2500Watt DC servo motor caters to high-precision, high-torque demands. Utilizing a 48V DC power supply. Delivers continuous, stable power for automation equipment. Applies widely to industrial robots, CNC machine tools, and automated conveyor systems. Suits for scenarios requiring high-precision motion control.
Basic Specifications
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Model: CCHN-130TM16015C5-C; CCHN-130TM16015C5-CB
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Rated Power: 2500W
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Rated Voltage: 48V DC
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Rated Current: 61.5 ±10%Arms
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Rated Torque: 16 N.m
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Peak Torque: 32 N.m
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Rated Speed: 1500 rpm
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Max. Speed: 2000 rpm
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Weight: 11kg; 12.8kg (with brake)
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Power Line Socket: Signal Leads Color-PE (yellow-green), U (red), V (blue), W (black), 24V (thin red), BRK (thin black)
Technical Parameters
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Vibration Class: Class F
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Line Resistance: ±10% (25 °C)
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Line Inductance: ±10%
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Line Back EMF: 15.8 V/krpm ±10%
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Torque Coefficient: 0.26 N·m/A ±10%
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Rotor Moment of Inertia: 17 × 10⁻⁴ kg·m² ±10%; 18.2±10% (with brake)
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Feedback Component: Incremental Encoder, 2500 PPR
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Static Torque: >19Nm (with brake)
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Rated Voltage: DC24V±10% 2.4A (with brake)
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Insulation Resistance: DC 500 V > 20 MΩ
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Ambient Temperature: -20~+40℃
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Ambient Humidity: 20~80% No Condensation
Features
- Provides 16 N·m rated and 32 N·m peak torque, delivering stable power for precise motion with the 2500W 48V DC servo motor at 1500 rpm.
- Runs efficiently with permanent magnet excitation, reducing energy loss and heat for the 48V DC servo motor.
- Offers accurate feedback control via a 2500 PPR encoder, ensuring precise speed and position in automation use.
- Built for reliability with an IP54-rated housing, the DC servo motor operates quietly and steadily from –20℃ to +40℃.
Dimension

Encoder Socket
| Socket Numbers |
1 |
2 |
3 |
4 |
5 |
6 |
7 |
8 |
9 |
10 |
11 |
12 |
13 |
14 |
15 |
| Signal leads |
PE |
5V |
0V |
A+ |
B+ |
Z+ |
A- |
B- |
Z- |
U+ |
V+ |
W+ |
-- |
-- |
-- |
| colour |
-- |
Red |
Black |
Blue |
Green |
Yellow |
Blue-black |
Green-black |
Yellow-black |
Brown |
Gray |
White |
-- |
-- |
-- |
Overload Characteristics
The characteristics are measured in the warm-boot conditions at 40℃:

Tips: What is PWM in a Servo Motor?
PWM (Pulse Width Modulation) is a core control technique used in servo motors to precisely set the target position by adjusting the pulse width (duty cycle) of a fixed-frequency signal. Typical control pulses range from 1 ms to 2 ms, corresponding to the minimum and maximum shaft angles. The servo driver interprets the PWM signal and drives the motor until the feedback system detects that the actual position matches the command, achieving accurate closed-loop control.