58mm Diameter Brushles DC Motor With 90 Degree Shaft Worm Gearbox

This 58mm right-angle worm gear motor is built for compact 90° layouts that need strong reduction, stable holding behavior, and a rigid gearbox body that keeps output direction fixed in the mechanism.

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  • 58mm Diameter Brushles DC Motor With 90 Degree Shaft Worm Gearbox Featured Image
Specs

Key Features

This model combines a brushless DC motor (Φ36×L50) with a 58mm right-angle worm gearbox (L58.2×40×27), targeting applications where a straight-line planetary gearbox is hard to package.

  • 90-degree output direction helps you route drive power around corners without extra belts or transfer gears
  • Worm reduction behavior prioritizes holding and resistance to back-driving compared with planetary gearboxes
  • Rigid gearbox block structure supports stable mounting when the output load sits off-axis
  • High reduction ladder allows low-speed output without stacking multiple external stages
  • Applied range 6V–48V supports wide system architectures while keeping a consistent mechanical interface
technical Specs

Motors Specifications

Reduction ratio No-Load Rated Load Stall
Rated Voltage (V) Speed (RPM ±10%) Current (A) Speed (RPM ±10%) Current (A) Torque (Kg.cm) Power (W) Torque (Kg.cm) Current (A)
15.5 12 516 0.55 432 3.5 2.5 25.6 9 12.2
25 12 320 0.55 280 3.5 5 25.6 14 12.2
31 12 258 0.55 210 3.5 10 25.6 16.5 12.2
50 12 160 0.55 125 3.5 15 25.6 28 12.2
62 12 129 0.55 105 3.5 20 25.6 33 12.2
73.5 12 108 0.55 98 3.5 20 25.6 40 12.2
96 12 83 0.55 73 3.5 25 25.6 55 12.2
100 12 80 0.55 72 3.5 25 25.6 55 12.2
120 12 66 0.55 55 3.5 30 25.6 65 12.2
147 12 54 0.55 44 3.5 30 25.6 68 12.2
156 12 51 0.55 42 3.5 35 25.6 70 12.2
193 12 41 0.55 32 3.5 35 25.6 80 12.2
239 12 33 0.55 28 3.5 40 25.6 90 12.2
313 12 26 0.55 21 3.5 50 25.6 100 12.2
328 12 24 0.55 20 3.5 50 25.6 110 12.2
448 12 17 0.55 14 3.5 60 25.6 200 12.2
657 12 12 0.55 9 3.5 80 25.6 400 12.2
896 12 9 0.55 7 3.5 80 25.6 400 12.2

For additional customization or reference configurations, please feel free to contact us.

Why Choose us

SLW Motor Highlights

  • Right-Angle Drive for Tight Mechanisms

    A 90° worm gearbox lets you place the motor parallel to a panel or frame while sending torque out sideways, which reduces overall height and avoids extra transfer parts.

  • Holding-Oriented Output Behavior

    Worm gearing typically resists back-driving more than planetary systems, making it a practical option when the load should not easily “push the motor back.”

  • Mechanical Stability Under Off-Axis Loads

    The gearbox block form helps keep shaft alignment stable when the driven part applies side forces or when the assembly uses bracket-based mounting.

  • Reduction First, Speed Second

    This option is for designs that need low output speed by design, not by aggressive PWM scaling or external multi-stage transmission.

Custom

Beyond the Standard: Performance Customized

  • 01
    Right-Angle Layout Lock-In
    We confirm the 90° output direction and installation envelope early so the gearbox body, mounting face, and output orientation match your mechanism geometry.
  • 02
    Back-Driving and Holding Expectation Setup
    We align ratio choice to your holding requirement and discuss whether the load must stay in position when power is removed.
  • 03
    Efficiency and Heat Under Continuous Load
    Worm gear drives behave differently under continuous torque. We evaluate duty profile and load level so temperature rise stays manageable.
  • 04
    Output Side Load and Coupling Method
    We review how your coupling, wheel, or arm loads the output shaft so the assembly avoids misalignment stress and premature wear.
  • 05
    Ratio Anchors for Positioning vs Drive
    We shortlist ratio anchors based on whether the product is used for positioning/holding or for continuous drive, so the selection logic remains clear across variants.
  • Right-Angle Layout Lock-In
  • Back-Driving and Holding Expectation Setup
  • Efficiency and Heat Under Continuous Load
  • Output Side Load and Coupling Method
  • Ratio Anchors for Positioning vs Drive

Custom Now

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FAQ

Frequently Asked Questions

If you share your available space and the driven load type, we can help narrow the most suitable configuration quickly.

What is the main advantage of the 90-degree worm gearbox layout?
It lets you redirect torque by 90° in a compact package, which simplifies layout when a straight gearbox does not fit.
Is this better than a planetary gearbox for holding a load?
Worm gear output typically resists back-driving more than planetary systems, which can help when the load should stay in position.
How do I choose a ratio here?
Start from your required output speed, then confirm torque margin under rated load. For holding use-cases, prioritize torque margin first.
Does the applied range mean it works at 6V–48V directly?
It indicates the platform supports wide-voltage architectures. Share your real supply voltage and control method so we narrow a suitable configuration.
What should I share for fast configuration confirmation?
Share available space, load type, target output speed, required torque, and duty cycle.
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