



AC servo motor has been more and more widely used because of its advantages of fast response and high transmission speed. Such as: CNC machine tools, printing equipment, packaging equipment, textile equipment, laser processing equipment, robots, automated production lines, polarimeters and other equipment with relatively high requirements for process accuracy, processing efficiency and reliability.

Cylindrical grinding spindles are specially designed for precision miniature (inner) outer diameter grinding machines.



Applied to CNC machine tools to detect tool wear, online automatic compensation to meet the needs of automated production, improve processing efficiency and reduce the generation of defective products.

Accurately prevent the occurrence of poor reproduction of CNC machine prices, prevent the production of defective products in the manufacturing process.

On-line detection of product processing size to achieve on-line compensation to prevent the generation of defective products, greatly improving the processing efficiency.




Using the radius measurement method with the workpiece rotating, the system can measure and analyze functions such as cylindricity, roundness, straightness, coaxiality, concentricity, face run-out, total face run-out, perpendicularity, parallelism, and flatness. It can also analyze surface waviness, spectral analysis, wave height analysis, adjacent disc run-out, and inter-disc step differences.

Translation: This instrument employs the Cartesian coordinate measurement method with a stylus contact approach. It can measure the following dimensions, angles, tolerances, and generate auxiliary elements, as well as perform roughness and waviness analysis: Dimensions: Horizontal distance Vertical distance Linear distance Radius Diameter Angles: Horizontal angle Vertical angle Included angle Positional Tolerances: Parallelism Perpendicularity Form Tolerances: Straightness Flatness Circular profile Auxiliary Generation: Auxiliary points Auxiliary lines Auxiliary circles Roughness Analysis: Arithmetic mean height (Ra) Root mean square height (Rq) Maximum height of the profile (Rz) Peak height (Rp) Total height of the profile (Rt) Skewness (Rsk) Mean spacing of the profile elements (Rsm) Core roughness depth (Rc) Rz (DIN standard) R3z Rz (JIS standard) Maximum peak height (Rpmax) Maximum profile peak height (Rpm) Kurtosis (Rku) Root mean square height of the profile (Rdq/RΔq) Maximum profile valley depth (RδC) Material ratio at a specified section (Mr1, Mr2) Core roughness depth (Rpk) Valley depth of the core roughness (Rvk) Core roughness depth (Rk) Reduced peak height (Rdc) Amplitude parameters (A1, A2) Maximum profile height (Rx) Maximum profile height (AR) Core roughness depth (Rpc) Maximum roughness depth (Rmax) Rz (ISO standard) Profile height (4um) Maximum profile height (Ry) Waviness Analysis: Total waviness height (Wt) Arithmetic mean waviness height (Wa) Maximum waviness peak height (Wp) Maximum waviness valley depth (Wv) Root mean square waviness height (Wq) Core waviness depth (Wc) Kurtosis (Wku) Skewness (Wsk) Maximum waviness height (W) Maximum waviness height (Wx) Maximum waviness height (Wz) Mean spacing of the waviness profile elements (Wsm) Reduced peak height (Wdc) Total waviness height (Wte) Material ratio at a specified section (Wmr) Amplitude parameter (Aw) Material ratio curve (C(Wmr)) Material ratio at a specified section (Wmr(C)) Root mean square waviness height (Wdq/WΔq) Primary Profile Analysis: Total profile height (Pt) Arithmetic mean profile height (Pa) Maximum profile peak height (Pp) Maximum profile valley depth (Pv) Root mean square profile height (Pq) Core profile depth (Pc) Kurtosis (Pku) Skewness (Psk) Root mean square profile height (Pdq/PΔq) Mean spacing of the profile elements (Psm) Reduced peak height (Pdc) Material ratio at a specified section (Pmr(c)) Maximum profile height (Pz) Material ratio at a specified section (Pmr) Material ratio curve (C(pmr))


Central elastomeric coupling Dampens vibrations and compensates for radial, angular, axial misalignments. Oil-resistant and electrical insulation Oil-resistant and electrical insulation Identical clockwise and anticlockwise rotational characteristics. Double clamping type Application:Servo motor、Step motor、Universal motor

Diaphragm couplings with keyway/shrink disc connections Zero backlash Excellent response & high torque capacity ldentical clockwise & anticlockwise rotational characteristics Stainless steel diaphragm compensates radial, angular, axial misalignments. Using in long span drive Light weight, good toughness, low noise and vibration

The TSC Ball-detent Torque Limiter delivers high-precision torque transmission with dynamic responsiveness and zero backlash. Precision Auto-Reset Ball-detent Torque Limiter with built-in micro-rollers for ±3% torque control accuracy. Ultra-fast response disengages drive components within 0.001-0.003s upon overload. Infinitely adjustable torque release setting via dial within specified range. Limit switches/sensors instantly output 24VDC signals upon overload to trigger alarms (e.g. buzzer, indicator) and cut off drive motors simultaneously. Wide-range torque adjustment: 5-1500Nm Exceptional longevity withstands unlimited overload disengagement cycles.
