Schneider ATV12H037M3 | variable speed drive ATV12 – 0.37kW – 0.55hp – 200..240V – 3ph – with heat sink
Schneider ATV12H037M3 | variable speed drive ATV12 – 0.37kW – 0.55hp – 200..240V – 3ph – with heat sink
Description
Schneider ATV12H037M3: The Ultimate Guide
Introduction
When it comes to efficient motor control in industrial applications, the Schneider ATV12H037M3 stands out as a reliable and advanced solution. Understanding its features, benefits, and applications can significantly enhance your operational efficiency. This article aims to provide an in-depth look at the Schneider ATV12H037M3, from its key specifications to practical tips for installation and use.
Understanding the Schneider ATV12H037M3
What is the Schneider ATV12H037M3?
The Schneider ATV12H037M3 is a variable frequency drive (VFD) designed for small machines and simple applications. It provides precise motor control, enhancing the performance and efficiency of your machinery.
Key Features and Specifications
- Power Rating: 0.37 kW (0.5 HP)
- Input Voltage: 200-240V, 3-phase
- Output Frequency: 0.5 to 400 Hz
- Control Type: Scalar control (V/Hz)
- Protection: IP20 enclosure, overcurrent, overvoltage, and thermal protection
Benefits of Using the Schneider ATV12H037M3
- Energy Efficiency: Reduces energy consumption by optimizing motor speed.
- Ease of Use: User-friendly interface and simple configuration.
- Reliability: Robust design ensures long-term performance.
- Versatility: Suitable for a wide range of applications.
Applications of the Schneider ATV12H037M3
Common Industries and Use Cases
The Schneider ATV12H037M3 is commonly used in:
- HVAC Systems: Ensuring optimal performance and energy efficiency.
- Pumps and Fans: Controlling speed for better process management.
- Conveyors: Improving operational efficiency in manufacturing.
Real-World Examples of Implementation
- Manufacturing Plants: Enhancing production line efficiency.
- Water Treatment Facilities: Optimizing pump operation to conserve energy.
- Agricultural Operations: Controlling irrigation systems for better crop management.
Advantages in Specific Applications
- Precision Control: Achieving desired performance in various processes.
- Cost Savings: Lowering energy bills and maintenance costs.
- Improved Durability: Extending the lifespan of your equipment.
Installation and Setup
Pre-installation Considerations
- Verify Electrical Specifications: Ensure compatibility with your power supply.
- Check Environmental Conditions: Install in a clean, dry, and well-ventilated area.
Step-by-Step Installation Guide
- Mount the VFD: Securely mount the Schneider ATV12H037M3 on a stable surface.
- Connect the Power Supply: Follow the wiring diagram to connect to the power source.
- Wire the Motor: Connect the motor terminals to the VFD outputs.
- Configure the Settings: Use the interface to set initial parameters.
Initial Setup and Configuration
- Parameter Setting: Configure parameters like motor voltage, current, and frequency.
- Test Run: Perform a test run to ensure proper operation.
Operating the Schneider ATV12H037M3
Basic Operation Principles
- Start/Stop Control: Use the interface to start and stop the motor.
- Speed Adjustment: Adjust motor speed using the control panel.
User Interface and Controls
- LCD Display: Provides real-time data on motor performance.
- Keypad: Allows for easy parameter adjustments.
Tips for Efficient Operation
- Regular Monitoring: Keep an eye on performance metrics.
- Optimal Settings: Fine-tune settings for your specific application.
Maintenance and Troubleshooting
Regular Maintenance Practices
- Routine Inspections: Check for dust buildup and clean regularly.
- Firmware Updates: Ensure the VFD firmware is up-to-date.
Common Issues and Their Solutions
- Overheating: Ensure proper ventilation and reduce load if necessary.
- Unexpected Shutdowns: Check for electrical faults or parameter errors.
When to Seek Professional Help
- Complex Issues: If troubleshooting doesn’t resolve the problem, consult a professional.
- Major Repairs: For significant damage, professional repair is recommended.
Advanced Features and Customization
Overview of Advanced Functionalities
- Programmable Logic: Customize operations with built-in programming options.
- Remote Monitoring: Integrate with supervisory systems for remote monitoring.
Customization Options
- User-defined Parameters: Tailor settings to your specific needs.
- Interface Options: Choose between different user interfaces for control.
Integrating with Other Systems
- Communication Protocols: Supports Modbus and other protocols for seamless integration.
- Automation Systems: Compatible with various automation and control systems.
Energy Efficiency and Cost Savings
How the ATV12H037M3 Enhances Energy Efficiency
- Variable Speed Control: Matches motor speed to the actual load requirement.
- Reduced Power Consumption: Lowers energy usage during low-demand periods.
Cost-saving Benefits
- Lower Utility Bills: Reduced energy consumption translates to savings.
- Extended Equipment Life: Proper motor control reduces wear and tear.
Environmental Impact
- Reduced Carbon Footprint: Lower energy consumption helps in reducing greenhouse gas emissions.
- Sustainable Operations: Supports your sustainability goals.
Additional information
| brands | Schneider Electric |
|---|
Specifications
| Range of product | Altivar 12 |
|---|---|
| Product or component type | Variable speed drive |
| Product specific application | Simple machine |
| mounting mode | Cabinet mount |
| Communication port protocol | Modbus |
| Supply frequency | 50/60 Hz +/- 5 % |
| [Us] rated supply voltage | 200...240 V - 15...10 % |
| Nominal output current | 2.4 A |
| Motor power hp | 0.55 hp |
| Motor power kW | 0.37 kW |
| Motor power hp | 0.55 hp |
| EMC filter | Without EMC filter |
| IP degree of protection | IP20 |
| Discrete input number | 4 |
|---|---|
| Discrete output number | 2 |
| Analogue input number | 1 |
| Analogue output number | 1 |
| Relay output number | 1 |
| Physical interface | 2-wire RS 485 |
| Connector type | 1 RJ45 |
| Continuous output current | 2.4 A at 4 kHz |
| Method of access | Server Modbus serial |
| Speed drive output frequency | 0.5…400 Hz |
| Speed range | 1…20 |
| Sampling duration | 20 ms, tolerance +/- 1 ms for logic input 10 ms for analogue input |
| Linearity error | +/- 0.3 % of maximum value for analogue input |
| Frequency resolution | Analog input: converter A/D, 10 bits Display unit: 0.1 Hz |
| Time constant | 20 ms +/- 1 ms for reference change |
| Transmission rate | 9.6 kbit/s 19.2 kbit/s 38.4 kbit/s |
| Transmission frame | RTU |
| Number of addresses | 1…247 |
| Data format | 8 bits, configurable odd, even or no parity |
| Communication service | Read holding registers (03) 29 words Write single register (06) 29 words Write multiple registers (16) 27 words Read/write multiple registers (23) 4/4 words Read device identification (43) |
| Type of polarization | No impedance |
| 4 quadrant operation possible | False |
| Asynchronous motor control profile | Quadratic voltage/frequency ratio Voltage/frequency ratio (V/f) Sensorless flux vector control |
| Maximum output frequency | 4 kHz |
| Transient overtorque | 150…170 % of nominal motor torque depending on drive rating and type of motor |
| Acceleration and deceleration ramps | S Linear from 0 to 999.9 s U |
| Motor slip compensation | Adjustable Preset in factory |
| Switching frequency | 2...16 kHz adjustable 4...16 kHz with derating factor |
| Nominal switching frequency | 4 kHz |
| Braking to standstill | By DC injection |
| Brake chopper integrated | False |
| Line current | 3.6 A at 100 V (heavy duty) 3.0 A at 120 V (heavy duty) |
| Maximum input current | 3.0 A |
| Maximum output voltage | 240 V |
| Apparent power | 1.2 kVA at 240 V (heavy duty) |
| Maximum transient current | 3.6 A during 60 s (heavy duty) 4.0 A during 2 s (heavy duty) |
| Network frequency | 50...60 Hz |
| Relative symmetric network frequency tolerance | 5 % |
| Prospective line Isc | 5 kA |
| Base load current at high overload | 2.4 A |
| Power dissipation in W | Natural: 24.0 W |
| With safety function Safely Limited Speed (SLS) | False |
| With safety function Safe brake management (SBC/SBT) | False |
| With safety function Safe Operating Stop (SOS) | False |
| With safety function Safe Position (SP) | False |
| With safety function Safe programmable logic | False |
| With safety function Safe Speed Monitor (SSM) | False |
| With safety function Safe Stop 1 (SS1) | False |
| With sft fct Safe Stop 2 (SS2) | False |
| With safety function Safe torque off (STO) | False |
| With safety function Safely Limited Position (SLP) | False |
| With safety function Safe Direction (SDI) | False |
| Protection type | Line supply overvoltage Line supply undervoltage Overcurrent between output phases and earth Overheating protection Short-circuit between motor phases Against input phase loss in three-phase Thermal motor protection via the drive by continuous calculation of I²t |
| Tightening torque | 0.8 N.m |
| Insulation | Electrical between power and control |
| Quantity per set | Set of 1 |
| Width | 72 mm |
| Height | 143 mm |
| Depth | 121.2 mm |
| Net weight | 0.8 kg |
| Operating altitude | <= 1000 m without derating > 1000...3000 m with current derating 1 % per 100 m |
|---|---|
| Operating position | Vertical +/- 10 degree |
| Product certifications | NOM CSA C-Tick UL GOST RCM KC |
| Marking | CE |
| Standards | UL 508C UL 618000-5-1 IEC 61800-5-1 IEC 61800-3 |
| Assembly style | With heat sink |
| Electromagnetic compatibility | Electrical fast transient/burst immunity test level 4 conforming to IEC 61000-4-4 Electrostatic discharge immunity test level 3 conforming to IEC 61000-4-2 Immunity to conducted disturbances level 3 conforming to IEC 61000-4-6 Radiated radio-frequency electromagnetic field immunity test level 3 conforming to IEC 61000-4-3 Surge immunity test level 3 conforming to IEC 61000-4-5 Voltage dips and interruptions immunity test conforming to IEC 61000-4-11 |
| Environmental class (during operation) | Class 3C3 according to IEC 60721-3-3 Class 3S2 according to IEC 60721-3-3 |
| Maximum acceleration under shock impact (during operation) | 150 m/s² at 11 ms |
| Maximum acceleration under vibrational stress (during operation) | 10 m/s² at 13...200 Hz |
| Maximum deflection under vibratory load (during operation) | 1.5 mm at 2...13 Hz |
| Overvoltage category | Class III |
| Regulation loop | Adjustable PID regulator |
| Electromagnetic emission | Radiated emissions environment 1 category C2 conforming to IEC 61800-3 2...16 kHz shielded motor cable Conducted emissions with additional EMC filter environment 1 category C2 conforming to IEC 61800-3 4...12 kHz shielded motor cable <20 m Conducted emissions with additional EMC filter environment 2 category C3 conforming to IEC 61800-3 4...12 kHz shielded motor cable <20 m |
| Vibration resistance | 1 gn (f = 13…200 Hz) conforming to IEC 60068-2-6 1.5 mm peak to peak (f = 3…13 Hz) - drive unmounted on symmetrical DIN rail - conforming to IEC 60068-2-6 |
| Shock resistance | 15 gn conforming to IEC 60068-2-27 for 11 ms |
| Relative humidity | 5…95 % without condensation conforming to IEC 60068-2-3 5…95 % without dripping water conforming to IEC 60068-2-3 |
| Noise level | 0 dB |
| Pollution degree | 2 |
| Ambient air transport temperature | -25…70 °C |
| Ambient air temperature for operation | -10…40 °C without derating 40…60 °C with current derating 2.2 % per °C |
| ambient air temperature for storage | -25…70 °C |
| Unit Type of Package 1 | PCE |
|---|---|
| Number of Units in Package 1 | 1 |
| Package 1 Height | 11.500 cm |
| Package 1 Width | 18.700 cm |
| Package 1 Length | 19.500 cm |
| Package 1 Weight | 998.000 g |
| Unit Type of Package 2 | S06 |
| Number of Units in Package 2 | 45 |
| Package 2 Height | 75.000 cm |
| Package 2 Width | 60.000 cm |
| Package 2 Length | 80.000 cm |
| Package 2 Weight | 58.270 kg |
| Warranty | 18 months |
|---|
Main Document
Main Document
Data Sheet : Download
Main Document
Data Sheet : Download
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