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  • Brushless Motor Rotor Stator Lamination/DC Motor Lamination/motor Stator
  • Brushless Motor Rotor Stator Lamination/DC Motor Lamination/motor Stator
  • Brushless Motor Rotor Stator Lamination/DC Motor Lamination/motor Stator
  • Brushless Motor Rotor Stator Lamination/DC Motor Lamination/motor Stator
  • Brushless Motor Rotor Stator Lamination/DC Motor Lamination/motor Stator
  • Brushless Motor Rotor Stator Lamination/DC Motor Lamination/motor Stator
Brushless Motor Rotor Stator Lamination/DC Motor Lamination/motor Stator

Brushless Motor Rotor Stator Lamination/DC Motor Lamination/motor Stator

  • >= 1000 Pieces
    $1

Customization:

Customized logo(Min.Order: 1 pieces)
Graphic customization(Min.Order: 1 pieces)
Customized packaging(Min.Order: 1 pieces)

Brushless Motor Rotor Stator Lamination/DC Motor Lamination/motor Stator

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Rotor/Stator Lamination: Designed to form the core of brushless and DC motors, enabling efficient magnetic field generation and energy conversion through precise silicon steel laminations.
  • Radial Slot Design: Enhances heat dissipation and weight reduction, critical for high-performance motor operation.
  • Central Hole Mounting: Facilitates seamless integration with motor shafts or mounting systems for stable operation.

Key features

  • 1. Material Technology

  • With high-grade silicon steel material, you can achieve superior magnetic efficiency and reduced energy consumption compared to plastic or aluminum components*. The silicon steel ensures minimal energy loss during motor operation, making it ideal for precision-driven applications.

  • 2. Interactive Design

  • With optimized radial slot design, you can enhance heat dissipation and mechanical stability during high-speed operations*. The precise radial slots improve airflow and stress distribution, ensuring reliable performance under continuous use.

  • 3. Performance Parameters

  • With laminated silicon steel cores, you can boost motor efficiency by up to 25% and handle higher RPMs than non-laminated alternatives*. The layered lamination minimizes eddy current losses, enabling faster and smoother motor运转.

  • 4. Scenario Solutions

  • With universal mounting compatibility via the central hole, you can seamlessly integrate into various motor systems for both domestic appliances and industrial machinery*. The modular design adapts to rotor alignment needs in compact or heavy-duty setups.

  • 5. Certification Standards

  • With compliance to international motor industry standards (e.g., ISO/IEC), you can ensure reliable performance and safety across global applications*. The silicon steel meets strict quality benchmarks for electromagnetic and thermal endurance.

Product details

Brushless Motor Rotor Stator Lamination/DC Motor Lamination/motor Stator

The Brushless Motor Rotor Stator Lamination and DC Motor Lamination series offer tailored solutions for diverse motor applications. Constructed from high-performance materials like silicon steel (base model) and customizable composites/alloys, these laminated cores balance magnetic efficiency, thermal management, and weight optimization. Radial slot designs enhance cooling and stress distribution, while central holes enable seamless integration into motor assemblies.

Technical specifications

FeatureSpecificationBenefit
MaterialSilicon Steel (Base), Composite/Alloy (Advanced/Pro)Enhanced magnetic efficiency (silicon steel), lightweight corrosion resistance (composite), superior thermal conductivity (alloy)
Radial SlotsCustomizable slot patternsOptimized airflow, reduced weight, stress distribution
Central HolePrecision-machined diameterEasy mounting and alignment with shafts
Thickness0.35mm-1.5mmAdjustable for torque and power demands
CertificationISO 9001, RoHS compliantEnsured quality and regulatory compliance

Customization guide

Adjust material composition (e.g., composite for lightweight or aluminum alloy for heat dissipation) or slot density/pattern to meet specific torque, thermal, or weight requirements.

Get inspired

Need a rotor stator for high-speed drones? Opt for the Advanced Model’s composite material to reduce inertia. Building an electric vehicle motor? The Pro Model’s aluminum alloy ensures optimal heat dissipation under continuous load.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
MaterialSilicon SteelReinforced CompositeAluminum Alloy
WeightStandard-20% lighter-15% lighter
Thermal Conductivity0.8 W/m·K1.2 W/m·K4.5 W/m·K (3x industry avg)
Max RPM6000 RPM8000 RPM12,000 RPM
CostEntry-LevelMid-RangePremium

Supplier's note

  1. Technical Breakthroughs:

    • Pro Model’s Aluminum Alloy: 4.5 W/m·K thermal conductivity enables 30% faster heat dissipation in EV motors.
    • Advanced Composite: 20% lighter than silicon steel, ideal for aerospace or drone applications.
    • Base Model’s Precision Slots: 15% improved airflow compared to traditional designs, reducing operational noise.
  2. Optimal Version Selection:

    • Lightweight Needs (e.g., Drones): Advanced Model’s composite reduces rotor inertia, enabling faster acceleration.
    • High-Performance Applications (e.g., EVs): Pro Model’s alloy withstands extreme temperatures while maintaining structural integrity.
    • Cost-Sensitive Projects: Base Model’s silicon steel delivers reliable performance for standard industrial motors.

With the Pro Model’s thermal efficiency, you can sustain peak performance in high-temperature environments. With the Advanced Model’s reduced weight, you can enhance agility in motion-critical systems.

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Industry Standard Aluminum AlloyIndustrial machinery, automotive partsHeat Dissipation: 150 W/m·K (ISO 22007-2)
Thickness: 1.2mm (ASTM B211)
Lightweight (2.7 g/cm³)
Corrosion-resistant
Good thermal conductivity
Lower magnetic permeability (▲劣势 vs silicon steel)
Less efficient in high-flux motors
Our Base (Silicon Steel)Electric motors, HVAC systems1.5% Si Content (ASTM A349)
Magnetic Permeability: 12,000 H/m (IEC 60404-2)
High magnetic efficiency
Cost-effective for standard applications
Heavier than aluminum
Higher cost than composites
Our Advanced (High-Grade Si Steel)Premium EV motors, industrial drives3.0% Si Content (ASTM A349)
Core Loss: 0.8 W/kg (▲ from 1.2 W/kg in Base)
Thickness: 0.35mm
▲ 25% lower energy loss vs Base
Ultra-thin laminations reduce eddy currents
Brittle material
Higher cost due to specialized processing
Composite Material ComponentsCorrosive environments, marine equipmentGlass-reinforced epoxy (ASTM D790)
Weight: 2.5 g/cm³ (ISO 1183)
Lightweight
Chemical resistance (ASTM D543)
No magnetic interference
Poor thermal conductivity (▲劣势 vs metals)
Lower mechanical strength
Copper Wound CoresHigh-current transformers, generatorsOxygen-free copper (ASTM B115)
Conductivity: 58 MS/m (IEC 60228)
Minimal electrical resistance
High current capacity
Bulky design
High material cost
Not laminated for magnetic efficiency
Permanent Magnet RotorsRobotics, servo motorsNeodymium magnets (ASTM F3115)
Remanence: 1.2T (ISO 9717)
▲ 40% higher torque density vs laminations
Compact design
Demagnetization risk at >80°C
Rare earth dependency
Costly magnet sourcing

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