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Technical Specifications
Last Updated: 2026-07-10
Weight
Dimensions
Torque
Speed
Current
Temp
Wire
Disclaimer: Most data is sourced from the manufacturer. Some data is sourced from our loyal community and with the help of AI. We aim for accuracy but are not responsible for inaccurate information.
Class Comparison
| Torque | Above Average Stronger than 68% of 844 Digital Standard servos at 5.0V |
| Speed | Average Faster than 42% of 832 Digital Standard servos at 5.0V |
| Weight | Average Lighter than 56% of 1818 Digital Standard servos |
| Running Current | Bottom 10% Lower draw than 1% of 76 Digital Standard servos at 5.0V |
| Stall Current | Average Lower draw than 46% of 403 Digital Standard servos |
Performance Analysis
| Torque Density | 4.8605 oz-in/g Stronger than 76% of 833 Digital Standard servos |
| Torque-to-Volume Ratio | 154.69 oz-in/in³ Denser torque than 66% of 844 Digital Standard servos |
| Speed-to-Weight | 0.11905 (1/sec·g) Faster than 51% of 822 Digital Standard servos |
| Speed-Torque Trade-off | 40.83 Better balanced than 68% of 827 Digital Standard servos |
| Current-per-Torque Ratio | 0.0110 A/oz-in More efficient than 74% of 232 Digital Standard servos |
| No-Load vs Stall Current Spread | 0.64 3rd-highest no-load vs stall current spread of 49 Digital Standard servos |
| Torque Gain per Volt | 12.61%/V More voltage-responsive (torque) than 29% of 674 Digital Standard servos |
| Speed Gain per Volt | 22.06%/V More voltage-responsive (speed) than 86% of 688 Digital Standard servos |
| Voltage Range Width | 3.4 V Wider voltage range than 69% of 1271 Digital Standard servos |
| Dead-Band-to-Pulse-Width Ratio | 0.0010 Finer dead band than 66% of 329 Digital Standard servos |
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