Industry Applications

Industry Applications

Successful application cases of linear motors in the 3C, semiconductor, and photovoltaic industries

Mobile Panel Bonding Application: Direct-Drive Precision Platform Enables Flexible Alignment

Mobile Panel Bonding Application: Direct-Drive Precision Platform for Flexible Alignment

Mobile Panel Lamination Application: Direct-Drive Precision Stage Enables Flexible Alignment

Challenge:Narrow bezel alignment leaves minimal clearance; high-speed motion risks overshoot, creating a trade-off between precision and scratch hazards.

Plan:Reconfiguring flexible alignment with an integrated direct-drive platform; achieving impact-free bonding through force-controlled micro-stops and multi-axis coordination.

Effect:Significantly reduced alignment time, substantially lower scratch rates, and simultaneous improvements in yield and hourly output.

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Optical Module Packaging Application: XYZ Coupling Platform for Rapid Alignment Enabled by High-Dynamic Collaboration and Vibration Suppression

Optical Module Packaging: XYZ Coupling Platform with High-Dynamic Coordination and Vibration Suppression for Rapid Alignment

Optical Module Packaging: XYZ Coupling Platform Enables Rapid Alignment via High-Dynamic Collaboration and Vibration Suppression

Challenge:Multi-axis precision alignment is too slow, micro-vibrations are difficult to suppress, and coupling efficiency and output consistency are insufficient.

Plan:Refactor the multi-axis motion control architecture to achieve rapid convergence and alignment through high-dynamic coordination and vibration suppression.

Effect:Alignment time significantly reduced, coupling efficiency improved, and mass production consistency elevated to a higher level.

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Precision Laser Processing Application: High-Dynamic Trajectory Control of Coreless U-Motors

Precision Laser Processing Application: High-Dynamic Trajectory Control for Coreless U-Motors

Precision Laser Processing Application: High-Dynamic Trajectory Control for Coreless U-Motors

Challenge:Insufficient trajectory accuracy at high speeds, corner overcutting, and lag in galvo-platform synchronization.

Plan:Coreless U-shaped motor high-dynamic direct-drive platform for synchronized galvo motion, trajectory lookahead algorithm enabling high-speed tracking and coordination

Effect:Eliminate corner overcutting, boost cutting efficiency, and significantly enhance consistency in large-format precision machining.

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SMT application scenario: High-speed placement driven by a linear motor with an iron-core central coil.

SMT Application: High-speed placement driven by a linear motor with an iron-core center coil

SMT Mounting Application: High-speed placement driven by a linear motor with an iron-core center coil

Challenge:The lead screw mechanism is affected by mechanical backlash. As pick-and-place cycle times accelerate, frequent start-stop operations induce vibration, making it difficult to balance precision and speed.

Plan:Iron-core coreless motors with central coils eliminate vibration at the source via normal force, achieving high thrust-to-weight ratios to break through high-acceleration positioning bottlenecks.

Effect:Significantly reduced settling time, faster placement cycle, and consistent accuracy across all shifts.

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High-Speed Handling of Large-Format Thin-Film Batteries: Flexible Motion Control for Efficient, Low-Damage Transport

High-Speed Handling of Large-Format Thin-Film Batteries: Flexible Motion Control Enables Efficient, Low-Damage Transport

High-Speed Handling of Large-Format Thin Batteries: Flexible Motion Control for Efficient, Low-Damage Transport

Challenge:In high-speed handling of large-format thin batteries, reducing fragmentation rates and increasing cycle time present a core conflict.

Plan:Reconstruct the motion control architecture to enable smooth, high-speed transport through low-impact flexible transmission and vibration suppression technology.

Effect:Significantly reduced fragmentation rate, broken through bottleneck in handling cycle time, and achieved simultaneous improvement in overall yield and production efficiency.

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High-Speed Die Bonding: Lightweight Carbon Fiber Motor Direct-Drive Technology for High-Precision Placement

High-Speed Die Bonding: Lightweight Carbon Fiber Motor Direct Drive Technology for High-Speed Precision Mounting

High-Speed Die Bonding Application: Lightweight Carbon Fiber Motor Direct Drive Technology Empowers High-Speed Precision Placement

Challenge:High-speed die bonding demands extreme precision; achieving micron-level positioning while ensuring gentle placement is challenging and risks chip damage.

Plan:High-acceleration direct-drive platform with force-controlled soft landing and carbon fiber lightweighting for low-impact, precision placement.

Effect:Significantly shorter die bonding cycle, reduced chip damage rate, and simultaneous improvements in production capacity and yield.

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Voice Coil Motor for Respirators: A Flexible Drive Solution for Precision Airflow Control

Voice Coil Motor Application for Ventilators: A Flexible Drive Solution for Precision Airway Control

Voice Coil Motor Applications for Ventilators: A Flexible Drive Solution for Precision Airway Control

Challenge:Tidal volume control requires millisecond-level response; achieving both pressure and flow accuracy under high-frequency dynamic conditions is challenging.

Plan:Replace traditional pneumatic valve control with voice coil motor closed-loop force feedback for soft, precise airflow and silent operation.

Effect:Significantly reduced ventilation following error, improved human-machine synchronization, and enhanced device lifespan and reliability.

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Robot Arm Joint Applications: Frameless Torque Motors Enable Agile and Safe Collaboration

Robot Arm Joint Applications: Frameless Torque Motors Enable Agile and Safe Collaboration

Robotic Arm Joint Applications: Frameless Torque Motors for Agile and Safe Collaboration

Challenge:Joints must deliver high torque in compact spaces. Traditional solutions are bulky, have high inertia, and suffer from limited dynamic response.

Plan:Integrated frameless torque motor direct-drive joint: lightweight design with high torque density for safe collaboration and agile response.

Effect:Significantly reduced joint volume and weight, synchronized improvements in motion rhythm and precision, more sensitive collision detection, and enhanced safety for collaborative operations.

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Yue ICP Bei 2023080346 Hao - 1