

Simpson Strong-Tie LSTA9 (1-1/4" x 9") 20-Gauge Galvanized Strap Tie
Simpson LSTA9 Description
The Simpson LSTA9 Strap Tie is a 9-inch, 20-gauge tie with a G90 galvanized finish, designed for edge use on 2x members with a nailing pattern that minimizes splitting.
Simpson LSTA9 Includes
- (1) 9" 20 Gauge Strap Tie
Simpson LSTA9 Features
- Load rated for reliable performance
- G90 galvanized finish for corrosion resistance
- Designed for edge use on 2x members
- Nailing pattern reduces splitting
- Requires ASTM A153 hot-dip galvanized fasteners
Simpson LSTA9 Applications
- Edge reinforcement for 2x members
- Structural connections requiring load-rated ties
- Corrosion-resistant applications
Simpson LSTA9 Installation Overview
- Use all specified fasteners
Simpson LSTA9 Specifications
| Length | 9" |
| Fasteners required | (8) 0.148" x 2-1/2" Nails |
| For Treated Lumber | No |
| Manufacturer name | Simpson Strong-Tie |
NOTE: The correct fasteners installed in the correct position must be used to achieve published load values
Original: $0.80
-70%$0.80
$0.24Product Information
Product Information
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Shipping & Returns
Description
Simpson LSTA9 Description
The Simpson LSTA9 Strap Tie is a 9-inch, 20-gauge tie with a G90 galvanized finish, designed for edge use on 2x members with a nailing pattern that minimizes splitting.
Simpson LSTA9 Includes
- (1) 9" 20 Gauge Strap Tie
Simpson LSTA9 Features
- Load rated for reliable performance
- G90 galvanized finish for corrosion resistance
- Designed for edge use on 2x members
- Nailing pattern reduces splitting
- Requires ASTM A153 hot-dip galvanized fasteners
Simpson LSTA9 Applications
- Edge reinforcement for 2x members
- Structural connections requiring load-rated ties
- Corrosion-resistant applications
Simpson LSTA9 Installation Overview
- Use all specified fasteners
Simpson LSTA9 Specifications
| Length | 9" |
| Fasteners required | (8) 0.148" x 2-1/2" Nails |
| For Treated Lumber | No |
| Manufacturer name | Simpson Strong-Tie |
NOTE: The correct fasteners installed in the correct position must be used to achieve published load values














