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SMON6160 Voice Coil Motor Platform Swing Type TMEC-K-21

SMON6160 Voice Coil Motor Platform Swing Type TMEC-K-21
SMON6160 Voice Coil Motor Platform Swing Type TMEC-K-21

Product ID: SMON6160

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DESCRIPTION

Voice Coil Motor Platform Swing Type Introduction

Voice Coil Motor Platform Swing Type utilizes magnetic levitation direct-drive technology for high responsiveness, with a lightweight armature offering high speed and acceleration. Featuring a large gap cylindrical voice coil motor, the platform provides a wide oscillation range, high precision via an integrated capacitive encoder, and a long lifespan through a composite shaft with flexible hinge connections. It is customizable for both single-axis and dual-axis high-angle oscillation platforms, as well as fast steering mirror systems. This product is ideal for applications in astronomical telescopes, laser communication, image stabilization, scanning, and precision tracking and aiming systems.

Related products:

SMON6146 Voice Coil Motor Platform Swing Type TMPT-VC-0250-025-000-C

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SMON6150 Voice Coil Motor Platform Swing Type TMPT-VC-0390-013-000-C

Voice Coil Motor Platform Swing Type TMEC-K-10

Voice Coil Motor Platform Swing Type Specification

Fast Steering Mirror Model

FSM700

Mechanical Properties

Number of Axes

Dual-Axis

Motion Angle

±1.5°

Actuator

Voice Coil Motor

Dimensions

80 × 80 × 48 mm

Weight

500g

Deflection Mechanism

Flexible Hinge

Mounting Options

Front / Back / Side

Electrical Parameters

Capacitive Sensor Resolution

2 µrad

Repeatability

10 µrad

Linearity

0.05%

Response Time

5 ms

Closed-Loop Bandwidth

500 Hz

Controller Parameters

Main Control Chip

FPGA

Sampling Resolution

16-bit

Sampling Rate

500k/s

Communication Interface

RS-422

Power Supply Voltage

DC 28V

Static Power Consumption

12W

Average Power Consumption

40W

Environmental Adaptability

Operating Temperature

-40℃ to 60℃

Storage Temperature

-55℃ to 85℃

Shock & Vibration Resistance

17g

Shock Overload Resistance

2000g

Specification

Model

TMEC-K-21 (2D Dual-Axis)

Mirror Size

80 × 130 mm

Mechanical Rotation Angle

±3.6° × ±3.6°

Closed-Loop Bandwidth

>150 Hz

Resolution

0.2″ (1 µrad)

Repeatability Accuracy

2″

Operating Temperature

-40℃ to +50℃

 

Voice Coil Motor Platform Swing Type Applications

  • Medical Devices – Performs fatigue durability testing on vascular stents, artificial heart valves, and medical tubing, ensuring their long-term functionality and dependability.
  • Automotive Components – Assesses the fatigue resistance of cooling pipes and structural materials, replicating real-world operational conditions.
  • Material Testing – Conducts friction, impact, and temperature-controlled fatigue tests to evaluate wear resistance and overall material performance.

FAQs

Q1: What is a Voice Coil Motor Swing Platform?

A Voice Coil Motor Swing Platform (VCM) is a high-precision motion system designed for fatigue and durability testing of materials and components. Utilizing direct-drive voice coil motor technology, it delivers high-speed, high-acceleration, and precise motion control, making it ideal for long-term cyclic fatigue testing applications.

Q2: What are the benefits of using a Voice Coil Motor Swing Platform?

  • Direct-Drive Technology – Eliminates backlash for smooth and precise motion.
  • High-Speed & High-Acceleration – Enables rapid response and dynamic performance.
  • Minimal Friction & Wear – Magnetic levitation reduces physical contact, enhancing efficiency and lifespan.
  • Adjustable Stroke Frequency – Customizable to meet specific fatigue testing requirements.

Q3: What are the main applications of this Voice Coil Motor Platform?

Voice Coil Motor Swing Platforms are widely used for material durability testing and life-cycle evaluation across various industries, including:

  • Medical Devices – Fatigue testing of vascular stents, artificial heart valves, and medical tubing.
  • Automotive Components – Durability testing of cooling pipes and structural materials.
  • Material Testing – Friction, impact, and temperature-controlled fatigue testing for various materials.
Download a PDF Specification Sheet

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