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Offering unique value in the Advanced Driver Assistance market

Automotive grade Zynq-7000 SoCs Product Advantages

Automotive grade (XA) Zynq™-7000 SoCs are ideally suited to the high computation requirements of advanced driver assistance systems (ADAS). The combined programmability of hardware and software allows development teams to integrate a complete ADAS imaging flow, from sensing through environmental characterization to feature implementation into a single device. Also, functions can be moved between hardware and software to eliminate data flow bottlenecks, maximize performance and minimize resources. The XA Zynq-7000 SoC devices with their architecturally inherent flexibility are providing a cost-effective solution for building highly scalable platforms allowing system designers to dramatically reduce development times.

Value Features
Programmable System Integration
  • Replace ASIC/ASSP/DSP in existing systems
  • Industry standard ARM dual-core Cortex-A9 MPCore
  • Implement additional hardware accelerators in the programmable logic (PL)
Increased System Performance
  • Eliminate multi-chip chip-to-chip bandwidth bottlenecks
  • State-of-the-art 28nm process performance / size
  • Enable optimal hardware / software partitioning
BOM Cost Reduction
  • Hardware / software processing solution in one device
  • Eliminate the need for board level high-speed interfaces
  • Reduce components, power supplies and simplify PCB design
Total Power Reduction
  • Advanced low power 28nm logic 
  • Reduce overall system power through parallel processing at lower clock speeds and higher integration
Accelerated Design Productivity
  • Flexible and scalable platform, comprehensive ecosystem of tools, OS and IP
  • Available partner ADAS development kits (Xylon logiADAK, logiSTK and logiRECORDER) shorten development schedules
  • Xilinx SDSoC tools increase productivity of engineering resources

Processing System (PS)

Features All Devices
Processor Core Dual ARM Cortex-A9 MPCore with CoreSight technology
Processor Extensions NEON & Single/Double Precision Floating Point for each processor
Maximum Frequency/Processor 667 MHz (-1)
L1 Cache

32 KB Instruction, 32 KB Data per processor

L2 Cache 512 KB
On-Chip Memory 256 KB
External Memory Support DDR3L, DDR3, DDR2, LPDDR2
External Static Memory Support 2x Quad-SPI, NAND, NOR
DMA Channels 8 (4 dedicated to Programmable Logic)
Peripherals 2x UART, 2x CAN 2.0B, 2x I2C, 2x SPI, 4x 32b GPIO
Peripherals w/ built-in DMA 2x USB 2.0 (OTG), 2x Tri-mode Gigabit Ethernet, 2x SD/SDIO
Security AES and SHA 256b for device security

Programmable Logic

  XA7Z010 XA7Z020 XA7Z030
Xilinx 7 Series Programmable Logic Equivalent Artix®-7 FPGA Artix®-7 FPGA Kintex®-7 FPGA
Programmable Logic Cells 28K Logic Cells (~430K) 85K Logic Cells (~1.3M) 125K Logic Cells (~1.9M)
Look-Up Tables (LUTs) 17,600 53,200 78,600
Flip-Flops 35,200 106,400 157,200
Extensible BlockRAM (# 36 Kb Blocks) 240 KB (60) 560 KB (140) 1,060 KB (265)
Programmable DSP Slices (18x25 MACCs) 80 220 400
PCI Express (Root Complex and Endpoint) - - Gen2 x4
Maximums I/O Pins (PL only) 100 200 163 (+ 4 GTX)
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Note: Some restrictions may apply. Refer to UG585, Zynq-7000 SoC Technical Reference Manual and DS188, XA Zynq-7000 SoC Overview for details.


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For FPGA designers looking to shorten design time and ensure scalability and re-use, Xilinx provides a comprehensive suite of solutions ranging from C-based design abstractions to IP plug-and-play to address bottlenecks in hardware development, system-level integration, and implementation.

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Xilinx UltraScale™ and UltraScale+ FPGAs are empowering hardware and application developers in many of the world’s largest and most innovative cloud computing services.
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