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Create holes for installing heavy duty industrial connectors. When the die and punch are pressed together, four centering mandrels in the die mark where to drill holes for the connector's assembly.
Cut DIN-size holes in steel up to 7/64" thick using a driver ram and hydraulic pump.
Use a wrench to cut DIN-size holes in steel up to 1/16" thick.
These steel punches cut through aluminum and steel fast to make openings for DB connectors.
The driver supplies eight tons of force to the hole punches in this set to make straight punches.
Rotate the angled head of the driver up to 180° to fit it into tight spaces and supply eight tons of force to the hole punches.
Create larger holes and make repeated punches with these drivers that supply 11 tons of force to the included hole punches.
Punch conduit up to size 1 1/4.
The included hydraulic driver allows you to punch conduit up to size 2.
These punches are half the size of standard portable lever-operated punches. They come with punches and dies in varying sizes.
About half the size of a standard portable lever-operated punch, these punches can fit in your toolbox.
Deliver nearly three times the punching force of a standard portable lever-operated punch by holding one handle and turning the other 360°.
These medium duty tools have more than double the punching force of compact portable lever-operated punches.
A throat depth more than double those of standard bench-mount lever-operated punches allows this tool to reach further past the edge of material.
Use twice the punching force of standard extended-reach punches to make holes in structural steel channels and angle iron.
Roller bearings in the lever provide low-effort punching.
Our most powerful lever-operated punch, the rotary-action socket turns to deliver two to three times the punching force of other bench-mount lever-operated punches.
Our strongest punch, this tool has 35 tons of force to punch through tough materials such as bus bars, railings, and I-beams.
Use these pins with a die to punch 1/8" and larger holes. Pins can be modified to fit your application.
Push parts out of molds with these hardened pins. Also known as knockout and forged pins.
Compared to standard ejector pins, these pins are less likely to chip and crack when used to push steel parts out of molds because they've been hardened through their core. Also known as knockout and forged pins.
To fit in holes that have widened from wear and are too big for standard ejector pins, these pins are oversized. Also known as knockout and forged pins.
A thick shoulder makes these pins more rigid than standard ejector pins.
Create flares around already-cut holes in sheet metal up to 3/16" thick to make the edges stronger and more rigid. Also known as dimple dies.