Altera AGIA040R39A2E2V

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Altera AGIA040R39A2E2V - Agilex I Series FPGA System-on-Chip

The AGIA040R39A2E2V from Altera represents cutting-edge FPGA technology, combining a powerful Quad ARM® Cortex®-A53 MPCore™ processor with massive 4.047M logic elements in a single System-on-Chip (SoC) solution. Engineered for mission-critical applications in aerospace, automotive, telecommunications, industrial automation, and medical devices where both processing power and programmable logic flexibility are essential.

Key Features & Technical Advantages

  • High-Performance Processing: Quad ARM Cortex-A53 MPCore with CoreSight™, ARM NEON™, and floating-point capabilities running at 1.4GHz delivers exceptional computational power for embedded applications
  • Massive Programmable Logic: 4.047 million logic elements provide unparalleled FPGA capacity for complex hardware acceleration, custom IP integration, and parallel processing tasks
  • Comprehensive Connectivity Suite: EBI/EMI, Ethernet, I²C, MMC/SD/SDIO, SPI, UART/USART, and USB OTG interfaces enable seamless integration with diverse peripheral ecosystems
  • Industrial-Grade Reliability: Operating temperature range 0°C to 100°C (TJ) ensures dependable performance in harsh environmental conditions
  • Advanced System Peripherals: Integrated DMA controllers and watchdog timer (WDT) optimize system efficiency and fault tolerance
  • Embedded Memory: 256KB integrated RAM supports real-time processing and reduces external memory dependencies
  • Active Part Status: Full production availability with long-term lifecycle support for critical infrastructure projects

Target Applications & Use Cases

The AGIA040R39A2E2V excels in demanding applications requiring the synergy of ARM processing and FPGA programmability:

  • Aerospace & Defense: Radar signal processing, avionics systems, secure communications
  • Automotive: ADAS (Advanced Driver Assistance Systems), autonomous vehicle processing, in-vehicle networking
  • Telecommunications: 5G infrastructure, baseband processing, network acceleration
  • Industrial Automation: Machine vision, robotics control, real-time monitoring systems
  • Medical Devices: Imaging systems, diagnostic equipment, patient monitoring
  • High-Performance Computing: Hardware acceleration, custom compute engines, data center applications

Why Choose AGIA040R39A2E2V for Your Design?

This Agilex I series SoC delivers exceptional performance-per-watt for demanding applications requiring both ARM processing and FPGA programmability. The combination of quad-core ARM Cortex-A53 processing with over 4 million logic elements enables unprecedented design flexibility, allowing engineers to partition workloads optimally between software and hardware acceleration.

With active part status, comprehensive technical documentation, and Altera's proven track record in mission-critical applications, the AGIA040R39A2E2V is the ideal choice for long-lifecycle designs in aerospace, automotive, telecommunications, and industrial sectors where reliability, performance, and future-proofing are paramount.

Design Support & Resources

As an authorized distributor, we provide complete design-in support including reference designs, development tools compatibility guidance, and technical consultation to accelerate your time-to-market. Our team ensures full traceability and authenticity for every component, meeting the stringent requirements of regulated industries.

Product attributes Property Value
Manufacturer Altera
Product Series Agilex I
Packaging Tray |
Part Status Active
Architecture MPU, FPGA
Core Processor Quad ARM® Cortex®-A53 MPCore™ with CoreSight™, ARM NEON, Floating point
Flash Size -
RAM Size 256KB
Peripherals DMA, WDT
Connectivity EBI/EMI, Ethernet, I2C, MMC/SD/SDIO, SPI, UART/USART, USB OTG
Speed 1.4GHz
Primary Attributes FPGA - 4.047M Logic Elements
Operating Temperature 0°C ~ 100°C (TJ)
Grade -
Qualification -
Package / Case 3948-BFBGA Exposed Pad
Supplier Device Package 3948-BGA (56x56)

No datasheet available. Please contact sales@hqickey.com for the latest datasheet.