Micro 100
Micro 100 RSC-125-1 60 Degree Carbide Engraving Tool
A 60-degree carbide engraving tool with a .004-inch tip for precise marking
- TypeHole, Drill, Bore & Wire Gauges
- 60-degree carbide tip cuts clean engravings in hard materials
- Uncoated solid carbide resists wear for long tool life
- Micro 100 precision grinding ensures consistent .004-inch tip accuracy
- 3/8-inch shank fits standard tool holders for quick setup
- Single-piece construction eliminates vibration for sharp detail
Micro 100 60 Degree Carbide Engraving Tool
This Micro 100 tool is a single 60 degree carbide engraving tool supplied in an uncoated finish. It is intended for precision engraving work where a sharp, durable carbide tip is required.
Suitable for machinists
This tool is not for users who require a coated cutting surface for extended tool life in abrasive materials. It also does not suit applications that demand a different included angle or a multi-tool set.
60 degree included angle defines the cut profile
The 60 degree angle determines the groove geometry produced in the workpiece. Verify that this angle matches the specification for your engraving or chamfering operation before purchase.
Highlights
- 60-degree carbide tip cuts clean engravings in hard materials
- Uncoated solid carbide resists wear for long tool life
- Micro 100 precision grinding ensures consistent .004-inch tip accuracy
- 3/8-inch shank fits standard tool holders for quick setup
- Single-piece construction eliminates vibration for sharp detail
Specifications
| Brand | Micro 100 |
|---|---|
| Type | Hole, Drill, Bore & Wire Gauges |
Questions about this item
How do I secure the 3/8 in shank in my tool holder without damaging the carbide tip?
Clamp the shank evenly using a collet or set-screw holder sized for 3/8 in; avoid over-tightening directly on the carbide section.
When will the 60 degree carbide tip need replacement?
Replace when the included angle wears past 60 degrees or the .004 in tip radius no longer cuts cleanly in your material.
What cutting depth limit appears first during a long engraving pass?
The .004 in tip radius concentrates heat, so tip degradation becomes the limiting factor before shank deflection.
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