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- Cirrus Servos
- CS-703MG
Cirrus CS-703MG - Hi Torque 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: 102.00 oz-in (7.34 kg-cm)
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Speed: |
4.8V: 0.18 sec/60°
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Weight: |
1.90 oz (53.9 g) |
Dimensions: |
Length:1.60 in (40.6 mm)
Width:0.80 in (20.3 mm)
Height:1.50 in (38.1 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: |
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Product Number: |
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Discontinued? |
Y |
Typical Price: |
29.95 USD |
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Notes
- The discontinued Cirrus CS-703MG is a high-performance digital servo that brings a new level of precision and holding power to the high-torque, standard-sized class. It combines a powerful motor, a rugged all-metal gear (MG) train, and a sophisticated digital controller. This servo is aimed at serious drivers and pilots who need both immense strength and the crisp, responsive feel of digital technology. It is a fantastic steering servo for competitive 1/8 scale off-road racing, where its strong holding power and precise centering provide a significant advantage. It is also an excellent choice for the flight controls of large 3D and IMAC aircraft.
- The defining characteristic of the CS-703MG is its powerful and precise digital performance. The digital controller provides a locked-in, solid feel that analog servos cannot match. It holds its position with incredible force, preventing the control surfaces or wheels from being pushed around by external forces. This results in a more stable, predictable, and responsive model. The metal gears ensure that this digital performance is delivered through a durable and reliable platform, built to withstand the stresses of competition.
- In robotics, the CS-703MG is a superb actuator for projects that require a combination of high torque and high precision. It is ideal for the joints of a large robotic arm that must move to and hold a precise position under load. It would also be an excellent choice for the steering system of a large, high-speed autonomous vehicle, where its digital precision would allow for more accurate navigation. It brings a higher level of intelligence and performance to heavy-duty robotic tasks.
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