Reference Designs

Xilinx® Virtex® and Kintex Ultrascale+™ FPGA Reference Designs

Reference Designs for Xilinx® FPGAs

OmniOn Power is an approved power partner for Xilinx® FPGAs. We work closely with Xilinx® to develop proven power solutions for Xilinx® FPGA applications. OmniOn Power power modules can be used across all Xilinx® FPGA and SoC product families and for the newest Xilinx® 16nm Ultrascale+™ FPGAs, helpful reference designs are provided on this site.

Our comprehensive family of voltage regulators/power modules (POLs) meets the stringent FPGA voltage requirements for power rails from 2A to over 300A with high efficiency and excellent thermal derating. Our compact and fully integrated DLynx* and (opens in a new window)DLynx II* converters deliver tight voltage regulation, fast transient response, accurate PMBus telemetry and programmability, robust protection features and power sequencing required for advanced FPGA power designs.

Agency proven reliability (IPC-9592) and use of digital design tools like (opens in a new window)Power Module Wizard and (opens in a new window)Digital Power Insight help make powering Xilinx® FPGAs with DLynx and DLynx II power modules easier for power designers.

Learn More About Our OmniOn Power Integrated Power Solutions for Xilinx® FPGA's:


Virtex Ultrascale+™ / OmniOn Power PoL Module Selection Chart
Kintex Ultrascale+™ / OmniOn Power PoL Module Selection Chart

Xilinx Virtex Ultrascale+™

OmniOn Power offers cost-effective, dense, high-performance voltage regulators/POL (Point of Load) modules to meet the power, voltage and transient requirements of Virtex Rails. These modules have been designed and tested for both high-efficiency operation and to meet thermal performance requirements. A wide portfolio of modules helps power designers achieve an optimal match between load, module capacity and the desired feature set.

In the following selection chart, higher current rails have been mapped to digital modules in the OmniOn Power portfolio. All modules used in the reference designs use a negative logic architecture for implementing analog ON/OFF control. Positive Logic modules are also available. Contact your OmniOn Power representative for options other than those shown.

powertree graphics

Virtex Ultrascale+™ / OmniOn Power PoL Module Selection Chart

VCCINT1 VCCBRAM/IO1 VCCAUX/
AUX_IO/ADC
VMGTAVCC VMGTAVTT VMGTVCCAUX2 VCC_HBM/
IO_HBM
VCCAUX_HBM
XCVU3P
Design Files (opens in a new window)
UJT035
Simulation Link (opens in a new window)
PDT003
Simulation Link (opens in a new window)
PDT003
Simulation Link (opens in a new window)
PDT004
Simulation Link (opens in a new window)
PDT007
Simulation Link (opens in a new window)
APXS002
Simulation Link (opens in a new window)

(opens in a new window)

(opens in a new window)
XCVU5P
Design Files (opens in a new window)

Simulation Coming Soon (opens in a new window)
PDT003
Simulation Link (opens in a new window)
PDT003
Simulation Link (opens in a new window)
PDT012
Simulation Link (opens in a new window)
PDT014
Simulation Link (opens in a new window)
APXS002
Simulation Link (opens in a new window)

(opens in a new window)

(opens in a new window)
XCVU7P
Design Files (opens in a new window)

Simulation Coming Soon (opens in a new window)
PDT003
Simulation Link (opens in a new window)
PDT003
Simulation Link (opens in a new window)
PDT012
Simulation Link (opens in a new window)
PJT014
Simulation Link (opens in a new window)
APXS002
Simulation Link (opens in a new window)

(opens in a new window)

(opens in a new window)
XCVU9P
Design Files (opens in a new window)

Simulation Coming Soon (opens in a new window)
PDT003
Simulation Link (opens in a new window)
PDT003
Simulation Link (opens in a new window)
PDT012
Simulation Link (opens in a new window)
PJT014
Simulation Link (opens in a new window)
APXS002
Simulation Link (opens in a new window)

(opens in a new window)

(opens in a new window)
XCVU11P
Design Files (opens in a new window)

Simulation Coming Soon (opens in a new window)
PDT003
Simulation Link (opens in a new window)
PDT003
Simulation Link (opens in a new window)
PDT012
Simulation Link (opens in a new window)
PJT014
Simulation Link (opens in a new window)
APXS002
Simulation Link (opens in a new window)

(opens in a new window)

(opens in a new window)
XCVU13P
Design Files (opens in a new window)

Simulation Coming Soon (opens in a new window)
PDT003
Simulation Link (opens in a new window)
PDT003
Simulation Link (opens in a new window)
PDT012
Simulation Link (opens in a new window)
PJT014
Simulation Link (opens in a new window)
APXS002
Simulation Link (opens in a new window)
PDT012
Simulation Link (opens in a new window)

(opens in a new window)
XCVU31P
Design Files (opens in a new window)
UJT035
Simulation Link (opens in a new window)
PJT020
Simulation Link (opens in a new window)
PDT003
Simulation Link (opens in a new window)
PJT004
Simulation Link (opens in a new window)
PJT007
Simulation Link (opens in a new window)
APXS002
Simulation Link (opens in a new window)
PJT020
Simulation Link (opens in a new window)
PDT003
Simulation Link (opens in a new window)
XCVU33P
Design Files (opens in a new window)
UJT035
Simulation Link (opens in a new window)
UJT035
Simulation Link (opens in a new window)
PDT003
Simulation Link (opens in a new window)
PJT004
Simulation Link (opens in a new window)
PJT007
Simulation Link (opens in a new window)
APXS002
Simulation Link (opens in a new window)
PJT020
Simulation Link (opens in a new window)
PDT003
Simulation Link (opens in a new window)
XCVU35P
Design Files (opens in a new window)

Simulation Coming Soon (opens in a new window)
UJT035
Simulation Link (opens in a new window)
PDT003
Simulation Link (opens in a new window)
PJT007
Simulation Link (opens in a new window)
PDT012
Simulation Link (opens in a new window)
APXS002
Simulation Link (opens in a new window)
PJT020
Simulation Link (opens in a new window)
PDT003
Simulation Link (opens in a new window)
XCVU37P
Design Files (opens in a new window)

Simulation Coming Soon (opens in a new window)
UJT035
Simulation Link (opens in a new window)
PJT004
Simulation Link (opens in a new window)
PDT012
Simulation Link (opens in a new window)
PJT020
Simulation Link (opens in a new window)
APXS002
Simulation Link (opens in a new window)
PJT020
Simulation Link (opens in a new window)
PDT003
Simulation Link (opens in a new window)
Download Test Dataopen in a new tab

Xilinx Kintex Ultrascale+™

OmniOn Power offers cost effective, dense, high-performance voltage regulator/POL (Point of Load) modules to meet the power, voltage and transient requirements of Kintex Rails. These modules have been designed and tested for both high-efficiency operation and to meet thermal performance requirements. A wide portfolio of modules helps power designers achieve an optimal match between load, module capacity and desired feature set.

In the following selection chart, higher current rails have been mapped to digital modules in the OmniOn Power portfolio. All modules used in the reference designs use a negative logic architecture for implementing analog On/Off control. Positive Logic modules are also available. Contact your OmniOn Power representative for options other than those shown.

powertree graphics kintex

Kintex Ultrascale+™ / OmniOn Power PoL Module Selection Chart

VCCINT1 VCCBRAM/IO1 VCCAUX/AUX_IO/
ADC
VMGTAVCC VMGTAVTT VMGTVCCAUX2
XCKU3P
Design Files (opens in a new window)
PJT020
Simulation Link (opens in a new window)
PDT003
Simulation Link (opens in a new window)
PDT003
Simulation Link (opens in a new window)
PDT003
Simulation Link (opens in a new window)
PJT004
Simulation Link (opens in a new window)
APXS002
Simulation Link (opens in a new window)
XCKU5P
Design Files (opens in a new window)
PJT020
Simulation Link (opens in a new window)
PDT003
Simulation Link (opens in a new window)
PDT003
Simulation Link (opens in a new window)
PDT003
Simulation Link (opens in a new window)
PJT004
Simulation Link (opens in a new window)
APXS002
Simulation Link (opens in a new window)
XCKU9P
Design Files (opens in a new window)
UJT035
Simulation Link (opens in a new window)
PDT003
Simulation Link (opens in a new window)
PDT003
Simulation Link (opens in a new window)
PDT003
Simulation Link (opens in a new window)
PDT003
Simulation Link (opens in a new window)
APXS002
Simulation Link (opens in a new window)
XCKU11P
Design Files (opens in a new window)
UJT035
Simulation Link (opens in a new window)
PDT003
Simulation Link (opens in a new window)
PDT003
Simulation Link (opens in a new window)
PDT003
Simulation Link (opens in a new window)
PJT004
Simulation Link (opens in a new window)
APXS002
Simulation Link (opens in a new window)
XCKU13P
Design Files (opens in a new window)
UJT035
Simulation Link (opens in a new window)
PDT003
Simulation Link (opens in a new window)
PDT003
Simulation Link (opens in a new window)
PDT003
Simulation Link (opens in a new window)
PDT003
Simulation Link (opens in a new window)
APXS002
Simulation Link (opens in a new window)
XCKU15P
Design Files (opens in a new window)
MDT040
Simulation Link (opens in a new window)
PDT003
Simulation Link (opens in a new window)
PDT003
Simulation Link (opens in a new window)
PDT003
Simulation Link (opens in a new window)
PJT007
Simulation Link (opens in a new window)
APXS002
Simulation Link (opens in a new window)
Download Test Dataopen in a new tab

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