5CEFA4F23I7N
| Part Description |
Cyclone® V E Field Programmable Gate Array (FPGA) IC 224 3464192 49000 484-BGA |
|---|---|
| Quantity | 1,526 Available (as of May 5, 2026) |
| Product Category | Field Programmable Gate Array (FPGA) |
|---|---|
| Manufacturer | Intel |
| Manufacturing Status | Active |
| Manufacturer Standard Lead Time | 12 Weeks |
| Datasheet |
Specifications & Environmental
| Device Package | 484-FBGA (23x23) | Grade | Industrial | Operating Temperature | -40°C – 100°C | ||
|---|---|---|---|---|---|---|---|
| Package / Case | 484-BGA | Number of I/O | 224 | Voltage | 1.07 V - 1.13 V | ||
| Mounting Method | Surface Mount | RoHS Compliance | RoHS Compliant | REACH Compliance | REACH Unaffected | ||
| Moisture Sensitivity Level | 3 (168 Hours) | Number of LABs/CLBs | 18480 | Number of Logic Elements/Cells | 49000 | ||
| Number of Gates | N/A | ECCN | 3A991D | HTS Code | 8542.39.0001 | ||
| Qualification | N/A | Total RAM Bits | 3464192 |
Overview of 5CEFA4F23I7N – Cyclone® V E FPGA, 484‑BGA, 224 I/O
The 5CEFA4F23I7N is an Intel Cyclone® V E field programmable gate array supplied in a 484‑FBGA (23×23) surface‑mount package. This industrial‑grade FPGA integrates approximately 49,000 logic elements with embedded memory and a broad set of I/O for use in industrial, wireless/wireline, and military applications.
Designed for low‑voltage operation, the device’s core supply range (1.07 V to 1.13 V) and Cyclone V family architecture prioritize power efficiency and flexible integration for system designs requiring moderate logic density and on‑chip RAM.
Key Features
- Logic Capacity Approximately 49,000 logic elements for implementing custom digital logic, protocol handling, and control functions.
- Embedded Memory Approximately 3.464 Mbits of on‑chip RAM (Total Ram Bits: 3,464,192) to support buffering, lookup tables, and local data storage.
- I/O 224 general‑purpose I/O pins to interface with peripherals, sensors, memory, and high‑speed links.
- Power and Core Voltage Specified core voltage range of 1.07 V to 1.13 V, matching the Cyclone V family’s low‑voltage operation model.
- Package and Mounting 484‑FBGA supplier package (23×23) / 484‑BGA case; surface‑mount mounting for compact board integration.
- Industrial Grade and Temperature Range Rated industrial grade with an operating temperature range of −40 °C to 100 °C for deployment in demanding environments.
- Standards and Compliance RoHS‑compliant materials and manufacturing.
Typical Applications
- Industrial Control Custom logic, motor control interfaces, and deterministic I/O aggregation for factory automation and process control systems.
- Wireless and Wireline Infrastructure Protocol bridging, packet buffering, and interface adaptation in base station or wireline networking equipment.
- Military and Aerospace Systems Signal processing, data formatting, and ruggedized I/O handling within industrial‑grade temperature and RoHS constraints.
Unique Advantages
- Balanced Logic and Memory Mix Approximately 49,000 logic elements combined with ~3.464 Mbits of embedded RAM provide a practical balance for designs requiring both logic complexity and on‑chip data storage.
- Low‑Voltage Operation Core supply specified between 1.07 V and 1.13 V supports lower power budgets and aligns with Cyclone V family low‑power design considerations.
- Industrial Temperature Range Operating from −40 °C to 100 °C enables deployment in harsh and wide‑range temperature environments.
- Compact BGA Footprint 484‑FBGA (23×23) packaging offers a high‑density, surface‑mount solution for space‑constrained PCBs.
- Regulatory Compliance RoHS compliance helps simplify environmental and regulatory planning for product development.
Why Choose 5CEFA4F23I7N?
The 5CEFA4F23I7N combines a mid‑range logic capacity with several megabits of embedded memory and a large I/O count in a compact 484‑FBGA package, making it well suited for engineers building industrial and communications systems that require a balance of logic density, local memory, and robust operating temperature support. Its specified core voltage range and RoHS compliance align with low‑power design goals and regulatory requirements.
This part is appropriate for teams that need an industrial‑grade FPGA platform with straightforward integration into surface‑mount PCB layouts and the flexibility to implement custom protocol handling, buffering, and control logic while maintaining a predictable power envelope.
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