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High-precision scanning drive solutions for LiDAR.

Delivering high-performance polygon mirror motor solutions for LiDAR and precision optical scanning systems. Combining high-speed rotation, exceptional speed stability, low vibration, precise position feedback, and reliable long-term operation to enable accurate scanning and consistent 3D perception.

Industry Landscape

Key Challenges

Technical Challenges

System Solution

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Solismotor LiDAR Motor

LiDAR Industry Landscape and Scanning Applications

As a core component of scanning LiDAR, polygon mirror motors require high-speed rotation, exceptional speed stability, precise angular feedback, low vibration, and reliable continuous operation to ensure accurate beam scanning and consistent point-cloud acquisition.However, conventional motor systems often face challenges in maintaining extremely low speed fluctuation, precise scan synchronization, low vibration, and long service life under continuous high-speed operation—making high-performance polygon mirror motors critical to next-generation LiDAR systems.

Key Challenges in LiDAR Polygon Mirror Motors

High-Speed & Stable Rotation

LiDAR polygon mirror motors require continuous high-speed rotation while maintaining stable speed under varying loads. Consistent rotational performance is essential for reliable scanning and point-cloud acquisition.

Ultra-Low Speed Fluctuation

Small instantaneous speed variations can directly affect scan spacing and point-cloud uniformity. Extremely low intra-revolution speed fluctuation is critical for achieving consistent and accurate LiDAR scanning.

Precise Angular Feedback & Scan Synchronization

Accurate angular position feedback is essential for synchronizing laser emission, signal acquisition, and mirror position. High-resolution encoder feedback enables precise beam positioning and reliable scan timing.

Low Vibration & Precision Dynamic Balance

High-speed rotation places strict demands on rotor balance, shaft runout, and mechanical assembly accuracy. Low vibration and precise dynamic balancing help maintain optical stability and reduce scanning errors.

Long-Life & Reliable Continuous Operation

LiDAR systems often require extended continuous operation. Polygon mirror motors must provide high bearing reliability, effective thermal management, and long service life under sustained high-speed conditions.

Solismotor Industry Demand

Technical Challenges for High-Performance LiDAR Motors

01

Achieving High-Speed and Stable Rotation

LiDAR polygon mirror motors must maintain stable high-speed rotation to ensure consistent scanning frequency and reliable point-cloud acquisition. Motor torque, speed control, and mechanical stability must be precisely coordinated under continuous operation.

02

Minimizing Intra-Revolution Speed Fluctuation

Even small instantaneous speed variations within a single revolution can affect scan spacing and point-cloud uniformity. Precise motor control is essential for maintaining extremely low speed fluctuation and consistent scanning performance.

03

Achieving Precise Angular Feedback and Scan Synchronization



Accurate mirror position feedback is critical for synchronizing laser emission, signal acquisition, and scanning angles. High-resolution encoder feedback and precise zero-position detection enable reliable scan timing and accurate beam positioning.

04

Ensuring Low Vibration and Precision Dynamic Balance

High-speed mirror rotation places strict requirements on rotor balance, shaft runout, bearing accuracy, and mirror assembly. Precision dynamic balancing and low-vibration design are essential for maintaining optical stability and reducing scanning errors.



05

Ensuring Long-Life Reliability Under Continuous High-Speed Operation

LiDAR motors often operate continuously at high speed for extended periods. Bearing durability, lubrication, thermal management, and mechanical reliability are critical for achieving stable performance and long service life.

Solismotor Solutions

LiDAR Polygon Mirror Motor Drive System Solution

LiDAR Polygon Mirror Motor Drive System Architecture
  • Precision Polygon Mirror Motor Drive System

    • High-speed rotation & ultra-low speed fluctuation
    • Precise angular feedback & scan synchronization
    • Low vibration & reliable continuous operation
  • Precision Speed Control

    • Ultra-Low Speed Fluctuation Control
    • Scan Synchronization & Timing Control
    • Real-Time Angular Position Feedback
  • High-Speed Polygon Mirror Motor

    Ultra-Stable Speed Performance

    • High-Precision Encoder Feedback
    • Low Vibration & Precision Dynamic Balance
    • Long-Life High-Speed Operation

    Hollow  Motors

    • Hollow Shaft Design
    • Integrated Cable Routing Optimization
    • Space-Saving Installation

    High-Precision Encoder Systems

    • High-Resolution Feedback
    • High-Accuracy Position Detection
    • Stable & Reliable Performance
  • Precision Polygon Mirror Assembly

    • High Optical & Structural Stability
    • Precision Alignment & Assembly



    • Low Vibration & Low Runout
    • High-Speed Optical Scanning

Solismotor Gimbal Motor

Featured LiDAR Polygon Mirror Motors

Compact Chip-Mounted Polygon Mirror Motor

Compact polygon mirror motor featuring a chip-mounted mirror design, optimized for high-speed rotation, low vibration, and stable scanning in space-constrained LiDAR systems.

High-Precision Chip-Mounted Polygon Mirror Motor

High-precision chip-mounted polygon mirror motor designed for excellent speed stability, low speed fluctuation, and reliable high-speed optical scanning in LiDAR applications.

Metal Polygon Mirror Motor

High-rigidity metal polygon mirror motor engineered for high-speed LiDAR scanning, featuring excellent dynamic balance, low vibration, and reliable long-term operation.

Integrated Glass Polygon Mirror Motor

Integrated glass polygon mirror motor combining the optical mirror and motor drive into a compact structure, delivering high optical precision, stable rotation, and simplified system integration.

Dual-Wedge Prism Motor

Precision dual-wedge prism motor designed for LiDAR beam steering, enabling flexible scan patterns, precise optical pointing, and stable high-speed scanning.



Solismotor LiDAR Solution

Integrated LiDAR Scanning Solution Packages

Solution 1

Prototype Development Package

Polygon Mirror Motor
Standard Servo Drive

Designed for early-stage LiDAR prototype development, high-speed scanning tests, and basic motor control validation.

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Solution 2

High-Precision Polygon Mirror Motor

High-Precision Gimbal Motor
Closed-Loop Servo System
High-Resolution Encoder Feedback

Designed for LiDAR engineering validation requiring stable high-speed rotation, ultra-low speed fluctuation, precise angular feedback, and scan synchronization.

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Solution 3

Commercial Production Package

High-Performance Polygon Mirror Motor
Integrated Motion Control System
Precision Encoder & Stabilization Module

Designed for commercial LiDAR systems requiring exceptional speed stability, low vibration, precise scan synchronization, and reliable long-term continuous operation.

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Solismotor Results

Performance Improvements

+30%

Speed Stability

+20%

Scan Synchronization Accuracy

-20%

Instantaneous Speed Fluctuation

+10%

High-Speed Scanning Efficiency

-10%

Vibration & Rotational Jitter

LiDAR Scanning Motor Application Cases

Industrial LiDAR Scanning System

Application:
Industrial Inspection & 3D Mapping
Challenge:
High-speed continuous scanning, precise point-cloud acquisition, and reliable operation in demanding industrial environments
Solution:
High-Precision Polygon Mirror Motor System
Result::
Improved scan stability, point-cloud consistency, and reliable long-term LiDAR operation

UAV LiDAR Inspection System

Application:
Power Line Inspection & Aerial Mapping
Challenge:
High-speed scanning, vibration disturbance, lightweight integration, and accurate data acquisition during flight
Solution:
Compact High-Speed Polygon Mirror Motor System
Result::
Improved scanning accuracy, reduced motion-induced errors, and enhanced aerial point-cloud quality

Solismotor Downloads

Technical Document Downloads

  • CL0-3517-1214

  • CL0-5045-1216

  • CL0-6845-1216

  • CL1-7540-2428

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