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  • Mini Linear Motor Moving Coil for Biomedical Technology
  • Mini Linear Motor Moving Coil for Biomedical Technology
  • Mini Linear Motor Moving Coil for Biomedical Technology
  • Mini Linear Motor Moving Coil for Biomedical Technology
  • Mini Linear Motor Moving Coil for Biomedical Technology
  • Mini Linear Motor Moving Coil for Biomedical Technology
Mini Linear Motor Moving Coil for Biomedical Technology

Mini Linear Motor Moving Coil for Biomedical Technology

  • 2 - 9 Pieces
    $160
  • >= 10 Pieces
    $153

Customization:

Customized logo(Min.Order: 3 pieces)
Customized packaging(Min.Order: 3 pieces)
Graphic customization(Min.Order: 3 pieces)

Mini Linear Motor Moving Coil for Biomedical Technology

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Precision Linear Motion Control: Designed for biomedical applications requiring high-precision linear movement, such as lab automation, diagnostic equipment, and surgical instruments.
  • Brushed DC Operation: Utilizes brush commutation for straightforward maintenance and reliable performance in controlled environments.

Key features

  • 1. Material Technology

  • With a robust brushed commutation system, ensure reliable operation in biomedical environments while maintaining cost-effectiveness compared to brushless alternatives*.

  • 2. Interactive Design

  • With a moving coil linear design, achieve precise linear motion for biomedical devices like lab equipment, outperforming traditional rotary-to-linear conversion systems in accuracy and efficiency*.

  • 3. Performance Parameters

  • With direct linear motor technology, eliminate energy loss from conversion mechanisms, delivering up to 30% higher efficiency than belt-driven systems in precision applications*.

  • 4. Scenario Solutions

  • Designed for biomedical technology, this motor supports high-precision tasks such as laboratory automation, offering reliable performance in controlled environments where space and accuracy are critical.

  • 5. Certification Standards

  • With EPR certifications from Germany and France, meet stringent environmental regulations for packaging, ensuring compliance with eco-friendly standards required in the biomedical industry.

Product details

Mini Linear Motor Moving Coil for Biomedical Technology

The SUPT Motion VGAR0044-0075-00A Mini Linear Motor Moving Coil is a compact, high-precision DC motor designed for biomedical applications. Built with a durable metal body and plastic end caps, it features a moving coil linear design for smooth, controlled motion. Certified to EPR standards in Germany and France, this motor combines reliability with space-saving efficiency, ideal for medical devices requiring precise actuation.

Technical specifications

FeatureSpecificationApplication Scenario
Motor TypeBrushed Linear Motor (Moving Coil)Biomedical devices, laboratory tools
MaterialMetal body (Aluminum/Steel), Plastic end capsWithstands frequent use in clinical settings
Efficiency ClassIE1Energy-efficient for low-power systems
CertificationsEPR_Germany_Packing, EPR_France_PackingComplies with EU environmental standards
Mounting3 x threaded holesSecure integration into equipment frames
Phase Configuration3-phase operation (3-wire)Smooth, high-torque linear motion control

Customization guide

Adjustable parameters include stroke length, maximum force output, and speed range to meet specific biomedical requirements (e.g., surgical instruments or diagnostic equipment).

Get inspired

With its linear motion precision and compact design, this motor enables seamless integration into medical devices like automated biopsy systems or lab analyzers. The brushed design ensures stable performance even in environments with strict space constraints.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Max Force (N)15+25% (18.75 N)+50% (22.5 N)*
Stroke Length50 mm75 mm100 mm
Speed (mm/s)100120150
EfficiencyIE1IE2IE3

Supplier's note

  1. Key Technical Breakthroughs:

    • EPR Compliance: Dual EU certifications ensure environmental responsibility, critical for biomedical supply chains.
    • Brushed Linear Design: Balances cost and reliability for routine medical applications.
    • Modular Stroke Length: Customizable to fit varying device requirements.
  2. Version Selection Guide:

    • Base Model: Ideal for standard lab equipment or low-force applications (e.g., sample handling).
    • Advanced Model: Suitable for mid-tier precision tools needing extended stroke (e.g., automated pipettes).
    • Pro Model: Designed for high-force, high-speed systems like robotic surgical aids, offering 50% greater force than the base version.

With the Pro Model’s IE3 efficiency, you can reduce energy consumption by 30% compared to traditional linear actuators, while its 150 mm/s speed ensures rapid response in critical medical scenarios. Pair this with its 22.5 N force capability to handle demanding tasks like automated biopsy sampling.

*Note: Comparative hints (e.g., "+25%") reflect improvements over the Base Model’s specifications.

Frequently asked questions

  • Which brushed linear motor is best suited for precision biomedical applications?

  • How do I maintain a brushed DC linear motor in medical equipment?

  • Why choose a brushed over brushless linear motor for biomedical devices?

  • What certifications does this mini linear motor have for biomedical use?

  • Can this motor’s specifications be customized for medical devices?

  • How does the moving coil design benefit biomedical applications?

  • What makes this linear motor suitable for space-constrained biomedical equipment?

  • How does IE1 efficiency affect the performance of biomedical devices?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Linear Motor DesignPrecision biomedical devices (e.g., lab robotics)Linear motor (IEC 60335-2-65 compliant) ▲ (direct drive eliminates belt wear)Direct linear motion, no conversion mechanisms, higher positional accuracyHigher upfront cost vs rotary motors
Brushed CommutationCost-sensitive applications (e.g., basic lab tools)Uses carbon brushes (IEC 60034-30 compliant) ▲ (matches industry standard)Lower cost, simpler construction, no external controllers requiredRequires periodic brush replacement, higher maintenance
Energy EfficiencyEnergy-conscious facilitiesIE1 efficiency (85-89% per IEC 60034-30)Base: Cost-effective efficiencyAdvanced: IE2 ▲▲ (90-93% efficiency)
Environmental ComplianceEU-regulated markets (e.g., France/Germany)Dual EPR certifications (Germany/France Packing) ▲▲ (exceeds single-country norms)Streamlined deployment in EU markets, reduced regulatory hurdlesHigher certification costs vs non-EPR competitors
Operational NoiseNoise-sensitive labs/hospitals45 dBA (comparable to quiet office) ▲ (quieter than industry standard brushed motors at 55 dBA)Minimal acoustic interferenceMay require dampening for ultra-quiet environments
Compact DesignSpace-constrained devices (e.g., handheld tools)Miniature size (50x20mm, 150g) ▲▲ (50% smaller/lighter than industry standard linear motors)Fits into tight spaces, lightweight for portabilityLimited torque capacity for heavy loads

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The comparison data is based on manufacturer information and industry standards. Actual results may vary depending on individual use cases. It is advisable to verify details with the supplier for the most accurate information.