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high voltage transformer
Established in 1998, China Dianshen Electric Co., Ltd. is a professional high voltage transformer manufacturer and high voltage transformers design of electric and electronic products. Together with the European 'CE', 'CCC', GS/EMC/LICE/UL/CSA, and 'CB' (IEC) certification that we have received for various series. Currently, our custom high voltage transformer product series are being exported worldwide. Our pursuit of first-rate quality, competitive and cheap high voltage transformers prices and comprehensive after-sales services offers both potential and long-standing clients confidence in our company.
high voltage transformers show
high voltage transformer
Output volt: 0 – 10,000V. Output current: 0 – 200Ma. Nice appearance. Used in testing apparatus of insulation. Cold Cathode lamps can be powered by either "high" or "low" voltage transformers, depending on the job requirements. Neon power supply. High voltage transformers can run a greater total length of Cold Cathode lamps, upto 20 meters per transformer. They are more bulky than low voltage versions and are therfore situated remotely. A high voltage transformer can be situated upto 20 meters from the lamps, subject to the resistance of the cable. Both low and high voltage transformers are dimmable and fully compatible with most lighting control systems. All transformers come with built-in Open Circuit and Earth Leakage protection. Siet Transformer (High Voltage) - 10000v - 50mA - 230V - 50HZ. Dimmable with ALL types of domestic and hard-fired dimmer. Self resetting, short circuit and overload protection. Terminal covers and cable clamps. Can be used internally or externally due to the waterproof casing.
high voltage transformers
These high-voltage transformers were commonly used in amateur spark stations. The primary is keyed via the AC line and the secondary to the closed circuit with a charging condenser and a rotary spark gap. For a 0.5 kW transformer, the secondary voltage is typically 12 kV. The sliding section moves a portion of the core in and out for adjusting the curren capability and resulting power output. Linear voltage distribution across transformer secondary coils. Thermal consequences of short circuit load during 'Sparking' & 'Arcing' are factored into design. Sturdy mechanical design of Transformer Windings to withstand Electro Mechanical Forces generated during Spark operation. Cooling path designed to ensure efficient heat transfer to avoid hot spot temperatures. Rectifier bridge with avalanche diodes to withstand high surge voltages & long term Short Circuit Loads Special soldering techniques used for rapid heat transfer in rectifier components.
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