Engineered for BMS validation, electrochemical research, and high-dynamic energy storage testing across Israeli innovation hubs in Tel Aviv, Haifa, and Herzliya.
Israel's global position as the "Silicon Wadi" requires an unprecedented standard of test and measurement hardware reliability. From defense radar installations in the Negev desert to semiconductor fabrication facilities in Migdal HaEmek and military-grade EV powertrain testing facilities near Haifa, high voltage DC power supplies must deliver pristine power processing topology, fault tolerance, and tight spatial ripple limits.
As China’s leading manufacturer and direct exporter of high voltage DC power supplies and dynamic battery simulation platforms, our engineered solutions utilize advanced current-fed power processing topologies. Unlike conventional voltage-fed topologies reliant on massive electrolytic output capacitor banks, our current-fed architecture uses inductor energy storage on the DC bus. This design offers inherent immunity to short-circuits, continuous operation into highly dynamic loads, and low transient voltage overshoot essential for mission-critical Israeli labs.
Delivering low-ripple high voltage DC buses (up to 10,000V) for pulsed klystron, TWT amplifier, and high-frequency radar transmitter characterization with zero arcing stress.
Supporting multi-channel cell simulation (24+ channels) with high precision (0.02% V/I precision) for verifying battery management balance strategies and SOC estimation algorithms.
Integrated solar profile emulation (PPPE) allowing Israeli clean-tech developers to simulate dynamic I-V curves, partial shading, and rapid temperature sweeps under IEC grid compliance conditions.
Whether configuring a 1U rack-mount programmable bench supply or scalable megawatt cabinet systems for heavy industrial electrolysis and magnet applications, our unified firmware architecture ensures SCPI command parity across all series. Israeli software engineers can write test sequences once in LabVIEW, Python, or C++ and deploy them seamlessly across bench and automated test equipment (ATE) racks.
| Series Platform | Output Power Range | Form Factor / Cooling | Key Topology Feature | Primary Israeli Application |
|---|---|---|---|---|
| SLx / SL Series | 1.5 kW – 10 kW | 1U Rack-Mount / Air | High Power Density Current-Fed | Compact ATE Racks, Wide-Bandgap (SiC/GaN) Testing |
| XR Series | 2 kW – 10 kW | 2U Rack-Mount / Air | Extended Voltage Derating Margin | Electrochemical Labs & High-Voltage Capacitor Charging |
| TS Series | 5 kW – 100 kW | 3U to 16U / Air-Cooled | Modular Master/Slave Paralleling | EV Traction Inverter & DC Fast Charger Emulation |
| MT Series | 150 kW – 3 MW | Floor-Standing Cabinet / Air | Industrial Current-Fed Matrix | Aerospace Wind Tunnel & Plasma Torch Research |
| ML Series | 500 kW – 10 MW+ | Water-Cooled Cabinet System | Closed-Loop Liquid Heat Rejection | Continuous Heavy Duty Electrolysis & Microgrid Testing |
| ALx Electronic Load | 1.25 kW – 20 kW+ | Rack-Mount / Linear MOSFET | Zero Switching-Noise Dissipation | Fuel Cell Stack Characterization & Battery Discharge Cycling |
As a vertically integrated supplier exporting directly from China to Israel, we maintain absolute authority over the manufacturing lifecycle. Sheet metal fabrication, high-frequency planar magnetics winding, Surface Mount Technology (SMT) PCB assembly, and final high-power burn-in testing are executed within our certified facilities.
Traditional voltage-fed power supplies store significant energy in output capacitors, which can discharge destructively into a unit under test during an arcing fault. Our proprietary current-fed topology isolates the output through an inductive energy storage bus, instantly limiting fault current during high-voltage flashovers or dynamic load shorts.
For applications demanding pristine signal integrity, such as satellite transceiver testing or delicate electrochemical sensor cell validation, our linear MOSFET electronic load stage sinks power without introducing high-frequency PWM switching ripple into sensitive measurement paths.
Instead of restricting full power to a single nominal voltage/current point, our programmable DC supplies provide a broad operating envelope. A single unit can operate at maximum voltage, maximum current, or anywhere along the maximum power hyperbola, drastically reducing instrument capital expenditure for Israeli labs.
Israel's technology ecosystem is rapidly expanding into microgrid resilience, green hydrogen production via high-efficiency water electrolysis, and silicon photonics manufacturing. Key localized requirements addressed by our high voltage DC equipment include:
Addressing technical specifications, grid compliance, customs procedures, and localized service support.
Consult with our high voltage DC application engineers to configure custom output voltage, dynamic response options, and localized interface requirements for your Israeli facility.