Xilinx® Zynq® UltraScale+ MPSoC Module

Overview

The Mercury+ XU6 system-on-chip (SoC) module combines Xilinx’s Zynq UltraScale+™ MPSoC-series device with fast DDR4 ECC SDRAM, eMMC flash, quad SPI flash, Gigabit Ethernet PHY, dual USB 3.0 and thus forms a complete and powerful embedded processing system.

Highlights

  • Built around Xilinx’s Zynq Ultrascale+™ MPSoC
  • DDR4 SDRAM with Error Correction Code (ECC)
  • Up to 19.2 GByte/sec memory bandwidth
  • Offers PCIe® Gen3 x4, PCIe Gen2 x4, 2x USB 3.0 and Gigabit Ethernet interfaces
  • Available in industrial temperature range
  • Three 168-pin Hirose FX10 connectors with up to 294 user I/Os
  • Linux BSP and tool chain available
  • Powerful and compact FPGA board

Benefits

  • A complete and powerful embedded processing system in a compact, space-saving form factor
  • Large, high-bandwidth memory, with up to 8 GByte of DDR4 ECC SDRAM
  • High-bandwidth data transfer; PCIe® Gen3 x4, PCIe Gen2 x4 interfaces, and USB 3.0
  • Lowest power consumption due to the high-efficiency DC/DC converters
  • Support for Linux embedded operating system

Features

  • Xilinx® Zynq Ultrascale+™ MPSoC
    • ARM® dual-/quad-core Cortex™-A53
      (64 bit, up to 1333 MHz)
    • ARM dual-core Cortex™-R5
      (32 bit, up to 533 MHz)
    • Mali-400MP2 GPU (only for EG/EV variants)
    • H.264 / H.265 Video Codec (only for EV variants)
    • 16nm FinFET+ FPGA fabric
  • Up to 8 GB DDR4 ECC SDRAM (PS side)
  • 16 GB eMMC flash
  • 64 MB QSPI flash
  • Up to 8 × 6/12.5 Gbps MGT
  • PCIe Gen2 ×4
  • PCIe® Gen3 ×4 (only devices larger than ZU3)
  • Gigabit Ethernet
  • 2× USB 2.0/3.0 (host & host/device) or alternatively 1× USB 2.0 OTG
  • Up to 256,000 system logic cells
  • Up to 294 user I/Os
    • ZU2CG/ZU2EG/ZU3EG:
      • 14 ARM peripherals
      • 240 FPGA I/Os
      • 20 MGT signals (clock and data)
    • ZU4CG/ZU4EV/ZU5EV:
      • 14 ARM peripherals
      • 240 FPGA I/Os
      • 40 MGT signals (clock and data)
  • 5–15 V supply
  • 65 × 54 mm

Module Architecture

Xilinx® Zynq® UltraScale+ MPSoC Module

Click image to enlarge

Not all features are available simultaneously – please check the documentation for any applicable constraints.
All specifications are subject to change without notice. Please verify component specifications with vendor’s datasheets.
Enclustra maintains an errata and revision history document for each product. Please also check the errata of the FPGA device and other components.

Product Selection Matrix

Product Code

MPSoC

DDR4 ECC SDRAM (PS)

EMMC

Temp. Range

Status

ME-XU6-2CG-1E-D10H

XCZU2CG-1SFVC784E

1GB (no ECC)

4GB

0 to +85C

ME-XU6-2EG-1E-D13

XCZU2EG-1SFVC784I

8GB (no ECC)

16GB

0 to +85C

ME-XU6-3EG-2I-D11

XCZU3EG-2SFVC784I

2GB (no ECC)

16GB

-40 to +85C

ME-XU6-4CG-1E-D12

XCZU4CG-1SFVC784E

4GB (no ECC)

16GB

0 to +85C

ME-XU6-4EV-1I-D12

XCZU4EV-1SFVC784I

4GB (no ECC)

16GB

-40 to +85C

ME-XU6-5EV-2I-D12E

XCZU5EV-2SFVC784I

4GB

16GB

-40 to +85C

Key: Mass Production Sampling Contact us

Minimum order quantities apply for custom module configurations. Please contact us.

Base Boards

Select one of these base boards to get started with development straight out of the box.

Base board

Description

Mercury+ PE1

A feature packed board with 3 different variants compatible with all Mercury and Mercury+ modules.

Mercury+ ST1

A flexible board optimised for video applications and the perfect fit for our Mercury and Mercury+ modules.

Operating System Support

OS

Details

EBE BSP

Petalinux BSP

Linux

BSP support for:
DDR4 SDRAM
eMMC flash
Quad SPI flash
USB host
Gigabit Ethernet
U-boot bootloader
Comprehensive user documentation:
EBE user documentation
Enclustra Build Environment Application Note
PetaLinux Documentation

Contact us

Available Now

Target Applications

  • Embedded Computing
  • Data Acquisition
  • High-Speed Communications
  • Drive/Motion Control
  • Digital Signal Processing
  • Image Processing

Information on the product may change, please check the manufacturers website and page for the most up to date information, see the link at the top right of this page.