






The diamond-coated Proxxon mini cutting disc is the perfect choice for fine cutting, grinding and deburring work where maximum precision is required. With its compact 20 mm diameter, it reaches areas that are difficult to access with larger discs – ideal for demanding detail work in model making, precision mechanics or when repairing delicate components. The diamond coating ensures exceptionally clean and precise cutting edges, even on hard or brittle materials.
A special advantage of the diamond-coated Proxxon mini cutting disc is the integrated cooling holes, which significantly reduce heat development. This allows you to work more efficiently while reliably avoiding burn marks and discoloration. At the same time, the improved heat dissipation contributes to a noticeably longer service life of the disc. The robust 2.35 mm shaft ensures a secure fit in many Proxxon machines and common micromotor or precision tools.
As with the larger diamond-coated fine cutting disc Ø 50 mm, users benefit from excellent smooth running, precise control and reliable cutting results. This mini cutting disc has been specifically designed for situations where maximum control, minimal cutting depth and absolute accuracy are essential.
The diamond surface makes the mini cutting disc ideal for materials that require a particularly sharp and precise cutting edge. These include ceramics, glass, porcelain, stone, plastics and thin metal parts. Thanks to its high stability and uniform diamond grit, it enables accurate cuts without chipping or fraying.
The compact 20 mm diameter provides maximum control and high precision for detailed work. Especially in areas that are difficult to access or where only very small cutting movements are possible, a smaller disc offers decisive advantages. It enables finer cutting depths, better control and reduces the risk of accidental damage – particularly useful in model making, miniature work or repairing delicate components.
The integrated cooling holes ensure that air continuously reaches the cutting area during operation. This effectively dissipates heat, preventing burn marks and increasing the disc’s lifespan. Even during extended use, the temperature remains significantly lower than with conventional cutting discs without cooling holes.