Variable Frequency Drive 3300V 1900V,10kV 6600V 10kV vfd inverter

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xMechanical Characteristic | Single/multiple Axis Drive, Two-quadrant/four-quadrant | Rated Voltage Of Motor Side | 3: 3300V 6: 6600V A: 10kV |
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Power | 10: 10MVA | Rectification Method | P: PWM D: Diode Basic Rectification |
Common Bus Rectification Method | Blank: Single Rectification 2: Double Rectification | Common Bus Inverter Method | Blank: Single D: Double Inverter T: Triple Inverter |
Highlight | 1900V Variable Frequency Drive,10kV vfd inverter,3300V Variable Frequency Drive |
HD8000 High power VFD system Variable Frequency Drive Converter
Product application
- Characteristics: single/multiple axis drive, IP54 protection, two-quadrant/four-quadrant
- Design: modular design
- Rectification: multi-pulse basic rectification, smart rectification and PWM rectification
- Voltage rate: 1900V3000V (3300V), 6000V, (6600V), 10000V
- Maximum power: 30MVA (single) 60MVA (parallel)
- Compitable motor: asynchronous induction motor, permanent magnet synchronous motor, Electrically excited synchronous motor
- Control method: V/F, close-loop vector control with sensor, open-loop vector control without sensor
- Cooling: water cooling
HD8000 Technical Specifications | ||||||||||||||
HD8000 | 3306 | 3308 | 3310 | 3312 | 2624 | AA30 | 6640 | AA60 | ||||||
R Basical ectification | Input voltage | 3300V | 1900V | 10kV | 6600V | 10kV | ||||||||
Input frquency | 45Hz-66Hz | |||||||||||||
Overload | 110%@ rated current, 120%@ rated current 60s | |||||||||||||
Efficiency | ≥99% | |||||||||||||
Power factor | ≥0.95 (Rated current, equipped with 2% AC input reactor) | |||||||||||||
Protection | overload protection, overheat protection, short circuit protection, fault pre-judgment, etc | |||||||||||||
RecPWM tification |
Input frquency | 45Hz-66Hz | ||||||||||||
Overload | 110%@ rated current, 120%@ rated current 60s | |||||||||||||
Efficiency | ≥98.5% | |||||||||||||
Power factor | adjustable (default 1) | |||||||||||||
Protection | overload protection, overheat protection, short circuit protection, fault pre-judgment, etc | |||||||||||||
Inverter | Output voltage | 3300V | 6600V | 10kV | 6600V | 10kV | ||||||||
Max output frequency |
110Hz |
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Speed stable accuracy | OLVC: 0.01%, CLVC: 0.01% | OLVC: 0.01%, CLVC: 0.01% | ||||||||||||
Speed pulse | OLVC: 0.2%, CLVC: 0.1% | OLVC: 0.4%, CLVC: 0.2% | ||||||||||||
Start torque | OLVC: 150%, CLVC: 200% | OLVC: 130%, CLVC: 150% | ||||||||||||
Torque control | V/F: Yes, OLVC: Yes, CLVC: Yes | V/F: Yes, OLVC: Yes, CLVC: Yes | ||||||||||||
Torque accuracy | OLVC: 5%, CLVC: 2% | OLVC: 5%, CLVC: 2% | ||||||||||||
Torque response time | OLVC: 5ms, CLVC: 5ms | OLVC: 5ms, CLVC: 5ms | ||||||||||||
Rotating response time | OLVC: 100ms, CLVC: 100ms | OLVC: 150ms, CLVC: 150ms | ||||||||||||
Dynamic drop equivalent | OLVC: 0.5%*s, CLVC: 0.25%*s | OLVC: 1%*s, CLVC: 0.5%*s | ||||||||||||
Overload | 110%@rated current, 120%@rated current 60s | |||||||||||||
Environment | Temperature | inlet temperature ≤40 | ||||||||||||
Altitude | ≤4000m (2000m~4000m de-rating) | |||||||||||||
Mechanical Data | IP protection | IP54 | ||||||||||||
Cooling | Water cooling | |||||||||||||
Anti corrosion | C4-M | |||||||||||||
HD8000 Series Selection Table | ||||||||||||||
Module | Grid Voltage | Motor Voltage | Power | RatedI | Max f | Size (W*D*H) (mm) | Note | |||||||
HD8000-3306 | 3300V | 3300V | 6MVA | 1050A | 110Hz | 4600*1300*2200 | Contains water cool cabinet | |||||||
HD8000-3308 | 8MVA | 1400A | ||||||||||||
HD8000-3310 | 10MVA | 1750A | ||||||||||||
HD8000-3312 | 12MVA | 2100A | ||||||||||||
HD8000-2624 | 1900V | 6600V | 24MVA | 2100A | 7800*1300*2200 | |||||||||
HD8000-AA30 | 10kV | 10kV | 30MVA | 1750A | 10600*1300*2200 | |||||||||
HD8000-6640 | 6600V | 6600V | 40MVA | 3500A | 15600*1300*2200 | |||||||||
HD8000-AA60 | 10kV | 10kV | 60MVA | 3500A | 21200*1600*2200 |
Functions of Variable Frequency Drives (VFD)
Variable Frequency Drives (VFDs) are electronic devices used to control the speed and torque of electric motors. They are widely utilized in industrial and commercial applications. Here are the main functions of VFDs:
1. Speed Control
- Adjustable Motor Speed: VFDs allow for precise control of motor speed according to operational requirements, which is crucial for applications like fans, pumps, and conveyors that need variable speeds.
2. Energy Savings
- Reduced Energy Consumption: By adjusting the motor speed, VFDs can significantly lower energy usage. In many applications, motors typically run at lower loads, and using a VFD can save substantial energy.
- Optimized Operating Efficiency: VFDs help equipment run at its optimal efficiency point, reducing unnecessary energy waste.
3. Soft Starting and Stopping
- Smooth Start: VFDs enable soft starting of motors, minimizing electrical surges and mechanical stress, thus enhancing the lifespan of both the motor and connected equipment.
- Controlled Stopping: They provide controlled deceleration, avoiding abrupt stops that can cause mechanical shock.
4. Torque Control
- Precise Torque Management: VFDs allow for maintaining constant torque at different speeds, which is essential for applications requiring precise torque control, such as cranes and material handling systems.
5. Process Control Improvement
- Flow and Pressure Regulation: In pump and fan applications, VFDs can adjust flow and pressure based on real-time demand, enhancing the stability and flexibility of production processes.
- Support for Automation: VFDs can be integrated with sensors and control systems to support more complex automation, improving overall production efficiency.
6. Noise and Vibration Reduction
- Lower Operating Noise: By enabling smooth speed adjustments, VFDs can reduce operational noise levels, creating a better working environment.
- Minimized Vibration: Stable speed operation helps to reduce mechanical vibrations, extending the lifespan of equipment.
7. Protection Features
- Overload and Short-Circuit Protection: Modern VFDs come equipped with various protection features, including overload, short-circuit, and overheating protection, ensuring safe operation of motors and drive systems.
- Fault Monitoring: VFDs can monitor system conditions in real time, quickly detecting and alerting users to faults, which minimizes downtime.
Conclusion
Variable Frequency Drives play a crucial role in modern industrial and commercial applications. By providing precise control of speed and torque, along with energy savings and protective features, VFDs help improve efficiency, reduce energy consumption, and extend the lifespan of equipment. As technology advances, the range of applications and functionalities of VFDs continues to expand.