
MGH-High Precision Series Coordinate Measuring Machine
The MGH 686 and above series are high-precision coordinate measuring machines engineered with a closed-frame precision structure developed through internationally recognized finite element analysis methodologies.
This dedicated high-accuracy configuration consists of a fixed bridge and a moving worktable. The rigid and sturdy mechanical construction delivers maximum system rigidity, exceptional stability, and minimal vibration, ensuring ultra-high measurement accuracy across the entire measuring envelope.
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Features
- This series of measuring machines adopts a closed-frame structural design, which is a dedicated configuration for high-precision measurement machines. Comprising a fixed bridge and a moving worktable, the robust mechanical structure ensures maximum rigidity, optimal stability, and minimal vibration, guaranteeing extremely high measurement accuracy throughout the entire measuring volume.
- The three axes are mechanically independent of each other, with motions that do not interfere, thereby ensuring high system stability.
- The Y-axis motion employs central drive, eliminating Y-axis yaw and improving Y-axis motion accuracy.
- The Y-axis linear encoder is mounted at the center of the base, minimizing Abbe errors and achieving high measurement accuracy.
- The Y-axis guideway utilizes a dovetail positioning method to ensure maximum rigidity and accuracy during motion.
- All three-axis guideways are constructed from high-quality granite, providing identical thermal characteristics across all axes. This ensures excellent temperature stability, resistance to deformation, good rigidity, and minimal dynamic geometric errors.
- All three-axis guideways utilize self-cleaning pre-loaded high-precision air bearings, ensuring smoother motion.
- The drive system employs high-performance DC servo motors with ballscrew and synchronous belt transmission, ensuring faster, more precise, and superior motion performance.
- The Z-axis incorporates a cylinder balancing device, significantly improving Z-axis positioning accuracy and stability.
- The control system adopts a highly integrated dedicated CNC system featuring an internationally advanced upper-lower computer dual-computer architecture. This greatly enhances system performance, reliability, and anti-interference capability while reducing maintenance costs.
- The software utilizes a powerful measurement software package with proprietary intellectual property rights. Its comprehensive measurement and online functions provide users with a complete measurement solution.
MGH-High Precision Series Coordinate measuring Machine
| MGH-High Precision Series Coordinate measuring Machine | |||||
| SPECIFICATION | MGH686 | MGH8106 | MGH10128 | MGH10158 | MGH121510 |
| MEASURING TRAVEI (X,Y,Z) mm | 600*800*600 | 800*1000*600 | 1000*1200*800 | 1000*1500*800 | 1200*1500*1000 |
| DEMO-PARTS WEIGHT kg | 300 | 500 | 600 | 700 | 800 |
| STRUCTURE | FIXED GANTRY STRUCTURE | ||||
| OPERAYION | CNC PROGAMMABLE | ||||
| BASE MATERIAL | PRCISION GRANITE | ||||
| BODY MATERIAL | X、Y、ZAXIS PRECISION GRANITE | ||||
| IND OF DRIVE | SANYO SERVO MOTORS+JOYSTICK SANYO | ||||
| Indication error | 0.5+L/500 μm | 0.6+L/500 μm | 0.7+L/500 μm | 0.7+L/500 μm | 0.9+L/500 μm |
| Detection error | 0.5μm | 0.6μm | 0.7μm | 0.7μm | 0.9μm |
| LINEAR SCALES | HEIDENHandAND PRECISION GRATING SYSTEM | ||||
| TRIGGER PROBE | RENISHAW SP80 SCANNING PROBE | ||||
| CONTROL SYSTEM | RENISHAW UCC CONTROL SYSTEM IN THE UK, MORA DCC IN GERMANY | ||||
| SOFTWARE SYSTEM | AC-DMIS/NET-DMIS MEASUREMENT SOFTWARE | ||||
| APPEARANCE SIZE (W*D*H) | 1720*2300*3250 | 1820*2550*3250 | 2100*2800*3600 | 2100*3500*3600 | 2300*3500*3900 |
| MACHINE WEIGHT kg | 4300 | 5300 | 6800 | 7500 | 9000 |
| POWER | AC110V ~ AC220V SINGLE-PHASE 50/60Hz | ||||
| OPTION | IMAGING SYSTEM | ||||
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