Grey Pneumatic 1111MD 3/8" Drive x 11mm Deep 12-Point, Impact Socket
- The Grey Pneumatic 1111MD is a high-quality 3/8" drive impact socket designed for demanding applications. With its 11mm deep 12-Point configuration, it ensures a secure fit and efficient torque transfer, making it ideal for automotive and industrial use.
- Features:
- 3/8" drive compatible with various ratchets and impact wrenches.
- 11mm deep socket allows access to recessed fasteners.
- 12-Point design provides precise fit and reduces fastener rounding.
- Constructed from durable chrome-molybdenum alloy steel for longevity.
- Corrosion-resistant finish enhances durability.
- Specifications:
- Manufacturer: Grey Pneumatic
- Part Number: 1111MD
- Drive Size: 3/8 "
- Socket Size: 11mm
- Socket Depth: Deep
- Point Configuration: 12-Point
- Material: Chrome-molybdenum alloy steel
- Finish: Corrosion-resistant coating
- The Grey Pneumatic 1111MD is also known as a 3/8" drive 11mm deep impact socket, 12-Point 11mm deep socket, Grey Pneumatic 11mm deep socket, GP 1111MD impact socket, and 3/8" drive deep metric impact socket.
Grey Pneumatic is a leading manufacturer of high-quality impact sockets and tools. Utilizing the highest quality chrome-molybdenum alloy steel and state-of-the-art manufacturing processes, their products are designed for strength and durability in demanding applications. With a commitment to excellence, Grey Pneumatic serves professionals in automotive, industrial, and construction industries worldwide.
Q: What type of drive does the 1111MD socket have?
A: The 1111MD features a 3/8" drive, making it compatible with standard 3/8" drive ratchets and impact wrenches.
Q: Is this socket suitable for impact tools?
A: Yes, the 1111MD is designed for use with impact tools, constructed from durable chrome-molybdenum alloy steel to withstand high torque applications.
Q: What is the advantage of the 12-Point design?
A: The 12-Point design allows for a more precise fit on fasteners, reducing the risk of rounding and providing easier engagement in tight spaces.