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Impact socket 14 mm 1/2" drive deep — DeWalt DT7548
Impact socket 14 mm 1/2" drive deep — DeWalt DT7548
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Impact socket 14 mm 1/2" drive deep — DeWalt DT7548
Leave your address - as soon as the price of the product goes down, you'll know about it right away
Impact socket 14 mm 1/2" drive deep — DeWalt DT7548
Impact socket 14 mm 1/2" drive deep — DeWalt DT7548
Deep 14 mm impact socket for 1/2" drive by DeWalt, designed to fit recessed nuts and long studs in demanding environments. The DeWalt DT7548 deep impact socket is made for use with 1/2" impact wrenches, pneumatic or electric impact drivers, and offers the reach required for many automotive, industrial and maintenance applications. Its construction is intended to withstand high torque and repeated impacts while maintaining a secure fit on fasteners.
This deep impact socket provides extended reach to access recessed fasteners and nuts that standard sockets cannot. Manufactured to meet the requirements of impact tool use, it resists wear from repeated torque cycles and minimizes rounding of fastener corners. The 1/2" drive fit ensures compatibility with common impact wrenches and adapters, and the 14 mm size covers a frequently used metric fastener dimension in vehicle and equipment service.
Select the 14 mm deep impact socket and attach it to a compatible 1/2" drive impact wrench or impact driver. Ensure the socket is fully seated on the fastener before applying torque. Use appropriate torque settings for the fastener material and application, and operate the impact tool according to its manufacturer instructions. After use, inspect the socket for cracks or deformation and store it in a dry place.
For safe and reliable operation, use this DeWalt deep impact socket only with impact-rated tools and accessories. Do not use the socket with hand ratchets or cheater bars for purposes it was not designed for. Replace the socket if any visible damage, excessive wear, or cracking appears. When working on critical fasteners, verify torque with a calibrated torque wrench after initial impact tightening.
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