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3.5T Rear E-Axle for Minivans/Trucks - China Suppliers and Factory for Light Commercial Vehicles
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3.5T Rear E-Axle for Minivans/Trucks - China Suppliers and Factory for Light Commercial Vehicles

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Pumbaa E-Axle Product Overview

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The PUMBAA Rear E-Axle, designed specifically for light commercial vehicles, combines motor, propeller shaft, and drive axle into a streamlined unit. This innovative solution is ideal for new energy logistics light trucks and special-purpose vehicles, accommodating a Gross Vehicle Weight (GVW) of 4.5t to 7.5t. As a leading choice among China suppliers, our factory ensures high-quality production standards while meeting the demands of the evolving transportation industry.

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    Pumbaa E-Axle Product Introduction

    1. PUMBAA Rear E-Axle for Light Commercial Vehicles integrates "motor, propeller shaft, and drive axle" into a single unit, suitable for new energy logistics light trucks and special-purpose vehicles with a Gross Vehicle Weight (GVW) ranging from 4.5t to 7.5t.

    2. Optional rear axle configurations:

    ● Brake type: Hydraulic brake drum brakes, pneumatic brake drum brakes ("S"-cam, wedge-type), or pneumatic brake disc brakes.

    ● Reducer type: 1-speed reduction or 2-speed reduction.

    ● Wheel end structure: Maintenance-free hub units.

    3. Key features of the electric drive rear axle product:

    • Lightweight design

      The rear axle assembly features a compact structure, small footprint, and low weight. It effectively frees up chassis space, facilitating overall vehicle chassis layout.

    • High load-bearing capacity

      The rear axle housing is integrally stamped and welded from high-strength steel plates, delivering strong load-bearing performance and excellent reliability.

    • High efficiency

      The highly integrated transmission system (motor directly drives the rear axle, eliminating the propeller shaft) boosts transmission efficiency, reduces power loss, and achieves a comprehensive efficiency over 5% higher than traditional direct-drive systems.

    • High cost-effectiveness

      With a system weight reduction of over 50kg, 100% torque reversal, and regenerative energy recovery, it significantly extends the vehicle’s range. Additionally, it minimizes friction between brake pads and drums, prolongs component service life, and lowers long-term usage costs.

    PMQX2100100A-3.5/160 3.5T Rear E-Axle

    3.5T Rear E-Axle for Minivans
    3.5T Rear E-Axle

    Pumbaa E-Axle Product Parameters

    3.5T Rear E-Axle Model: PMQX2100100A-3.5/160

    Rear Axle Product Structural and Functional Diagram

    3.5T Rear E-Axle Model Diagram

    Pumbaa 3.5t Rear E-Axle Configuration Parameters

    Rated Load (kg) 3500 Gear Ratio 16.55
    Maximum Load (kg) 6000 Maximum Torque (N.m) 5800
    Maximum Speed (Km/h) ≥110 Maximum Gradeability 23%
    Sustainable Speed (Km/h) 80 Axle Housing Structural Form Stamping and Welding
    Rim Mounting Surface Distance A (mm) 1524±3 Axle Housing Cross Section (mm) 106×106×6
    Spring Distance B (mm) 950±1 Brake Specification Hydraulic Brake 0310 * 75 (Drum Brake)
    Wheel Bolt Circle C (mm) ø190 Brake Caliper Diameter ø28.58
    Wheel Bolt 6-M18×1.5 Brake Hydraulic Line Connection M12x1.25
    Rim Lip Diameter ø139.8 Single Brake Torque 10Mpa, 3100N.m
    Compatible Tires 7.0×R16 Hub Mounting Surface Distance 1496-1612
    Wheel Alignment Method Lip Positioning Compatible Rims 5.5J×16
    Optional Configuration Maintenance-Free Hub Unit, Pneumatic Brake with S Cam Brake, Pneumatic Brake with Wedge Brake, Disc Brake
    Motor Type PMSM Protection Rating IP67
    Motor Peak Power (Kw) 120 Motor Rated Voltage (VDC)(V) 540
    Motor Rated Power (Kw) 60 Voltage Operating Range (VDC)(V) 350~750
    Motor Peak Torque (N.m) 350 Motor Maximum Speed (rpm) 12000
    Motor Rated Torque (N.m) 125 Motor Rated Speed (rpm) 4580
    Insulation Class H Duty S9

    Pumbaa 3.5t Rear E-Axle Inspection and Testing

    Pumbaa 3.5t Rear E-Axle Inspection and Testing

    Vehicle Parameters by Pumbaa 3.5t Rear E-Axle

    Curb Weight (kg) 2900
    Full Load/Overloaded Gross Mass (kg) 4500/6000
    Tire Model, Rolling Radius (mm) 7.00R16LT、352
    Maximum Gradeability 23%
    Vehicle Maximum Parking Gradeability 20%
    Maximum Speed (km/h) 110
    Economic Speed (km/h) 60~80
    0~50km/h Acceleration Time (S) ≤15
    30~0km/h Braking Distance (m) ≤9 (Unladen)、≤10 (Full Load)

    Application for Pumbaa 3.5t Rear E-Axle Products: Electric Mini vans/Trucks

    Application for Pumbaa 3.5t Rear E-Axle
    Application for Pumbaa 3.5t Rear E-Axle Scenario

    Why Choose an e-axle?

    Amid the booming electric vehicle (EV) industry, e-axles are increasingly becoming a popular choice for automakers and consumers alike—backed by numerous significant advantages.

    1. Markedly Enhanced Performance

    Strong Power & Instant Response: The e-axle integrates the electric motor, reducer, and differential. As the power source, the electric motor efficiently converts electrical energy into mechanical energy. Compared to traditional ICE vehicle powertrains, the motor in an e-axle responds almost instantly with zero lag. During startup, it delivers powerful torque immediately, enabling rapid acceleration for a smooth, thrilling driving experience. For example, high-performance EVs with advanced e-axles can hit 0-100 km/h in just a few seconds—something traditional ICE vehicles struggle to match.

    Markedly Enhanced Performance

    2. Precise Power Distribution

    The differential is a key component of the e-axle. When turning, it allows left and right wheels to rotate at different speeds—ensuring stability and handling in all cornering scenarios, letting drivers control the vehicle’s trajectory with precision. In complex road conditions (e.g., mud, snow), the drive axle further optimizes traction by using electronic controls to distribute power more finely, enhancing the vehicle’s passability.

    Precise Power Distribution

    3. Efficient & Energy-Saving Advantages

    Integrated Design Cuts Energy Loss: By combining critical components into a single module, the e-axle shortens the power transmission path. This reduces energy loss between parts—unlike traditional powertrains—allowing electrical energy to be converted into kinetic energy more efficiently. The result? Improved energy utilization, longer EV range, and reduced “range anxiety” for consumers.

    Energy Recovery & Reuse: Advanced e-axles feature regenerative braking: when decelerating or braking, the motor acts as a generator, converting the vehicle’s kinetic energy back into stored electricity. This further boosts efficiency, lowers energy consumption, and makes EVs even more eco-friendly.

    4. Space Utilization & Design Flexibility

    Saves In-Car Space: The integrated design takes up far less room than traditional standalone components (engines, transmissions). This frees up more passenger and cargo space—highly appealing to consumers prioritizing comfort and practicality—and gives designers more freedom to optimize interior layouts.

    Streamlines Vehicle Design: With a simpler structure, automakers enjoy greater flexibility in overall vehicle design. They can adjust parameters like ground clearance and wheelbase more freely, improve aerodynamics, and pursue lightweight construction more easily.

    Space Utilization & Design Flexibility

    5. Lower Maintenance Costs & High Reliability

    Reduced Maintenance: Fewer components and a simpler structure mean fewer breakdowns and less frequent servicing compared to ICE powertrains. There’s no need for regular oil changes, spark plug replacements, or other ICE-specific upkeep—cutting owner costs significantly.

    Proven Durability: Advances in manufacturing and materials have made e-axles highly reliable. They withstand complex driving conditions and harsh environments, ensuring long-term stable performance for the vehicle.

    With its superior performance, energy efficiency, space-saving design, and low maintenance costs, the e-axle has become the ideal choice for EV development—propelling the electric vehicle industry forward into a more sustainable future.

    Frequently Asked Questions (FAQ)

    What vehicles are compatible with the Pumbaa Rear E-Axle?
    The Pumbaa Rear E-Axle is designed for light commercial vehicles, including new energy logistics light trucks, minivans, and special-purpose vehicles with a Gross Vehicle Weight (GVW) ranging from 4.5t to 7.5t.
    What optional configurations does the Pumbaa E-Axle offer?
    It offers multiple customizable options, including hydraulic drum brakes, pneumatic drum brakes ("S"-cam or wedge-type), or pneumatic disc brakes; 1-speed or 2-speed reducers; and maintenance-free hub units.
    How does the integrated design of the Pumbaa E-Axle improve vehicle efficiency?
    By integrating the motor, propeller shaft, and drive axle into a single unit, the system shortens the power transmission path and reduces energy loss. This achieves a comprehensive transmission efficiency that is over 5% higher than traditional direct-drive systems.
    What are the key specifications of the PMQX2100100A-3.5/160 model?
    This 3.5T Rear E-Axle features a rated load capacity of 3,500 kg (maximum load of 6,000 kg), a peak motor power of 120 kW, peak torque of 350 N.m (maximum output torque of 5,800 N.m), a gear ratio of 16.55, and a maximum speed capability of over 110 km/h.
    How does the Pumbaa E-Axle help extend a vehicle's range?
    The system achieves a weight reduction of over 50kg compared to traditional layouts, features 100% torque reversal, and incorporates regenerative energy recovery (regenerative braking) to convert kinetic energy back into electricity, significantly extending the vehicle's range.
    Why does an e-axle require less maintenance compared to ICE powertrains?
    An e-axle has a highly integrated design with fewer moving parts than internal combustion engine (ICE) powertrains. It eliminates the need for regular engine oil changes, spark plug replacements, and propeller shaft maintenance, thereby significantly lowering long-term service costs.