The MG995 High Torque Servo Motor is a metal gear digital servo designed for applications requiring high torque, precision, and durability. It is widely used in robotics, RC cars, RC airplanes, robotic arms, Arduino projects, automation systems, and DIY electronics. The MG995 provides 180° rotation control using a standard PWM signal and features durable metal gears for long service life.
Features
- Full Name: MG995 High Torque Metal Gear Servo Motor
- High torque output
- Durable metal gear train
- 180° rotation angle
- PWM control interface
- High-speed response
- Dual ball bearing design
- Compatible with Arduino, ESP32, Raspberry Pi, and other microcontrollers
Specifications
| Specification | Value |
|---|---|
| Product Type | Digital Servo Motor |
| Model | MG995 |
| Operating Voltage | 4.8V – 7.2V DC |
| Stall Torque | 9.4 kg·cm @ 4.8V, 11 kg·cm @ 6V (Typical) |
| Operating Speed | 0.20 sec/60° @ 4.8V, 0.16 sec/60° @ 6V |
| Rotation Angle | Approximately 180° |
| Gear Material | Metal |
| Bearing Type | Dual Ball Bearing |
| Control Signal | PWM (50 Hz) |
| Connector Type | 3-Pin Servo Connector |
| Weight | Approx. 55 g |
Pin Configuration
| Wire Color | Description |
|---|---|
| Brown | Ground (GND) |
| Red | VCC (+4.8V to +7.2V) |
| Orange | PWM Signal |
Applications
- Arduino projects
- ESP32 and Raspberry Pi projects
- Robotic arms
- RC cars
- RC airplanes
- RC boats
- Pan-tilt camera systems
- Industrial automation
- Educational robotics
Advantages
- High torque output
- Durable metal gears
- Accurate positioning
- Fast response time
- Easy PWM control
- Long service life
- Wide compatibility with development boards
Size
| Specification | Value |
|---|---|
| Dimensions | Approx. 40.7 × 19.7 × 42.9 mm |
| Weight | Approx. 55 g |
| Cable Length | Approx. 300 mm |
Package Includes
- 1 × MG995 Servo Motor
- 1 × Servo Horn Set
- 1 × Mounting Screw Set
Note: The MG995 should be powered from a separate regulated 5V–6V power supply capable of delivering at least 2A during peak loads. Avoid powering the servo directly from an Arduino or other microcontroller board, as the current demand may exceed the board’s power capabilities and cause unstable operation.






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