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  • High Quality Magnetic Generator Rotor and Stator with Stacked Silicon Core
  • High Quality Magnetic Generator Rotor and Stator with Stacked Silicon Core
  • High Quality Magnetic Generator Rotor and Stator with Stacked Silicon Core
  • High Quality Magnetic Generator Rotor and Stator with Stacked Silicon Core
  • High Quality Magnetic Generator Rotor and Stator with Stacked Silicon Core
  • High Quality Magnetic Generator Rotor and Stator with Stacked Silicon Core
High Quality Magnetic Generator Rotor and Stator with Stacked Silicon Core

High Quality Magnetic Generator Rotor and Stator with Stacked Silicon Core

  • >= 1000 Pieces
    $0.04

Customization:

Customized logo(Min.Order: 1000 pieces)
Customized packaging(Min.Order: 1000 pieces)
Graphic customization(Min.Order: 1000 pieces)

High Quality Magnetic Generator Rotor and Stator with Stacked Silicon Core

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Rotor & Stator Pair: Engineered to work in tandem within electric motors and generators. The stator's radial slots house windings to generate a rotating magnetic field, while the rotor enables rotational motion.
  • Stacked Silicon Core: Reduces energy loss through optimized magnetic flux, ensuring high efficiency and durability in power generation and transmission.

Key features

  • 1. Material Technology

  • With laminated silicon cores, reduce energy loss and improve efficiency by minimizing eddy currents compared to traditional solid-core designs*

  • 2. Interactive Design

  • With modular design allowing customizable slot configurations and central hole sizes, easily adapt to diverse motor/generator requirements*

  • 3. Performance Parameters

  • With enhanced heat dissipation fins on the outer surface, maintain stable operation in high-temperature environments for prolonged use*

  • 4. Scenario Solutions

  • With radial slot design optimized for AC motor applications, ensure consistent magnetic field generation for reliable power output in industrial settings*

  • 5. Certification Standards

  • With materials adhering to industrial-grade standards for conductivity and structural integrity, ensure durability and safety in commercial applications*

Product details

High Quality Magnetic Generator Rotor and Stator with Stacked Silicon Core

The High Quality Magnetic Generator Rotor and Stator with Stacked Silicon Core is engineered for high-performance applications requiring optimal thermal management and electrical efficiency. Designed with laminated silicon steel cores and radial slot configurations, these components are ideal for industrial motors, generators, and power systems demanding durability and precision.

Technical specifications

FeatureSpecificationApplication Scenario
MaterialAluminum/Steel (customizable)Motors/generators requiring lightweight or high-strength builds
Core TypeLaminated silicon steel coresReducing eddy current losses in high-frequency applications
Slot DesignRadial slots for winding alignmentAC motor/generator setups needing precise magnetic field control
Heat DissipationFinned outer surfaceHigh-temperature environments (e.g., industrial turbines)
ConductivityHigh electrical conductivityApplications requiring minimal energy loss (e.g., renewable energy systems)

Customization guide

Adjustable parameters:

  • Slot Count/Spacing: Tailor to torque requirements (e.g., 24/36 slots for low/high-power motors).
  • Central Hole Diameter: Match shaft sizes (10–50mm range).
  • Core Thickness: Optimize for load capacity (2–10mm).
  • Material Grade: Balance conductivity vs. corrosion resistance (e.g., stainless steel for marine use).

Get inspired

Maximize your motor’s efficiency with our modular stator/rotor design. Whether you need lightweight components for aerospace or rugged builds for heavy machinery, our customizable solutions adapt to your exact specifications.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Core Thickness3mm5mm (+66% load capacity)8mm (+167%*)
Slot Density12 slots18 slots (+50%)24 slots (+100%)
Thermal EfficiencyStandard finsEnhanced fin design (+20% cooling)Hyperbolic fins (+40%*)
CertificationsCECE + RoHSCE + RoHS + IP67

Supplier's note

  1. Technical Breakthroughs:

    • Laminated Cores: Reduce eddy current losses by 30% vs. solid cores.
    • Hyperbolic Fins: Achieve 20% faster heat dissipation than flat-fin designs.
    • Slot Customization: Enable precise torque optimization for robotics or EV applications.
  2. Version Selection Guide:

    • Base Model: Ideal for standard industrial motors (e.g., pumps/compressors) where cost-efficiency is prioritized.
    • Advanced Model: Best for high-torque applications (e.g., construction equipment) needing enhanced durability.
    • Pro Model: Designed for extreme environments (e.g., aerospace or offshore energy systems) requiring IP67 sealing and ultra-high thermal performance.

With the Pro Model’s 8mm core thickness, you can handle loads 3x heavier than Base Model designs. Pair this with hyperbolic fins to maintain peak efficiency in temperatures exceeding 150°C.

Frequently asked questions

  • Which High Quality Magnetic Generator Rotor and Stator model suits high-power industrial applications?

  • How do I clean and maintain the fins on the stator for optimal heat dissipation?

  • Aluminum vs Steel cores: Which material is better for high-temperature generator setups?

  • Can I customize the slot configuration or central hole size for my motor design?

  • Is the stacked silicon core FDA-approved for food-grade equipment?

  • Why choose a stacked silicon core over traditional laminated steel?

  • What makes the radial slots critical for AC generator performance?

  • How does the stator’s finned design handle extreme temperatures?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Core MaterialIndustrial motors, generatorsIndustry Standard: Carbon steel (ASTM A36)
Our Base: High-grade silicon steel (ASTM A36/AISI 1010)
Our Advanced: Premium silicon steel (3% Si, IEC 60404-8)
▲19% higher conductivity (Base vs. Standard)
▲31% higher conductivity (Advanced vs. Standard)
Higher cost for premium materials (Advanced tier)
Lamination TechnologyHigh-efficiency motorsIndustry Standard: 150 layers (0.5mm/layer)
Our Base: 180 layers (▲20%)
Our Advanced: 200 layers (▲33%)
▲26% improved flux density (Advanced vs. Standard)Increased manufacturing complexity (Advanced tier)
Heat DissipationHigh-temperature environmentsIndustry Standard: Flat surface (no fins)
Our Base: Radial fins (+40% surface area)
Our Advanced: Axial + radial fins (+50% surface area)
▲50% faster cooling (Advanced vs. Standard)
Optimized for continuous operation
Added weight may affect portability (Advanced tier)
Electrical ConductivityEnergy-efficient systemsIndustry Standard: 8.0 S/m
Our Base: 9.5 S/m (▲19%)
Our Advanced: 10.5 S/m (▲31%)
Reduced energy loss (▲12% efficiency gain, Advanced vs. Standard)Requires specialized material sourcing
CustomizationSpecialty motor designsIndustry Standard: Fixed slot/hole configurations
Our Base: Adjustable slot count and hole size
Our Advanced: Full material/thickness customization
Tailored performance for niche applications (e.g., aerospace)Longer lead times for custom orders (Advanced tier)
Noise LevelResidential/office equipmentIndustry Standard: 50 dB(A)
Our Base: 45 dB(A) (▲10% quieter)
Our Advanced: 40 dB(A) (▲20% quieter)
▲20% quieter than competitors (Advanced)
Designed For: Open-plan offices or medical devices
May require additional sound dampening for extreme quietness

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