11
4-5-11
35-0-0
6-6-5
36-0-0
1-0-0
0-4-14-11-10-4-14-11-15.00 12
Plate Offsets (X,Y)-- [4:0-5-12,0-2-8], [6:0-5-12,0-2-8]
LOADING (psf)
TCLL
TCDL
BCLL
BCDL
20.0
7.0
0.0 *
10.0
SPACING-
Plate Grip DOL
Lumber DOL
Rep Stress Incr
Code
2-0-0
1.25
1.25
YES
FBC2020/TPI2014
CSI.
TC
BC
WB
Matrix-SH
0.58
0.74
0.24
DEFL.
Vert(LL)
Vert(CT)
Horz(CT)
in
-0.20
-0.38
0.13
(loc)
13
13-15
8
l/defl
>999
>999
n/a
L/d
240
180
n/a
PLATES
MT20
Weight: 174 lb FT = 20%
GRIP
244/190
LUMBER-
TOP CHORD 2x4 SP No.2
BOT CHORD 2x4 SP No.2
WEBS 2x4 SP No.3
BRACING-
TOP CHORD Structural wood sheathing directly applied or 2-10-9 oc purlins.
BOT CHORD Rigid ceiling directly applied or 6-3-8 oc bracing.
REACTIONS. (size)2=0-8-0, 8=0-8-0
Max Horz 2=-120(LC 10)
Max Uplift 2=-483(LC 12), 8=-483(LC 12)
Max Grav 2=1342(LC 1), 8=1342(LC 1)
FORCES.(lb) - Max. Comp./Max. Ten. - All forces 250 (lb) or less except when shown.
TOP CHORD 2-3=-2681/1020, 3-4=-2249/910, 4-5=-2410/1014, 5-6=-2410/1014, 6-7=-2249/910,
7-8=-2681/1020
BOT CHORD 2-16=-847/2391, 15-16=-847/2391, 13-15=-653/2037, 11-13=-662/2037, 10-11=-857/2391,
8-10=-857/2391
WEBS 3-15=-434/229, 4-15=-86/369, 4-13=-183/574, 5-13=-401/247, 6-13=-183/574,
6-11=-86/369, 7-11=-434/229
NOTES-(8)
1) Unbalanced roof live loads have been considered for this design.
2) Wind: ASCE 7-16; Vult=165mph (3-second gust) Vasd=128mph; TCDL=4.2psf; BCDL=3.0psf; h=15ft; B=45ft; L=28ft; eave=5ft; Cat.
II; Exp B; Encl., GCpi=0.18; MWFRS (directional) and C-C Exterior(2E) -1-0-0 to 2-0-0, Interior(1) 2-0-0 to 11-0-0, Exterior(2R)
11-0-0 to 15-2-15, Interior(1) 15-2-15 to 24-0-0, Exterior(2R) 24-0-0 to 28-5-11, Interior(1) 28-5-11 to 36-0-0 zone; cantilever left and
right exposed ; end vertical left and right exposed;C-C for members and forces & MWFRS for reactions shown; Lumber DOL=1.60
plate grip DOL=1.60
3) Building Designer / Project engineer responsible for verifying applied roof live load shown covers rain loading requirements specific
to the use of this truss component.
4) Provide adequate drainage to prevent water ponding.
5) This truss has been designed for a 10.0 psf bottom chord live load nonconcurrent with any other live loads.
6) * This truss has been designed for a live load of 20.0psf on the bottom chord in all areas where a rectangle 3-6-0 tall by 2-0-0 wide
will fit between the bottom chord and any other members.
7) Provide mechanical connection (by others) of truss to bearing plate capable of withstanding 483 lb uplift at joint 2 and 483 lb uplift at
joint 8.
8) "This manufactured product is designed as an individual building component. The suitability and use of this component for any
particular building is the responsibility of the building designer per ANSI TPI 1 as referenced by the building code."
This item has been
electronically signed and
sealed by ORegan, Philip, PE
using a Digital Signature.
Printed copies of this
document are not considered
signed and sealed and the
signature must be verified
on any electronic copies.
April 9,2021
Design valid for use only with MiTek® connectors. This design is based only upon parameters shown, and is for an individual building component, not
a truss system. Before use, the building designer must verify the applicability of design parameters and properly incorporate this design into the overall
building design. Bracing indicated is to prevent buckling of individual truss web and/or chord members only. Additional temporary and permanent bracing
is always required for stability and to prevent collapse with possible personal injury and property damage. For general guidance regarding the
fabrication, storage, delivery, erection and bracing of trusses and truss systems, see ANSI/TPI1 Quality Criteria, DSB-89 and BCSI Building Component
available from Truss Plate Institute, 2670 Crain Highway, Suite 203 Waldorf, MD 20601Safety Information
WARNING - Verify design parameters and READ NOTES ON THIS AND INCLUDED MITEK REFERENCE PAGE MII-7473 rev. 5/19/2020 BEFORE USE.
6904 Parke East Blvd.
Tampa, FL 36610
Job
WS0035
Truss
T19
Truss Type
Hip
Qty
1
Ply
1
Job Reference (optional)
T23503265
8.430 s Mar 22 2021 MiTek Industries, Inc. Thu Apr 8 08:48:09 2021 Page 1 Builders FirstSource (Tampa, FL), Tampa, FL - 33564,
ID:JbsSUYEphcZuYTshvwE3BRyhOBX-_1yPhXj5dZcb4wQ0VFPzp5Q5H7wU8E4ocomaeOzSqTa
Scale: 3/16"=1'
1 2
3
4 5 6 7 8
9
10 11
16 15 14 13 12
17
18
19 20
21
22
4x6
ST1.5x8 STP ST1.5x8 STP
3x6 4x6
3x6 4x6 3x8
2x4
3x4
3x4
3x4
3x8
2x4
4x6 3x6
9-0-0
9-0-0
17-6-0
8-6-0
26-0-0
8-6-0
35-0-0
9-0-0
-1-0-0
1-0-0
5-8-11
5-8-11
9-0-0
3-3-5
13-4-12
4-4-12
21-7-4
8-2-8
26-0-0
4-4-12
29-3-5
3-3-5
35-0-0
5-8-11
36-0-0
1-0-0
0-4-14-1-10-4-14-1-15.00 12
LOADING (psf)
TCLL
TCDL
BCLL
BCDL
20.0
7.0
0.0 *
10.0
SPACING-
Plate Grip DOL
Lumber DOL
Rep Stress Incr
Code
2-0-0
1.25
1.25
YES
FBC2020/TPI2014
CSI.
TC
BC
WB
Matrix-SH
0.92
0.94
0.49
DEFL.
Vert(LL)
Vert(CT)
Horz(CT)
in
-0.24
-0.47
0.14
(loc)
14
14-16
10
l/defl
>999
>881
n/a
L/d
240
180
n/a
PLATES
MT20
Weight: 164 lb FT = 20%
GRIP
244/190
LUMBER-
TOP CHORD 2x4 SP No.2
BOT CHORD 2x4 SP No.2
WEBS 2x4 SP No.3
BRACING-
TOP CHORD Structural wood sheathing directly applied.
BOT CHORD Rigid ceiling directly applied or 2-2-0 oc bracing.
REACTIONS. (size)2=0-8-0, 10=0-8-0
Max Horz 2=100(LC 11)
Max Uplift 2=-483(LC 12), 10=-483(LC 12)
Max Grav 2=1342(LC 1), 10=1342(LC 1)
FORCES.(lb) - Max. Comp./Max. Ten. - All forces 250 (lb) or less except when shown.
TOP CHORD 2-3=-2646/1035, 3-4=-2418/938, 4-5=-2219/899, 5-7=-2828/1106, 7-8=-2219/899,
8-9=-2418/938, 9-10=-2646/1035
BOT CHORD 2-16=-865/2377, 14-16=-957/2743, 12-14=-950/2743, 10-12=-875/2377
WEBS 4-16=-266/781, 5-16=-772/331, 7-12=-772/331, 8-12=-266/781
NOTES-(8)
1) Unbalanced roof live loads have been considered for this design.
2) Wind: ASCE 7-16; Vult=165mph (3-second gust) Vasd=128mph; TCDL=4.2psf; BCDL=3.0psf; h=15ft; B=45ft; L=28ft; eave=5ft; Cat.
II; Exp B; Encl., GCpi=0.18; MWFRS (directional) and C-C Exterior(2E) -1-0-0 to 2-0-0, Interior(1) 2-0-0 to 9-0-0, Exterior(2R) 9-0-0
to 13-4-12, Interior(1) 13-4-12 to 26-0-0, Exterior(2R) 26-0-0 to 30-2-15, Interior(1) 30-2-15 to 36-0-0 zone; cantilever left and right
exposed ; end vertical left and right exposed;C-C for members and forces & MWFRS for reactions shown; Lumber DOL=1.60 plate
grip DOL=1.60
3) Building Designer / Project engineer responsible for verifying applied roof live load shown covers rain loading requirements specific
to the use of this truss component.
4) Provide adequate drainage to prevent water ponding.
5) This truss has been designed for a 10.0 psf bottom chord live load nonconcurrent with any other live loads.
6) * This truss has been designed for a live load of 20.0psf on the bottom chord in all areas where a rectangle 3-6-0 tall by 2-0-0 wide
will fit between the bottom chord and any other members.
7) Provide mechanical connection (by others) of truss to bearing plate capable of withstanding 483 lb uplift at joint 2 and 483 lb uplift at
joint 10.
8) "This manufactured product is designed as an individual building component. The suitability and use of this component for any
particular building is the responsibility of the building designer per ANSI TPI 1 as referenced by the building code."
This item has been
electronically signed and
sealed by ORegan, Philip, PE
using a Digital Signature.
Printed copies of this
document are not considered
signed and sealed and the
signature must be verified
on any electronic copies.
April 9,2021
Design valid for use only with MiTek® connectors. This design is based only upon parameters shown, and is for an individual building component, not
a truss system. Before use, the building designer must verify the applicability of design parameters and properly incorporate this design into the overall
building design. Bracing indicated is to prevent buckling of individual truss web and/or chord members only. Additional temporary and permanent bracing
is always required for stability and to prevent collapse with possible personal injury and property damage. For general guidance regarding the
fabrication, storage, delivery, erection and bracing of trusses and truss systems, see ANSI/TPI1 Quality Criteria, DSB-89 and BCSI Building Component
available from Truss Plate Institute, 2670 Crain Highway, Suite 203 Waldorf, MD 20601Safety Information
WARNING - Verify design parameters and READ NOTES ON THIS AND INCLUDED MITEK REFERENCE PAGE MII-7473 rev. 5/19/2020 BEFORE USE.
6904 Parke East Blvd.
Tampa, FL 36610
Job
WS0035
Truss
T20
Truss Type
HIP GIRDER
Qty
1
Ply
2
Job Reference (optional)
T23503266
8.430 s Mar 22 2021 MiTek Industries, Inc. Thu Apr 8 08:48:11 2021 Page 1 Builders FirstSource (Tampa, FL), Tampa, FL - 33564,
ID:JbsSUYEphcZuYTshvwE3BRyhOBX-wQ496ClM9AsJKEaPdgSRuWWUUxd2c6y546FhjGzSqTY
Scale: 3/16"=1'
1 2
3 4 5 6 7
8 9
15 14 13 12 11 10
16 17 18 19 20 21 22 23 24 25
26 27 28 29 30 31 32 33 34 35
5x8
ST1.5x8 STP ST1.5x8 STP
3x6 5x8
3x6 4x6 2x4 5x8
2x4 3x4
3x6 2x4 4x6 3x6
7-0-0
7-0-0
14-0-9
7-0-9
20-11-7
6-10-13
28-0-0
7-0-9
35-0-0
7-0-0
-1-0-0
1-0-0
7-0-0
7-0-0
14-0-9
7-0-9
20-11-7
6-10-13
28-0-0
7-0-9
35-0-0
7-0-0
36-0-0
1-0-0
0-4-13-3-10-4-13-3-15.00 12
Plate Offsets (X,Y)-- [3:0-5-12,0-2-8], [7:0-5-12,0-2-8]
LOADING (psf)
TCLL
TCDL
BCLL
BCDL
20.0
7.0
0.0 *
10.0
SPACING-
Plate Grip DOL
Lumber DOL
Rep Stress Incr
Code
2-0-0
1.25
1.25
NO
FBC2020/TPI2014
CSI.
TC
BC
WB
Matrix-SH
0.75
0.80
0.59
DEFL.
Vert(LL)
Vert(CT)
Horz(CT)
in
-0.33
-0.65
0.14
(loc)
12-13
12-13
8
l/defl
>999
>637
n/a
L/d
240
180
n/a
PLATES
MT20
Weight: 314 lb FT = 20%
GRIP
244/190
LUMBER-
TOP CHORD 2x4 SP No.2 *Except*
3-5,5-7: 2x4 SP M 31
BOT CHORD 2x4 SP No.1
WEBS 2x4 SP No.3
BRACING-
TOP CHORD Structural wood sheathing directly applied or 4-3-1 oc purlins.
BOT CHORD Rigid ceiling directly applied or 10-0-0 oc bracing, Except:
8-3-15 oc bracing: 12-13.
REACTIONS. (size)2=0-8-0, 8=0-8-0
Max Horz 2=-80(LC 6)
Max Uplift 2=-944(LC 8), 8=-960(LC 8)
Max Grav 2=2608(LC 1), 8=2625(LC 1)
FORCES.(lb) - Max. Comp./Max. Ten. - All forces 250 (lb) or less except when shown.
TOP CHORD 2-3=-5798/1982, 3-4=-8055/2838, 4-6=-8054/2838, 6-7=-8064/2850, 7-8=-5840/2021
BOT CHORD 2-15=-1721/5235, 13-15=-1724/5264, 12-13=-2713/8064, 10-12=-1758/5302,
8-10=-1756/5274
WEBS 3-15=-46/702, 3-13=-1060/3117, 4-13=-820/507, 6-12=-825/502, 7-12=-1035/3071,
7-10=-46/703
NOTES-(11)
1) 2-ply truss to be connected together with 10d (0.131"x3") nails as follows:
Top chords connected as follows: 2x4 - 1 row at 0-9-0 oc.
Bottom chords connected as follows: 2x4 - 1 row at 0-9-0 oc.
Webs connected as follows: 2x4 - 1 row at 0-9-0 oc.
2) All loads are considered equally applied to all plies, except if noted as front (F) or back (B) face in the LOAD CASE(S) section. Ply to
ply connections have been provided to distribute only loads noted as (F) or (B), unless otherwise indicated.
3) Unbalanced roof live loads have been considered for this design.
4) Wind: ASCE 7-16; Vult=165mph (3-second gust) Vasd=128mph; TCDL=4.2psf; BCDL=3.0psf; h=15ft; B=45ft; L=28ft; eave=5ft; Cat.
II; Exp B; Encl., GCpi=0.18; MWFRS (directional); cantilever left and right exposed ; end vertical left and right exposed; Lumber
DOL=1.60 plate grip DOL=1.60
5) Building Designer / Project engineer responsible for verifying applied roof live load shown covers rain loading requirements specific
to the use of this truss component.
6) Provide adequate drainage to prevent water ponding.
7) This truss has been designed for a 10.0 psf bottom chord live load nonconcurrent with any other live loads.
8) * This truss has been designed for a live load of 20.0psf on the bottom chord in all areas where a rectangle 3-6-0 tall by 2-0-0 wide
will fit between the bottom chord and any other members.
9) Provide mechanical connection (by others) of truss to bearing plate capable of withstanding 944 lb uplift at joint 2 and 960 lb uplift at
joint 8.
Continued on page 2
This item has been
electronically signed and
sealed by ORegan, Philip, PE
using a Digital Signature.
Printed copies of this
document are not considered
signed and sealed and the
signature must be verified
on any electronic copies.
April 9,2021
Design valid for use only with MiTek® connectors. This design is based only upon parameters shown, and is for an individual building component, not
a truss system. Before use, the building designer must verify the applicability of design parameters and properly incorporate this design into the overall
building design. Bracing indicated is to prevent buckling of individual truss web and/or chord members only. Additional temporary and permanent bracing
is always required for stability and to prevent collapse with possible personal injury and property damage. For general guidance regarding the
fabrication, storage, delivery, erection and bracing of trusses and truss systems, see ANSI/TPI1 Quality Criteria, DSB-89 and BCSI Building Component
available from Truss Plate Institute, 2670 Crain Highway, Suite 203 Waldorf, MD 20601Safety Information
WARNING - Verify design parameters and READ NOTES ON THIS AND INCLUDED MITEK REFERENCE PAGE MII-7473 rev. 5/19/2020 BEFORE USE.
6904 Parke East Blvd.
Tampa, FL 36610
Job
WS0035
Truss
T20
Truss Type
HIP GIRDER
Qty
1
Ply
2
Job Reference (optional)
T23503266
8.430 s Mar 22 2021 MiTek Industries, Inc. Thu Apr 8 08:48:11 2021 Page 2 Builders FirstSource (Tampa, FL), Tampa, FL - 33564,
ID:JbsSUYEphcZuYTshvwE3BRyhOBX-wQ496ClM9AsJKEaPdgSRuWWUUxd2c6y546FhjGzSqTY
NOTES-(11)
10) Hanger(s) or other connection device(s) shall be provided sufficient to support concentrated load(s) 124 lb down and 122 lb up at 7-0-0, 105 lb down and 118 lb up at
9-0-12, 105 lb down and 118 lb up at 11-0-12, 105 lb down and 118 lb up at 13-0-12, 105 lb down and 118 lb up at 15-0-12, 105 lb down and 118 lb up at 17-0-12, 105
lb down and 118 lb up at 17-11-4, 105 lb down and 118 lb up at 19-11-4, 105 lb down and 118 lb up at 21-11-4, 105 lb down and 118 lb up at 23-11-4, and 105 lb down
and 118 lb up at 25-11-4, and 180 lb down and 216 lb up at 28-0-0 on top chord, and 340 lb down and 129 lb up at 7-0-0, 81 lb down at 9-0-12, 81 lb down at 11-0-12,
81 lb down at 13-0-12, 81 lb down at 15-0-12, 81 lb down at 17-0-12, 81 lb down at 17-11-4, 81 lb down at 19-11-4, 81 lb down at 21-11-4, 81 lb down at 23-11-4, and
81 lb down at 25-11-4, and 340 lb down and 129 lb up at 27-11-4 on bottom chord. The design/selection of such connection device(s) is the responsibility of others.
11) "This manufactured product is designed as an individual building component. The suitability and use of this component for any particular building is the responsibility of
the building designer per ANSI TPI 1 as referenced by the building code."
LOAD CASE(S) Standard
1) Dead + Roof Live (balanced): Lumber Increase=1.25, Plate Increase=1.25
Uniform Loads (plf)
Vert: 1-3=-54, 3-7=-54, 7-9=-54, 2-8=-20
Concentrated Loads (lb)
Vert: 3=-105(B) 7=-133(B) 15=-340(B) 10=-340(B) 16=-105(B) 17=-105(B) 18=-105(B) 19=-105(B) 20=-105(B) 21=-105(B) 22=-105(B) 23=-105(B) 24=-105(B)
25=-105(B) 26=-58(B) 27=-58(B) 28=-58(B) 29=-58(B) 30=-58(B) 31=-58(B) 32=-58(B) 33=-58(B) 34=-58(B) 35=-58(B)
Design valid for use only with MiTek® connectors. This design is based only upon parameters shown, and is for an individual building component, not
a truss system. Before use, the building designer must verify the applicability of design parameters and properly incorporate this design into the overall
building design. Bracing indicated is to prevent buckling of individual truss web and/or chord members only. Additional temporary and permanent bracing
is always required for stability and to prevent collapse with possible personal injury and property damage. For general guidance regarding the
fabrication, storage, delivery, erection and bracing of trusses and truss systems, see ANSI/TPI1 Quality Criteria, DSB-89 and BCSI Building Component
available from Truss Plate Institute, 2670 Crain Highway, Suite 203 Waldorf, MD 20601Safety Information
WARNING - Verify design parameters and READ NOTES ON THIS AND INCLUDED MITEK REFERENCE PAGE MII-7473 rev. 5/19/2020 BEFORE USE.
6904 Parke East Blvd.
Tampa, FL 36610
Job
WS0035
Truss
T21
Truss Type
GABLE
Qty
1
Ply
1
Job Reference (optional)
T23503267
8.430 s Mar 22 2021 MiTek Industries, Inc. Thu Apr 8 08:48:13 2021 Page 1 Builders FirstSource (Tampa, FL), Tampa, FL - 33564,
ID:JbsSUYEphcZuYTshvwE3BRyhOBX-soBwXumcho61ZYjok5Uv_xbwOkPA479OXQkon9zSqTW
Scale = 1:35.0
1
2
3
5
7
8
10
11
12
13
4
6
9
18 17 16 15 14
25 26
27 28 29 30 31 32 33
3x4
ST1.5x8 STP
ST1.5x8 STP
3x4 3x4
3x8
8x10
3x8
3x4
8x14 MT20HS 8x14 MT20HS
4x6
4x6 5x8
4x6
4x6
4x6
2-0-11
2-0-11
4-11-14
2-11-3
9-4-0
4-4-2
13-8-2
4-4-2
16-7-5
2-11-3
18-8-0
2-0-11
4-11-14
4-11-14
9-4-0
4-4-2
13-8-2
4-4-2
18-8-0
4-11-14
19-8-0
1-0-0
0-4-11-2-13-10-150-4-11-2-15.00 12
Plate Offsets (X,Y)-- [1:0-1-14,0-0-2], [2:0-0-4,Edge], [6:0-5-0,0-2-8], [11:0-0-4,Edge], [16:0-4-0,0-3-0], [21:0-2-0,0-2-8]
LOADING (psf)
TCLL
TCDL
BCLL
BCDL
20.0
7.0
0.0 *
10.0
SPACING-
Plate Grip DOL
Lumber DOL
Rep Stress Incr
Code
2-0-0
1.25
1.25
NO
FBC2020/TPI2014
CSI.
TC
BC
WB
Matrix-SH
0.34
0.44
0.16
DEFL.
Vert(LL)
Vert(CT)
Horz(CT)
in
-0.05
-0.11
0.04
(loc)
16-17
16-17
12
l/defl
>999
>999
n/a
L/d
240
180
n/a
PLATES
MT20
MT20HS
Weight: 129 lb FT = 20%
GRIP
244/190
187/143
LUMBER-
TOP CHORD 2x4 SP No.2
BOT CHORD 2x4 SP No.2
WEBS 2x4 SP No.3
OTHERS 2x4 SP No.3
BRACING-
TOP CHORD Structural wood sheathing directly applied or 4-9-13 oc purlins.
Except:
1 Row at midpt 2-11
BOT CHORD Rigid ceiling directly applied or 9-3-8 oc bracing.
REACTIONS. (size)1=0-8-0, 12=0-8-0
Max Horz 1=-95(LC 30)
Max Uplift 1=-219(LC 8), 12=-311(LC 8)
Max Grav 1=660(LC 1), 12=712(LC 1)
FORCES.(lb) - Max. Comp./Max. Ten. - All forces 250 (lb) or less except when shown.
TOP CHORD 1-2=-1444/476, 2-5=-1235/462, 5-7=-824/272, 7-8=-824/272, 8-11=-1238/462,
11-12=-1347/455, 2-4=-326/16, 9-11=-289/12
BOT CHORD 1-18=-394/1309, 17-18=-405/1300, 16-17=-377/1381, 15-16=-373/1327, 14-15=-395/1215,
12-14=-374/1214
WEBS 6-8=-464/254, 5-6=-461/253, 6-16=0/303, 4-16=-269/0, 6-7=-89/429
NOTES-(15)
1) Unbalanced roof live loads have been considered for this design.
2) Wind: ASCE 7-16; Vult=165mph (3-second gust) Vasd=128mph; TCDL=4.2psf; BCDL=3.0psf; h=15ft; B=45ft; L=28ft; eave=4ft; Cat.
II; Exp B; Encl., GCpi=0.18; MWFRS (directional); cantilever left and right exposed ; end vertical left and right exposed; Lumber
DOL=1.60 plate grip DOL=1.60
3) Truss designed for wind loads in the plane of the truss only. For studs exposed to wind (normal to the face), see Standard Industry
Gable End Details as applicable, or consult qualified building designer as per ANSI/TPI 1.
4) Building Designer / Project engineer responsible for verifying applied roof live load shown covers rain loading requirements specific
to the use of this truss component.
5) Provide adequate drainage to prevent water ponding.
6) All plates are MT20 plates unless otherwise indicated.
7) All plates are 2x4 MT20 unless otherwise indicated.
8) Gable studs spaced at 2-0-0 oc.
9) This truss has been designed for a 10.0 psf bottom chord live load nonconcurrent with any other live loads.
10) * This truss has been designed for a live load of 20.0psf on the bottom chord in all areas where a rectangle 3-6-0 tall by 2-0-0 wide
will fit between the bottom chord and any other members.
11) Provide mechanical connection (by others) of truss to bearing plate capable of withstanding 219 lb uplift at joint 1 and 311 lb uplift
at joint 12.
12) Graphical purlin representation does not depict the size or the orientation of the purlin along the top and/or bottom chord.
13) Hanger(s) or other connection device(s) shall be provided sufficient to support concentrated load(s) 51 lb down and 36 lb up at
2-0-12, and 31 lb down and 147 lb up at 16-7-4 on top chord, and 28 lb down at 2-0-0, 13 lb down at 4-0-12, 13 lb down at 6-0-12
, 13 lb down at 8-0-12, 13 lb down at 10-0-12, 13 lb down at 10-7-4, 13 lb down at 12-7-4, and 13 lb down at 14-7-4, and 28 lb
down at 16-7-4 on bottom chord. The design/selection of such connection device(s) is the responsibility of others.
14) In the LOAD CASE(S) section, loads applied to the face of the truss are noted as front (F) or back (B).
Continued on page 2
TOP CHORD MUST BE BRACED BY END JACKS,
ROOF DIAPHRAGM, OR PROPERLY CONNECTED
PURLINS AS SPECIFIED.
This item has been
electronically signed and
sealed by ORegan, Philip, PE
using a Digital Signature.
Printed copies of this
document are not considered
signed and sealed and the
signature must be verified
on any electronic copies.
April 9,2021
Design valid for use only with MiTek® connectors. This design is based only upon parameters shown, and is for an individual building component, not
a truss system. Before use, the building designer must verify the applicability of design parameters and properly incorporate this design into the overall
building design. Bracing indicated is to prevent buckling of individual truss web and/or chord members only. Additional temporary and permanent bracing
is always required for stability and to prevent collapse with possible personal injury and property damage. For general guidance regarding the
fabrication, storage, delivery, erection and bracing of trusses and truss systems, see ANSI/TPI1 Quality Criteria, DSB-89 and BCSI Building Component
available from Truss Plate Institute, 2670 Crain Highway, Suite 203 Waldorf, MD 20601Safety Information
WARNING - Verify design parameters and READ NOTES ON THIS AND INCLUDED MITEK REFERENCE PAGE MII-7473 rev. 5/19/2020 BEFORE USE.
6904 Parke East Blvd.
Tampa, FL 36610
Job
WS0035
Truss
T21
Truss Type
GABLE
Qty
1
Ply
1
Job Reference (optional)
T23503267
8.430 s Mar 22 2021 MiTek Industries, Inc. Thu Apr 8 08:48:13 2021 Page 2 Builders FirstSource (Tampa, FL), Tampa, FL - 33564,
ID:JbsSUYEphcZuYTshvwE3BRyhOBX-soBwXumcho61ZYjok5Uv_xbwOkPA479OXQkon9zSqTW
15) "This manufactured product is designed as an individual building component. The suitability and use of this component for any particular building is the responsibility of
the building designer per ANSI TPI 1 as referenced by the building code."
LOAD CASE(S) Standard
1) Dead + Roof Live (balanced): Lumber Increase=1.25, Plate Increase=1.25
Uniform Loads (plf)
Vert: 1-2=-54, 2-7=-54, 7-11=-54, 11-13=-54, 1-12=-20
Concentrated Loads (lb)
Vert: 26=31(F)
Design valid for use only with MiTek® connectors. This design is based only upon parameters shown, and is for an individual building component, not
a truss system. Before use, the building designer must verify the applicability of design parameters and properly incorporate this design into the overall
building design. Bracing indicated is to prevent buckling of individual truss web and/or chord members only. Additional temporary and permanent bracing
is always required for stability and to prevent collapse with possible personal injury and property damage. For general guidance regarding the
fabrication, storage, delivery, erection and bracing of trusses and truss systems, see ANSI/TPI1 Quality Criteria, DSB-89 and BCSI Building Component
available from Truss Plate Institute, 2670 Crain Highway, Suite 203 Waldorf, MD 20601Safety Information
WARNING - Verify design parameters and READ NOTES ON THIS AND INCLUDED MITEK REFERENCE PAGE MII-7473 rev. 5/19/2020 BEFORE USE.
6904 Parke East Blvd.
Tampa, FL 36610
Job
WS0035
Truss
T22
Truss Type
Common
Qty
1
Ply
1
Job Reference (optional)
T23503268
8.430 s Mar 22 2021 MiTek Industries, Inc. Thu Apr 8 08:48:14 2021 Page 1 Builders FirstSource (Tampa, FL), Tampa, FL - 33564,
ID:JbsSUYEphcZuYTshvwE3BRyhOBX-K?lIlEnES5EuBiI_Io?8W983M8espZWXm4TLJbzSqTV
Scale = 1:31.5
1
2
3
4
5
6
7
8
9 10
11
3x6 ST1.5x8 STP
4x6
5x8
2x4 2x4
3x6
9-4-0
9-4-0
18-8-0
9-4-0
5-11-10
5-11-10
9-4-0
3-4-6
12-8-6
3-4-6
18-8-0
5-11-10
19-8-0
1-0-0
0-4-14-2-110-4-15.00 12
Plate Offsets (X,Y)-- [1:0-0-14,0-0-2], [7:0-4-0,0-3-0]
LOADING (psf)
TCLL
TCDL
BCLL
BCDL
20.0
7.0
0.0 *
10.0
SPACING-
Plate Grip DOL
Lumber DOL
Rep Stress Incr
Code
2-0-0
1.25
1.25
YES
FBC2020/TPI2014
CSI.
TC
BC
WB
Matrix-SH
0.45
0.86
0.22
DEFL.
Vert(LL)
Vert(CT)
Horz(CT)
in
-0.15
-0.32
0.03
(loc)
1-7
1-7
5
l/defl
>999
>685
n/a
L/d
240
180
n/a
PLATES
MT20
Weight: 77 lb FT = 20%
GRIP
244/190
LUMBER-
TOP CHORD 2x4 SP No.2
BOT CHORD 2x4 SP No.2
WEBS 2x4 SP No.3
BRACING-
TOP CHORD Structural wood sheathing directly applied or 4-5-9 oc purlins.
BOT CHORD Rigid ceiling directly applied or 7-10-12 oc bracing.
REACTIONS. (size)1=Mechanical, 5=0-8-0
Max Horz 1=-102(LC 10)
Max Uplift 1=-218(LC 12), 5=-291(LC 12)
Max Grav 1=673(LC 1), 5=751(LC 1)
FORCES.(lb) - Max. Comp./Max. Ten. - All forces 250 (lb) or less except when shown.
TOP CHORD 1-2=-1241/678, 2-3=-952/534, 3-4=-950/524, 4-5=-1210/658
BOT CHORD 1-7=-526/1107, 5-7=-514/1067
WEBS 3-7=-286/579, 4-7=-301/278, 2-7=-345/307
NOTES-(8)
1) Unbalanced roof live loads have been considered for this design.
2) Wind: ASCE 7-16; Vult=165mph (3-second gust) Vasd=128mph; TCDL=4.2psf; BCDL=3.0psf; h=15ft; B=45ft; L=28ft; eave=4ft; Cat.
II; Exp B; Encl., GCpi=0.18; MWFRS (directional) and C-C Exterior(2E) 0-0-12 to 3-0-12, Interior(1) 3-0-12 to 9-4-0, Exterior(2R)
9-4-0 to 12-4-0, Interior(1) 12-4-0 to 19-8-0 zone; cantilever left and right exposed ; end vertical left and right exposed;C-C for
members and forces & MWFRS for reactions shown; Lumber DOL=1.60 plate grip DOL=1.60
3) Building Designer / Project engineer responsible for verifying applied roof live load shown covers rain loading requirements specific
to the use of this truss component.
4) This truss has been designed for a 10.0 psf bottom chord live load nonconcurrent with any other live loads.
5) * This truss has been designed for a live load of 20.0psf on the bottom chord in all areas where a rectangle 3-6-0 tall by 2-0-0 wide
will fit between the bottom chord and any other members.
6) Refer to girder(s) for truss to truss connections.
7) Provide mechanical connection (by others) of truss to bearing plate capable of withstanding 218 lb uplift at joint 1 and 291 lb uplift at
joint 5.
8) "This manufactured product is designed as an individual building component. The suitability and use of this component for any
particular building is the responsibility of the building designer per ANSI TPI 1 as referenced by the building code."
This item has been
electronically signed and
sealed by ORegan, Philip, PE
using a Digital Signature.
Printed copies of this
document are not considered
signed and sealed and the
signature must be verified
on any electronic copies.
April 9,2021
Design valid for use only with MiTek® connectors. This design is based only upon parameters shown, and is for an individual building component, not
a truss system. Before use, the building designer must verify the applicability of design parameters and properly incorporate this design into the overall
building design. Bracing indicated is to prevent buckling of individual truss web and/or chord members only. Additional temporary and permanent bracing
is always required for stability and to prevent collapse with possible personal injury and property damage. For general guidance regarding the
fabrication, storage, delivery, erection and bracing of trusses and truss systems, see ANSI/TPI1 Quality Criteria, DSB-89 and BCSI Building Component
available from Truss Plate Institute, 2670 Crain Highway, Suite 203 Waldorf, MD 20601Safety Information
WARNING - Verify design parameters and READ NOTES ON THIS AND INCLUDED MITEK REFERENCE PAGE MII-7473 rev. 5/19/2020 BEFORE USE.
6904 Parke East Blvd.
Tampa, FL 36610
Job
WS0035
Truss
T23
Truss Type
Jack-Open Girder
Qty
1
Ply
1
Job Reference (optional)
T23503269
8.430 s Mar 22 2021 MiTek Industries, Inc. Thu Apr 8 08:48:14 2021 Page 1 Builders FirstSource (Tampa, FL), Tampa, FL - 33564,
ID:JbsSUYEphcZuYTshvwE3BRyhOBX-K?lIlEnES5EuBiI_Io?8W987x8hApcfXm4TLJbzSqTV
Scale = 1:12.8
1
2
34
3x4
ST1.5x8 STP
2x4
2x4
4-0-0
4-0-0
4-0-0
4-0-0
0-4-12-0-15.00 12
Plate Offsets (X,Y)-- [1:0-4-5,0-1-2]
LOADING (psf)
TCLL
TCDL
BCLL
BCDL
20.0
7.0
0.0 *
10.0
SPACING-
Plate Grip DOL
Lumber DOL
Rep Stress Incr
Code
2-0-0
1.25
1.25
NO
FBC2020/TPI2014
CSI.
TC
BC
WB
Matrix-P
0.22
0.65
0.02
DEFL.
Vert(LL)
Vert(CT)
Horz(CT)
in
-0.02
-0.04
0.00
(loc)
1-3
1-3
l/defl
>999
>999
n/a
L/d
240
180
n/a
PLATES
MT20
Weight: 18 lb FT = 20%
GRIP
244/190
LUMBER-
TOP CHORD 2x4 SP No.2
BOT CHORD 2x6 SP No.2
WEBS 2x4 SP No.3
BRACING-
TOP CHORD Structural wood sheathing directly applied or 4-0-0 oc purlins.
BOT CHORD Rigid ceiling directly applied or 10-0-0 oc bracing.
REACTIONS. (size)1=0-8-0, 3=Mechanical
Max Horz 1=60(LC 8)
Max Uplift 1=-144(LC 8), 3=-166(LC 8)
Max Grav 1=463(LC 1), 3=451(LC 1)
FORCES.(lb) - Max. Comp./Max. Ten. - All forces 250 (lb) or less except when shown.
NOTES-(9)
1) Wind: ASCE 7-16; Vult=165mph (3-second gust) Vasd=128mph; TCDL=4.2psf; BCDL=3.0psf; h=15ft; B=45ft; L=28ft; eave=4ft; Cat.
II; Exp B; Encl., GCpi=0.18; MWFRS (directional); cantilever left and right exposed ; end vertical left and right exposed; Lumber
DOL=1.60 plate grip DOL=1.60
2) Building Designer / Project engineer responsible for verifying applied roof live load shown covers rain loading requirements specific
to the use of this truss component.
3) This truss has been designed for a 10.0 psf bottom chord live load nonconcurrent with any other live loads.
4) * This truss has been designed for a live load of 20.0psf on the bottom chord in all areas where a rectangle 3-6-0 tall by 2-0-0 wide
will fit between the bottom chord and any other members.
5) Refer to girder(s) for truss to truss connections.
6) Provide mechanical connection (by others) of truss to bearing plate capable of withstanding 144 lb uplift at joint 1 and 166 lb uplift at
joint 3.
7) Hanger(s) or other connection device(s) shall be provided sufficient to support concentrated load(s) 653 lb down and 238 lb up at
2-0-12 on bottom chord. The design/selection of such connection device(s) is the responsibility of others.
8) In the LOAD CASE(S) section, loads applied to the face of the truss are noted as front (F) or back (B).
9) "This manufactured product is designed as an individual building component. The suitability and use of this component for any
particular building is the responsibility of the building designer per ANSI TPI 1 as referenced by the building code."
LOAD CASE(S) Standard
1) Dead + Roof Live (balanced): Lumber Increase=1.25, Plate Increase=1.25
Uniform Loads (plf)
Vert: 1-2=-54, 1-3=-20
Concentrated Loads (lb)
Vert: 4=-653(F)
This item has been
electronically signed and
sealed by ORegan, Philip, PE
using a Digital Signature.
Printed copies of this
document are not considered
signed and sealed and the
signature must be verified
on any electronic copies.
April 9,2021
Design valid for use only with MiTek® connectors. This design is based only upon parameters shown, and is for an individual building component, not
a truss system. Before use, the building designer must verify the applicability of design parameters and properly incorporate this design into the overall
building design. Bracing indicated is to prevent buckling of individual truss web and/or chord members only. Additional temporary and permanent bracing
is always required for stability and to prevent collapse with possible personal injury and property damage. For general guidance regarding the
fabrication, storage, delivery, erection and bracing of trusses and truss systems, see ANSI/TPI1 Quality Criteria, DSB-89 and BCSI Building Component
available from Truss Plate Institute, 2670 Crain Highway, Suite 203 Waldorf, MD 20601Safety Information
WARNING - Verify design parameters and READ NOTES ON THIS AND INCLUDED MITEK REFERENCE PAGE MII-7473 rev. 5/19/2020 BEFORE USE.
6904 Parke East Blvd.
Tampa, FL 36610
Job
WS0035
Truss
T24
Truss Type
GABLE
Qty
1
Ply
1
Job Reference (optional)
T23503270
8.430 s Mar 22 2021 MiTek Industries, Inc. Thu Apr 8 08:48:17 2021 Page 1 Builders FirstSource (Tampa, FL), Tampa, FL - 33564,
ID:JbsSUYEphcZuYTshvwE3BRyhOBX-lZRRNGp7k0dT291ZzwZr8nmYILhY0nrzS1i?wwzSqTS
Scale = 1:57.1
1
2
3
4
6 7
9
13
15
16
17
18
19
5
8
10
11
12 14
24 23 22 21 20
45
41 42 43 44
3x6
ST1.5x8 STP
ST1.5x8 STP
10x12
3x4 3x4
3x6
8x14 MT20HS
3x6
8x14 MT20HS
3x4
3x4
3x4
3x4 5x8
4x6
4-0-11
4-0-11
7-10-14
3-10-3
9-9-2
1-10-3
15-2-0
5-4-14
20-8-7
5-6-7
22-5-2
1-8-10
26-3-5
3-10-3
30-4-0
4-0-11
-1-0-0
1-0-0
4-0-11
4-0-11
7-10-14
3-10-3
9-9-2
1-10-3
15-2-0
5-4-14
20-8-7
5-6-7
22-5-2
1-8-10
26-3-5
3-10-3
30-4-0
4-0-11
31-4-0
1-0-0
0-4-16-4-10-4-12-0-15.00 12
Plate Offsets (X,Y)-- [2:0-0-14,0-0-2], [3:0-0-4,Edge], [10:0-6-0,0-4-8], [11:0-2-11,0-1-8], [17:0-0-4,Edge], [22:0-4-0,0-3-0]
LOADING (psf)
TCLL
TCDL
BCLL
BCDL
20.0
7.0
0.0 *
10.0
SPACING-
Plate Grip DOL
Lumber DOL
Rep Stress Incr
Code
2-0-0
1.25
1.25
NO
FBC2020/TPI2014
CSI.
TC
BC
WB
Matrix-SH
0.60
0.73
0.82
DEFL.
Vert(LL)
Vert(CT)
Horz(CT)
in
-0.23
-0.43
0.11
(loc)
22-23
22-23
18
l/defl
>999
>820
n/a
L/d
240
180
n/a
PLATES
MT20
MT20HS
Weight: 223 lb FT = 20%
GRIP
244/190
187/143
LUMBER-
TOP CHORD 2x4 SP No.2
BOT CHORD 2x4 SP M 31
WEBS 2x4 SP No.3
OTHERS 2x4 SP No.3
BRACING-
TOP CHORD Structural wood sheathing directly applied or 3-0-0 oc purlins.
Except:
1 Row at midpt 5-10
BOT CHORD Rigid ceiling directly applied or 7-6-6 oc bracing.
JOINTS 1 Brace at Jt(s): 14, 10, 5
REACTIONS. (size)2=0-8-0, 18=0-8-0
Max Horz 2=-154(LC 6)
Max Uplift 2=-535(LC 8), 18=-490(LC 8)
Max Grav 2=1533(LC 1), 18=1355(LC 1)
FORCES.(lb) - Max. Comp./Max. Ten. - All forces 250 (lb) or less except when shown.
TOP CHORD 2-3=-3388/1025, 3-6=-2600/933, 6-7=-2495/923, 7-9=-1739/570, 9-13=-1739/570,
13-15=-2376/886, 15-17=-2444/883, 17-18=-2972/942, 3-5=-1033/245, 5-8=-1030/244,
8-10=-326/114, 10-12=-513/154, 12-14=-552/63, 14-17=-553/63
BOT CHORD 2-24=-886/3084, 23-24=-909/3060, 22-23=-1004/3449, 21-22=-777/2729,
20-21=-813/2675, 18-20=-803/2701
WEBS 10-13=-766/412, 7-10=-911/457, 3-24=0/279, 8-23=-69/376, 10-22=-50/701,
3-23=-126/414, 8-22=-976/181, 12-22=-375/90, 9-10=-236/942
NOTES-(15)
1) Unbalanced roof live loads have been considered for this design.
2) Wind: ASCE 7-16; Vult=165mph (3-second gust) Vasd=128mph; TCDL=4.2psf; BCDL=3.0psf; h=15ft; B=45ft; L=28ft; eave=4ft; Cat.
II; Exp B; Encl., GCpi=0.18; MWFRS (directional); cantilever left and right exposed ; end vertical left and right exposed; Lumber
DOL=1.60 plate grip DOL=1.60
3) Truss designed for wind loads in the plane of the truss only. For studs exposed to wind (normal to the face), see Standard Industry
Gable End Details as applicable, or consult qualified building designer as per ANSI/TPI 1.
4) Building Designer / Project engineer responsible for verifying applied roof live load shown covers rain loading requirements specific
to the use of this truss component.
5) Provide adequate drainage to prevent water ponding.
6) All plates are MT20 plates unless otherwise indicated.
7) All plates are 2x4 MT20 unless otherwise indicated.
8) Gable studs spaced at 2-0-0 oc.
9) This truss has been designed for a 10.0 psf bottom chord live load nonconcurrent with any other live loads.
10) * This truss has been designed for a live load of 20.0psf on the bottom chord in all areas where a rectangle 3-6-0 tall by 2-0-0 wide
will fit between the bottom chord and any other members.
11) Provide mechanical connection (by others) of truss to bearing plate capable of withstanding 535 lb uplift at joint 2 and 490 lb uplift
at joint 18.
12) Graphical purlin representation does not depict the size or the orientation of the purlin along the top and/or bottom chord.
13) Hanger(s) or other connection device(s) shall be provided sufficient to support concentrated load(s) 74 lb down and 79 lb up at
4-0-12 on top chord, and 79 lb down at 4-0-0, 32 lb down at 6-0-12, 32 lb down at 8-0-12, and 32 lb down at 10-0-12, and 431 lb
down and 186 lb up at 11-7-4 on bottom chord. The design/selection of such connection device(s) is the responsibility of others.
Continued on page 2
TOP CHORD MUST BE BRACED BY END JACKS,
ROOF DIAPHRAGM, OR PROPERLY CONNECTED
PURLINS AS SPECIFIED.
This item has been
electronically signed and
sealed by ORegan, Philip, PE
using a Digital Signature.
Printed copies of this
document are not considered
signed and sealed and the
signature must be verified
on any electronic copies.
April 9,2021
Design valid for use only with MiTek® connectors. This design is based only upon parameters shown, and is for an individual building component, not
a truss system. Before use, the building designer must verify the applicability of design parameters and properly incorporate this design into the overall
building design. Bracing indicated is to prevent buckling of individual truss web and/or chord members only. Additional temporary and permanent bracing
is always required for stability and to prevent collapse with possible personal injury and property damage. For general guidance regarding the
fabrication, storage, delivery, erection and bracing of trusses and truss systems, see ANSI/TPI1 Quality Criteria, DSB-89 and BCSI Building Component
available from Truss Plate Institute, 2670 Crain Highway, Suite 203 Waldorf, MD 20601Safety Information
WARNING - Verify design parameters and READ NOTES ON THIS AND INCLUDED MITEK REFERENCE PAGE MII-7473 rev. 5/19/2020 BEFORE USE.
6904 Parke East Blvd.
Tampa, FL 36610
Job
WS0035
Truss
T24
Truss Type
GABLE
Qty
1
Ply
1
Job Reference (optional)
T23503270
8.430 s Mar 22 2021 MiTek Industries, Inc. Thu Apr 8 08:48:17 2021 Page 2 Builders FirstSource (Tampa, FL), Tampa, FL - 33564,
ID:JbsSUYEphcZuYTshvwE3BRyhOBX-lZRRNGp7k0dT291ZzwZr8nmYILhY0nrzS1i?wwzSqTS
NOTES-(15)
14) In the LOAD CASE(S) section, loads applied to the face of the truss are noted as front (F) or back (B).
15) "This manufactured product is designed as an individual building component. The suitability and use of this component for any particular building is the responsibility of
the building designer per ANSI TPI 1 as referenced by the building code."
LOAD CASE(S) Standard
1) Dead + Roof Live (balanced): Lumber Increase=1.25, Plate Increase=1.25
Uniform Loads (plf)
Vert: 2-18=-20, 1-3=-54, 3-9=-54, 9-17=-54, 17-19=-54
Concentrated Loads (lb)
Vert: 24=-40(F) 41=-16(F) 42=-16(F) 43=-16(F) 44=-431(F) 45=-30(F)
Design valid for use only with MiTek® connectors. This design is based only upon parameters shown, and is for an individual building component, not
a truss system. Before use, the building designer must verify the applicability of design parameters and properly incorporate this design into the overall
building design. Bracing indicated is to prevent buckling of individual truss web and/or chord members only. Additional temporary and permanent bracing
is always required for stability and to prevent collapse with possible personal injury and property damage. For general guidance regarding the
fabrication, storage, delivery, erection and bracing of trusses and truss systems, see ANSI/TPI1 Quality Criteria, DSB-89 and BCSI Building Component
available from Truss Plate Institute, 2670 Crain Highway, Suite 203 Waldorf, MD 20601Safety Information
WARNING - Verify design parameters and READ NOTES ON THIS AND INCLUDED MITEK REFERENCE PAGE MII-7473 rev. 5/19/2020 BEFORE USE.
6904 Parke East Blvd.
Tampa, FL 36610
Job
WS0035
Truss
T25
Truss Type
Common
Qty
3
Ply
1
Job Reference (optional)
T23503271
8.430 s Mar 22 2021 MiTek Industries, Inc. Thu Apr 8 08:48:18 2021 Page 1 Builders FirstSource (Tampa, FL), Tampa, FL - 33564,
ID:JbsSUYEphcZuYTshvwE3BRyhOBX-Dm?pabqlVKlKgJclXe44h?IhNl?slM27hhRZSMzSqTR
Scale = 1:54.0
1
2
3
4
5
6
7
8
9
12 11 10
13
14 15
16
17 18
3x6
ST1.5x8 STP ST1.5x8 STP
4x6
3x6
3x6
4x6 3x4
2x4
3x4
2x4
3x6
10-5-8
10-5-8
19-10-8
9-5-0
30-4-0
10-5-8
-1-0-0
1-0-0
7-10-14
7-10-14
15-2-0
7-3-2
22-5-2
7-3-2
30-4-0
7-10-14
31-4-0
1-0-0
0-4-16-7-140-4-15.00 12
LOADING (psf)
TCLL
TCDL
BCLL
BCDL
20.0
7.0
0.0 *
10.0
SPACING-
Plate Grip DOL
Lumber DOL
Rep Stress Incr
Code
2-0-0
1.25
1.25
YES
FBC2020/TPI2014
CSI.
TC
BC
WB
Matrix-SH
0.77
0.85
0.31
DEFL.
Vert(LL)
Vert(CT)
Horz(CT)
in
-0.25
-0.54
0.08
(loc)
8-10
8-10
8
l/defl
>999
>655
n/a
L/d
240
180
n/a
PLATES
MT20
Weight: 132 lb FT = 20%
GRIP
244/190
LUMBER-
TOP CHORD 2x4 SP No.2
BOT CHORD 2x4 SP No.1
WEBS 2x4 SP No.3
BRACING-
TOP CHORD Structural wood sheathing directly applied or 2-2-0 oc purlins.
BOT CHORD Rigid ceiling directly applied or 7-5-15 oc bracing.
REACTIONS. (size)2=0-8-0, 8=0-8-0
Max Horz 2=162(LC 11)
Max Uplift 2=-427(LC 12), 8=-427(LC 12)
Max Grav 2=1299(LC 17), 8=1299(LC 18)
FORCES.(lb) - Max. Comp./Max. Ten. - All forces 250 (lb) or less except when shown.
TOP CHORD 2-3=-2372/836, 3-5=-2149/780, 5-7=-2149/780, 7-8=-2372/836
BOT CHORD 2-12=-676/2247, 10-12=-358/1460, 8-10=-680/2127
WEBS 5-10=-225/892, 7-10=-419/300, 5-12=-225/891, 3-12=-419/300
NOTES-(7)
1) Unbalanced roof live loads have been considered for this design.
2) Wind: ASCE 7-16; Vult=165mph (3-second gust) Vasd=128mph; TCDL=4.2psf; BCDL=3.0psf; h=15ft; B=45ft; L=28ft; eave=4ft; Cat.
II; Exp B; Encl., GCpi=0.18; MWFRS (directional) and C-C Exterior(2E) -1-0-0 to 2-0-0, Interior(1) 2-0-0 to 15-2-0, Exterior(2R)
15-2-0 to 18-2-0, Interior(1) 18-2-0 to 31-4-0 zone; cantilever left and right exposed ; end vertical left and right exposed;C-C for
members and forces & MWFRS for reactions shown; Lumber DOL=1.60 plate grip DOL=1.60
3) Building Designer / Project engineer responsible for verifying applied roof live load shown covers rain loading requirements specific
to the use of this truss component.
4) This truss has been designed for a 10.0 psf bottom chord live load nonconcurrent with any other live loads.
5) * This truss has been designed for a live load of 20.0psf on the bottom chord in all areas where a rectangle 3-6-0 tall by 2-0-0 wide
will fit between the bottom chord and any other members, with BCDL = 10.0psf.
6) Provide mechanical connection (by others) of truss to bearing plate capable of withstanding 427 lb uplift at joint 2 and 427 lb uplift at
joint 8.
7) "This manufactured product is designed as an individual building component. The suitability and use of this component for any
particular building is the responsibility of the building designer per ANSI TPI 1 as referenced by the building code."
This item has been
electronically signed and
sealed by ORegan, Philip, PE
using a Digital Signature.
Printed copies of this
document are not considered
signed and sealed and the
signature must be verified
on any electronic copies.
April 9,2021
Design valid for use only with MiTek® connectors. This design is based only upon parameters shown, and is for an individual building component, not
a truss system. Before use, the building designer must verify the applicability of design parameters and properly incorporate this design into the overall
building design. Bracing indicated is to prevent buckling of individual truss web and/or chord members only. Additional temporary and permanent bracing
is always required for stability and to prevent collapse with possible personal injury and property damage. For general guidance regarding the
fabrication, storage, delivery, erection and bracing of trusses and truss systems, see ANSI/TPI1 Quality Criteria, DSB-89 and BCSI Building Component
available from Truss Plate Institute, 2670 Crain Highway, Suite 203 Waldorf, MD 20601Safety Information
WARNING - Verify design parameters and READ NOTES ON THIS AND INCLUDED MITEK REFERENCE PAGE MII-7473 rev. 5/19/2020 BEFORE USE.
6904 Parke East Blvd.
Tampa, FL 36610
Job
WS0035
Truss
T26
Truss Type
Common
Qty
3
Ply
1
Job Reference (optional)
T23503272
8.430 s Mar 22 2021 MiTek Industries, Inc. Thu Apr 8 08:48:19 2021 Page 1 Builders FirstSource (Tampa, FL), Tampa, FL - 33564,
ID:JbsSUYEphcZuYTshvwE3BRyhOBX-hyZBoxrNGetBHTBx5LbJDCrrP9LtUpEGwLB6?pzSqTQ
Scale = 1:53.8
1
2
3
4
5
6
7
8
11 10 9
12
13 14
15
16 17
3x6
ST1.5x8 STP ST1.5x8 STP
4x6
3x6
3x6
4x6 3x4
2x4
3x4
2x4
3x6
10-5-8
10-5-8
19-10-8
9-5-0
30-4-0
10-5-8
7-10-14
7-10-14
15-2-0
7-3-2
22-5-2
7-3-2
30-4-0
7-10-14
31-4-0
1-0-0
0-4-16-7-140-4-15.00 12
LOADING (psf)
TCLL
TCDL
BCLL
BCDL
20.0
7.0
0.0 *
10.0
SPACING-
Plate Grip DOL
Lumber DOL
Rep Stress Incr
Code
2-0-0
1.25
1.25
YES
FBC2020/TPI2014
CSI.
TC
BC
WB
Matrix-SH
0.81
0.87
0.32
DEFL.
Vert(LL)
Vert(CT)
Horz(CT)
in
-0.27
-0.56
0.08
(loc)
1-11
1-11
7
l/defl
>999
>634
n/a
L/d
240
180
n/a
PLATES
MT20
Weight: 131 lb FT = 20%
GRIP
244/190
LUMBER-
TOP CHORD 2x4 SP No.2
BOT CHORD 2x4 SP No.1
WEBS 2x4 SP No.3
BRACING-
TOP CHORD Structural wood sheathing directly applied or 2-2-0 oc purlins.
BOT CHORD Rigid ceiling directly applied or 7-4-11 oc bracing.
REACTIONS. (size)1=0-8-0, 7=0-8-0
Max Horz 1=-160(LC 10)
Max Uplift 1=-357(LC 12), 7=-428(LC 12)
Max Grav 1=1236(LC 17), 7=1300(LC 18)
FORCES.(lb) - Max. Comp./Max. Ten. - All forces 250 (lb) or less except when shown.
TOP CHORD 1-2=-2382/857, 2-4=-2156/802, 4-6=-2151/786, 6-7=-2374/844
BOT CHORD 1-11=-682/2258, 9-11=-366/1464, 7-9=-688/2129
WEBS 4-9=-223/891, 6-9=-419/300, 4-11=-230/899, 2-11=-423/302
NOTES-(7)
1) Unbalanced roof live loads have been considered for this design.
2) Wind: ASCE 7-16; Vult=165mph (3-second gust) Vasd=128mph; TCDL=4.2psf; BCDL=3.0psf; h=15ft; B=45ft; L=28ft; eave=4ft; Cat.
II; Exp B; Encl., GCpi=0.18; MWFRS (directional) and C-C Exterior(2E) 0-4-0 to 3-4-0, Interior(1) 3-4-0 to 15-2-0, Exterior(2R) 15-2-0
to 18-2-0, Interior(1) 18-2-0 to 31-4-0 zone; cantilever left and right exposed ; end vertical left and right exposed;C-C for members
and forces & MWFRS for reactions shown; Lumber DOL=1.60 plate grip DOL=1.60
3) Building Designer / Project engineer responsible for verifying applied roof live load shown covers rain loading requirements specific
to the use of this truss component.
4) This truss has been designed for a 10.0 psf bottom chord live load nonconcurrent with any other live loads.
5) * This truss has been designed for a live load of 20.0psf on the bottom chord in all areas where a rectangle 3-6-0 tall by 2-0-0 wide
will fit between the bottom chord and any other members, with BCDL = 10.0psf.
6) Provide mechanical connection (by others) of truss to bearing plate capable of withstanding 357 lb uplift at joint 1 and 428 lb uplift at
joint 7.
7) "This manufactured product is designed as an individual building component. The suitability and use of this component for any
particular building is the responsibility of the building designer per ANSI TPI 1 as referenced by the building code."
This item has been
electronically signed and
sealed by ORegan, Philip, PE
using a Digital Signature.
Printed copies of this
document are not considered
signed and sealed and the
signature must be verified
on any electronic copies.
April 9,2021
Design valid for use only with MiTek® connectors. This design is based only upon parameters shown, and is for an individual building component, not
a truss system. Before use, the building designer must verify the applicability of design parameters and properly incorporate this design into the overall
building design. Bracing indicated is to prevent buckling of individual truss web and/or chord members only. Additional temporary and permanent bracing
is always required for stability and to prevent collapse with possible personal injury and property damage. For general guidance regarding the
fabrication, storage, delivery, erection and bracing of trusses and truss systems, see ANSI/TPI1 Quality Criteria, DSB-89 and BCSI Building Component
available from Truss Plate Institute, 2670 Crain Highway, Suite 203 Waldorf, MD 20601Safety Information
WARNING - Verify design parameters and READ NOTES ON THIS AND INCLUDED MITEK REFERENCE PAGE MII-7473 rev. 5/19/2020 BEFORE USE.
6904 Parke East Blvd.
Tampa, FL 36610
Job
WS0035
Truss
V01
Truss Type
Valley
Qty
1
Ply
1
Job Reference (optional)
T23503273
8.430 s Mar 22 2021 MiTek Industries, Inc. Thu Apr 8 08:48:19 2021 Page 1 Builders FirstSource (Tampa, FL), Tampa, FL - 33564,
ID:JbsSUYEphcZuYTshvwE3BRyhOBX-hyZBoxrNGetBHTBx5LbJDCrwf9ULUtBGwLB6?pzSqTQ
Scale = 1:12.2
1
2
3
4
2x4
2x4
2x4
4-6-3
4-6-3
0-0-41-10-95.00 12
LOADING (psf)
TCLL
TCDL
BCLL
BCDL
20.0
7.0
0.0 *
10.0
SPACING-
Plate Grip DOL
Lumber DOL
Rep Stress Incr
Code
2-0-0
1.25
1.25
YES
FBC2020/TPI2014
CSI.
TC
BC
WB
Matrix-P
0.48
0.26
0.00
DEFL.
Vert(LL)
Vert(CT)
Horz(CT)
in
n/a
n/a
0.00
(loc)
-
-
3
l/defl
n/a
n/a
n/a
L/d
999
999
n/a
PLATES
MT20
Weight: 15 lb FT = 20%
GRIP
244/190
LUMBER-
TOP CHORD 2x4 SP No.3
BOT CHORD 2x4 SP No.3
WEBS 2x4 SP No.3
BRACING-
TOP CHORD Structural wood sheathing directly applied or 4-6-3 oc purlins,
except end verticals.
BOT CHORD Rigid ceiling directly applied or 10-0-0 oc bracing.
REACTIONS. (size)1=4-5-9, 3=4-5-9
Max Horz 1=74(LC 9)
Max Uplift 1=-42(LC 12), 3=-46(LC 12)
Max Grav 1=134(LC 1), 3=135(LC 17)
FORCES.(lb) - Max. Comp./Max. Ten. - All forces 250 (lb) or less except when shown.
NOTES-(7)
1) Wind: ASCE 7-16; Vult=165mph (3-second gust) Vasd=128mph; TCDL=4.2psf; BCDL=3.0psf; h=15ft; B=45ft; L=28ft; eave=4ft; Cat.
II; Exp B; Encl., GCpi=0.18; MWFRS (directional) and C-C Exterior(2E) 0-9-1 to 3-9-1, Interior(1) 3-9-1 to 4-4-7 zone; cantilever left
and right exposed ; end vertical left and right exposed;C-C for members and forces & MWFRS for reactions shown; Lumber
DOL=1.60 plate grip DOL=1.60
2) Building Designer / Project engineer responsible for verifying applied roof live load shown covers rain loading requirements specific
to the use of this truss component.
3) Gable requires continuous bottom chord bearing.
4) This truss has been designed for a 10.0 psf bottom chord live load nonconcurrent with any other live loads.
5) * This truss has been designed for a live load of 20.0psf on the bottom chord in all areas where a rectangle 3-6-0 tall by 2-0-0 wide
will fit between the bottom chord and any other members.
6) Provide mechanical connection (by others) of truss to bearing plate capable of withstanding 42 lb uplift at joint 1 and 46 lb uplift at
joint 3.
7) "This manufactured product is designed as an individual building component. The suitability and use of this component for any
particular building is the responsibility of the building designer per ANSI TPI 1 as referenced by the building code."This item has been
electronically signed and
sealed by ORegan, Philip, PE
using a Digital Signature.
Printed copies of this
document are not considered
signed and sealed and the
signature must be verified
on any electronic copies.
April 9,2021
Design valid for use only with MiTek® connectors. This design is based only upon parameters shown, and is for an individual building component, not
a truss system. Before use, the building designer must verify the applicability of design parameters and properly incorporate this design into the overall
building design. Bracing indicated is to prevent buckling of individual truss web and/or chord members only. Additional temporary and permanent bracing
is always required for stability and to prevent collapse with possible personal injury and property damage. For general guidance regarding the
fabrication, storage, delivery, erection and bracing of trusses and truss systems, see ANSI/TPI1 Quality Criteria, DSB-89 and BCSI Building Component
available from Truss Plate Institute, 2670 Crain Highway, Suite 203 Waldorf, MD 20601Safety Information
WARNING - Verify design parameters and READ NOTES ON THIS AND INCLUDED MITEK REFERENCE PAGE MII-7473 rev. 5/19/2020 BEFORE USE.
6904 Parke East Blvd.
Tampa, FL 36610
Job
WS0035
Truss
V02
Truss Type
Valley
Qty
1
Ply
1
Job Reference (optional)
T23503274
8.430 s Mar 22 2021 MiTek Industries, Inc. Thu Apr 8 08:48:20 2021 Page 1 Builders FirstSource (Tampa, FL), Tampa, FL - 33564,
ID:JbsSUYEphcZuYTshvwE3BRyhOBX-987Z?Hs?1x?1vdm8e36YmQNBZZuyDKRQ8?wgXFzSqTP
Scale: 1.5"=1'
1
2
3
2x4
2x4
2x4
2-6-3
2-6-3
0-0-41-0-95.00 12
LOADING (psf)
TCLL
TCDL
BCLL
BCDL
20.0
7.0
0.0 *
10.0
SPACING-
Plate Grip DOL
Lumber DOL
Rep Stress Incr
Code
2-0-0
1.25
1.25
YES
FBC2020/TPI2014
CSI.
TC
BC
WB
Matrix-P
0.08
0.05
0.00
DEFL.
Vert(LL)
Vert(CT)
Horz(CT)
in
n/a
n/a
0.00
(loc)
-
-
3
l/defl
n/a
n/a
n/a
L/d
999
999
n/a
PLATES
MT20
Weight: 7 lb FT = 20%
GRIP
244/190
LUMBER-
TOP CHORD 2x4 SP No.3
BOT CHORD 2x4 SP No.3
WEBS 2x4 SP No.3
BRACING-
TOP CHORD Structural wood sheathing directly applied or 2-6-3 oc purlins,
except end verticals.
BOT CHORD Rigid ceiling directly applied or 10-0-0 oc bracing.
REACTIONS. (size)1=2-5-9, 3=2-5-9
Max Horz 1=33(LC 9)
Max Uplift 1=-19(LC 12), 3=-21(LC 12)
Max Grav 1=60(LC 1), 3=60(LC 17)
FORCES.(lb) - Max. Comp./Max. Ten. - All forces 250 (lb) or less except when shown.
NOTES-(7)
1) Wind: ASCE 7-16; Vult=165mph (3-second gust) Vasd=128mph; TCDL=4.2psf; BCDL=3.0psf; h=15ft; B=45ft; L=28ft; eave=4ft; Cat.
II; Exp B; Encl., GCpi=0.18; MWFRS (directional) and C-C Exterior(2E) zone; cantilever left and right exposed ; end vertical left and
right exposed;C-C for members and forces & MWFRS for reactions shown; Lumber DOL=1.60 plate grip DOL=1.60
2) Building Designer / Project engineer responsible for verifying applied roof live load shown covers rain loading requirements specific
to the use of this truss component.
3) Gable requires continuous bottom chord bearing.
4) This truss has been designed for a 10.0 psf bottom chord live load nonconcurrent with any other live loads.
5) * This truss has been designed for a live load of 20.0psf on the bottom chord in all areas where a rectangle 3-6-0 tall by 2-0-0 wide
will fit between the bottom chord and any other members.
6) Provide mechanical connection (by others) of truss to bearing plate capable of withstanding 19 lb uplift at joint 1 and 21 lb uplift at
joint 3.
7) "This manufactured product is designed as an individual building component. The suitability and use of this component for any
particular building is the responsibility of the building designer per ANSI TPI 1 as referenced by the building code."This item has been
electronically signed and
sealed by ORegan, Philip, PE
using a Digital Signature.
Printed copies of this
document are not considered
signed and sealed and the
signature must be verified
on any electronic copies.
April 9,2021
PRODUCT CODE APPROVALSLATERAL BRACING LOCATIONIndicates location where bearings(supports) occur. Icons vary butreaction section indicates jointnumber where bearings occur.Min size shown is for crushing only.Indicated by symbol shown and/orby text in the bracing section of theoutput. Use T or I bracingif indicated.The first dimension is the plate width measured perpendicular to slots. Second dimension isthe length parallel to slots.Center plate on joint unless x, yoffsets are indicated.Dimensions are in ft-in-sixteenths.Apply plates to both sides of trussand fully embed teeth.1. Additional stability bracing for truss system, e.g. diagonal or X-bracing, is always required. See BCSI.2. Truss bracing must be designed by an engineer. For wide truss spacing, individual lateral braces themselves may require bracing, or alternative Tor I bracing should be considered.3. Never exceed the design loading shown and never stack materials on inadequately braced trusses.4. Provide copies of this truss design to the building designer, erection supervisor, property owner and all other interested parties.5. Cut members to bear tightly against each other.6. Place plates on each face of truss at each joint and embed fully. Knots and wane at joint locations are regulated by ANSI/TPI 1.7. Design assumes trusses will be suitably protected from the environment in accord with ANSI/TPI 1.8. Unless otherwise noted, moisture content of lumber shall not exceed 19% at time of fabrication.9. Unless expressly noted, this design is not applicable for use with fire retardant, preservative treated, or green lumber.10. Camber is a non-structural consideration and is the responsibility of truss fabricator. General practice is to camber for dead load deflection.11. Plate type, size, orientation and location dimensions indicated are minimum plating requirements.12. Lumber used shall be of the species and size, and in all respects, equal to or better than that specified.13. Top chords must be sheathed or purlins provided at spacing indicated on design.14. Bottom chords require lateral bracing at 10 ft. spacing, or less, if no ceiling is installed, unless otherwise noted.15. Connections not shown are the responsibility of others.16. Do not cut or alter truss member or plate without prior approval of an engineer.17. Install and load vertically unless indicated otherwise.18. Use of green or treated lumber may pose unacceptable environmental, health or performance risks. Consult with project engineer before use.19. Review all portions of this design (front, back, words and pictures) before use. Reviewing pictures alone is not sufficient.20. Design assumes manufacture in accordance with ANSI/TPI 1 Quality Criteria.21.The design does not take into account any dynamic or other loads other than those expressly stated.Failure to Follow Could Cause PropertyDamage or Personal Injury (Drawings not to scale)© 2012 MiTek® All Rights ReservedMiTek Engineering Reference Sheet: MII-7473 rev. 5/19/2020edge of truss.from outside"16/1-0ICC-ES Reports:ESR-1311, ESR-1352, ESR1988ER-3907, ESR-2362, ESR-1397, ESR-3282JOINTS ARE GENERALLY NUMBERED/LETTERED CLOCKWISEAROUND THE TRUSS STARTING AT THE JOINT FARTHEST TOTHE LEFT.CHORDS AND WEBS ARE IDENTIFIED BY END JOINTNUMBERS/LETTERS.W
4
-
6
W3-6W3
-
7
W2-7W1-7C1-8
C5-6C6-7C7-8C4-5 C3-4C2-3C1-2TOP CHORD
TOP CHORD
87654321BOTTOM CHORDSTOP CHORDSBEARING4 x 4PLATE SIZEThis symbol indicates the required direction of slots inconnector plates."16/1For 4 x 2 orientation, locateplates 0- 1"4/3PLATE LOCATION AND ORIENTATIONSymbolsNumbering SystemGeneral Safety Notes *Plate location details available in MiTek 20/20software or upon request.Industry Standards:ANSI/TPI1: National Design Specification for Metal Plate Connected Wood Truss Construction.DSB-89: Design Standard for Bracing.BCSI: Building Component Safety Information, Guide to Good Practice for Handling, Installing & Bracing of Metal Plate Connected Wood Trusses.6-4-8WEBSTrusses are designed for wind loads in the plane of the truss unless otherwise shown.Lumber design values are in accordance with ANSI/TPI 1 section 6.3 These truss designs rely on lumber values established by others.dimensions shown in ft-in-sixteenths