XAZU3EG-1SFVA625I

XAZU3EG-1SFVA625I

Premium Xilinx XAZU3EG-1SFVA625I is an automotive-grade Zynq UltraScale+ MPSoC chip housed in an SFVA625 package. Integrating a quad-core ARM Cortex-A53 processor, a dual-core Cortex-R5 real-time engine, Mail-400 GPU, and 154K logic cells, this programmable heterogeneous platform delivers deterministic computing paths required for complex automotive ADAS and industrial telemetry routing.

Info Product

SKU: XAZU3EG-1SFVA625I 品牌:

描述

XAZU3EG-1SFVA625I Zynq UltraScale+ MPSoC

Multi-Core ARM Processing meets UltraScale+ Logic – The Professional Automotive Heterogeneous MPSoC Choice for Autonomous Control & System Integration.

// AMD Xilinx Automotive-Grade (XA) Certified Allocation
// Quad-Core ARM Cortex-A53 & 154K Logic Elements Fabric

The Heterogeneous MPSoC Processing Edge

The XAZU3EG-1SFVA625I represents a premier flagship solution for logic-intensive embedded engineering systems requiring multi-processor orchestration and custom computing fabric. Engineered by AMD Xilinx under rigid automotive quality standards, this Zynq UltraScale+ MPSoC unifies a powerful quad-core ARM Cortex-A53 application platform, a dual-core Cortex-R5 real-time coprocessor, and a Mali-400 GPU with 154K programmable logic elements. Housed in an optimized SFVA625 footprint, it delivers massive multi-threaded data transit and deterministic logic processing without external bus starvation risks.

  • Quad-core ARM Cortex-A53 up to 1.2GHz for heavy system application tasks
  • 154,350 high-efficiency Logic Cells for custom hardware routing blocks
  • Integrated hardware security, encryption engines, and multi-frequency global clock networks

XAZU3EG-1SFVA625I

Key Performance Advantages

🧠

Heterogeneous Processing

Blends robust high-level OS execution, hardware real-time determinism via dual Cortex-R5, and dedicated 3D graphics rendering engines onto one single chip fabric.

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154K UltraScale+ Fabric

Houses a dense programmable array backed by high-capacity Block RAM and UltraRAM modules, streaming raw sensor telemetry clusters with zero latency stalls.

🚗

AEC-Q100 Automotive I

Fully verified for harsh ambient thresholds (-40°C to +100°C), locking exceptional system-level runtime security against intensive vehicle shocks and EMI.

Technical Specifications

Parameter Node Detailed Engineering Specification
Manufacturer AMD Xilinx
Part Number (MPN) XAZU3EG-1SFVA625I
Device Architecture Zynq UltraScale+ MPSoC (EG Series, Advanced Heterogeneous Processing)
Application Processor Quad-core ARM Cortex-A53 (Up to 1.2GHz with NEON Extensions)
Real-Time Processor Dual-core ARM Cortex-R5 (Up to 533MHz for deterministic control)
Graphics Processor (GPU) ARM Mali-400 MP2 (Integrated 2D/3D geometry rendering engine)
Programmable Logic Elements 154,350 Logic Elements (UltraScale+ System Fabric)
Total Embedded Block RAM 7.6 Mbits System Block memory
Package / Case Form FCBGA-625 / SFVA625 Footprint (Fine-Pitch Flip-Chip Ball Grid Array, 21mm x 21mm)
Quality / Temperature Grade Automotive XA Grade Industrial I Range (-40°C to +100°C)

Versatile Hardware Applications

  • Automotive ADAS Frameworks: Real-time surround-view camera processing, sensory fusion networks, and object detection.
  • Industrial Internet of Things (IIoT): Functions as a multi-protocol gateway node combining heavy edge processing with hardware custom security.
  • High-Speed Instrumentation: Real-time telemetry tracking, high-frequency bus protocol translation, and digital signal matrices.
  • Military & Aviation Computing: Complex secure processing loops, deterministic state-machine handling, and multi-device bridging systems.

Industrial Quality Protections

100% Original Sourcing: Procured securely through fully audited tier-1 franchise lines, completely ensuring anti-counterfeit protection.

Anti-Static Handling: Stored and picked in full alignment with international ANSI/ESD cleanroom facility benchmarks.

Full Batch Traceability: Verified via intensive certificate analysis and rigorous documentation tracking prior to export dispatch.

HIGH-PERFORMANCE HETEROGENEOUS SYSTEMS // DIRECT SOURCE ARCHITECTURE

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