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Introduction to Low Harmonic Distortion Three Phase Inverter
The Low Harmonic Distortion Three Phase Inverter is a sophisticated device crafted with precision to transform fixed-frequency alternating current (AC) into variable-frequency AC. It is tailored precisely for applications demanding a regulated and tunable output frequency, typically in the lower frequency spectrum. This inverter finds vast applicability across various industries, including industrial automation, power generation, and renewable energy systems.
The Low Harmonic Distortion Three Phase Inverter excels in regulating the speed and torque of three-phase motors. By fine-tuning the output frequency, it enables precise management of the motor's performance, optimizing its efficiency under varying operational conditions. This prolongs the motor's lifespan, reduces energy usage, and ultimately leads to cost savings and improved operational efficiency.
Equipped with advanced control algorithms and an intuitive user interface, the inverter simplifies operation and monitoring. It boasts a broad range of adjustable parameters, such as output frequency, voltage, and current, empowering users to customize the inverter's performance to align with specific application needs.
Furthermore, the Low Harmonic Distortion Three Phase Inverter is crafted with reliability and durability as paramount factors. Its sturdy construction and premium components guarantee stable performance, even in rigorous environments. Additionally, the inverter incorporates various safety measures, including over-current, over-voltage, and over-temperature protection, to prevent potential damage and ensure safe operation.
In essence, the Low Harmonic Distortion Three Phase Inverter is a highly versatile and robust device that provides precise control over three-phase motor performance. Its advanced capabilities, intuitive user interface, and robust design make it a dependable option for a diverse range of industrial applications. Whether aiming to enhance motor efficiency, cut energy costs, or boost operational flexibility, this inverter offers an exceptional solution.
Features of the Low Harmonic Distortion Three Phase Inverter
The Low Harmonic Distortion Three Phase Inverter shines bright with its distinctive and beneficial features, tailored to serve a diverse array of industrial and commercial applications. Here are some of its standout characteristics:
Refined Control Capabilities: This inverter boasts precise control over output frequency, voltage, and current, allowing for minute adjustments to three-phase motors' speed and torque. This ensures peak performance and efficiency across a wide range of operational settings.
Flexible Frequency Spectrum: Capable of operating at lower frequencies, the inverter is a perfect fit for applications requiring gradual or variable motor speed control. Moreover, its extensive frequency range offers flexibility to meet diverse operational demands.
Sturdy and Reliable Design: Constructed using superior-quality materials and components, the inverter guarantees resilience and dependability even in harsh industrial environments. Its robust build ensures consistent performance even under extreme conditions, such as high temperatures or dusty workspaces.
Enhanced Safety Measures: The inverter incorporates sophisticated protection mechanisms that guard against potential threats like over-current, over-voltage, and over-temperature. These features effectively protect the inverter and motors from harm, ensuring smooth and safe operation.
Intuitive Operation: The inverter boasts a user-centric interface that simplifies even the most complex tasks. It offers straightforward access to adjustable settings and provides clear feedback on operational status and potential issues, making monitoring and troubleshooting effortless.
Energy-Efficient Performance: By precisely regulating motor speed and torque, the inverter maximizes energy efficiency, reducing operational costs and minimizing environmental impact.
Scalable Architecture: The inverter's modular design allows for seamless expansion and customization, enabling it to adapt to evolving system requirements.
Broad Compatibility: The inverter's compatibility with a diverse range of three-phase motors makes it a versatile solution for numerous industrial and commercial applications.
In essence, the Low Harmonic Distortion Three Phase Inverter is a comprehensive solution that offers superior precision, safety, user-friendliness, and adaptability. Its robust features make it an ideal choice for those seeking precision motor control in diverse industrial and commercial settings.
Model: | 32248/96/192 | 48248/96/192 | 56248/96/192 | 64248/96/192 | 80248/96/192 | 10348/96/192 | 12348/96/192 | 16396/192 | 20396/192 | 24396/192 | |||||||||
Rated Power | 4KVA/3.2KW | 6KVA/4.8KW | 7KVA/5.6KW | 8KVA/6.4KW | 10KVA/8KW | 12.5KVA/10KW | 15KVA/12KW | 20KVA/16KW | 25KVA/20KW | 30KVA/24KW | |||||||||
Peak Power(20ms) | 9.6KVA | 14.4KVA | 16.8KVA | 19.2KVA | 24KVA | 30KVA | 36KVA | 48KVA | 60KVA | 72KVA | |||||||||
Start Motor | 3HP | 4HP | 4HP | 4HP | 5HP | 6HP | 7HP | 10HP | 10HP | 15HP | |||||||||
Battery Voltage | 48/96/192VDC | 96/192VDC | |||||||||||||||||
Built-in solar controller charging current (Optional) |
PWM:10A-60A(48V System);50A/100A(96V System);50A(192V System) MPPT:10A-100A(48V System);:50A/100A(96V System) |
PWM:50A/100A(96V System); 50A/100A(192V System) MPPT: 50A/100A(96V System) |
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Size(L*W*Hmm) | 565*300*775 | 725*365*1010 | |||||||||||||||||
Package Size(L*W*Hmm) | 625*360*895 | 785*425*1135 | |||||||||||||||||
N.W. (kg) | 65 | 73 | 75 | 80 | 112 | 122 | 134 | 160 | 176 | 189 | |||||||||
G.W. (kg)(Wooden Packing) | 78 | 86 | 88 | 93 | 136 | 146 | 158 | 184 | 200 | 213 | |||||||||
Installation Method | Tower | ||||||||||||||||||
Model: | 323192 | 403192 483384 643384 803384 963384 | 1003384 1203384 1283384 1503384 1603384 | ||||||||||||||||
Rated Power | 40KVA/32KW | 50KVA/40KW | 60KVA/48KW | 80KVA/64KW | 100KVA/80KW | 120KVA/96kW | 125KVA/100KW | 150KVA/120KW | 160KVA/128kKW | 190KVA/150KW | 200KVA/160KW | ||||||||
Peak Power(20ms) | 96KVA | 120KVA | 144KVA | 192KVA | 240KVA | 288KVA | 300KVA | 360KVA | 384KVA | 450KVA | 480KVA | ||||||||
Start Motor | 15HP | 20HP | 25HP | 30HP | 40HP | 50HP | 50HP | 60HP | 60HP | 80HP | 80HP | ||||||||
Battery Voltage | 192VDC | 384VDC | |||||||||||||||||
Built-in solar controller charging current (Optional) |
PWM:100A-200A(192V&384V System) MPPT:50A/100A(192V&384V System |
PWM: 100A-200A / MPPT: 50A/100A | |||||||||||||||||
Size(L*W*Hmm) | 720*575*1275 | 875*720*1380 | 1123*900*1605 | ||||||||||||||||
Package Size(L*W*Hmm) | 785*640*1400 | 980*825*1560 | 1185*960*1750 | ||||||||||||||||
N.W. (kg) | 240 | 260 | 290 | 308 | 512 | 542 | 552 | 612 | 642 | 705 | 755 | ||||||||
G.W. (kg)(Wooden Packing) | 273 | 293 | 323 | 341 | 552 | 582 | 592 | 652 | 692 | 755 | 805 | ||||||||
Installation Method | Tower | ||||||||||||||||||
Input | DC Input Voltage Range | 10.5-15VDC(Single battery voltage) | |||||||||||||||||
AC Input Voltage Range | 380Vac/400Vac-85%~+120%(customized 190Vac/200Vac) | ||||||||||||||||||
AC Input Frequency Range | 45Hz-55Hz(50Hz)/55Hz-65Hz(60Hz) | ||||||||||||||||||
Max AC charging current | 0~45A(Depending on the model) | ||||||||||||||||||
AC charging method | Three-stage (constant current, constant voltage, floating charge) | ||||||||||||||||||
Phase | 3/N/PE | ||||||||||||||||||
Output | Efficiency(Battery Mode) | ≥85% | |||||||||||||||||
Output Voltage(Battery Mode) | 380Vac/400Vac±2%(customized 190Vac/200Vac) | ||||||||||||||||||
Output Frequency(Battery Mode) | 50/60Hz±1% | ||||||||||||||||||
Output Wave(Battery Mode) | Pure Sine Wave | ||||||||||||||||||
Output waveform distortion | Linear load≤3% | ||||||||||||||||||
Efficiency(AC Mode) | >99% | ||||||||||||||||||
Output Voltage(AC Mode) | Conforming to AC input | ||||||||||||||||||
Output Frequency(AC Mode) | Conforming to AC input | ||||||||||||||||||
No load loss(Battery Mode) | ≤2.5% rated power(4KVA-30KVA models);≤1% rated power(40KVA-200KVA models) | ||||||||||||||||||
No load loss(AC Mode) | ≤2% rated power( charger does not work in AC mode) | ||||||||||||||||||
No load loss(Energy saving Mode) | ≤10W | ||||||||||||||||||
Phase | 3/N/PE | ||||||||||||||||||
Battery Type | VRLA Battery | Charge Voltage :13.8V; Float Voltage:13.7V(Single battery voltage) | |||||||||||||||||
Customize battery |
Charging and discharging parameters of different types of batteries can be customized according to user requirements (charging and discharging parameters of different types of batteries can be set through the operation panel) |
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Protection | Battery undervoltage alarm | 11V(Single battery voltage) | |||||||||||||||||
Battery undervoltage protection | 10.5V(Single battery voltage) | ||||||||||||||||||
Battery overvoltage alarm | 15V(Single battery voltage) | ||||||||||||||||||
Battery overvoltage protection | 17V(Single battery voltage) | ||||||||||||||||||
Battery overvoltage recovery voltage | 14.5V(Single battery voltage) | ||||||||||||||||||
Overload power protection | Automatic protection (battery mode), circuit breaker or insurance (AC mode) | ||||||||||||||||||
Inverter output short circuit protection | Automatic protection (battery mode), circuit breaker or insurance(AC mode) | ||||||||||||||||||
Temperature protection | >90℃(Shut down output) | ||||||||||||||||||
Alarm | A | Normal working condition, buzzer has no alarm sound | |||||||||||||||||
B | Buzzer sounds 4 times per second when battery failure, voltage abnormality, overload protection | ||||||||||||||||||
C | When the machine is turned on for the first time, the buzzer will prompt 5 when the machine is normal | ||||||||||||||||||
Inside Solar controller (Optional) |
Charging Mode | MPPT or PWM | |||||||||||||||||
Charging current |
PWM: 10A/20A/30A/40A/50A/60A(48V System);50A/100A/150A/200A(96V/192V/384V MPPT:10A/20A/30A/40A/50A/60A/80A/100A(48V System); 50A/100A(96V/192V/384V |
System) System) |
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PV Input Voltage Range |
PWM:60V-88V(48V System); 120V-176V(96V System); 240V-352V(192V System); 480V-704V(384V System) MPPT: 60V-120V(48V System); 120V-240V(96V System); 240V-360V(192V System); 480V-640V(384V System) |
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Max PV Input Voltage(Voc) (At the lowest temperature) |
PWM: 100V(48V System); 200V(96V System); 400V(192V System); 750V(384V System) MPPT: 150V(48V System); 300V(96V System); 450V(192V System); 800V(384V System) |
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PV Array Maximum Power |
48V System:560W(10A)/1120W(20A)/1680W(30A)/2240W(40A)/2800W(50A)/3360W(60A) 96V System:(PWM:5.6KW(50A)/11.2KW(100A))/(MPPT:5.6KW(50A)/5.6KW*2(100A)); 192V System:(PWM:11.2KW(50A)/22.4KW(100A)/16.8KW*2(150A)/22.4KW*2(200A))/(MPPT:11.2KW(50A)/11.2KW*2(100A)); 384V System:(PWM:22.4KW(50A)/44.8KW(100A)/33.6KW*2(150A)/44.8KW*2(200A))/(MPPT:22.4KW(50A)/22.4KW*2(100A)) |
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Standby loss | ≤3W | ||||||||||||||||||
Maximum conversion efficiency | >95% | ||||||||||||||||||
Working Mode | Battery First/AC First/Saving Energy Mode | ||||||||||||||||||
Transfer Time | ≤4ms | ||||||||||||||||||
Display | LCD | ||||||||||||||||||
Thermal method | Forced air cooling | ||||||||||||||||||
Communication(Optional) | RS485/APP(WIFI monitoring or GPRS monitoring) | ||||||||||||||||||
Environment | Operating temperature | -10℃~40℃ | |||||||||||||||||
Storage temperature | -15℃~60℃ | ||||||||||||||||||
Noise | ≤65dB | ||||||||||||||||||
Elevation | 2000m(More than derating) | ||||||||||||||||||
Humidity | 0%~95%(No condensation) | ||||||||||||||||||
Warranty | 1 year |
1.Specifications are subject to change without prior notice;
2. Special voltage and power requirements can be customized according to the actual situation of users.