3 Phase To Single Phase Converter
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3 Phase To Single Phase Converter

Model: VFC
Rated Power: Client to specify
Input Voltage: Client to specify
Input Frequency: 50/60Hz
Output Voltage: Client to specify
Output Frequency: 50/60Hz
MOQ: 1 Set/Piece
OEM & ODM Service: Available
Brand: Noyark
Packaging: Plywood Case
Payment Methods: T/T, L/C, Western Union, Credit Card
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Product Introduction

To convert 3-phase to single-phase power, you can use a neutral wire, isolation transformer or phase converter.


It is relatively easy to use single-phase equipment in a 3-phase power supply. If your mains supply is wye (star) configuration with a neutral wire, then you can just use this neutral wire with one wire from any of the 3 phases to create a single phase, but the voltage you get is low level accuracy, the other concern is that you should try to keep the overall usage balanced among the phases.


Although isolation transformer can convert three-phase power to single-phase, it cannot balance single phase loads across a 3-phase supply system, one phase current will be twice higher than other 2 phases.


And a phase converter is a solid state device that can generate three phase electrical power from a single phase source or vice versa. Noyark static phase converters using PWM IGBT Design, the built-in rectifier and inverter work together to achieve AC-DC-AC double conversion, so they can not only convert the 1-phase to 3-phase power, but also can convert three-phase to single-phase power, meanwhile,
it can achieve a balanced current in all input three phases.  

 

Specifications

Technology Solid-State PWM IGBT Design (Rectifier: SCR, Inverter: IGBT)
Rated Power Client to specify Display Touchable 7'' LCD Screen
Input Voltage Client to specify Input Frequency 50/60Hz
Phase Number 3 Output Frequency 50/60Hz
Output Voltage Client to specify Output Waveform Sine Wave
Phase Number 1 Output THD ≤2% (Linear Load)
Protections Circuit Breaker, Fuse Blown, IGBT Fault, Over / Under Voltage, Over Current, Over Load, Overheat, Short Circuit
Overload 100% Load: Normal Operation 120% Load: 10s 150% Load: 1s 200% Load: Cut Off Output Immediately
Response Time 2ms
Altitude
≤1000m
Voltage Accuracy ±1%
Relative Humidity
≤95% (non-condensing)
Frequency Accuracy ±0.01%
Ambient Temperature
-15℃ to +45℃
Cooling Forced Air Protection Degree IP20 (IP44 and above optional)
Efficiency ≥92% Installation Indoor (outdoor optional), floor mounted
Duty Cycle
Continuous
Standard
IEC 61000-6-2, IEC 61000-6-4, IEC 62477-1

*Specifications subject to change without prior notice. We offer customization service, you can send us your detailed requirements. 

 

Features         

1

Double Conversion: AC-DC-AC true double conversion technology.

2

PWM / IGBT Design: Pulse-width modulation, 100% solid state circuit, static without moving parts.

3

Galvanic Isolation: Output with built-in isolation transformer to provide galvanic isolation.

4

Full Protection: Input & Output Circuit Breaker, Under / Over Voltage, Overload, Overheat, Short Circuit, etc.

5

Pure Sine Wave: High-frequency IGBT technology and isolation transformer guarantee a perfect sine wave output. 

6

Multiple Functions: Not only can convert and stabilize voltage & frequency, but also can change the phase number.

7

7'' Touch Screen: High degree of user-friendliness, display voltage, current, power, frequency, temperature, etc.

Gallery            

 

*All images are representative only. Detailed information on size, weight and other technical details should be confirmed with us. 

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Buying Guides

 

Where the load type is inductive in nature, such as motors (fans, pumps, etc), solenoids, and relays, it is essential that high inrush current and short-time overload factors are fully considered

 

With motors (without a soft start facility) typically drawing on start-up current 5 to 7 times the stated rating of the motor.

 

A digital phase converter is NOT a rotary phase converter.

 

Calculate the kVA Rating. 3-phase kVA calculation: voltage x amperage x 1.732 / 1,000; 1-phase kVA calculation: voltage x amperage / 1,000.

 

Determine the Input (primary) and Output (secondary) Voltage. Input voltage is the voltage of the source electricity that needs to be changed, output voltage is the voltage being supplied by the solid state phase converter.

 

Choose the Right Phase Number. 1-phase power is found in homes and small buildings, while 3-phase power is found in larger commercial and industrial settings.

 

Determine the Input (primary) and Output (secondary) Frequency. Input frequency is the frequency of the source electricity that needs to be changed, output frequency is the frequency being supplied by the phase converter.

 

Identify the Load Type. Inductive or resistive, direct start or soft start, what is the maximum starting current, etc.

 

Choose Suitable Protection Degree. IP20, IP44, IP54, Containerized.

 

Identify Installation Conditions. It is necessary to know: indoor or outdoor installation; installation site altitude and climatic characteristics; ambient temperature.

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