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

  • KP1325LGA

    KP1325LGA

    KP1325LGA is a highly integrated constant current LED power controller, the chip adopts the primary feedback quasi-resonant mode, and the active power factor correction control technology can meet the performance requirements of high power factor, low harmonic distortion and high efficiency.
  • AS2561

    AS2561

    The AS2561 is a high-performance, quasi-resonant (QR) Boost type (Boost) constant voltage power factor correction (PFC) controller.
  • AS3899

    AS3899

    The AS3899A is a high-performance, high-precision resonant mode two-terminal controller designed for LLC half-bridge resonant circuit control applications.
  • KP2806LGA

    KP2806LGA

    The KP2806LGA is a high-performance, quasi-resonant (QR) Boost type (Boost) constant voltage power factor correction (PFC) controller.
  • KP1076X

    KP1076X

    KP1076X is a highly integrated power switch with Quasi-Resonant Buck (QR-Buck) constant current (CC) control for LED lighting applications without auxiliary winding.
  • KP1313XDP

    KP1313XDP

    KP1313XDP is a high efficiency Quasi-Resonant (QR) mode Primary Side Regulation (PSR) LED power switch with high precision CC control ideal for high power LED lighting applications.

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