Reenives: Trusted Drone Motor Cores Stator Rotor Laminations Manufacturer in China
Stator Rotor Laminations for High-Efficiency Drone Motors: Eliminate Core Loss, Maximize Endurance
🏆 Trusted Drone Motor Cores Manufacturer in China
Engineering challenge: Poorly designed stator rotor laminations cause excessive eddy current losses, thermal stress, and shortened flight time in UAV propulsion systems. Reenives: Trusted Drone Motor Cores Stator Rotor Laminations Manufacturer in China delivers precision 0.2mm ultra-thin electrical steel stacks engineered for high-frequency BLDC motors — achieving up to 40% lower core loss and superior magnetic flux density for FPV racing, heavy-lift, and industrial drones.
- 1. Stator Rotor Laminations Defined
- 2. Classification by Grade & Stack Type
- 3. Technical Parameters + Certified Data
- 4. Key Applications (UAV & General BLDC)
- 5. Engineer’s Selection Guide
- 6. FAQ – Critical Core Performance Specs
- 7. Request Custom Stator Rotor Stacks
- 8. Dongguan Runlu Motor Technology Co., Ltd.
🔧 What Are Stator Rotor Laminations? (Magnetic Circuit Core)
Stator rotor laminations are thin, insulated silicon steel sheets stacked to form the stationary stator and rotating rotor magnetic circuits in brushless DC motors. For drone propulsion systems, using ultra-thin laminations (0.15mm–0.20mm) drastically reduces eddy current losses at high PWM frequencies (20kHz–50kHz) while maintaining high permeability. Reenives specializes in 0.2mm fully processed non-oriented electrical steel stacks, providing consistent magnetic performance, low hysteresis loss, and a stacking factor exceeding 97% — critical for maximizing torque-to-weight ratio in compact UAV motors.
Each stack features an advanced C5 inorganic insulation coating to withstand high temperatures (220°C continuous) and prevent interlaminar shorts, ensuring reliable operation under aggressive throttle changes and high-altitude low-pressure conditions.
📂 Classification of Stator Rotor Laminations for BLDC Motors
Based on thickness, material grade, stacking method, and coating type, Reenives offers tailored solutions for different power classes and RPM ranges:
- Ultra-Thin Grade (0.15mm – 0.20mm) – Optimal for high-speed UAV motors (>45,000 rpm) and FPV racing drones. 0.2mm flagship grade delivers best loss-reduction vs. mechanical strength balance.
- Standard Thin Grade (0.27mm – 0.35mm) – Suitable for industrial servo motors, e-scooters, and medium-thrust drone applications.
- Rotor-Specific Configurations: Surface-mounted magnet (SPM) rotors or interior permanent magnet (IPM) designs; Reenives supports custom rotor geometries including V-shape, spoke, and delta magnet slots.
- Stacking & Bonding Methods: Epoxy bonding (highest stacking factor >97%, reduced vibration), interlocking (riveting), or laser welding – available upon request.
- Insulation Coatings: C3 (organic, 180°C) / C5 (inorganic + semi-organic, 220°C+). For drone motors, C5 recommended for high-altitude corona resistance.
📊 Technical Parameters & Independent Data Sources
All Reenives stator rotor laminations stacks comply with IEC 60404-8-8 and GB/T 2521-2017. Typical parameters for our drone-grade 0.2mm material (tested at 400Hz/1.0T, third-party validated):
| Parameter | 0.20mm Grade (Ultra-thin) | 0.27mm Grade | 0.35mm Grade |
|---|---|---|---|
| Thickness (mm) | 0.20 ±0.008 | 0.27 ±0.01 | 0.35 ±0.01 |
| Iron Loss P1.0/400 (W/kg) | ≤ 12.0 | ≤ 15.6 | ≤ 18.8 |
| Magnetic Flux Density B50 (T) | ≥ 1.68 | ≥ 1.66 | ≥ 1.65 |
| Stacking Factor (Epoxy bonded) | 97.3% | 97.0% | 96.8% |
| Insulation Coating | C5 (220°C) | C5 / C3 optional | C3 |
Data sources: Reenives in-house laboratory (ISO 17025 accredited) + SGS test report #SGS-EL-26-0124. Batch consistency guaranteed with CpK ≥1.33. Third-party verification available upon request.
For rotor laminations, mechanical strength meets ASTM E8: tensile strength >385 MPa for 0.2mm material, suitable for high-speed rotation up to 85,000 rpm with appropriate retaining sleeve or carbon fiber bandage.
🚁 Applications: UAV FPV Drones & General BLDC Motors
Our stator rotor lamination stacks power a wide range of high-performance electric motors across industries:
- FPV racing drones & heavy-lift industrial UAVs (6S–14S LiPo, 30–90A ESCs) – demanding maximum thrust-to-weight and thermal stability.
- eVTOL prototypes & drone delivery systems – requiring high torque density and minimal iron loss under variable loads.
- Robotic actuators & collaborative robot joints (high precision, low cogging torque).
- High-speed spindles & medical handpieces (up to 100,000 rpm, ultra-low vibration).
- Electric vehicle auxiliary motors (cooling fans, oil pumps, HVAC blowers).
Real-world validation: A leading FPV drone brand replaced generic 0.35mm laminations with Reenives 0.2mm stator rotor stacks → +18% flight endurance (hover test from 20.0min to 23.6min), motor case temperature reduced by 22°C at full throttle, and 9% higher peak torque. Data from customer field test (report available under NDA).
⚙️ Engineer’s 5‑Step Selection Guide: Stator Rotor Lamination Stacks
To achieve optimal power density and thermal performance in your UAV motor design, follow these engineering steps:
- Define operating frequency & maximum RPM: Above 15kHz PWM → prioritize 0.20mm or 0.15mm laminations. Reenives provides loss vs. frequency curves for each grade.
- Calculate core loss budget: Use Steinmetz coefficients (supplied in technical datasheet). Our engineering team offers free simulation support (MotorCAD/Ansys Maxwell).
- Select stacking & bonding method: For drone motors, epoxy-bonded stacks achieve >97% stacking factor, reduce vibration noise, and improve heat dissipation.
- Coating selection: C5 inorganic coating is mandatory for high-altitude UAVs (>3000m) to prevent partial discharge and ensure long-term reliability.
- Custom tooling & prototyping: Reenives supports private mould development (lead time 20–30 days) and provides free samples (up to 50 sets) for qualified R&D projects.
❓ FAQ – Critical Stator Rotor Core Performance Parameters
Q1: What thickness of stator rotor lamination is best for a 2306.5 drone motor running at 28kHz PWM?
A: 0.20mm is the recommended choice. It reduces eddy current loss by 40% compared to 0.35mm at 28kHz while maintaining excellent mechanical strength for high RPM. Source: Reenives loss characterization per IEC 60404-2.
Q2: What is the guaranteed iron loss value for your 0.2mm stator lamination at 400Hz/1.0T?
A: ≤12.0 W/kg (typical 11.2 W/kg). Each batch is tested via Epstein frame, and a certificate of analysis is provided with every shipment. Source: QC protocol & SGS verification #SGS-EL-26-0124.
Q3: Can Reenives produce custom rotor lamination shapes for IPM (interior permanent magnet) designs?
A: Yes. We have manufactured over 280 custom rotor geometries including V-shape, double-layer, and spoke-type magnet pockets. Minimum order for custom tooling: 5000 sets; sample tooling is also supported for prototyping. Source: Reenives engineering archive 2023-2026.
Q4: What maximum temperature can C5-coated stator rotor stacks withstand?
A: Continuous 220°C, peak 260°C (30 minutes). This makes them suitable for high-power drone motors with active cooling or high ambient temperatures. Source: ASTM D495 thermal endurance test (Intertek).
Q5: How does stacking factor affect motor torque density?
A: Higher stacking factor increases the effective magnetic cross-section, resulting in higher torque per amp. Reenives achieves 97.3% stacking factor on 0.2mm epoxy-bonded laminations, exceeding industry average of 96.5%. Source: cross-section microscopy & weight method per IEC 60404-11.
Q6: Do you offer free samples for stator rotor lamination stacks?
A: Yes, free samples up to 50 complete stator/rotor sets for qualified drone motor manufacturers. Worldwide shipping with full export documentation (commercial invoice, packing list, and COO). Source: Reenives sample policy (2026).
🎯 Summary: Upgrade Your UAV Motor with Trusted Stator Rotor Lamination Stacks
Reduce core loss, extend flight time, and outperform competitors with Reenives – Trusted Drone Motor Cores Stator Rotor Laminations Manufacturer in China.
From material selection to volume production, we provide end-to-end engineering support, private mould development, and ISO-certified quality. Over 1000+ enterprises trust our stator and rotor core solutions.
📞 WhatsApp: +86-13377741885
✉️ Email: linda_reenives@163.com
🏭 Dongguan Runlu Motor Technology Co., Ltd.
Reenives is a professional drone stator core manufacturer, founded in 2022. It boasts independent research and development technologies, imported stamping & epoxy powder coating equipment production lines plus dust-free production workshops, more than 100 R&D patents, 3 production bases, a factory area of over 50,000 square meters, and a staff size of more than 500. From production to sales, we support bulk purchasing, private mould develop , and samples making , and can provide tailor-made perfect solutions for your production and usage scenarios. With 4 years of manufacturing experience, we have solved the production problems related to the use of stator core in industrial production for more than 1000 enterprises. We can ship globally (with complete export qualifications). Global customers are welcome to consult, visit the factory, and obtain free samples!
✅ Certifications: ISO 9001:2025, IATF 16949 (in progress), RoHS, REACH. Full traceability from raw coil to finished stator rotor stacks.
Reenives: Reliable Drone Motor Core Stator Rotor Lamination Stacks Manufacturer in China
Reenives: No.1 0.2mm Drones UAV FPV Motor Stator and Rotor Laminations Manufacturer in China
Related Article