5AGXBB7D4F40C4N

IC FPGA 704 I/O 1517FBGA
Part Description

Arria V GX Field Programmable Gate Array (FPGA) IC 704 27695104 504000 1517-BBGA

Quantity 386 Available (as of May 5, 2026)
Product CategoryField Programmable Gate Array (FPGA)
ManufacturerIntel
Manufacturing StatusObsolete
Manufacturer Standard Lead TimeRFQ
Datasheet

Specifications & Environmental

Device Package1517-FBGA (40x40)GradeCommercialOperating Temperature0°C – 85°C
Package / Case1517-BBGANumber of I/O704Voltage1.07 V - 1.13 V
Mounting MethodSurface MountRoHS ComplianceRoHS CompliantREACH ComplianceREACH Unknown
Moisture Sensitivity Level3 (168 Hours)Number of LABs/CLBs23780Number of Logic Elements/Cells504000
Number of GatesN/AECCN3A001A2CHTS Code8542.39.0001
QualificationN/ATotal RAM Bits27695104

Overview of 5AGXBB7D4F40C4N – Arria V GX FPGA, 504,000 logic elements, 704 I/O, 1517-BBGA

The 5AGXBB7D4F40C4N is an Intel Arria V GX field-programmable gate array (FPGA) offered in a commercial-grade package. It delivers a high logic capacity and substantial on-chip RAM with a large complement of user I/O, packaged for surface-mount board integration.

This device is intended for designs that require dense programmable logic, significant embedded memory, and extensive I/O connectivity, while operating within a standard commercial temperature range.

Key Features

  • High logic capacity  504,000 logic elements to support large-scale programmable logic designs and complex algorithms.
  • Embedded memory  Approximately 27.7 Mbits of on-chip RAM for buffering, LUT-based storage, and local data storage.
  • Abundant I/O  704 user I/O pins to support multiple parallel interfaces and dense peripheral connectivity.
  • Package and mounting  1517-BBGA (supplier device package 1517-FBGA, 40×40) in a surface-mount format for compact PCB implementation.
  • Core power range  Voltage supply requirement of 1.07 V to 1.13 V for core power design and power sequencing.
  • Commercial operating range  Rated for 0°C to 85°C operation and provided in a commercial grade.
  • RoHS compliant  Conforms to RoHS requirements for environmental compliance.

Typical Applications

  • High-density digital processing  Implements compute- and logic-intensive functions using the device's 504,000 logic elements and embedded memory.
  • I/O-rich systems  Leverages 704 I/O to interface with numerous peripherals, sensors, or high-channel-count subsystems.
  • Embedded system platforms  Fits commercial embedded designs requiring surface-mount FPGA integration and substantial on-chip RAM.

Unique Advantages

  • Large programmable fabric  504,000 logic elements provide the capacity to consolidate multiple functions into a single FPGA, reducing external logic.
  • Substantial on-chip memory  Approximately 27.7 Mbits of embedded RAM minimizes dependence on external memory for local buffering and state storage.
  • Extensive I/O  704 user I/O simplifies routing for multi-interface designs and reduces the need for additional I/O expanders.
  • Compact surface-mount package  1517-BBGA (1517-FBGA, 40×40) supports dense PCB layouts while maintaining a high I/O count.
  • Commercial-ready  Commercial-grade rating and RoHS compliance align with standard production and regulatory requirements.
  • Clear power specification  Defined core voltage range (1.07 V–1.13 V) helps streamline power-supply design and validation.

Why Choose 5AGXBB7D4F40C4N?

The 5AGXBB7D4F40C4N Arria V GX FPGA combines high logic density, significant embedded RAM, and a large I/O complement in a compact surface-mount package. Its commercial-grade rating, defined core voltage range, and RoHS compliance make it suitable for demanding board-level designs that require substantial programmable resources and extensive peripheral connectivity.

This device is well suited for engineering teams building complex digital systems that benefit from consolidating functions into a single, high-capacity FPGA from a recognized manufacturer.

Request a quote or submit an inquiry to receive pricing and availability information for the 5AGXBB7D4F40C4N.

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