Blog & Articles
A digital twin of your sliding-headstock (Swiss-type) machine that reads the real ISO code and proves it out before the bar runs. Any controller, any kinematics
G32 cuts a thread one pass per block — every pass, infeed, chamfer and pull-out is on the programmer, and the feed must match the pitch in sync with the spindle. It’s valid code that scraps the thread or crashes the tool when a value is off. Eureka G-Code runs the real G32/G92/G76 passes on a digital twin of your machine
Ask any experienced machinist ‘what’s in your safe start?’ and you’ll get a line like G17 G40 G49 G80 G90 — the block that forces the control into a known state so your program doesn’t inherit leftover modal settings from whatever ran before.
Why rewrite the same helical interpolation code for every thread size when a macro can generate it from a few parameters? Eureka G-Code simulates the real G-code with macro expansion and helical interpolation, before you cut
Aero-engine blisks and casings push machining to the edge: tough titanium and superalloys, thin deformable parts, and airflow passages between blades so narrow the tool can interfere on a five-axis move
Deep-hole drilling for injection and die-casting molds (IMSA, CHETO) isn’t just a toolpath: depth vs diameter, chip evacuation, guide bushings, special cycles and process monitoring all matter
Avoid two-turret crashes on Nakamura-Tome machines. Learn to verify pinch turning, superimpose modes, and waiting M-codes across channels.
Prevent slow, costly collisions on large vertical lathes like the Pietro Carnaghi AP80. Verify part zero, attachments, and G-code before production.

