Model No: XC7A50T-2FTG256I
AMD XC7A50T-2FTG256I
Manufacturer: AMD
SEMICON NO.: XC7A50T-2FTG256I
Package: 256-FTBGA
Stock: In stock
Description: IC FPGA Artix-7 52160 4075 MMCM
SEMICON NO.: XC7A50T-2FTG256I
Package: 256-FTBGA
Stock: In stock
Description: IC FPGA Artix-7 52160 4075 MMCM
Quantity :
| Mfr | AMD |
| Product Family | Artix®-7 |
| Device Type | Field Programmable Gate Array (FPGA) |
| Logic Elements / Cells | 52,160 |
| Logic Array Blocks (LABs/CLBs) | 4,075 |
| Slices | 8,150 |
| Total RAM Bits | 2,764,800 bits |
| Maximum User I/O Pins | 170 (total I/O) |
| Maximum Clock Frequency | 628 MHz (core) |
| I/O Supply Voltage | Supports 1.2 V to 3.3 V |
| Clock Management | MMCM |
| Transceiver Speed (Max) | Up to 6.6 Gb/s |
| Core Supply Voltage | 0.95 V to 1.05 V |
| Operating Temperature | -40°C to +100°C |
| Package | 256-FTBGA |
| Mounting Type | Surface Mount |
| Compliance | RoHS Compliant |
The XC7A50T‑2FTG256I is an industrial‑grade Artix‑7 field‑programmable gate array manufactured by AMD Xilinx, built on mature 28 nm high‑performance‑low‑power HKMG semiconductor process and housed inside a compact 256‑FTBGA surface‑mount package measuring 17 mm × 17 mm. This‑2 speed grade FPGA delivers optimized balance between logic resources, DSP computation power, serial transceiver bandwidth and power consumption, equipped with 52160 logic cells, 120 DSP48E1 slices, 2.7 Mb block RAM, four 6.6 Gbps multi‑gigabit transceivers and 170 user I/O pins for flexible hardware reconfiguration. Rated for wide industrial temperature range from ‑40 °C up to +100 °C junction temperature, the device supports 256‑bit AES bitstream encryption, built‑in XADC analog monitoring, PCI‑Express Gen 2 endpoint capability and partial reconfiguration, making it a robust programmable platform for cost‑sensitive, SWaP‑constrained embedded and real‑time processing systems where reliability and hardware acceleration are essential.
The XC7A50T‑2FTG256I is widely deployed across industrial automation, communications, test‑and‑measurement, portable medical electronics and software‑defined radio fields, executing real‑time industrial Ethernet protocol processing, high‑speed sensor data acquisition, hardware‑accelerated image preprocessing, wireless signal modulation and demodulation, compact embedded control systems, portable test instruments, FPGA‑based data‑logging equipment, and custom peripheral interfaces for PCIe‑connected host computers.
FAQ
Q: Can MicroBlaze soft processor core run on XC7A50T‑2FTG256I?
A: Yes, sufficient logic and memory resources support single or multiple MicroBlaze soft‑CPU implementations for embedded software‑hardware co‑design.
Q: Are external transceivers required for high‑speed serial links?
A: Four built‑in 6.6 Gbps transceivers eliminate most external PHY chips for common high‑speed serial interfaces.
Q: Can MicroBlaze soft processor core run on XC7A50T‑2FTG256I?
A: Yes, sufficient logic and memory resources support single or multiple MicroBlaze soft‑CPU implementations for embedded software‑hardware co‑design.
Q: Are external transceivers required for high‑speed serial links?
A: Four built‑in 6.6 Gbps transceivers eliminate most external PHY chips for common high‑speed serial interfaces.
Alternative industrial FPGA Parts
● XC7A75T‑2FTG256I: Higher‑density Artix‑7 variant with expanded logic, DSP and memory resources for designs that need to upgrade processing capacity without changing board layout.
● EP4CE55F23C8N: Intel Cyclone‑IV FPGA cross‑brand alternative offering comparable logic scale, ideal when migrating designs away from Xilinx ecosystem.
● XC7A50T‑1FTG256I: Same silicon with slower‑1 speed grade, an economical substitute for applications with relaxed timing requirements.
● XC7A75T‑2FTG256I: Higher‑density Artix‑7 variant with expanded logic, DSP and memory resources for designs that need to upgrade processing capacity without changing board layout.
● EP4CE55F23C8N: Intel Cyclone‑IV FPGA cross‑brand alternative offering comparable logic scale, ideal when migrating designs away from Xilinx ecosystem.
● XC7A50T‑1FTG256I: Same silicon with slower‑1 speed grade, an economical substitute for applications with relaxed timing requirements.