XDPE1C2C4A-0000
Active and preferred
RoHS Compliant
Lead-free

XDPE1C2C4A-0000

12-phase two loop digital multiphase buck controller with multi-protocol and TLVR inductor support

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XDPE1C2C4A-0000
XDPE1C2C4A-0000


Product details

  • Configuration
    12+0 to 0+12
  • Interfaces
    PMBus, AVSBus, Intel VR14.Cloud, Intel VR14
  • Maximum Phases
    12
  • Moisture Sensitivity Level
    MSL1
  • Package
    QFN 6x6 48-pin
  • Qualification
    Industrial
  • Switching Frequency range
    250 kHz to 3000 kHz
  • Voltage Outputs range
    0.05 to 3.1
  • Voltage Outputs
    2

OPN
XDPE1C2C4A0000XTMA1
Product Status active and preferred
Infineon Package
Package Name N/A
Packing Size 4000
Packing Type TAPE & REEL
Moisture Level 1
Moisture Packing NON DRY
Lead-free Yes
Halogen Free Yes
RoHS Compliant Yes
Country of Assembly (CoA)
PH
Country of Diffusion (CoD)
SG

Product Status
Active
Infineon Package
Package Name -
Packing Size 4000
Packing Type TAPE & REEL
Moisture Level 1
Moisture Packing NON DRY
Lead Free
Halogen Free
RoHS Compliant
Country of Assembly (CoA)
PH
Country of Diffusion (CoD)
SG
XDPE1C2C4A digital dual loop 12 phase controller provides power for AI server, telecom, Intel™ VR13, VR13HC, VR14 server, workstation, and high-end desktop applications. The controller's phase configuration is flexible and any phase can be assigned to either loop with the phase firing order being fully programmable. 12+0, 11+1… 0+12 phases are supported.

Features

  • 12 phases and 2 loops
  • SVID, AVSBus, PMBus support
  • PMBus Level 2 Secure Device Spec
  • Digitally controlled phasing
  • TLVR inductor support
  • Configurable autonomous phase add/drop
  • Automatic phase detection at start-up
  • Programmable loop compensation
  • Internal non-volatile memory
  • 12 V input voltage and current sense
  • Integrated power stage current sense

Benefits

  • Higher power density, scalability
  • High flexibility
  • Meets latest security specs
  • High flexibility in phase firing order
  • Fast load transient response
  • High flexibility vs load current
  • Prevents start-up failures
  • Faster design and validation
  • Faster debugging
  • High design flexibility
  • Real-time input power measurement
  • Accurate current monitoring
Documents

Design resources

Developer community