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Diablo DDEPH225B 2-3/8" Double-Ended Phillips Drive Bit (Bulk)

Diablo DDEPH225B 2-3/8" Double-Ended Phillips Drive Bit (Bulk)

Diablo DDEPH225B 2-3/8" Double-Ended Phillips Drive Bit (Bulk)

Diablo's driver bit range of Phillips bits delivers maximum performance, extreme durability and up to 50x longer life when installing and removing fasteners. An optimized tip design provides a strong, precise grip that reduces wear, stripping and slippage. Torque Resistant Design absorbs torque for less stress at the tip when tightening and removing nuts and screws. This range is Impact Strong™, delivering increased shank stability and durability in cordless and corded impact and drill drivers.

Features

Application:
Ideal For:
Double-ended bits for quick bit changes
Assorted pack includes three double-ended Phillips drive bits: #1, #2 and #3
Extreme durability and impact resistance for up to 50X longer life versus standard bits
Torque Resistant Design for less stress on the tip
Optimized tip design reduces wear, minimizes breakage and prevents slippage
$0.89

Original: $2.97

-70%
Diablo DDEPH225B 2-3/8" Double-Ended Phillips Drive Bit (Bulk)

$2.97

$0.89

Product Information

Shipping & Returns

Description

Diablo DDEPH225B 2-3/8" Double-Ended Phillips Drive Bit (Bulk)

Diablo's driver bit range of Phillips bits delivers maximum performance, extreme durability and up to 50x longer life when installing and removing fasteners. An optimized tip design provides a strong, precise grip that reduces wear, stripping and slippage. Torque Resistant Design absorbs torque for less stress at the tip when tightening and removing nuts and screws. This range is Impact Strong™, delivering increased shank stability and durability in cordless and corded impact and drill drivers.

Features

Application:
Ideal For:
Double-ended bits for quick bit changes
Assorted pack includes three double-ended Phillips drive bits: #1, #2 and #3
Extreme durability and impact resistance for up to 50X longer life versus standard bits
Torque Resistant Design for less stress on the tip
Optimized tip design reduces wear, minimizes breakage and prevents slippage