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4-finger Concentric Gripper

4-finger Concentric Gripper

Precision-engineered for mission-critical applications where concentricity defines product viability.
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Product Introduction

MHS4 Quad-Axis Centering Gripper: Nanoscale Mastery for High-Value Components

 

Precision-engineered for mission-critical applications where concentricity defines product viability.

 

Revolutionary Four-Jaw Advantage

 

▌ Absolute Radial Control

4-Jaw T-Slot Architecture

Eliminates workpiece deformation with 360° force distribution

Radial Deviation <0.005mm TIR

at 3950N clamping force

Hardened Tungsten-Carbide Rails

Withstand 2M+ cycles in abrasive environments

▌ Smart Industrial-Grade Performance

Parameter

Performance

Per-Jaw Stroke

2-16mm (64mm total ∅ adj.)

Max Closing Force

3800N (387kgf)

Max Opening Force

3950N (403kgf)

Repeat Accuracy

±0.01mm

Operational Frequency

120Hz (0.07kg) / 60Hz (2.1kg) / 30Hz (6.46kg)

Temp Stability

5°C to 60°C

Pressure Optimization

1-6 bar (delicate) / 2-6 bar (secure)

 

 
Precision-Critical Applications

Semiconductor Manufacturing

450mm wafer handling with zero particle generation

EUV lithography mask alignment (±0.003mm TIR)

Vacuum chamber robot end-effectors

Aerospace Turbomachinery

Jet engine turbine disk balancing

Composite fan blade root gripping

Satellite reaction wheel assembly

Medical Implant Production

Artificial hip stem machining (Ra 0.2μm finish)

Spinal implant screw threading

Dental abutment concentric polishing

Optical Engineering

Telescope mirror segment handling

Interferometer reference flat calibration

Space camera lens barrel assembly

 

ROI-Driven Value Proposition

 

 

1

Yield Improvement: 99.98% concentricity compliance in medical implant production

2

Tooling Consolidation: Replaces 3-7 dedicated fixtures per workstation

3

Predictive Maintenance: Magnetic sensors detect micron-level wear before accuracy drift

4

Thermal Stability: Maintains ±0.002mm accuracy across 55°C range

Conclusion

 

 

The MHS4 redefines ultra-precision automation with its four-jaw centering architecture, delivering unmatched radial stability (<0.005mm TIR) at industrial-grade forces (3950N). By solving the core challenge of workpiece distortion during high-precision machining, it enables breakthrough yields in semiconductor, aerospace, and medical manufacturing. Where traditional three-jaw systems permit micro-deformation and two-jaw grippers induce bending moments, the MHS4's symmetrical force distribution ensures absolute geometric integrity. This is not merely a gripper - it's your strategic advantage for conquering nanometer-level tolerances with production-grade reliability.

 

 

 

 

 

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