Model No: XC7A75T-2FGG484I
AMD XC7A75T-2FGG484I
Manufacturer: AMD
SEMICON NO.: XC7A75T-2FGG484I
Package: 484-BBGA
Stock: In stock
Description: Artix-7 FPGA IC 285 3870720 75520
SEMICON NO.: XC7A75T-2FGG484I
Package: 484-BBGA
Stock: In stock
Description: Artix-7 FPGA IC 285 3870720 75520
Quantity :
| Mfr | AMD |
| Device Type | Field Programmable Gate Array (FPGA) |
| Logic Elements / Cells | 75,520 |
| Logic Array Blocks (LABs/CLBs) | 5,900 |
| Total RAM Bits | 3,870,720 bits |
| Block RAM (BRAM) | 36 KB dual-port block RAM |
| Maximum User I/O Pins | 285 |
| Maximum Clock Frequency | 628 MHz (System) / 1,286 MHz (Internal) |
| I/O Supply Voltage | 3.3 V |
| Clock Management | MMCM and PLL |
| Core Supply Voltage | 0.95 V to 1.05 V |
| Operating Temperature | -40°C to +100°C |
| Package | 484-BBGA |
| Mounting Type | Surface Mount |
| Compliance | RoHS Compliant |
The XC7A75T-2FGG484I is a member of the Artix-7 family, a cost-optimized, high-performance FPGA from AMD (formerly Xilinx), delivered in a 484-pin Fine-Pitch Ball Grid Array (FBGA) package. This device is built on a 28nm High-K Metal Gate (HKMG) process, offering a balanced mix of logic density, power efficiency, and high-speed connectivity. It features 75,520 logic cells, 5,100 Kbits of fast block RAM, and up to 285 user I/O pins, targeting mid-range applications requiring significant processing capability within a constrained power and cost budget.
Key Features and Highlights
● High-Performance Logic Fabric: Contains 75,520 logic cells based on the 6-input LUT architecture, providing ample resources for implementing complex digital signal processing (DSP), control logic, and embedded processing functions.
● Advanced Memory Resources: Integrates 5,100 Kbits of fast, dual-port block RAM (BRAM) and 2,880 Kbits of distributed RAM, enabling efficient data buffering and on-chip storage for high-throughput applications.
● Robust DSP Capabilities: Includes 180 dedicated, low-power DSP48E1 slices, each capable of performing a 25x18 multiply-accumulate operation, which is essential for accelerating arithmetic-intensive algorithms like filters, FFTs, and image processing.
● High-Speed Serial Connectivity: Features up to 8 multi-gigabit transceivers (MGTs) supporting protocols up to 6.6 Gb/s (PCIe Gen2, SATA, Gigabit Ethernet), facilitating high-bandwidth communication with external systems.
● Power-Optimized Architecture: Leverages the 28nm HKMG process and advanced clock gating techniques to deliver high performance per watt, making it suitable for thermally sensitive and power-conscious designs.
Frequently Asked Questions (FAQ)
Q: How does the Artix-7 family balance cost and performance compared to other 7-series families?
A: The Artix-7 family is positioned between the low-cost, low-power Spartan-7 and the high-performance Kintex-7/Virtex-7 families. It offers a favorable balance, providing substantial logic, DSP, and transceiver resources at a lower cost and power than Kintex-7, making it ideal for cost-sensitive, mid-performance applications.
Compatible Alternative FPGA List
● XC7A100T-2FGG484I: A higher-density member of the same Artix-7 family with 101,440 logic cells and otherwise similar features, offering a direct upgrade path for designs requiring more logic resources.
● 10M08SAU169C8G: An Intel MAX 10 FPGA, which is an SRAM-based FPGA with integrated configuration flash, offering a different architecture and toolchain for low-to-mid density applications.
● LFE5U-25F-6BG256C: A Lattice ECP5 FPGA, known for its low power consumption and small form factor, providing an alternative for cost and power-sensitive designs requiring SerDes.
● A3P250-FG256I: A Microchip (Microsemi) IGLOO PLUS FPGA based on flash technology, offering instant-on, single-chip, and low-power characteristics for control-oriented applications.
Key Features and Highlights
● High-Performance Logic Fabric: Contains 75,520 logic cells based on the 6-input LUT architecture, providing ample resources for implementing complex digital signal processing (DSP), control logic, and embedded processing functions.
● Advanced Memory Resources: Integrates 5,100 Kbits of fast, dual-port block RAM (BRAM) and 2,880 Kbits of distributed RAM, enabling efficient data buffering and on-chip storage for high-throughput applications.
● Robust DSP Capabilities: Includes 180 dedicated, low-power DSP48E1 slices, each capable of performing a 25x18 multiply-accumulate operation, which is essential for accelerating arithmetic-intensive algorithms like filters, FFTs, and image processing.
● High-Speed Serial Connectivity: Features up to 8 multi-gigabit transceivers (MGTs) supporting protocols up to 6.6 Gb/s (PCIe Gen2, SATA, Gigabit Ethernet), facilitating high-bandwidth communication with external systems.
● Power-Optimized Architecture: Leverages the 28nm HKMG process and advanced clock gating techniques to deliver high performance per watt, making it suitable for thermally sensitive and power-conscious designs.
Frequently Asked Questions (FAQ)
Q: How does the Artix-7 family balance cost and performance compared to other 7-series families?
A: The Artix-7 family is positioned between the low-cost, low-power Spartan-7 and the high-performance Kintex-7/Virtex-7 families. It offers a favorable balance, providing substantial logic, DSP, and transceiver resources at a lower cost and power than Kintex-7, making it ideal for cost-sensitive, mid-performance applications.
Compatible Alternative FPGA List
● XC7A100T-2FGG484I: A higher-density member of the same Artix-7 family with 101,440 logic cells and otherwise similar features, offering a direct upgrade path for designs requiring more logic resources.
● 10M08SAU169C8G: An Intel MAX 10 FPGA, which is an SRAM-based FPGA with integrated configuration flash, offering a different architecture and toolchain for low-to-mid density applications.
● LFE5U-25F-6BG256C: A Lattice ECP5 FPGA, known for its low power consumption and small form factor, providing an alternative for cost and power-sensitive designs requiring SerDes.
● A3P250-FG256I: A Microchip (Microsemi) IGLOO PLUS FPGA based on flash technology, offering instant-on, single-chip, and low-power characteristics for control-oriented applications.