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- Cirrus Servos
- CS-502MG
Cirrus CS-502MG - Low Profile Servo
Specifications
Source: Most data comes from the manufacturer but some data is sourced from our loyal community.
Last Updated: |
2025-08-04 |
Modulation: |
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Torque: |
4.8V: 83.00 oz-in (5.98 kg-cm)
6.0V: 112.00 oz-in (8.06 kg-cm)
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Speed: |
4.8V: 0.18 sec/60°
6.0V: 0.16 sec/60°
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Weight: |
1.19 oz (33.7 g) |
Dimensions: |
Length:1.65 in (41.9 mm)
Width:0.85 in (21.6 mm)
Height:0.87 in (22.1 mm)
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Motor Type: |
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Gear Type: |
Metal |
Rotation/Support: |
Dual Bearings |
Rotational Range: |
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Pulse Cycle: |
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Pulse Width: |
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Connector Type: |
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Brand: |
 |
Product Number: |
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Discontinued? |
Y |
Typical Price: |
29.99 USD |
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Notes
- The discontinued Cirrus CS-502MG is a powerful, standard-sized analog servo that is built for durability and strength. It takes a high-torque motor system and pairs it with a rugged, all-metal gear (MG) train, creating a servo that is designed to withstand significant stress and abuse. This makes it a very popular choice for the steering systems on 1/10 scale monster trucks and other off-road vehicles, where the servo must endure constant shocks and impacts. It is also a great, robust choice for the flight controls on larger sport aircraft, particularly for operating flaps or for use on models that fly from rough, unimproved airfields.
- The core identity of the CS-502MG is its toughness. The metal gears provide an essential layer of protection against stripping, which is a common failure point for servos used in high-impact environments. This gives drivers and pilots the confidence to operate their models hard, knowing that their control system is not a weak link. It has a well-earned reputation as a powerful and reliable workhorse that can handle the rigors of an off-road bash session or a less-than-perfect landing.
- For robotics builders, the CS-502MG's combination of high torque and durability makes it an incredibly useful and versatile component. It is strong enough for the primary joints of a medium-sized robot and tough enough to be used in projects that will interact with the real world. It is an excellent choice for a student robotics competition, where the robots are often subjected to rough handling. It's a simple, powerful, and tough actuator for a wide range of robotics challenges.
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