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5000W  (A1427A)
5000W (A1427A)

This rectifier module features a three-phase AC input voltage range of 187–528Vac, delivering a single-channel output of 2–50V with active power factor correction. It incorporates input overvoltage/undervoltage protection, output overcurrent protection, output overvoltage protection, output short-circuit protection, overtemperature protection, RS485 communication, and output voltage adjustment via an external 0–5V voltage source.

Technical Specifications

Environmental Conditions


Serial Number

Project

Technical Specifications

Unit

Remarks

1

Operating Temperature

-25 — +50(Typical value 25)

2

Storage temperature

-40 — +85

3

Relative humidity

≤95

%

4

Elevation

≤3000

m

5

Heat dissipation method

Conduction water cooling

-

Conductive water cooling, specifically achieved by attaching the aluminum heat sink plate at the bottom of the power supply to a platform equipped with water cooling measures. Water flow rate must be ≥15L/min, and inlet water temperature must be ≤25°C.

6

System Cooling Method

Conduction water cooling + system air cooling

-

Conductive water cooling, specifically achieved by attaching the aluminum heat sink plate at the bottom of the power supply to a platform equipped with water cooling measures. Water flow rate must be ≥15L/min, and inlet water temperature must be ≤35°C.


Electrical Characteristics


1. Input Characteristics

Serial Number

Project

Technical Requirements

Unit

Note

1.1

Input Voltage Range

187—528

Vac

Three-phase AC (without neutral wire)

1.2

Rated Input Voltage

208—480

Vac

1.3

Input voltage frequency

47—63(Typical value: 50/60)

Hz

1.4

Power Factor

≥0.98

-

Rated Input, Rated Load

1.5

Maximum Input Current

19

A

Rated load

1.6

Input surge current

<30

A

Rated input, no-load

2. Output Characteristics

2.1

Output Voltage Range

2-50(Typical value 50)

Vdc

By adjusting the external 0-5V voltage

Corresponding output voltage: 2–50 V

2.2

Output Current Range

0-100

A

2.3

Overall efficiency

≥92

%

Ambient temperature, rated 380V input/rated output

2.4

Output ripple and noise

≤500

mVp-p

The oscilloscope bandwidth should be 20 MHz, with probes connected in parallel to a 10μF capacitor and a 104Ω resistor.

2.5

Power-on/off overshoot amplitude

≤±5

%

2.6

Current distribution uniformity

≤±5

%

50%-100% load

2.7

Dynamic Characteristics

Loading

Output increases from 0 to full load within 10μs

/

The output voltage shall not experience a transient drop or overshoot exceeding 5%, and shall not cause abnormal operation or protection of the power supply.

Dump load

Output drops from full load to zero within 10μs.

/

Modulated output

Modulation frequency: 5Hz to 10kHz;

Duty cycle: 20% to 100%

Output power settings: 50%, 80%, 100%

Combine the above conditions to test each output setting scenario.

Full voltage range input, with no noticeable distortion or clipping in the output pulse waveform, and no abnormal operation or protection events occurring in the power supply.

2.8

Voltage Regulation Accuracy

≤±2

%

2.9

Source adjustment rate

≤±0.5

%

2.10

Load Regulation

≤±1

%

2.11

SW startup delay time

≤3

s

Time from SW signal transitioning from high to low level to output voltage settling (no-load start)

2.12

Power-on delay

≤8

s

Time required for voltage to build from input to output when SW signal is pulled low (no-load start)

2.13

Output rise time

≤200

ms

Output voltage increases from 10% to 90% at rated load

2.14

Shutdown delay

≤20

ms

Upon receiving a shutdown signal from the control interface SW input, the power supply shall cease operation within 20 milliseconds.

2.15

Output capacitor discharge time

≤15

s

When the input voltage is disconnected, under no-load conditions, the voltage across the output storage capacitor shall decrease to below 10V within 15 seconds.

2.16

Capacitive load

3000

uF

Full voltage and full load range

2.17

Temperature coefficient

±0.02

%/℃

Rated output voltage and current, full operating temperature range

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