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The MR-J4-10B from Mitsubishi is a servo drive amplifier characterized by its capacity to deliver 0.1 kilowatts of power. This model is designed for a single-phase input supply of 200 volts AC, and it features a fully digital sine-wave PWM control mode for enhanced operational performance.
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| Manufacturer | Mitsubishi |
|---|---|
| Product Type | Servo Drive Amplifier |
| Product Line | MELSERVO MR-J4 |
| Part Number | MR-J4-10B |
| Weight | 0.38 lbs (0.17 kg) |
| Rated Output Power | 0.1 Kilowatts |
| Input Supply Voltage | Single Phase 200 Volts AC |
| Control Interface | SSCNET III/H Fiber-Optic |
| Rated Output Current | 1.0 Amperes |
| Maximum Output Current | 3.0 Amperes |
| Drive Control Mode | Fully Digital Sine-Wave PWM |
| Supported Motor Series | HG-KN, HG-SN (Low-Inertia) |
| Encoder Feedback Type | Absolute 22-Bit Serial |
| Regenerative Braking | Built-In Standard |
| Communication Protocol | SSCNET III/H Motion Network |
| Control Power Supply | Single Phase 200-240 Volts AC |
| I/O Signal Interface | Connector Type for Digital Signals |
| Vibration Resistance | 5.9 m/s² at 10-55 Hz |
The MR-J4-10B by Mitsubishi serves as a highly functional servo drive amplifier. With a rated output power of 0.1 kW, it operates on a single-phase input voltage of 200 volts AC. This amplifier utilizes a SSCNET III/H fiber-optic control interface, providing real-time communication with connected devices. The device is capable of delivering a rated output current of 1.0 amperes, which can surge to a maximum of 3.0 amperes when needed. Its drive control mode employs a fully digital sine-wave pulse width modulation technique, ensuring smooth and efficient motor control.
Compatible with the HG-KN and HG-SN series of low-inertia motors, this drive amplifier efficiently manages power and feedback. The encoder feedback type is absolute, utilizing a 22-bit serial communication format that allows for precise positioning. Additionally, it includes built-in regenerative braking as a standard feature, contributing to improved efficiency by recovering energy during deceleration or stopping.
Communication is facilitated through the SSCNET III/H motion network protocol, enhancing coordination among multiple devices and systems. The control power supply operates within a range of 200 to 240 volts AC, ensuring adaptability for various setups. For signal interfacing, a connector type specifically designed for digital signals is provided. Furthermore, the device demonstrates resilience against vibrations, rated at 5.9 m/s² across a frequency spectrum of 10 to 55 Hz, making it suitable for diverse industrial environments.