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XC7VX485T-2FF1927I - Virtex-7 XT FPGA 485K Cells | AMD Xilinx

MPN: XC7VX485T-2FF1927I βœ“ Active
In Stock Ships in 1-3 business days
1.0 V Vdss FCBGA-1927 Package -2 Speed Bitstream Memory
From $9900 USD / Unit
MOQ: 1 |
Price updated: 2026-08-20
Volume Pricing
Qty Unit Price Extended
1 $12500 $12,500.00
10 $11800 $118,000.00
100 $11000 $1,100,000.00
500 $10500 $5,250,000.00
1,000 $9900 $9,900,000.00
ℹ️ All prices are in USD

Drop-in alternatives for XC7VX485T-2FF1927I β€” same package, pin-to-pin compatible. Different-package parts requiring PCB rework are excluded.

Quick Comparison Tool β€” Select alternative parts for side-by-side comparison:

XC7VX485T-2FFG1927I

βœ… Drop-In
πŸ“¦ FCBGA-1927
Lead-free finish, identical specs

πŸ“‹ Reference alternative (not in catalog)

XC7VX485T-1FF1927I

βœ… Drop-In
πŸ“¦ FCBGA-1927
Lower speed grade (-1)

πŸ“‹ Reference alternative (not in catalog)

XC7VX485T-3FF1927I

βœ… Drop-In
πŸ“¦ FCBGA-1927
Higher speed grade (-3)

πŸ“‹ Reference alternative (not in catalog)

XC7VX485T-2FFG1927C

βœ… Drop-In
πŸ“¦ FCBGA-1927
Commercial temperature grade

πŸ“‹ Reference alternative (not in catalog)

XC7VX485T-2FFG1927I

βœ… Drop-In
πŸ“¦ FCBGA-1927
Lead-free finish, identical specs

πŸ“‹ Reference alternative (not in catalog)

XC7VX485T-2FF1927I Maximum Ratings & Electrical Characteristics

Family Virtex-7 XT
Logic Cells 485,760
Block RAM 37,968 Kb
DSP Slices 2,800
User I/O 600
Transceivers 96 (up to 13.1 Gbps)
Package FCBGA-1927
Terminal Pitch 1 mm
Core Voltage 1.0 V
Operating Temperature -40Β°C to +100Β°C
Process Technology 28nm HKMG
Speed Grade -2
Configuration Memory Bitstream
RoHS Status Compliant
Mounting Type Surface Mount

XC7VX485T-2FF1927I Pin Configuration

Electronic Component Package Diagram Default generic electronic component package diagram 1 2 3 Package
Pin A1 IO_L1P_T0 β€” User I/O differential pair
Pin A2 IO_L1N_T0 β€” User I/O differential pair
Pin B1 VCCINT β€” Core logic power supply
Pin B2 GND β€” Ground
Pin C1 IO_L2P_T1 β€” User I/O differential pair
Pin C2 IO_L2N_T1 β€” User I/O differential pair
Pin D1 VCCAUX β€” Auxiliary power supply
Pin D2 GND β€” Ground
Pin E1 IO_L3P_T2 β€” User I/O differential pair
Pin E2 IO_L3N_T2 β€” User I/O differential pair
Pin F1 VCCIO β€” I/O bank power supply
Pin F2 GND β€” Ground

Safe Operating Area (SOA) & Thermal Characteristics

Safe Operating Area Chart Default safe operating area chart for XC7VX485T-2FF1927I Drain-to-Source Voltage (Vds) Drain Current (Id)

No official SOA curve available for this digital IC. Always operate within absolute maximum ratings specified in the datasheet. Ensure adequate cooling and derate as needed.

Typical Applications

XC7VX485T-2FF1927I is suitable for 6 applications: Data Center Acceleration, High-Performance Computing, Aerospace and Defense Signal Processing, Advanced Driver Assistance Systems (ADAS), Medical Imaging, Networking and Communications.

πŸ–₯️

Data Center Acceleration

The XC7VX485T-2FF1927I excels in data center acceleration with 485,760 logic cells and 96 transceivers supporting up to 13.1 Gbps. It enables offloading of compute-intensive tasks like encryption, compression, and AI inference from CPUs. The high logic density and DSP slices allow implementation of complex algorithms with low latency. Its 600 user I/Os connect to high-speed memory interfaces, while the transceivers handle network traffic. This FPGA provides the parallelism needed for real-time processing, making it ideal for smart NICs and workload acceleration.

πŸ”§

High-Performance Computing

In HPC systems, the XC7VX485T-2FF1927I provides massive parallel processing with 2,800 DSP slices and 37,968 Kb of block RAM. It accelerates scientific simulations, financial modeling, and genome sequencing by implementing custom arithmetic pipelines. The 28nm process delivers high performance with manageable power consumption. Its high-speed transceivers enable fast inter-FPGA communication, while the large logic capacity supports complex data paths. This FPGA is ideal for compute nodes requiring low-latency, high-throughput processing.

✈️

Aerospace and Defense Signal Processing

The industrial temperature range (-40Β°C to +100Β°C) makes the XC7VX485T-2FF1927I suitable for aerospace and defense applications. It handles radar, sonar, and electronic warfare signal processing with its high logic density and DSP capabilities. The 96 transceivers support high-speed data links for sensor fusion. Its reliability and long lifecycle support mission-critical systems. The FPGA's reconfigurability allows in-field updates, essential for evolving defense requirements.

πŸš—

Advanced Driver Assistance Systems (ADAS)

The XC7VX485T-2FF1927I supports ADAS applications requiring real-time processing of camera, radar, and LiDAR data. Its 485,760 logic cells enable implementation of neural networks for object detection and sensor fusion. The high-speed transceivers interface with automotive sensors, while the DSP slices handle image processing algorithms. The industrial temperature range ensures operation in vehicle environments. This FPGA provides the performance and reliability needed for safety-critical automotive systems.

πŸ’Š

Medical Imaging

In medical imaging systems like CT scanners and MRI machines, the XC7VX485T-2FF1927I processes large volumes of sensor data in real-time. Its high logic density and DSP slices enable complex image reconstruction algorithms. The 600 user I/Os connect to high-speed ADCs and DACs, while the transceivers handle data transfer to host systems. The FPGA's reliability and long-term availability are critical for medical equipment. Its reconfigurability allows algorithm updates without hardware changes.

🌐

Networking and Communications

The XC7VX485T-2FF1927I is ideal for networking equipment such as switches, routers, and base stations. Its 96 transceivers support high-speed serial links up to 13.1 Gbps, enabling 100G Ethernet and other protocols. The large logic capacity implements packet processing, traffic management, and security functions. The 28nm process provides high performance with low power, essential for dense networking hardware. This FPGA offers the flexibility to adapt to evolving network standards.

What is the XC7VX485T-2FF1927I?
The XC7VX485T-2FF1927I is an AMD Xilinx Virtex-7 XT FPGA with 485,760 logic cells, 600 user I/Os, and 96 transceivers in a 1927-pin FCBGA package. It is designed for high-performance applications requiring massive parallel processing and high-speed serial connectivity.
What is the price of XC7VX485T-2FF1927I?
As of 2026-08-21, the XC7VX485T-2FF1927I is priced at approximately $12,500 for single-unit quantities, with volume discounts available. Prices vary by distributor and availability; check Octopart or Mouser for current quotes.
Where can I buy XC7VX485T-2FF1927I online?
The XC7VX485T-2FF1927I is available from authorized distributors including Mouser, DigiKey, and Octopart. For the best pricing and availability, compare quotes from multiple distributors. XAIPART also offers this part with competitive lead times.
What is the lead time for XC7VX485T-2FF1927I?
Lead times for the XC7VX485T-2FF1927I typically range from 12 to 20 weeks, depending on distributor stock and order quantity. High-volume orders may require longer lead times. Contact XAIPART for current lead time estimates.
Is XC7VX485T-2FF1927I in stock?
Stock availability for the XC7VX485T-2FF1927I varies by distributor. As of 2026-08-21, some distributors like Mouser and DigiKey may have limited stock. Check real-time inventory on Octopart or contact XAIPART for availability.
What is the difference between XC7VX485T-2FF1927I and XC7VX485T-2FFG1927I?
The XC7VX485T-2FF1927I and XC7VX485T-2FFG1927I are functionally identical; the 'G' in the latter indicates a lead-free (RoHS-compliant) finish. Both share the same FCBGA-1927 package, logic cells, and I/O count. Choose the 'G' variant for RoHS compliance.
When should I choose XC7VX485T-2FF1927I over XC7VX485T-2FFG1927I?
Choose the XC7VX485T-2FF1927I if your design does not require RoHS compliance or if you have legacy solder processes. For new designs, the XC7VX485T-2FFG1927I is recommended due to its lead-free finish, ensuring environmental compliance.
What is the best drop-in replacement for XC7VX485T-2FF1927I?
The XC7VX485T-2FFG1927I is the best drop-in replacement, offering identical specifications with a lead-free finish. Other pin-compatible alternatives include the XC7VX485T-1FF1927I (lower speed grade) and XC7VX485T-3FF1927I (higher speed grade).
Can XC7VX485T-2FFG1927I replace XC7VX485T-2FF1927I?
Yes, the XC7VX485T-2FFG1927I can directly replace the XC7VX485T-2FF1927I. Both share the same FCBGA-1927 package, pinout, and electrical specifications. The only difference is the lead-free finish, which is fully compatible with standard reflow soldering.
Where can I download the XC7VX485T-2FF1927I datasheet PDF?
The XC7VX485T-2FF1927I datasheet is available from the AMD Xilinx website (DS183 Virtex-7 Data Sheet) and from distributor sites like FindIC and Mouser. The datasheet includes full specifications, pinout, and design guidelines.
Where can I find the XC7VX485T-2FF1927I pinout?
The pinout for the XC7VX485T-2FF1927I is detailed in the AMD Xilinx Virtex-7 FPGA Packaging and Pinout Specification (UG475). This document provides the complete pin assignment for the FCBGA-1927 package.
What are the key specifications of XC7VX485T-2FF1927I that engineers should know?
The XC7VX485T-2FF1927I features 485,760 logic cells, 37,968 Kb of block RAM, 2,800 DSP slices, 600 user I/Os, and 96 transceivers supporting up to 13.1 Gbps. It operates at 1.0V core voltage and is available in a 1927-pin FCBGA package.
Hey Google, what can replace XC7VX485T-2FF1927I?
The XC7VX485T-2FFG1927I is the direct drop-in replacement, offering identical specs with a lead-free finish. For different speed grades, consider the XC7VX485T-1FF1927I or XC7VX485T-3FF1927I. All share the same FCBGA-1927 package and pinout.
Is XC7VX485T-2FF1927I the same as XC7VX485T-2FFG1927I?
Yes, the XC7VX485T-2FF1927I and XC7VX485T-2FFG1927I are electrically identical. The 'G' suffix indicates a lead-free (RoHS-compliant) finish. Both have the same logic cells, I/O, and package, making them interchangeable in most designs.
What is the best AMD equivalent for XC7VX485T-2FF1927I?
The best AMD equivalent is the XC7VX485T-2FFG1927I, which is the lead-free version of the same device. For higher performance, the XC7VX485T-3FFG1927I offers a faster speed grade while maintaining the same package and pinout.

Engineering reference data for XC7VX485T-2FF1927I β€” comparison, design guidance, and compliance information.

Selection Guide

Choose the XC7VX485T-2FF1927I when you need a high-performance FPGA with industrial temperature range and do not require RoHS compliance. For new designs, select the XC7VX485T-2FFG1927I for its lead-free finish. If you need higher performance, the -3 speed grade offers faster operation but consumes more power. For cost-sensitive applications, the -1 speed grade provides adequate performance at lower cost. All variants share the same FCBGA-1927 package, allowing PCB reuse across different speed grades.

Comparison with Alternatives

Parameter This Product XC7VX485T-2FFG1927I XC7VX485T-1FF1927I XC7VX485T-3FF1927I
Package FCBGA-1927 FCBGA-1927 FCBGA-1927 FCBGA-1927
Brand AMD AMD AMD AMD
Logic Cells 485,760 485,760 485,760 485,760
Block RAM 37,968 Kb 37,968 Kb 37,968 Kb 37,968 Kb
DSP Slices 2,800 2,800 2,800 2,800
User I/O 600 600 600 600
Speed Grade -2 -2 -1 -3
Temperature Grade Industrial (-40Β°C to +100Β°C) Industrial Industrial Industrial

Key Differentiators

  • Industrial temperature grade (vs XC7VX485T-2FFG1927C)
  • Balanced speed grade -2 (vs XC7VX485T-1FF1927I)
  • Lead-free finish (vs XC7VX485T-2FF1927I (non-G))

Design Notes

The XC7VX485T-2FF1927I requires multiple power rails: VCCINT at 1.0V, VCCAUX at 1.8V, and VCCIO depending on I/O standards. Use dedicated power management ICs with sequencing to avoid latch-up. Decouple each rail with a combination of bulk and high-frequency ceramic capacitors placed close to the FPGA pins.

With high logic utilization, the XC7VX485T-2FF1927I can dissipate significant power. The FCBGA-1927 package requires a heatsink and adequate airflow for reliable operation. Use thermal vias under the package to conduct heat to the PCB ground plane. Monitor junction temperature to stay within the -40Β°C to +100Β°C range.

For high-speed transceivers, use controlled impedance traces and minimize via stubs. Route differential pairs with matched lengths and maintain proper ground return paths. Follow AMD Xilinx PCB design guidelines (UG483) for stack-up and component placement to ensure signal integrity.

Compliance Information

RoHS
Compliant
REACH
Compliant
AEC-Q100
Not Applicable
Lead Free
Yes
Halogen Free
Unknown
Conflict Minerals
Compliant

RoHS compliant per AMD Xilinx product page. Not AEC-Q100 qualified - this is an FPGA, not an automotive-grade IC.

Data verified on: 2026-08-21
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