Schneider ATV12H075M2 Variable Frequency Drive
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| Mobile | +8615305023276 | |||||||
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| Add to | Room 1004, No. 62 Xiangxiu Li, Siming District, Xiamen City, Fujian Province, China | |||||||
Technical Specifications
| Parameter | Specification |
|---|---|
| Product Type | Variable Frequency Drive (VFD) |
| Product Series | Altivar 12 |
| Model | ATV12H075M2 |
| Manufacturer | Schneider Electric |
| Application | Simple Industrial Machines |
| Motor Type | Asynchronous AC Motor |
| Mounting Mode | Cabinet Mount |
| Input Phase | Single Phase |
| Output Phase | Three Phase |
| Rated Input Voltage | 200–240 V AC |
| Input Voltage Tolerance | -15% to +10% |
| Input Frequency | 50/60 Hz ±5% |
| Motor Power | 0.75 kW |
| Motor Power Rating | 1 hp |
| Nominal Output Current | 4.2 A |
| Continuous Output Current | 4.2 A at 4 kHz |
| Maximum Transient Current | 6.3 A for 60 seconds |
| Line Current | 10.2 A at 200 V; 8.5 A at 240 V |
| Output Frequency Range | 0.5–400 Hz |
| Speed Range | 1:20 |
| Transient Over-Torque | 150–170% of nominal motor torque |
| Motor Control | Sensorless Flux Vector Control with PWM |
| Switching Frequency | 2–16 kHz adjustable |
| Nominal Switching Frequency | 4 kHz |
| EMC Filter | Integrated |
| Cooling Method | Natural Cooling with Heatsink |
| Built-in Fan | No |
| Communication Protocol | Modbus RTU |
| Communication Interface | 2-wire RS-485 |
| Communication Connector | 1 × RJ45 |
| Modbus Transmission Rate | 4800, 9600, 19200 and 38400 bit/s |
| Modbus Address Range | 1–247 |
| Digital Inputs | 4 |
| Digital Outputs | 2 |
| Analog Inputs | 1 |
| Analog Outputs | 1 |
| Relay Outputs | 1 |
| Acceleration / Deceleration Ramp | Adjustable |
| Motor Thermal Protection | Electronic I²t thermal protection |
| Protection Functions | Line overvoltage, line undervoltage, output overcurrent, motor phase-to-earth short circuit, motor phase-to-phase short circuit, overheating, input phase-loss protection |
| Protection Rating | IP20 |
| Operating Position | Vertical ±10° |
| Applicable Standards | IEC 61800-5-1, IEC 61800-3, UL 508C, UL 61800-5-1 |
| Certifications | CE, UL, CSA, GOST, NOM, RCM, KC, C-Tick |
| Operating Altitude | Up to 1000 m without current derating |
| Dimensions | 72 × 143 × 131.2 mm |
| Weight | 0.8 kg |
FAQ
1. What is the main function of the Schneider ATV12H075M2?
The Schneider ATV12H075M2 is a compact variable frequency drive from the Altivar 12 series, designed to control the speed, starting, stopping, acceleration and deceleration of asynchronous AC motors. It is rated for a 0.75 kW (1 hp) motor and operates from a single-phase 200–240 V AC supply while providing a controlled three-phase motor output. The drive changes the output frequency and voltage according to the required operating speed, allowing the motor to run more efficiently and with smoother acceleration than a conventional direct-on-line starter. It is particularly suitable for simple industrial machines, small conveyors, pumps, fans and other equipment requiring adjustable motor speed.
2. What type of motor is compatible with the ATV12H075M2?
The ATV12H075M2 is designed for three-phase asynchronous AC motors with a rated power of 0.75 kW (1 hp). Its continuous output current is 4.2 A at the nominal 4 kHz switching frequency. Before selecting the drive, the motor nameplate current should be compared with the drive’s output current rating. During commissioning, the motor’s rated voltage, current, frequency and power should be entered accurately. The drive uses sensorless flux vector control with PWM, providing suitable torque and speed regulation without requiring a motor encoder. Correct motor data is important for stable operation and proper electronic thermal protection.
3. What input power supply does the ATV12H075M2 require?
The ATV12H075M2 requires a single-phase 200–240 V AC power supply at 50/60 Hz ±5%. The permitted input voltage tolerance is approximately -15% to +10%. The line current is approximately 10.2 A at 200 V and 8.5 A at 240 V. The upstream circuit protection, disconnecting device and power cables should therefore be selected according to the actual installation requirements. Before commissioning, the supply voltage should be measured to confirm that it remains within the permitted range. Significant voltage drops can result in undervoltage faults, while excessive voltage can activate overvoltage protection.
4. What motor control method does the ATV12H075M2 use?
The ATV12H075M2 uses sensorless flux vector control with PWM motor control. This method provides more effective control of motor torque and speed than basic V/f control, while avoiding the need for an external encoder in standard applications. It is useful when the machine requires stable speed regulation and improved torque response. Correct motor nameplate information is important because the drive uses the configured motor parameters to establish its control model. Acceleration and deceleration times should also be adjusted according to the mechanical inertia and load characteristics of the connected machine to prevent unnecessary overcurrent trips.
5. Does the ATV12H075M2 support Modbus communication?
Yes. The ATV12H075M2 supports Modbus RTU communication through a 2-wire RS-485 interface and provides one RJ45 connector on the front of the drive. It can communicate with PLCs, HMIs, SCADA systems and other industrial automation controllers. Modbus can be used to send operating commands and speed references and to read operating status, alarms and diagnostic information. Supported communication speeds are 4800, 9600, 19200 and 38400 bit/s, with device addresses from 1 to 247. When commissioning the network, the communication address, baud rate, communication format and RS-485 wiring should be checked carefully.
6. Why might the ATV12H075M2 trip during acceleration?
An acceleration fault can result from excessive load torque, insufficient acceleration time, incorrect motor parameters or electrical problems. First check whether the motor shaft and connected machinery can rotate freely. High friction, mechanical blockage or excessive inertia can cause the motor to demand more current during acceleration. The motor’s rated current, voltage, frequency and power settings should then be compared with the actual nameplate values. If the acceleration ramp is too short, increasing the acceleration time can reduce the current demand during startup. Motor cables and terminals should also be inspected for loose connections, incorrect phase wiring or insulation problems. The specific fault indication should be reviewed to determine whether the event is caused by overcurrent, overheating, undervoltage, phase loss or another protection condition.
7. What protection functions are provided by the ATV12H075M2?
The ATV12H075M2 provides protection against line overvoltage, line undervoltage, output overcurrent, motor phase-to-earth short circuit, motor phase-to-phase short circuit, overheating and input phase loss. It also provides electronic motor thermal protection through continuous I²t calculation. This allows the drive to estimate the motor’s thermal condition according to operating current and time. Correct motor parameters are essential for reliable thermal monitoring. If the motor is frequently started and stopped, operates at high load or experiences rapidly changing torque, the protection behavior should be evaluated during commissioning. Repeated protection trips should be investigated to determine the underlying electrical or mechanical cause.
8. What should be checked during installation and commissioning of the ATV12H075M2?
Before commissioning, verify the single-phase 200–240 V AC supply, motor wiring, protective grounding and control connections. The drive should be mounted vertically and installed in a cabinet with adequate ventilation around the heatsink. This model does not use a built-in fan, so the natural cooling path should remain unobstructed. During setup, enter the motor nameplate information accurately and configure the required frequency range, acceleration and deceleration behavior, motor control parameters and speed reference. If Modbus communication is required, verify the RS-485 wiring and communication settings before starting the motor. During the initial test run, monitor motor current, output frequency and acceleration behavior. Any abnormal noise, vibration, excessive current or protection fault should be investigated before the machine is placed into continuous operation.
Schneider ATV12H075M2 Variable Frequency Drive is in stock. Please contact us for a quick quote and competitive pricing.
| Company Information | ||||||||
| [email protected] | ||||||||
| Mobile | +8615305023276 | |||||||
| +8615305023276 | ||||||||
| 13950166376 | ||||||||
| Add to | Room 1004, No. 62 Xiangxiu Li, Siming District, Xiamen City, Fujian Province, China | |||||||
Company Introduction
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