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Diamond Coated Router Bits

Diamond Coated Two Flutes Endmill
Application: The diamond-coated structure forms an extremely hard film on the cutting edge, providing excellent wear resistance, suitable for processing high-hardness materials. These bits slow down tool wear, maintain stable product dimensions, and reduce the need for frequent adjustments, saving labor and time costs. Suitable for all PCB materials, carbon fiber boards, ceramics, and quartz.
Features: Available in both upward chip evacuation (for forming machines) and downward chip evacuation (for depaneling machines) designs.
Features: Available in both upward chip evacuation (for forming machines) and downward chip evacuation (for depaneling machines) designs.

Diamond Coated Diamond Cut Router Bits
The diamond-coated structure forms an extremely hard film on the cutting edge, providing excellent wear resistance, suitable for processing high-hardness materials. These bits slow down tool wear, maintain stable product dimensions, and reduce the need for frequent adjustments, saving labor and time costs. Suitable for all PCB materials, carbon fiber boards, ceramics, and quartz.
Features: Available in both upward chip evacuation (for forming machines) and downward chip evacuation (for depaneling machines) designs.
Features: Available in both upward chip evacuation (for forming machines) and downward chip evacuation (for depaneling machines) designs.

Diamond Coated CB Router Bits
The diamond-coated structure forms an extremely hard film on the cutting edge, providing excellent wear resistance, suitable for processing high-hardness materials. These bits slow down tool wear, maintain stable product dimensions, and reduce the need for frequent adjustments, saving labor and time costs. Suitable for all PCB materials, carbon fiber boards, ceramics, and quartz.
Features: Available in both upward chip evacuation (for forming machines) and downward chip evacuation (for depaneling machines) designs.
Features: Available in both upward chip evacuation (for forming machines) and downward chip evacuation (for depaneling machines) designs.