Planetary Gear Brushless Motor 16mm

♦ Basic Info:

This 16mm planetary BLDC gearmotor integrates a compact planetary gearbox with a 3‑phase brushless DC motor to deliver stable low‑speed torque with long service life and low maintenance. Hall sensors are available for applications requiring robust commutation feedback and consistent performance across load and temperature.

  • Model: IND-16GMB1637
  • Gearmotor diameter: Ø16mm
  • Body length: 37mm
  • Operating voltage range: 12–26V DC
  • Gearbox type: Planetary (ratio/stages customizable)
  • Feedback option: Hall sensors (optional)

♦ Key Benefits:

  • Longer lifetime, lower maintenance (no brush wear vs. brushed gearmotors)
    High torque density in a compact size (planetary gearbox)
    Stable control with Hall option for demanding duty cycles and repeatable output
    Integration-ready customization to reduce design iterations in OEM builds

Outline drawing

 

Planetary Gear Brushless Motor 16mm Drawing

 

Customization Options (OEM / ODM)

 

Output RPM and torque can be customized to match your application by selecting the appropriate gear ratio & motor winding. We also support integration-focused changes:

  • Output shaft: round / D-cut / threaded / custom length (per drawing)
  • Cable & connector: type, length, routing, polarity marking
  • Gear ratio / stages: optimized for speed, torque margin, efficiency and noise
  • Optional: encoder, special mounting requirements (project-dependent)

Note: The table/specs shown are for reference only. Final configuration is confirmed by your load profile and duty cycle.

 

The basic parameters are for reference

 

Ratio MPN Voltage No Load On Load Stall
Operating                                  Range (V) Rated Voltage(V) Current (mA) Speed                  (rpm) Current (mA) Speed                       (rpm) Torque                    (g.cm) Current (mA) Torque                    (g.cm)
54 IND-16GMB1637-54 12~26 24 350 260 / / / 2000 3000

 

Typical Applications

 

  • Medical & lab automation modules (e.g., blood analyzers)
  • Compact actuators requiring long life and stable torque output
  • OEM devices where reliability, efficiency and controllability matter

Selection Notes (How to Specify the Correct Version)

To receive a comparable quote and correct samples, please provide:

  1. Target output RPM (under load)
  2. Required continuous torque and peak torque
  3. Duty cycle (on/off time, starts/stops, reversals, any stall events)
  4. Supply voltage range (min–max) + any current limit
  5. Space limits (max OD/length) + shaft/mounting drawing (preferred)

We will recommend the suitable gear ratio and winding and confirm a working point aligned to your load profile—rather than sizing from stall torque only.

 

Engineering Deliverables & Validation Support (Available on Request)

To help your team validate the design faster, we can provide:

  • Motor curve / torque–speed curve (current, efficiency, operating point reference)
  • 3D STEP model and 2D outline drawings for mechanical integration
  • Lifetime estimation based on your duty cycle, load profile and ambient conditions
    (including recommendations for torque margin, thermal limits and operating window)

Request motor curve & STEP & life estimation when you contact us for quotation.

FAQs

 

Q1: Hall sensors vs. sensorless—what should I choose?

A: For smart locks (high start torque, end-stops, frequent start/stop) and many medical pumps (stable low-speed control), Hall sensors are usually recommended for more reliable startup and repeatable performance. Sensorless is better suited to lighter-load, higher-speed cases.

Q2: How do I choose the gear ratio?

A: Start with Gear ratio ≈ motor RPM ÷ target output RPM (under load). Final selection must confirm continuous/peak torque, efficiency/noise trade-offs, and thermal margin under your duty cycle—share RPM + torque and we’ll propose the ratio/stages.

Q3: What inputs matter most for correct sizing (beyond “stall torque”)?

A: Output RPM under loadcontinuous & peak torqueduty cycle (run time, starts/day), and end-stop/stall behavior (duration & frequency). These decide heating and lifetime more than stall specs.

Q4: What do you need for a fast and correct quote?

A: Please send voltage range + target output RPM (under load) & required torque (continuous/peak) + duty cycle + space limit (OD/length) + shaft/mounting drawing. (For smart locks, include end-stop stall time/frequency.)

Q5: Can you provide motor curve and CAD files?

A: Yes. We can provide motor curve / torque–speed data and 3D STEP & 2D drawings for engineering validation and mechanical integration.

Q6: Do you provide lifetime estimation?

A: Yes. We can provide lifetime estimation based on your duty cycle, load profile, ambient temperature, and torque margin assumptions—useful for reliability planning and validation.

Motor Customization Guide

Please provide your detailed requirements, and our engineers will offer you the optimal solution tailored to your specific application.

Contact Us

You need our support, and we are ready to provide assistance.

Motor products pose complexities in understanding, specifying, and integrating, with no industry standards. We offer expertise to mitigate design, manufacturing, and supply risks.

Contact our team now.

You can easily upload your 2D/3D CAD design files, and our sales engineering team will provide you with a quote within 8 hours.

Motors Catalog Download

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Contact Us

You need our support, and we are ready to provide assistance.

You can easily upload your 2D/3D CAD design files, and our sales engineering team will provide you with a quote within 24 hours.

Contact Us

You need our support, and we are ready to provide assistance.

Motor products pose complexities in understanding, specifying, and integrating, with no industry standards. We offer expertise to mitigate design, manufacturing, and supply risks.

Contact our team now.

You can easily upload your 2D/3D CAD design files, and our sales engineering team will provide you with a quote within 24 hours.