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Model | SYSDRIVE 3G3JV |
---|---|
Category | Inverter |
Output Frequency Range | 0.1 to 400 Hz |
Frequency Range | 50/60 Hz |
Control Method | V/f Control |
Braking Unit | Built-in |
Cooling Method | Fan cooling |
Enclosure Rating | IP20 |
Voltage Class | 200V class |
Overload Capacity | 150% of rated current for 60 s |
Protection | Overcurrent, overvoltage, undervoltage, overheat |
Communication | RS-485 |
Ambient Temperature | -10 to +50°C |
Storage Temperature | -20 to +65°C |
Humidity | 5-90% RH (non-condensing) |
Altitude | Up to 1000 m |
Covers essential installation procedures, including dimensions and conditions.
Outlines critical environmental and safety requirements for inverter installation.
Details essential wiring procedures, including precautions and terminal layouts.
Provides guidelines for proper grounding resistance and techniques to ensure safety.
Explains how to copy and verify inverter parameter settings using the digital operator.
Step-by-step guide for copying parameter settings between inverters using the digital operator.
Outlines the step-by-step process for performing an initial test run of the inverter and motor.
Explains the fundamental parameter settings required for basic inverter operation.
Covers methods for setting the frequency reference via digital operator or terminals (n03, n07).
Covers configuring multi-function input and output terminals for various functions.
Explains how to set and adjust the carrier frequency for optimal performance and noise reduction.
Covers functions to prevent motor stalling during acceleration, operation, and deceleration.
Explains how to configure overtorque detection to protect the motor and mechanical system.
Covers setting communication parameters like time-over detection and baud rate (n68, n71, n72).
Details DSR message formats for reading, writing, and testing communications.
Lists communication error codes, their probable causes, and remedies for troubleshooting.
Guides on controlling the inverter via communications with OMRON SYSMAC controllers.
Explains how the inverter detects fatal errors (OC, OV, UV, OH, EF, F00-F07, CE) and remedies.
Details how the inverter detects and handles fatal errors with corresponding fault codes.
Details nonfatal warnings (UV, OV, OH, CAL, OL3, SER, bb, EF, STP, FAN) and their causes/remedies.
Provides solutions for common inverter and motor operational issues.
Explains causes of motor burnout, such as excessive load or high ambient temperature.
Comprehensive technical specifications for the 3-phase and single-phase 200-V AC and 400-V AC inverter models.
Enables or disables overtorque detection and selects the processing method.