Simpson Strong-Tie HGLTV3.59 (3-1/2″ x 9-1/2″) High-Capacity Top-Flange Joist Hanger for Engineered Wood
Simpson Strong-Tie HGLTV3.59 Description
The Simpson Strong-Tie HGLTV Top-Flange Hanger is a high-capacity solution for connecting engineered wood members to supporting beams.
Simpson Strong-Tie HGLTV3.59 Includes
- (1) Heavy Duty Top Flange I-Joist Hanger
Simpson Strong-Tie HGLTV3.59 Features
- High Load Capacity
- Engineered Lumber Compatibility
- Strong, Secure Fit
- Top-Flange Mounting
- Code Compliant
Simpson Strong-Tie HGLTV3.59 Applications
- Floor Joists: Provides stable, load-bearing support for SCL joists in residential and commercial flooring systems.
- Deck Framing: Reinforces beam-to-joist connections for heavy-duty decks with engineered lumber.
- Multi-Ply Beams: Connects SCL or LVL headers and girders in beam construction.
- Commercial Wood Construction: Supports large spans and engineered wood framing in commercial builds.
- Garage and Basement Framing: Offers a high-capacity option for long joist runs or point-loaded conditions.
Simpson Strong-Tie HGLTV3.59 Installation Overview
- Use all specified fasteners.
- Verify that the header can take the required fasteners specified in the table.
- Flatten edge of header to match top-flange radius.
- Bevel-cut the carried beam for skewed hangers.
- For hangers exceeding the joist height by more than 1/2″, allowable load is 50% of the table load.
- May be used for weld-on applications.
- May be installed on ledgers provided the ledgers are made of 4x solid sawn or 3 1/2″ SCL shown in the table below.
Simpson Strong-Tie HGLTV3.59 Specifications
| Finish | Gray Paint |
| Fasteners required | Top – (6) 0.162″ x 3-1/2″ Nails, Face – (12) 0.162″ x 3-1/2″ Nails, Joist – (6) 0.162″ x 3-1/2″ Nails |
| For Treated Lumber | No |
| Height | 9-1/2″ |
| Joist size | 3-1/2″ X 9-1/2″ |
| Manufacturer name | Simpson Strong-Tie |
| Quantity | 1 |
| Thickness | Top Flange: 3 Gauge; Stirrup: 7 Gauge |
| Width | 3-1/2″ |
NOTE: Ensure all fasteners are installed in designated holes to achieve full load capacity.
