China KP1054AVPA Manufacturer, Supplier, Factory

Our growth depends to the superior products ,great talents and repeatedly strengthened technology forces for KP1054AVPA,Non-isolated LED Power Chip, We have been not pleased while using the present achievements but we're trying finest to innovate to satisfy buyer's more personalized needs. No matter where you are from, we're here to wait for your type request, and welcom to visit our manufacturing unit. Choose us, you can satisfy your dependable supplier.
KP1054AVPA, Many kinds of different goods are available for you to choose, you can do one-stop shopping here. And customized orders are acceptable. Real business is to get win-win situation, if possible, we would like to provide more support for customers. Welcome all nice buyers communicate details of products with us!!

Hot Products

  • KP28163SGA

    KP28163SGA

    KP28163SGA is a single-stage high PFC non isolated buck constant voltage chip. The chip adopts a quasi resonant operating mode and adaptively adjusts the output voltage, which not only meets the voltage requirements of the later stage linear constant current, but also improves system efficiency.
  • KP2806LGA

    KP2806LGA

    The KP2806LGA is a high-performance, quasi-resonant (QR) Boost type (Boost) constant voltage power factor correction (PFC) controller.
  • AS6911SGA

    AS6911SGA

    AS6911SGA is a highly integrated step-down constant current LED driver for LED intelligent dimming applications.
  • KP1070QWPA

    KP1070QWPA

    KP1070QWPA is a highly integrated power switch with Quasi-Resonant Buck (QR-Buck) constant current (CC) control for LED lighting applications without auxiliary winding.
  • KP1079XWPA

    KP1079XWPA

    KP1079XWPA is a highly integrated power switch with Quasi-Resonant Buck (QR-Buck) constant current (CC) control for LED lighting applications without auxiliary winding.
  • KP10760WPA

    KP10760WPA

    KP10760WPA combines a 500V power MOSFET, 600V FRD, 800V Rectifier Bridge and high voltage startup/IC supply circuit in one chip which reduced system design cost.

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