China Analog Signal to PWM Signal Conversion Chip Manufacturer, Supplier, Factory

We support our consumers with ideal good quality merchandise and large level provider. Becoming the specialist manufacturer in this sector, we have attained wealthy practical encounter in producing and managing for Analog Signal to PWM Signal Conversion Chip,KP1402ASSGA, We hope we can have a friendly relationship with businessman from all over the world.
Analog Signal to PWM Signal Conversion Chip, Our company promises: reasonable prices, short production time and satisfactory after-sales service, we also welcome you to visit our factory at any time you want. Wish we have a pleasant and long terms business together!!!

Hot Products

  • KP28123SGA

    KP28123SGA

    KP28123SGA is a single-stage high PFC non isolated constant voltage BUCK power 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.
  • KP201LGA

    KP201LGA

    The KP201LGA is a high-performance PWM controller designed for off-line flyback power supplies.
  • KP15051SPA

    KP15051SPA

    The KP15051SPA series is a high-performance, low-cost PWM controlled power switch for off-line low-power step-down applications with simple peripheral circuits and fewer components.
  • AS6911SGA

    AS6911SGA

    AS6911SGA is a highly integrated step-down constant current LED driver for LED intelligent dimming applications.
  • NDP23A5QB

    NDP23A5QB

    The NDP23A5QB is an efficient, single-chip synchronous buck DC/DC converter with a jitter frequency and average current mode control architecture.
  • 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.

Send Inquiry

X
We use cookies to offer you a better browsing experience, analyze site traffic and personalize content. By using this site, you agree to our use of cookies. Privacy Policy
Reject Accept