Schneider ATV12H037M2 Variable Frequency Drive
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| [email protected] | ||||||||
| Mobile | +8615305023276 | |||||||
| +8615305023276 | ||||||||
| 15305023276 | ||||||||
| 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 | ATV12H037M2 |
| Manufacturer | Schneider Electric |
| Application | Simple Machines, Small Industrial Equipment |
| Motor Type | Asynchronous AC Motor |
| Mounting Type | Cabinet / Panel Mounting |
| Cooling Method | Natural Cooling with Heatsink |
| Input Phase | Single Phase |
| Rated Input Voltage | 200–240 V AC |
| Input Voltage Tolerance | -15% to +10% |
| Input Frequency | 50/60 Hz ±5% |
| Motor Power | 0.37 kW |
| Motor Power Rating | 0.55 hp |
| Rated Output Current | 2.4 A |
| Continuous Output Current | 2.4 A at 4 kHz |
| Maximum Transient Current | 3.6 A for 60 seconds under heavy-duty operation; 4.0 A for 2 seconds |
| Input Current | 5.9 A at 200 V; 4.9 A at 240 V |
| Output Frequency Range | 0.5–400 Hz |
| Speed Range | 1:20 |
| Maximum Output Voltage | 240 V |
| Transient Over-Torque | 150–170% of rated motor torque |
| Motor Control Methods | V/f Control, Sensorless Flux Vector Control, Quadratic V/f Control |
| Switching Frequency | 4 kHz nominal |
| EMC Filter | Integrated |
| Communication Protocol | Modbus |
| Communication Interface | 2-wire RS-485 |
| Communication Connector | 1 × RJ45 |
| Modbus Transmission Rate | 4800, 9600, 19200, 38400 bit/s |
| Modbus Address Range | 1–247 |
| Digital Inputs | 4 |
| Digital Outputs | 2 |
| Analog Input | 1 |
| Analog Output | 1 |
| Relay Output | 1 |
| Motor Braking Chopper | Not Integrated |
| Motor Thermal Protection | Integrated electronic I²t motor thermal protection |
| Protection Functions | Input overvoltage, input undervoltage, output overcurrent, output phase-to-earth short circuit, overheating, motor phase-to-phase short circuit and motor thermal protection |
| Protection Rating | IP20 |
| Mounting Position | Vertical ±10° |
| Power Dissipation | Approximately 27 W under natural cooling |
| Applicable Standards | UL 508C, UL 61800-5-1, IEC 61800-5-1, IEC 61800-3 |
| Certifications | CE, UL, CSA, GOST, NOM, RCM, KC, C-Tick |
| Operating Altitude | Up to 1000 m without derating; current derating required above 1000 m |
| Dimensions | 72 × 143 × 121.2 mm |
| Weight | 0.7 kg |
FAQ
1. What is the main function of the Schneider ATV12H037M2?
The Schneider ATV12H037M2 is a compact variable frequency drive designed to control the starting, stopping, acceleration, deceleration and operating speed of asynchronous AC motors. It is rated for a 0.37 kW (0.55 hp) motor and operates from a single-phase 200–240 V AC supply. By adjusting the output frequency and voltage, the drive allows the motor to operate at variable speeds instead of being limited to fixed mains-frequency operation. The ATV12H037M2 is suitable for simple machines, small conveyors, fans, pumps and general-purpose industrial equipment. It also provides several motor control modes, Modbus communication, electronic thermal protection and multiple electrical protection functions, making it suitable for compact automation systems where reliable basic motor control is required.
2. What type of motor can be used with the ATV12H037M2?
The ATV12H037M2 is primarily designed for asynchronous AC motors with a rated power of 0.37 kW (0.55 hp). Its rated output current is 2.4 A, so the motor’s nameplate current should be checked carefully before installation. Motor voltage and frequency must also correspond to the drive configuration. During commissioning, technicians should enter the motor’s rated voltage, rated current, rated frequency and power according to the nameplate. Correct motor data is important not only for speed and torque control but also for the electronic thermal protection function. If the motor rated current is higher than the continuous output capability of the drive, the system may experience overcurrent, overheating or repeated protection trips.
3. What power supply does the ATV12H037M2 require?
The ATV12H037M2 is designed for a single-phase 200–240 V AC power supply. The permitted input voltage range is approximately -15% to +10%, while the input frequency is 50/60 Hz ±5%. The drive converts the incoming AC power into a controlled variable-frequency output for the motor. Before energizing the equipment, the supply voltage should be checked to ensure it is within the specified range. Excessively low voltage can cause undervoltage protection, while excessive voltage can trigger overvoltage protection. In installations where the mains supply has significant voltage fluctuations, the quality and stability of the incoming power should also be evaluated to prevent nuisance trips and unstable operation.
4. Which motor control methods are available on the ATV12H037M2?
The ATV12H037M2 supports V/f control, sensorless flux vector control and quadratic V/f control. V/f control is suitable for general-purpose speed regulation and relatively straightforward applications. Sensorless flux vector control can provide improved torque behavior without requiring an encoder, making it useful when better motor performance is required. Quadratic V/f control is particularly suitable for variable-torque loads such as fans and pumps. The correct control method should be selected according to the motor characteristics, mechanical load and required operating performance. After selecting the control method, the motor nameplate parameters should be entered correctly, and acceleration, deceleration and frequency settings should be adjusted according to the actual machine.
5. Does the ATV12H037M2 support Modbus communication?
Yes. The ATV12H037M2 provides 2-wire RS-485 Modbus communication through an RJ45 connector. Modbus allows the drive to exchange operating commands, speed references, status information, alarms and fault information with PLCs, HMIs, SCADA systems and other automation equipment. Supported communication speeds include 4800, 9600, 19200 and 38400 bit/s, while the Modbus address range is 1–247. During commissioning, the communication address, baud rate, communication format and RS-485 wiring must be configured consistently between the drive and the control system. If the drive operates correctly locally but communication with the PLC fails, the communication cable, polarity, address and protocol settings should be checked first.
6. What should be checked if the ATV12H037M2 trips during motor acceleration?
If the drive trips while the motor is accelerating, the first step is to inspect the mechanical load and make sure the motor shaft can rotate freely. Excessive friction, seized bearings, mechanical blockage or an unexpectedly heavy load can result in high starting current. The motor parameters programmed into the drive should then be compared with the motor nameplate, particularly rated voltage, current, frequency and power. If the acceleration time is too short, the motor may draw excessive current while attempting to accelerate, especially when the driven machine has high inertia. Increasing the acceleration time may resolve this condition. Motor cables, terminals and phase connections should also be inspected for loose connections or insulation problems. The displayed fault code should be used to determine whether the actual problem is overcurrent, overheating, undervoltage, overvoltage or another protection condition.
7. What protection functions does the ATV12H037M2 provide?
The ATV12H037M2 incorporates several protection functions, including input overvoltage, input undervoltage, output overcurrent, output phase-to-earth short circuit, motor phase-to-phase short circuit and drive overheating protection. It also uses an electronic I²t motor thermal protection model to monitor the thermal condition of the connected motor. When the motor operates with excessive current for an extended period, the drive can respond to the calculated thermal load and help prevent damage caused by prolonged overload. Correct motor parameters are essential for effective thermal protection. Applications involving frequent starts and stops, rapidly changing loads or elevated ambient temperatures should be evaluated carefully to ensure the motor and drive remain within their permitted operating conditions.
8. What should be considered when installing and commissioning the ATV12H037M2?
The ATV12H037M2 should be installed and commissioned by qualified electrical personnel. Before installation, verify the single-phase 200–240 V AC supply, motor wiring, protective earth and control connections. The drive should be mounted in the specified vertical orientation, with sufficient space for heat dissipation and ventilation. Because this model uses natural heatsink cooling, its ventilation area should not be obstructed. During commissioning, enter the motor nameplate information accurately and configure the control mode, minimum frequency, maximum frequency, acceleration time, deceleration time and speed reference method. If Modbus is used, the RS-485 wiring and communication address should also be checked. The first motor test should preferably be performed under controlled conditions while monitoring motor current, frequency, acceleration and any abnormal noise or vibration. If overcurrent, overheating, undervoltage or another fault occurs, operation should be stopped and the motor, mechanical load, wiring and parameters should be inspected before normal operation is resumed.
Schneider ATV12H037M2 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
Xiamen Shengruite Trading Co., Ltd. is a company specializing in the supply of industrial PLC spare parts.
We provide high-quality PLC spare parts to customers in the global manufacturing, energy and power, chemical and other fields.
Since its establishment in 2011, after 13 years of rapid development, the cumulative global shipments have reached 223,650 pieces, with an annual output value of US$50 million.
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