Description
Model Number | RXE2N0F7G132A |
Brand | GE |
Type | Industrial AC Drive Controller |
Input Voltage | 380–480V AC, 3-phase |
Output Power | 132 kW (177 HP) |
Operating Temp Range | -10°C to 50°C (ambient) |
Mounting Style | Floor Mount / Panel Mount |
Dimensions | 450 x 250 x 380 mm |
Weight | 18 kg |
Control Modes | V/F, Sensorless Vector, Closed-Loop Vector |
Compliance | IEC 61800, CE, UL 508C, RoHS |
Communication | Ethernet/IP, Modbus TCP, Profibus DP |
Protection Features | Overcurrent, overvoltage, overtemperature, short circuit |
RXE2N0F7G132A
The GE RXE2N0F7G132A serves as the critical interface between power systems and industrial motors, converting AC line power into variable frequency output to control motor speed, torque, and direction with exceptional precision. This advanced drive controller connects directly to three-phase induction motors, receiving control signals from PLCs, HMIs, or distributed control systems (DCS) to adjust motor operation based on real-time process demands. Positioned between the electrical supply and motor in industrial machinery, the GE RXE2N0F7G132A acts as both a power converter and a control hub, optimizing motor performance while providing comprehensive protection against electrical faults and overload conditions.
RXE2N0F7G132A
What distinguishes this drive controller is its advanced vector control technology, which enables precise torque regulation even at low speeds—critical for applications requiring accurate positioning or tension control. It features adaptive motor tuning capabilities that automatically optimize performance parameters for the connected motor, reducing setup time and ensuring optimal operation across varying load conditions. The GE RXE2N0F7G132A incorporates extensive diagnostic functions that monitor motor health, power quality, and drive performance, providing actionable alerts to prevent unplanned downtime. Its modular design supports flexible communication options, allowing seamless integration with existing automation architectures through standard industrial protocols.
Main features and advantages:
Selecting the GE RXE2N0F7G132A delivers transformative benefits to industrial motor control systems, starting with significant energy savings. Its advanced energy optimization algorithms reduce power consumption by matching motor output precisely to load demands, eliminating the energy waste associated with constant-speed motors controlled by mechanical throttling. In variable-torque applications like pumps and fans, this can translate to energy savings of 20–50% compared to traditional control methods.
The GE RXE2N0F7G132A enhances process precision through its exceptional speed regulation (±0.1% of base speed) and torque control capabilities, ensuring consistent product quality in manufacturing applications and precise flow control in processing systems. Its comprehensive protection features safeguard both the drive and connected motor from electrical faults, reducing maintenance costs and extending equipment lifespan. The drive’s user-friendly configuration interface and adaptive tuning capabilities minimize commissioning time, allowing engineers to focus on system optimization rather than complex setup procedures. Additionally, the GE RXE2N0F7G132A supports remote monitoring and control, enabling predictive maintenance and reducing the need for on-site intervention.
RXE2N0F7G132A
Application fields:
The GE RXE2N0F7G132A excels in applications where high-power motor control, energy efficiency, and reliability are critical to operational success. In water and wastewater treatment facilities, it controls large pumps and blowers, optimizing flow rates based on real-time demand to reduce energy consumption while maintaining consistent water pressure and treatment processes. Its precise torque control makes it ideal for manufacturing applications such as conveyor systems, mixers, and extruders, where maintaining constant speed under varying loads directly impacts product quality.
In power generation plants, the GE RXE2N0F7G132A regulates auxiliary equipment like fans, pumps, and compressors, contributing to overall plant efficiency and reducing carbon emissions. The drive controller also finds extensive use in mining operations, where it controls crushers, conveyors, and material handling systems—withstanding harsh environmental conditions while delivering reliable performance. In all these environments, the GE RXE2N0F7G132A provides the power, precision, and efficiency needed to maintain productive, cost-effective operations.
Related products:
GE RXE2N0F7G75A – Lower power variant (75 kW) for medium-duty applications
GE RXE2N0F7G200A – Higher power version (200 kW) for heavy-industry applications
GE RXE2N0F7G132A-EX – Explosion-proof model for hazardous area installations
GE DRV-IO-16 – Expansion I/O module for additional control signals
GE DRV-COMM-ETH – Advanced Ethernet communication module with security features
GE DRV-PWR-FLT – Power filter module for enhanced electromagnetic compatibility
GE DRV-SERV-KIT – Preventive maintenance kit for RXE series drives
RXE2N0F7G132A
Installation and maintenance:
Before installing the GE RXE2N0F7G132A, verify that the electrical supply matches the drive’s input requirements (380–480V AC, 3-phase) and that the supply circuit is properly sized and protected with appropriate fuses or circuit breakers. Ensure the installation location provides adequate ventilation, as the drive dissipates significant heat during operation—maintaining ambient temperatures within the -10°C to 50°C range is critical for reliable performance. Check that motor cables are properly sized and shielded to minimize electromagnetic interference, and that communication cables are routed separately from power cables.
For ongoing maintenance, perform monthly visual inspections to check for dust accumulation, loose connections, or signs of overheating. Clean cooling fans and heat sinks quarterly to maintain proper thermal management. Calibrate current and voltage sensors annually using calibrated test equipment to ensure measurement accuracy. Before restarting after maintenance, verify all parameter settings and perform a test run at reduced speed to confirm proper operation. Keep firmware updated to the latest version using GE’s recommended procedures to access performance improvements and security updates.
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