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The TH336H75NZ-A-2 power module is an AC/DC power supply specifically designed for data center HVDC systems. It features a nominal voltage of 336 V, a rated power of 30 kW, and a peak efficiency exceeding 98%. The module employs a double-sided automated potting process, ensuring high reliability, supports hot-swapping under load, and incorporates advanced functions such as independent current sharing and cold‑start capability down to –40 °C. It complies with the requirements of standards including YD/T 2378, YD/T 3088, YD/T 3089, and GB/T 38833.
The TH240H200NZ-A power module is an AC/DC power supply specifically designed for data center HVDC systems. It features a nominal input voltage of 240 V, a rated power of 60 kW, and a peak efficiency exceeding 98%. With its high power density, it significantly reduces the footprint of power equipment. The module employs a double-sided automated potting process, ensuring high reliability, and supports hot-swapping under load. It also incorporates advanced features such as independent current sharing and cold‑start capability at –40 °C, meeting the requirements of standards including YD/T 2378, YD/T 3088, YD/T 3089, and GB/T 38833.
The TH240H133LZ-A power module is a liquid‑cooled AC/DC power supply specifically designed for data center liquid‑cooled HVDC systems. It features a nominal voltage of 240 V, a rated power of 40 kW, and a peak efficiency exceeding 98%. The module meets an IP65 protection rating and uses an ethylene glycol‑based coolant, offering a wide operating temperature range. Compared with conventional designs, it delivers superior thermal performance, effectively reducing the data center’s PUE and improving rack‑space utilization.
The TH240H100NZ-A-2 power module is an AC/DC power supply specifically designed for data center HVDC systems. It features a nominal input voltage of 240 V, a rated power of 30 kW, and a peak efficiency exceeding 98%. The module employs a double-sided automated potting process, ensuring high reliability, supports hot-swapping under load, and incorporates advanced features such as independent current sharing and cold‑start capability down to –40 °C. It complies with the requirements of standards including YD/T 2378, YD/T 3088, YD/T 3089, and GB/T 38833.