ON Semiconductor FSFR-XS series PMIC - AC DC Converters, Offline Switchers

Introduction, stock information and FAQs of FSFR-XS series AC to DC Converter ICs

In this post, you will learn features, applications, PDF datasheets, substitute products and the latest stock and pricing information of ON Semiconductor FSFR-XS series AC to DC Converter ICs.

Applications

  • Industrial transport (non-car & non-light truck)
  • Lighting
  • Medical
Associated Products

Part NumberDescriptionStockRFQ
FSFR1600XSIC FPS PWR SWITCH 160W 9-SIP33BUY
FSFR1800LIC FPS POWER SWITCH 9-SIP2549BUY
FSFR1700HSLFAIRCHILD SEMICONDUCTOR FSFR1700HSL Power Load Switch for Half-Bridge Resonant Converters, 1 Output, 25V, SIP-913740RFQ
FSFR1800HSPower Switch Hi Side/Lo Side 7A 9-Pin SIP Rail17RFQ
FSFR1700XSLFAIRCHILD SEMICONDUCTOR FSFR1700XSLPower Load Switch for Half-Bridge Resonant Converters, 1 Output, SIP-971RFQ
FSFR1700IC SWIT PROG OVP OCP 9SIP3557RFQ
FSFR1800XSLPower Switch Hi Side/Lo Side 7A 9-Pin SIP Rail25RFQ
FSFR2100UIC SWIT PROG OVP OCP 9SIP0RFQ
FSFR1800XSPower Switch Hi Side/Lo Side 7A 9-Pin SIP Rail15BUY
FSFR1700USLIC FPS POWER SWITCH 9-SIP21BUY
FSFR1600IC FPS POWER SWITCH 9-SIP0RFQ
FSFR1800USIC FPS POWER SWITCH 9-SIP14596RFQ
FSFR1900IC SWIT PROG OVP OCP 9SIP10350RFQ
FSFR1800HSLPower Switch Hi Side/Lo Side 7A 9-Pin SIP Rail16320RFQ
FSFR1800IC SWIT PROG OVP OCP 9SIP37240RFQ
FSFR2100USIC FPS POWER SWITCH 9-SIP550RFQ
FSFR1700USIC FPS POWER SWITCH 9-SIP132362RFQ
FSFR1700HSSWITCH, MOSFET, GATE DRIVR, 200W, 9SIP4359BUY
FSFR2000IC SWIT PROG OVP OCP 9SIP0RFQ
FSFR1700XSFAIRCHILD SEMICONDUCTOR FSFR1700XSPower Load Switch for Half-Bridge Resonant Converters, 1 Output, 25V, SIP-92375RFQ
Technical Documents

Description


The ON Semiconductor FSFR-XS series PMIC - AC DC Converters, Offline Switchers are a family of highly integrated, low-power, high-efficiency, offline switcher ICs designed for a wide range of AC/DC power conversion applications. The FSFR-XS series features a wide input voltage range of 4.5V to 100V, and a wide output voltage range of 0.8V to 100V. It also offers a wide range of features such as over-voltage protection, over-current protection, over-temperature protection, and soft-start. The FSFR-XS series is ideal for applications such as LED lighting, consumer electronics, and industrial equipment.



Features


•High efficiency up to 95%

•Wide input voltage range from 4.5V to 40V

•Integrated high voltage start-up regulator

•Integrated low voltage start-up regulator

•Integrated soft start

•Integrated over-voltage protection

•Integrated over-current protection

•Integrated thermal shutdown

•Integrated frequency jittering

•Integrated frequency synchronization


Applications


•AC/DC adapters

•Battery chargers

•Power supplies

•LED lighting

•Industrial automation

•Consumer electronics

•Telecommunications

•Medical equipment

•Automotive electronics


Frequently Asked Questions

What are the Alternative Products of ON Semiconductor FSFR-XS series PMIC - AC DC Converters, Offline Switchers?

1. Texas Instruments TPSM846C23 PMIC - AC DC Converters, Offline Switchers  2. STMicroelectronics STNRG010 PMIC - AC DC Converters, Offline Switchers  3. NXP Semiconductors MC33269 PMIC - AC DC Converters, Offline Switchers  4. Microchip Technology MCP19111 PMIC - AC DC Converters, Offline Switchers  5. Analog Devices ADP5090 PMIC - AC DC Converters, Offline Switchers

What are the differences between the types of ON Semiconductor FSFR-XS series PMIC - AC DC Converters, Offline Switchers?

The main differences between the types of ON Semiconductor FSFR-XS series PMIC - AC DC Converters, Offline Switchers are as follows:  AC DC Converters:  • AC DC converters are designed to convert AC power to DC power. • They are typically used in applications where the input voltage is not constant, such as in solar or wind power systems. • They are typically more efficient than offline switchers, but require more complex circuitry.  Offline Switchers:  • Offline switchers are designed to convert DC power to AC power. • They are typically used in applications where the input voltage is constant, such as in mains-powered systems. • They are typically less efficient than AC DC converters, but require less complex circuitry.