5AGXMB7G4F40I5N
| Part Description |
Arria V GX Field Programmable Gate Array (FPGA) IC 704 27695104 504000 1517-BBGA |
|---|---|
| Quantity | 1,854 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 | 1517-FBGA (40x40) | Grade | Industrial | Operating Temperature | -40°C – 100°C | ||
|---|---|---|---|---|---|---|---|
| Package / Case | 1517-BBGA | Number of I/O | 704 | Voltage | 1.07 V - 1.13 V | ||
| Mounting Method | Surface Mount | RoHS Compliance | RoHS Compliant | REACH Compliance | REACH Unknown | ||
| Moisture Sensitivity Level | 3 (168 Hours) | Number of LABs/CLBs | 23780 | Number of Logic Elements/Cells | 504000 | ||
| Number of Gates | N/A | ECCN | 3A001A2C | HTS Code | 8542.39.0001 | ||
| Qualification | N/A | Total RAM Bits | 27695104 |
Overview of 5AGXMB7G4F40I5N – Arria V GX FPGA, 504,000 logic elements, approx. 27.7 Mbits RAM, 704 I/Os, 1517-BBGA
The 5AGXMB7G4F40I5N is an Intel Arria V GX field-programmable gate array (FPGA) offered in an industrial grade. It delivers high logic density, substantial on-chip memory, and a large I/O count in a compact 1517-BBGA package.
This device is suited for designs that require extensive programmable logic resources, significant embedded RAM, and broad external interfacing while operating across an industrial temperature range.
Key Features
- High logic capacity — 504,000 logic elements to support large, complex FPGA implementations.
- Embedded memory — Approximately 27.7 Mbits of on-chip RAM for buffering, lookup tables, and state storage.
- Extensive I/O — 704 I/O pins to accommodate high-pin-count interfaces and multi-channel connectivity.
- Package and mounting — 1517-BBGA package (supplier device package: 1517-FBGA 40×40) with surface-mount mounting for compact board integration.
- Power supply — Core voltage supply range specified at 1.07 V to 1.13 V for core power planning.
- Industrial temperature rating — Rated for operation from −40 °C to 100 °C for deployment in industrial environments.
- Comprehensive documentation — Arria V device datasheet provides electrical characteristics, switching characteristics, configuration specifications, and I/O timing for system-level design and validation.
- RoHS compliant — Meets RoHS environmental requirements.
Typical Applications
- High-density logic implementations — Deploy designs that require hundreds of thousands of logic elements and substantial embedded RAM.
- Multi-channel interface and bridging — Use the device’s 704 I/Os to implement complex board-level interfaces, aggregators, or protocol bridges.
- Industrial control and instrumentation — The industrial temperature range and RoHS compliance make it suitable for industrial electronics and instrumentation systems.
Unique Advantages
- Large programmable resource set: 504,000 logic elements provide headroom for feature-rich FPGA designs without external logic expansion.
- Substantial on-chip RAM: Approximately 27.7 Mbits of embedded memory reduce dependence on external memory for many buffering and storage needs.
- High I/O count: 704 I/Os enable direct connection to numerous peripherals, sensors, or high-speed interfaces on a single device.
- Industrial robustness: −40 °C to 100 °C operating range supports deployment in harsh or temperature-variable environments.
- Compact, high-pin-count package: 1517-BBGA (1517-FBGA 40×40) balances integration density with board-level routing flexibility.
- Documented electrical and configuration specs: The Arria V device datasheet includes detailed operating conditions, configuration timing, and I/O timing for reliable system integration.
Why Choose 5AGXMB7G4F40I5N?
The 5AGXMB7G4F40I5N positions itself as a high-density Arria V GX FPGA option for designs that need large programmable logic capacity, ample embedded memory, and a broad I/O complement within an industrial temperature envelope. Its defined core voltage range and detailed device specifications support predictable system power and timing design.
This device is well suited to engineering teams building complex FPGA-based systems that require integration, scalability, and the documented electrical and configuration data provided by the Arria V device family.
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