The ANEVH(F)Series is a programmable DC power supply that integrates DC power and feedback load. It can function as a source, outputting power to the outside world, and as a sink, absorbing power and returning it cleanly to the grid, achieving standard bidirectional operation.
The ANEVH(F)Series of bidirectional programmable DC test power supplies include 7 voltage levels, covering a voltage range from 0V to 2250V, supporting the parallel operation of multiple units, and expandable up to 1MV in maximum power. The energy flows bidirectionally, with automatic seamless switching, high power density, fast dynamic response characteristics, built-in function generators and standard test curves, and the ability to generate multiple wave forms freely. It can be used in laboratories, automotive electronics, new energy battery-motor-electronic control, micro-grids, high-power tests, and other testing scenarios.
Integrates source and load functions in a 3U standard chassis across the entire series.
Integrates high-frequency PWM rectification and bidirectional DCDC technology, comprehensively eliminating the noise of conventional high-power bidirectional power supplies, rendering it a silent power supply.
Higher power density, smaller size, and faster speed. Energy flows bidirectionally, with automatic seamless switching in both directions.
Feedback efficiency up to 95%, with outstanding energy-saving and environmentally friendly advantages.
Voltage range: covers 7 voltage levels from OV to 2250V, the highest in the industry, with unique high-voltage series connection technology.
Has a built-in function generator that supports arbitrary waveform generation.
Has built-in DIN40839, ISO-16750-2, and ISO21848 standard automotive power grid voltage curves(optional).
Has the electronic load function, with multiple load modes such as CV, CC, CP, CR, CV+CC, CV+CR, CC+CR, and CV+CC+CP+CR.
Has the ability to simulate the output characteristics (Fill Factor) of various solar batteries.
It can test maximum power point tracking (MPPT) capability and efficiency.
It has the ability of accurate voltage and current measurement.
Sequence output can be set to test the operating voltage range of photovoltaic inverters.
It has comprehensive protection functions, including OTP, OVP, OCP, and OPP.
It has the S-terminal compensation function.
It has the solar battery I-V curve simulation function.
It has a standard RS232/RS485/CAN/LAN/USB communication interface.
It is equipped with the standard graphical upper computer operational software, and can be operated as a single unit. It has the battery simulation function, simulating the output characteristic curves of various batteries.
It can simulate I-V curves under different temperature and illumination conditions.
Microgrid and micro-inverter tests.
Automotive motor, controller and power battery tests.
Fuel battery test and fuel battery DC-DC test.
Uninterruptible power supply (UPS), on-board charger (OBC), charging station, and bidirectional DC-DC tests.
Industrial tests such as electrolysis, electroplating, and welding.
Communication power supply and LED product tests.
Tests of automotive electronics, military electronics, and aviation electronics.
High-power test and DC feedback load demand scenarios.
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