5AGXMA1D4F31I5
| Part Description |
Arria V GX Field Programmable Gate Array (FPGA) IC 416 8666112 75000 896-BBGA, FCBGA |
|---|---|
| Quantity | 1,840 Available (as of May 5, 2026) |
| Product Category | Field Programmable Gate Array (FPGA) |
|---|---|
| Manufacturer | Intel |
| Manufacturing Status | Obsolete |
| Manufacturer Standard Lead Time | RFQ |
| Datasheet |
Specifications & Environmental
| Device Package | 896-FBGA (31x31) | Grade | Industrial | Operating Temperature | -40°C – 100°C | ||
|---|---|---|---|---|---|---|---|
| Package / Case | 896-BBGA, FCBGA | Number of I/O | 416 | Voltage | 1.07 V - 1.13 V | ||
| Mounting Method | Surface Mount | RoHS Compliance | RoHS non-compliant | REACH Compliance | REACH Unknown | ||
| Moisture Sensitivity Level | 3 (168 Hours) | Number of LABs/CLBs | 3537 | Number of Logic Elements/Cells | 75000 | ||
| Number of Gates | N/A | ECCN | 3A991D | HTS Code | 8542.39.0001 | ||
| Qualification | N/A | Total RAM Bits | 8666112 |
Overview of 5AGXMA1D4F31I5 – Arria V GX FPGA, 75,000 logic elements, 416 I/Os, 896‑BBGA (FCBGA)
The 5AGXMA1D4F31I5 is an Intel Arria V GX field-programmable gate array supplied in a high-pin-count 896‑BBGA/FCBGA package. This industrial-grade FPGA provides 75,000 logic elements, approximately 8.67 Mbits of embedded memory, and up to 416 user I/Os, making it suitable for designs that require substantial on-chip logic, memory, and I/O density. The device operates across a core voltage range of 1.07 V to 1.13 V and is specified for operation from −40 °C to 100 °C.
Key Features
- Core Logic 75,000 logic elements for implementing complex digital functions and custom hardware acceleration.
- Embedded Memory Approximately 8.67 Mbits of on-chip RAM to support buffering, lookup tables, and state storage.
- High I/O Count 416 user I/Os to support extensive external interfacing and parallel data paths.
- Package and Mounting Available in an 896‑BBGA / FCBGA footprint (supplier package: 896‑FBGA, 31×31 mm) for high-density board integration; surface-mount mounting type.
- Industrial Temperature Range Rated for operation from −40 °C to 100 °C to meet demanding environmental requirements.
- Core Voltage Specified core supply range of 1.07 V to 1.13 V for predictable power delivery and system design.
- Standards and Compliance RoHS compliant to support regulatory and manufacturing requirements.
Typical Applications
- FPGA-based system prototyping — Deploys the device where up to 75,000 logic elements and substantial embedded RAM are required for validating custom digital architectures.
- High-density I/O interfacing — Leverages 416 user I/Os and the 896‑pin FCBGA package for systems needing many parallel interfaces or external peripherals.
- Industrial control and automation — Industrial-grade specification and −40 °C to 100 °C operating range suit rugged control and monitoring applications.
Unique Advantages
- High logic capacity: 75,000 logic elements give headroom for complex state machines, DSP blocks, and custom accelerators.
- Substantial on-chip memory: Approximately 8.67 Mbits of embedded RAM reduces external memory dependence for buffering and scratch storage.
- Extensive I/O resources: 416 I/Os enable broad connectivity to sensors, transceivers, and high-speed interfaces without external multiplexing.
- Robust industrial operation: Rated for −40 °C to 100 °C to withstand temperature extremes commonly encountered in industrial deployments.
- Compact, high-pin package: 896‑BBGA/896‑FBGA (31×31 mm) balances high pin count with a compact board footprint for dense system designs.
- Regulatory readiness: RoHS compliance supports environmentally conscious manufacturing and global product acceptance.
Why Choose 5AGXMA1D4F31I5?
This Arria V GX FPGA delivers a balanced combination of logic density, embedded memory, and high I/O count in a compact 896‑pin FCBGA package for industrial applications. Its specified core voltage range and broad operating temperature make it suitable for robust system designs that demand deterministic electrical and thermal behavior. The device is well suited to engineering teams seeking a scalable FPGA platform with significant on-chip resources and extensive external interfacing capability.
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