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XC7VX690T-2FFG1930I - Virtex-7 XT FPGA 693K Logic Cells | AMD

MPN: XC7VX690T-2FFG1930I βœ“ Active
In Stock Ships in 1-3 business days
1.0V Vdss 1924-BBGA, FCBGA (FFG1930) Package -2 Speed
From $14950 USD / Unit
MOQ: 1 |
Price updated: 2026-08-20
Volume Pricing
Qty Unit Price Extended
1 $18950 $18,950.00
10 $17950 $179,500.00
100 $16950 $1,695,000.00
500 $15950 $7,975,000.00
1,000 $14950 $14,950,000.00
ℹ️ All prices are in USD

Drop-in alternatives for XC7VX690T-2FFG1930I 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:

XC7VX690T-2FFG1930C

βœ… Drop-In
πŸ“¦ 1924-BBGA, FCBGA
Commercial temperature grade (0 to +85C) vs industrial (-40 to +100C)

πŸ“‹ Reference alternative (not in catalog)

XC7VX690T-3FFG1930I

βœ… Drop-In
πŸ“¦ 1924-BBGA, FCBGA
Faster speed grade (-3) for higher performance

πŸ“‹ Reference alternative (not in catalog)

XC7VX485T-2FFG1930I

βœ… Drop-In
πŸ“¦ 1924-BBGA, FCBGA
Fewer logic cells (485,760) and DSP slices (2,800)

πŸ“‹ Reference alternative (not in catalog)

XC7VX565T-2FFG1930I

βœ… Drop-In
πŸ“¦ 1924-BBGA, FCBGA
Fewer logic cells (566,080) and DSP slices (3,200)

πŸ“‹ Reference alternative (not in catalog)

XC7VX895T-2FFG1930I

βœ… Drop-In
πŸ“¦ 1924-BBGA, FCBGA
More logic cells (895,040) and DSP slices (3,900)

πŸ“‹ Reference alternative (not in catalog)

XC7VX690T-2FFG1930I Maximum Ratings & Electrical Characteristics

Family Virtex-7 XT
Logic Cells 693120
Block RAM 54190080 bits
User I/O 1000
Package 1924-BBGA, FCBGA (FFG1930)
Process Technology 28nm
Core Voltage 1.0V
Speed Grade -2
Temperature Grade Industrial (-I)
GTX Transceivers 80
GTX Transceiver Speed 12.5 Gbps
DSP48E1 Slices 3600
CMTs 20
PCIe Blocks 3
Configuration SRAM-based
RoHS Status Compliant

XC7VX690T-2FFG1930I Pin Configuration

BGA-256 Package Pinout Diagram BGA-256 17x17mm, 16x16, P1.0mm, JEDEC MO-192. A1 BGA-256 16x16 grid
Pin A1 IO_L1P_T0 β€” User I/O Bank 0
Pin A2 IO_L1N_T0 β€” User I/O Bank 0
Pin B1 VCCINT β€” Core logic power (1.0V)
Pin B2 GND β€” Ground
Pin C1 IO_L2P_T0 β€” User I/O Bank 0
Pin C2 IO_L2N_T0 β€” User I/O Bank 0
Pin D1 VCCAUX β€” Auxiliary power (1.8V)
Pin D2 GND β€” Ground
Pin E1 IO_L3P_T0 β€” User I/O Bank 0
Pin E2 IO_L3N_T0 β€” User I/O Bank 0
Pin F1 VCCBRAM β€” Block RAM power (1.0V)
Pin F2 GND β€” Ground

Safe Operating Area (SOA) & Thermal Characteristics

Safe Operating Area Chart Default safe operating area chart for XC7VX690T-2FFG1930I 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

XC7VX690T-2FFG1930I is suitable for 6 applications: Wired Communications, Data Center Acceleration, Radar and Electronic Warfare, Medical Imaging, Broadcast Video Processing, ASIC Prototyping.

🌐

Wired Communications

The XC7VX690T-2FFG1930I excels in wired communications infrastructure, particularly for 100G/400G line cards and network processors. Its 80 GTX transceivers operating at up to 12.5 Gbps provide the high-speed serial I/O needed for backplane and front-panel connectivity. The 693,120 logic cells enable complex packet processing, traffic management, and protocol acceleration. The device's 54,190,080 block RAM bits support large lookup tables and packet buffers, while the 3,600 DSP48E1 slices handle sophisticated signal processing for equalization and error correction. This combination makes it ideal for core routers, switches, and optical transport systems where high throughput and low latency are critical.

πŸ–₯️

Data Center Acceleration

In data center applications, the XC7VX690T-2FFG1930I provides massive parallel processing for workload acceleration, including database analytics, video transcoding, and AI inference. Its 693,120 logic cells and 3,600 DSP48E1 slices enable custom compute pipelines that offload intensive tasks from CPUs. The 80 GTX transceivers support high-bandwidth connectivity to host servers via PCIe and Ethernet. The device's partial reconfiguration capability allows dynamic updates to acceleration functions without downtime. With 1,000 user I/O pins, it can interface with multiple memory channels and custom accelerators. The 28nm HPL process balances performance and power, making it suitable for power-constrained data center environments.

✈️

Radar and Electronic Warfare

The XC7VX690T-2FFG1930I is well-suited for radar and electronic warfare systems requiring real-time signal processing. Its 3,600 DSP48E1 slices deliver the multiply-accumulate throughput needed for beamforming, pulse compression, and Doppler processing. The 693,120 logic cells implement complex digital filters and FFT engines, while the 54,190,080 block RAM bits store large coefficient tables and intermediate results. The industrial temperature grade (-I) ensures reliable operation in harsh military environments. The device's 80 GTX transceivers support high-speed data links to sensor arrays and processing nodes. The 1,000 user I/O pins provide flexibility for interfacing with ADCs, DACs, and custom front-end electronics.

πŸ’Š

Medical Imaging

The XC7VX690T-2FFG1930I enables advanced medical imaging systems such as CT scanners, MRI, and ultrasound. Its 693,120 logic cells and 3,600 DSP48E1 slices handle complex image reconstruction algorithms, including filtered back-projection and iterative reconstruction. The 54,190,080 block RAM bits support large image frame buffers and processing pipelines. The device's high I/O count (1,000 pins) interfaces with multiple high-speed ADCs and sensor arrays. The 80 GTX transceivers enable high-bandwidth data transfer to host workstations. The industrial temperature grade ensures reliable operation in clinical environments. The 28nm process provides the performance needed for real-time imaging while managing power dissipation in compact medical equipment.

πŸ“Ί

Broadcast Video Processing

The XC7VX690T-2FFG1930I is ideal for broadcast video processing, including 4K/8K format conversion, frame synchronization, and video compression. Its 693,120 logic cells implement complex video processing algorithms, while the 3,600 DSP48E1 slices handle color space conversion and filtering. The 54,190,080 block RAM bits provide ample storage for video line buffers and frame stores. The device's 80 GTX transceivers support SDI, HDMI, and IP video interfaces at high data rates. The 1,000 user I/O pins enable flexible interfacing with video codecs and external memory. The 28nm process delivers the performance required for real-time 8K processing while maintaining reasonable power consumption for broadcast equipment.

πŸ”§

ASIC Prototyping

The XC7VX690T-2FFG1930I serves as an excellent platform for ASIC prototyping, allowing designers to validate complex digital designs before committing to silicon. Its 693,120 logic cells provide sufficient capacity for prototyping large SoCs, while the 1,000 user I/O pins enable connection to external interfaces and test equipment. The 54,190,080 block RAM bits model on-chip memory hierarchies, and the 3,600 DSP48E1 slices emulate arithmetic units. The device supports multiple configuration modes and partial reconfiguration, enabling iterative design refinement. The 80 GTX transceivers allow prototyping of high-speed serial interfaces. The industrial temperature grade ensures reliable operation during extended verification sessions.

What is the XC7VX690T-2FFG1930I?
The XC7VX690T-2FFG1930I is a Virtex-7 XT FPGA from AMD with 693,120 logic cells, 1,000 user I/O pins, and 54,190,080 block RAM bits in a 1924-ball FCBGA package. According to the AMD 7 Series FPGAs Overview datasheet (DS180), it is built on 28nm technology and supports up to 80 GTX transceivers at 12.5 Gbps.
Where can I buy the XC7VX690T-2FFG1930I online?
The XC7VX690T-2FFG1930I is available from authorized distributors including DigiKey, Mouser, and Octopart. As of 2026-08-21, DigiKey lists it as 'ships today' with pricing available on request. For bulk orders, Octopart compares pricing from 23 distributors. Always purchase from authorized channels to ensure genuine parts.
What is the price of the XC7VX690T-2FFG1930I?
The XC7VX690T-2FFG1930I is a high-end FPGA with pricing typically in the $15,000-$20,000 range per unit at quantity 1, as of 2026-08-21. Exact pricing varies by distributor and volume. For accurate quotes, contact DigiKey, Mouser, or use Octopart's bulk pricing comparison across 23 distributors.
What is the lead time for the XC7VX690T-2FFG1930I?
Lead time for the XC7VX690T-2FFG1930I typically ranges from 12 to 20 weeks for new orders, as of 2026-08-21. However, DigiKey currently shows stock available and 'ships today' for immediate orders. For large quantities, lead times may extend due to the complex 28nm manufacturing process. Check distributor inventory for current availability.
Is the XC7VX690T-2FFG1930I in stock?
Yes, the XC7VX690T-2FFG1930I is currently in stock at major distributors. DigiKey lists it as 'ships today' as of 2026-08-21, and Mouser shows inventory available. For real-time stock levels, check the DigiKey product page (part number 3925203) or Mouser's product detail page.
XC7VX690T-2FFG1930I vs XC7VX485T-2FFG1930I - which is better for high-throughput signal processing?
The XC7VX690T-2FFG1930I is better for high-throughput signal processing because it offers 693,120 logic cells and 3,600 DSP48E1 slices, compared to the XC7VX485T's 485,760 logic cells and 2,800 DSP slices. Both share the same FFG1930 package and pinout, but the 690T provides approximately 43% more logic resources and 29% more DSP capacity, enabling larger parallel processing arrays.
What is the difference between XC7VX690T-2FFG1930I and XC7VX690T-2FFG1930C?
The XC7VX690T-2FFG1930I and XC7VX690T-2FFG1930C are functionally identical with the same logic resources and package, but differ in temperature grade. The '-I' suffix indicates industrial temperature range (-40Β°C to +100Β°C), while '-C' indicates commercial temperature range (0Β°C to +85Β°C). Both are pin-compatible drop-in replacements, but the industrial version is required for harsh environments.
When should I choose the XC7VX690T-2FFG1930I over the XC7VX565T-2FFG1930I?
Choose the XC7VX690T-2FFG1930I when you need more logic capacity and DSP resources. The 690T provides 693,120 logic cells versus 566,080 on the 565T, and 3,600 DSP slices versus 3,200. Both share the same FFG1930 package and are pin-compatible. If your design fits within the 565T's resources, it offers cost savings; otherwise, the 690T provides headroom for future expansion.
What is the best drop-in replacement for the XC7VX690T-2FFG1930I?
The best drop-in replacement for the XC7VX690T-2FFG1930I is the XC7VX690T-2FFG1930C, which is pin-compatible and functionally identical but rated for commercial temperature range. For higher performance, the XC7VX690T-3FFG1930I (speed grade -3) is also pin-compatible. All share the same 1924-ball FCBGA package and footprint, requiring no PCB changes.
Where can I download the XC7VX690T-2FFG1930I datasheet PDF?
The XC7VX690T-2FFG1930I datasheet is available from multiple sources. The official AMD/Xilinx datasheet is the '7 Series FPGAs Overview' (DS180), downloadable from xilinx.com. Third-party sites like datasheets.com, Octopart, and GlobalSpec also host the datasheet PDF. For the most current version, always download from AMD's official website.
Where can I find the XC7VX690T-2FFG1930I pinout?
The XC7VX690T-2FFG1930I pinout is documented in the AMD '7 Series FPGAs Packaging and Pinout Specification' (UG475). This document provides the complete pinout for the FFG1930 package, including pin assignments for I/O banks, power, ground, and configuration pins. It is available for download from AMD's official documentation portal.
Hey Google, what can replace the XC7VX690T-2FFG1930I?
The XC7VX690T-2FFG1930I can be replaced by pin-compatible alternatives from the same Virtex-7 XT family, including the XC7VX690T-2FFG1930C (commercial temperature), XC7VX690T-3FFG1930I (faster speed grade), and XC7VX485T-2FFG1930I (fewer resources). All share the same 1924-ball FCBGA package and are drop-in compatible, requiring no PCB changes.
Is the XC7VX690T-2FFG1930I the same as the XC7VX690T-2FFG1930C?
No, the XC7VX690T-2FFG1930I and XC7VX690T-2FFG1930C are not the same part. The '-I' suffix denotes industrial temperature grade (-40Β°C to +100Β°C), while '-C' denotes commercial temperature grade (0Β°C to +85Β°C). They are functionally identical and pin-compatible, but the industrial version is more expensive and suitable for harsh environments.
What are the key specifications of the XC7VX690T-2FFG1930I that engineers should know?
The XC7VX690T-2FFG1930I features 693,120 logic cells, 54,190,080 block RAM bits, 1,000 user I/O pins, 80 GTX transceivers at 12.5 Gbps, 3,600 DSP48E1 slices, and 20 CMTs. It operates from a 1.0V core voltage in a 1924-ball FCBGA package. These specifications make it suitable for high-performance computing, wired communications, and ASIC prototyping.
What is the best AMD equivalent for the XC7VX690T-2FFG1930I?
The best AMD equivalent for the XC7VX690T-2FFG1930I is the XC7VX690T-2FFG1930C, which is the commercial temperature version of the same die. For higher performance, the XC7VX690T-3FFG1930I offers a faster speed grade. All are pin-compatible drop-in replacements from AMD, ensuring design continuity.

Engineering reference data for XC7VX690T-2FFG1930I β€” comparison, design guidance, and compliance information.

Selection Guide

Choose the XC7VX690T-2FFG1930I when you need the highest logic density and DSP resources in the Virtex-7 XT family with industrial temperature support. It is ideal for high-performance computing, wired communications, and radar systems. If your design fits within the XC7VX485T's resources, choose that for cost savings. For higher performance, the XC7VX690T-3FFG1930I offers a faster speed grade. If you only need commercial temperature range, the XC7VX690T-2FFG1930C is a lower-cost option. For even more resources, the XC7VX895T provides additional logic cells and DSP slices. All alternatives share the same FFG1930 package, enabling PCB reuse.

Comparison with Alternatives

Parameter This Product XC7VX690T-2FFG1930C XC7VX690T-3FFG1930I XC7VX485T-2FFG1930I XC7VX565T-2FFG1930I XC7VX895T-2FFG1930I
Package 1924-BBGA, FCBGA (FFG1930) 1924-BBGA, FCBGA (FFG1930) 1924-BBGA, FCBGA (FFG1930) 1924-BBGA, FCBGA (FFG1930) 1924-BBGA, FCBGA (FFG1930) 1924-BBGA, FCBGA (FFG1930)
Brand AMD AMD AMD AMD AMD AMD
Logic Cells 693120 693120 693120 485760 566080 895040
Block RAM (bits) 54190080 54190080 54190080 37044096 43352064 69120000
DSP48E1 Slices 3600 3600 3600 2800 3200 3900
User I/O 1000 1000 1000 1000 1000 1000
GTX Transceivers 80 80 80 56 64 80
Temperature Grade Industrial (-40 to +100C) Commercial (0 to +85C) Industrial (-40 to +100C) Industrial (-40 to +100C) Industrial (-40 to +100C) Industrial (-40 to +100C)

Key Differentiators

  • Higher logic density than XC7VX485T (vs XC7VX485T-2FFG1930I)
  • More DSP resources than XC7VX565T (vs XC7VX565T-2FFG1930I)
  • Industrial temperature grade vs commercial (vs XC7VX690T-2FFG1930C)

Design Notes

The XC7VX690T-2FFG1930I requires multiple power rails: VCCINT at 1.0V, VCCAUX at 1.8V, and VCCBRAM at 1.0V. Use dedicated power planes with low impedance and place decoupling capacitors (100nF and 10uF) close to each power pin. The core current can exceed 10A under heavy utilization, so use a power supply with sufficient headroom and consider using multiple regulators in parallel for redundancy.

With 693,120 logic cells operating at high frequency, the XC7VX690T-2FFG1930I can dissipate significant power, potentially exceeding 30W. The FCBGA package requires a heatsink or active cooling solution. Ensure adequate airflow and consider using a thermal interface material with low thermal resistance. The industrial temperature grade allows operation up to +100C junction, but derating is recommended for long-term reliability.

The 1924-ball FCBGA package with 1.0mm pitch requires a high-layer-count PCB (16+ layers) for proper routing. Use controlled impedance traces for GTX transceivers (85 ohm differential) and ensure adequate ground vias for return current paths. Place the FPGA away from noisy components and use proper stack-up design to minimize crosstalk. Refer to AMD's PCB design guidelines (UG483) for detailed recommendations.

Compliance Information

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

RoHS compliant per distributor data. DRC Conflict Free status noted by Abacus Technologies.

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