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Suzhou Jinhe Boyuan Measurement and Control Technology Co., Ltd

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What factors should be considered when selecting a programmable AC power supply?
Date: 2025-11-23Read: 30
Programmable AC power supplyIt is a power supply equipment with high precision, wide range output, and the ability to set output parameters through software or panel programming. It is widely used in laboratory testing, industrial production, electronic product development, and other scenarios, and can simulate AC power supply environments under different grid conditions.

Programmable AC power supplyBy controlling the circuit with a microprocessor, precise adjustment of output voltage, frequency, phase, waveform and other parameters can be achieved. It can also simulate complex power grid conditions such as voltage fluctuations, harmonic distortion, and three-phase imbalance. Compared with traditional linear power sources, it has higher flexibility and intelligence.

feature:

High precision output

Voltage control accuracy can reach ±0.01%The frequency resolution is as low as0.01HzMeet the testing requirements of precision electronic equipment. Supporting the superposition of harmonics and interharmonics, it can simulate power grid distortion or power line interference, and evaluate the anti-interference ability of equipment in non ideal power grid environments.

Multi functional protection: Built in multiple protection mechanisms such as overvoltage, overcurrent, short circuit, and overtemperature to prevent damage to the tested device due to abnormal power supply.

Dynamic response and waveform generation: With fast dynamic response capability, output parameters can be adjusted within milliseconds to simulate transient changes in the power grid. Support the generation of complex waveforms, such as square waves, triangular waves, step waves, etc., to meet special testing requirements.

Intelligent control

Operate through panels, remote control software, or computer interfaces to achieve parameter settings, data recording, and automated testing integration.

Key selection points:

Output power and parameter range

Select the power capacity based on the rated power of the tested equipment and consider the surge current demand.

Confirm voltage/Does the frequency adjustment range meet the testing requirements.

Functional requirements

Select necessary functions based on testing items, such as voltage/Frequency fluctuations, pulse simulation, harmonic synthesis, etc.

Consider whether remote control, data recording, or automated testing integration functions are needed to improve testing efficiency.