♦ Basic Info:
Model: IND-GM-609-X
Diameter: 6mm
Body Length: 9.3mm
Operating Voltage: 2.1V DC-3.6V DC
Motor Torque: 5g·cm – 220g·cm
♦ Key Advantage
♦ Applications:
Cleaning equipment/ Smart lock/ Armarium
INEED 609 series 6mm nano planetary DC gearmotors are designed for mechanisms that need measurable torque in a very small diameter—typical examples include smart lock actuation and compact consumer electronics. The coreless motor length is 9.3 mm, and the gearbox length scales with ratio: 15.10 mm (5.14:1), 17.0 mm (26.45:1), 18.7 mm (136.02:1), and 20.5 mm (699.55:1). This makes it straightforward to trade axial space for higher mechanical advantage without changing the 6 mm interface. Four gear ratios (5.14/26.45/136.02/699.55:1) allow you to tune output torque and speed for latch movement, clutch engagement, or controlled motion under load. Standard output is a D‑shaft, with configurable wire length and connector. Request the datasheet, outline drawing, STEP model, and performance curves for current and torque validation before release.
Customizable items: 1. Length and shape (A and B); 2. Voltage, output speed, torque, etc. ; 3. Adding connectors, lead wire length.
| MPN | IND-GM-609-5.14 | IND-GM-609-26.45 | IND-GM-609-136 | IND-GM-609-699 | |
| Main Mechanical Features | L1 (Motor Body + Gearbox) | 15.10mm | 17.0mm | 18.7mm | 20.5mm |
| L2 (Motor Body) | 9.3mm | 9.3mm | 9.3mm | 9.3mm | |
| Gear Motor | Layer of gears | 1 | 2 | 3 | 4 |
| Gear Ratio | 5.14 | 26.45 | 136.02 | 699.55 | |
| Rated Voltage | 3.0V | 3.0V | 3.0V | 3.0V | |
| Output Speed (ref.) | 6420rpm | 1247rpm | 242rpm | 47rpm | |
| Output Current (ref.) | 60mA | 60mA | 60mA | 60mA | |
| Torque (ref.) at Max. Efficiency | 5g.cm | 28g.cm | 140g.cm | 220g.cm | |
Designed for smart lock actuation and compact consumer electronics where torque margin matters.
Total length is the 9.3 mm motor plus the gearbox length by ratio: 15.10 mm (5.14:1), 17.0 mm (26.45:1), 18.7 mm (136.02:1), 20.5 mm (699.55:1). If you share your maximum axial space, we can confirm the best ratio choice.
If requirements are not finalized, 26.45:1 is often a practical starting point to balance speed and torque. For low-speed/high-holding applications, move to 136.02:1 or 699.55:1; for faster motion with lighter load, use 5.14:1.
We can provide datasheet, outline drawing (2D), STEP 3D model, and performance curves so you can verify fit, current draw, and operating margin before release. Connector and wire length can be aligned to your harness spec.
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.
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You need our support, and we are ready to provide assistance.
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.