Active and preferred

REF_XDPS2221_140W1

140 W reference board for ultra-high power density in USB-C chargers with EPR and adapters

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REF_XDPS2221_140W1
REF_XDPS2221_140W1

Product details

  • Applications
    Charger
  • Board Type
    Reference Board
  • Dimensions
    109.5mmx38.5mmx24mm
  • Family
    XDPS
  • Input Type
    AC
  • Isolated
    Yes
  • Number of Outputs
    1
  • Output Current max
    5 A
  • Output Voltage
    5 V, 9 V, 15 V, 20 V, 28 V
  • Pout max
    140 W
  • Product Name
    REF_XDPS2221_140W1
  • Qualification
    Industrial
  • Sub Application
    Charger
  • Target Application
    Consumer, Power Supplies, SMPS, Charger
  • Topology
    Hybrid flyback
OPN
REFXDPS2221140W1TOBO1
Product Status active and preferred
Infineon Package N/A
Package Name N/A
Packing Size 1
Packing Type CONTAINER
Moisture Level NA
Moisture Packing NON DRY
Lead-free No
Halogen Free No
RoHS Compliant No
Infineon stock last updated:

Product Status
Active
Infineon Package N/A
Package Name -
Packing Size 1
Packing Type CONTAINER
Moisture Level NA
Moisture Packing NON DRY
Lead Free
Halogen Free
RoHS Compliant
The REF_XDPS2221_140W1 board is for wide input range USB-PD applications, with an output voltage from 5 V to 28 V and nominal power of 140 W. It features XDP™ XDPS2221, CoolGaN™ IGLD60R190D1, OptiMOS™ BSC040N10NS5, and IRF7240 P-channel HEXFET™. EZ-PD™ CCG3PA is for PD control, fulfilling DOE VI and CoC Tier 2 efficiency requirements, with standby input power below 75 mW. For requests or more information, please contact us.

Features

  • Configurable PFC QRM operation for improved average efficiency
  • Pulse skipping for improved light-load efficiency
  • Automatic PFC disable/enable-control depending on operating conditions
  • Bus voltage level following output voltage
  • Peak current mode control for robust and fast input and load control
  • Configurable multimode operation for increased part and light load efficiency
  • ZVS operation of high-side and low-side switch

Benefits

  • Low no-load input standby power performance
  • Low external BOM cost and count
  • High efficiency across various line/load conditions
  • High power density and high switching frequency
  • Ease of configurable design and optimization with GUI tools

Applications

Documents

Design resources