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- Eurgle Servos
- 16_05
Eurgle 16_05 - Micro Servo
Specifications
Source: Most data comes from the manufacturer but some data is sourced from our loyal community.
Last Updated: |
2025-08-06 |
Modulation: |
Analog |
Torque: |
4.8V: 17.50 oz-in (1.26 kg-cm)
6.0V: 26.00 oz-in (1.87 kg-cm)
|
Speed: |
4.8V: 0.17 sec/60°
6.0V: 0.14 sec/60°
|
Weight: |
0.28 oz (8.0 g) |
Dimensions: |
Length:0.90 in (22.9 mm)
Width:0.48 in (12.2 mm)
Height:0.95 in (24.1 mm)
|
Motor Type: |
(add) |
Gear Type: |
Plastic |
Rotation/Support: |
Bushing |
Rotational Range: |
(add) |
Pulse Cycle: |
(add) |
Pulse Width: |
(add) |
Connector Type: |
(add) |
Brand: |
 |
Product Number: |
(add) |
Discontinued? |
Y |
Typical Price: |
6.26 USD |
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Notes
- The discontinued Eurgle 16_05 is a high-speed analog servo in a standard-size package, engineered by Eurgle to provide a rapid response at an ultra-affordable price point. This servo is designed for applications where velocity is the most important performance metric. It is an excellent, low-cost choice for the tail rotor on a .30 to .50 size helicopter, where its speed is crucial for working with the gyro to maintain a stable tail. It is also a great choice for the rudder on a 3D airplane or the steering on a 1/10 scale on-road car, where its quick reactions can improve the model's agility.
- The defining characteristic of the Eurgle 16_05 is its accessibility to high-speed performance. It allows hobbyists on a very strict budget to experience the benefits of a fast servo, which can make a model feel more responsive and exciting to control. It is a servo for the performance-minded hobbyist who is looking for the fastest possible response for the lowest possible cost.
- For roboticists, the Eurgle 16_05 is a very useful tool for projects that require high speed. It could be used to create a fast-acting sorting or launching mechanism on a competitive robot, or for any large-scale project where the overall speed is limited by the actuators. It provides a very inexpensive way to make a robotic creation move more quickly and dynamically."
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