Grey Pneumatic 1112SD 3/8" Drive x 3/8" Semi-Deep 12-Point Socket
- The Grey Pneumatic 1112SD is a high-quality 3/8" drive socket designed for professional use. Its semi-deep 12-Point configuration provides enhanced versatility and access in various automotive and industrial applications.
- Features:
- 3/8" drive size compatible with standard ratchets and wrenches.
- 3/8" semi-deep socket depth offers a balance between standard and deep sockets for improved accessibility.
- 12-Point design allows for a more precise fit on fasteners, reducing the risk of rounding.
- Constructed from high-quality alloy steel for durability and long service life.
- Corrosion-resistant finish ensures longevity and reliable performance.
- Specifications:
- Manufacturer: Grey Pneumatic
- Part Number: 1112SD
- Product Type: Semi-Deep Socket
- Drive Size: 3/8 "
- Socket Size: 3/8 "
- Socket Depth: Semi-Deep
- Point Count: 12
- Material: High-quality alloy steel
- Finish: Corrosion-resistant coating
- The Grey Pneumatic 1112SD Socket is also known as a 3/8" drive semi-deep socket, 12-Point semi-deep socket, GP 3/8" semi-deep socket, Grey Pneumatic 3/8" 12-Point socket, and 1112SD socket.
Grey Pneumatic is a trusted manufacturer of impact and specialty sockets, renowned for their commitment to quality and innovation. Serving professionals in automotive, industrial, and assembly industries, Grey Pneumatic offers a comprehensive range of tools designed to meet the demands of rigorous applications.
Q: What is the advantage of a 12-Point socket design?
A: A 12-Point socket allows for easier alignment with fasteners, providing a more precise fit and reducing the risk of rounding off corners.
Q: Is this socket suitable for impact wrench use?
A: The 1112SD is constructed from high-quality alloy steel; however, it's recommended to verify with the manufacturer whether it's rated for impact use.
Q: Does the semi-deep design offer any specific benefits?
A: The semi-deep design provides a balance between standard and deep sockets, offering improved accessibility in tight spaces while maintaining sufficient engagement with fasteners.