Simpson SCS62-5/97-KT25 SCS 2 in. x 6 in. x 5 in. 12-Gauge Seismic Bypass Framing Slide Clip w/ Screws 25-Qty
Simpson SCS62-5/97-KT25 SCS 2 in. x 6 in. x 5 in. 12-Gauge Seismic Bypass Framing Slide Clip w/ Screws 25-Qty
Simpson SCS62-5/97-KT25 SCS 2 in. x 6 in. x 5 in. 12-Gauge Seismic Bypass Framing Slide Clip w/ Screws 25-Qty
Simpson SCS62-5/97-KT25 SCS 2 in. x 6 in. x 5 in. 12-Gauge Seismic Bypass Framing Slide Clip w/ Screws 25-Qty
Simpson SCS62-5/97-KT25 SCS 2 in. x 6 in. x 5 in. 12-Gauge Seismic Bypass Framing Slide Clip w/ Screws 25-Qty

Simpson SCS62-5/97-KT25 SCS 2 in. x 6 in. x 5 in. 12-Gauge Seismic Bypass Framing Slide Clip w/ Screws (25-Qty)

$173.19

Introducing the Simpson SCS62-5/97-KT25 Seismic Bypass Framing Slide Clip

Engineered for excellence, the Simpson Strong-Tie SCS62-5/97-KT25 is a pioneering solution in seismic framing. This hybrid clip is meticulously designed to support both slide-clip and fixed-clip applications, making it an essential choice for areas prone to high seismic activity.

Exceptional Features:

  • Heavy-Duty Construction: Crafted from robust 12-gauge steel, ensuring unparalleled strength and durability.
  • Engineered for Performance: The strategically positioned darts and fastener slots enhance resistance to in-plane seismic loads.
  • Industry-Leading Testing: Backed by real-world, full-scale cyclic testing, the SCS clip delivers the highest seismic load ratings available.
  • Smart Design: Features three pre-punched oblong slots for slide-clip applications and a pattern of round holes for versatile fixed-clip options.
  • Easy Installation: Includes two large washer screws (provided) for secure attachment at the most critical first slot, optimizing in-plane capacity.

Why Choose the Simpson SCS62-5/97-KT25?

If you are looking for a reliable framing solution that guarantees stability and resilience during seismic events, the Simpson SCS seismic clip is your answer. With its robust engineering and versatile application options, you can trust that your structures are better equipped to handle seismic demands.

Type: Clip

Clip
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Barcode: 707392003380
Availability : Limited Stock Out of stock
Specifications

Simpson Strong-Tie SCS62-5/97-KT25

•Slide slots used with shouldered washer screws (included) allow a full 1 in. of vertical deflection
•Precision-located ribs enhance strength while allowing ductility
•Simpson Strong-Tie No-Equal stamps alongside slide slots indicate proper screw placement
•Dual-function clip with prepunched slots for slide application and small round holes for fixed application
•Width: 6 in.
•Made from 12-gauge (97 mil) steel
•Galvanized (G90) for corrosion resistance
•Quantity: 25


Description

Introducing the Simpson SCS62-5/97-KT25 Seismic Bypass Framing Slide Clip

Engineered for excellence, the Simpson Strong-Tie SCS62-5/97-KT25 is a pioneering solution in seismic framing. This hybrid clip is meticulously designed to support both slide-clip and fixed-clip applications, making it an essential choice for areas prone to high seismic activity.

Exceptional Features:

  • Heavy-Duty Construction: Crafted from robust 12-gauge steel, ensuring unparalleled strength and durability.
  • Engineered for Performance: The strategically positioned darts and fastener slots enhance resistance to in-plane seismic loads.
  • Industry-Leading Testing: Backed by real-world, full-scale cyclic testing, the SCS clip delivers the highest seismic load ratings available.
  • Smart Design: Features three pre-punched oblong slots for slide-clip applications and a pattern of round holes for versatile fixed-clip options.
  • Easy Installation: Includes two large washer screws (provided) for secure attachment at the most critical first slot, optimizing in-plane capacity.

Why Choose the Simpson SCS62-5/97-KT25?

If you are looking for a reliable framing solution that guarantees stability and resilience during seismic events, the Simpson SCS seismic clip is your answer. With its robust engineering and versatile application options, you can trust that your structures are better equipped to handle seismic demands.