XQV1000E-2CG560I -Cloud Computing -Consumer Electronics

XQV1000E-2CG560I ApplicationField

-Wireless Technology
-Industrial Control
-Internet of Things
-Medical Equipment
-5G Technology
-Consumer Electronics
-Artificial Intelligence
-Cloud Computing

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XQV1000E-2CG560I FAQ Chips 

Q: Where can I purchase Xilinx XQV1000E Development Boards, Evaluation Boards, or QPro Virtex-E 1.8V QML High-Reliability FPGAs Starter Kit? also provide technical information?
A: RAYPCB does not provide development board purchase services for the time being, but customers often consult about ZedBoard, Basys 3 board, TinyFPGA BX, Nexys4-DDR, Terasic DE10-Nano, Digilent Arty S7, etc. If you need relevant technical information, you can submit feedback information, our technicians will contact you soon.

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Q: Does the price of XQV1000E-2CG560I devices fluctuate frequently?
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Q: How to obtain XQV1000E-2CG560I technical support documents?
A: Enter the “XQV1000E-2CG560I” keyword in the search box of the website, or find these through the Download Channel or FPGA Forum .

Q: How can I obtain software development tools related to the Xilinx FPGA platform?
A: In FPGA/CPLD design tools, Xilinx’s Vivado Design Suite is easy to use, it is very user-friendly in synthesis and implementation, and it is easier to use than ISE design tools; The specific choice depends on personal habits and functional requirements to specifically select a more suitable match. You can search and download through the FPGA resource channel.

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A: Depending on the time difference between your location and our location, it may take several hours for us to reply, please be patient, our FPGA technical engineer will help you with the XQV1000E-2CG560I pinout information, replacement, datasheet in pdf, programming tools, starter kit, etc.

ICs XQV1000E-2CG560I Features

• Guaranteed over the full military temperature range (–55°C to +125°C)
– Supported by free Synthesizable reference design
• High-Performance Built-In Clock Management Circuitry
– Wide selection of PC and workstation platforms
• SRAM-Based In-System Configuration
• Supported by Xilinx Foundation and Alliance Series Development Systems
• Advanced Packaging Options
– Further compile time reduction of 50%
• Fast, High-Density 1.8V FPGA Family
• Flexible Architecture Balances Speed and Density
– Dedicated multiplier support
– Dedicated carry logic for high-speed arithmetic
– Internal 3-state bussing
– Designed for low-power operation
– Cascade chain for wide-input function
– Abundant registers/latches with clock enable, and dual synchronous/asynchronous set and reset
– LVDS (622 Mb/s), BLVDS (Bus LVDS), LVPECL
– 200 Mb/s DDR SDRAMs
– Zero-delay conversion of high-speed LVPECL/LVDS clocks to any I/O standard
– Designed for high-performance Interfaces to External Memories
– Unlimited reprogrammability
– Eight fully digital Delay-Locked Loops (DLLs)
– 130 MHz internal performance (four LUT levels)
– Digitally-Synthesized 50% duty cycle for Double Data Rate (DDR) Applications
– PCI compliant 3.3V, 32-bit, 33 MHz
– Supports 20 high-performance interface standards
– IEEE 1149.1 boundary-scan logic
• Ceramic and Plastic Packages
– Up to 640 Kb of synchronous internal block RAM
• Sophisticated SelectRAM+ Memory Hierarchy
• Proprietary High-Performance SelectLink Technology
– Internet Team Design (ITD) tool ideal for million-plus gate density designs
– LVPECL and LVDS clock inputs for 300+ MHz clocks
• Certified to MIL-PRF-38535 (Qualified Manufacturer Listing)
– Dual port block RAM capability
– Differential I/O signals can be input, output, or I/O
– Web-based HDL generation methodology
• Highly Flexible SelectIO+ Technology
– Die-temperature sensor diode
– 600 Kb of internal configurable distributed RAM
– Compatible with standard differential devices
– Clock Multiply and Divide
– Memory bandwidth up to 1.66 Tb/s (equivalent bandwidth of over 100 RAMBUS channels)
– Densities from 600K to 2M system gates
– Double Data Rate (DDR) to Virtex-E link
• Differential Signalling Support
– Up to 804 singled-ended I/Os or 344 differential I/O pairs for an aggregate bandwidth of > 100 Gb/s
– 200 MHz ZBT* SRAMs

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Xilinx XQV1000E-2CG560I Overview

The XQV1000E-2CG560I FPGA family delivers high-performance, high-capacity programmable logic solutions. Dramatic increases in silicon efficiency result from optimizing the new architecture for place-and-route efficiency and exploiting an aggressive 6-layer metal 0.18 µm CMOS process. These advances make Virtex-E FPGAs powerful and flexible alter natives to mask-programmed gate arrays.Combining a wide variety of programmable system features, a rich hierarchy of fast, flexible interconnect resources, and advanced process technology, the XQV1000E-2CG560I  delivers a high-speed and high-capacity programmable logic solution that enhances design flexibility while reducing time-to-market.Virtex-E ArchitectureXQV1000E-2CG560I devices feature a flexible, regular architecture that comprises an array of configurable logic blocks (CLBs) surrounded by programmable input/output blocks (IOBs), all interconnected by a rich hierarchy of fast, versatile routing resources. The abundance of routing resources permits the XQV1000E-2CG560I family to accommodate even the largest and most complex designs.Higher PerformanceXQV1000E-2CG560I devices provide better performance than previous generations of FPGAs. Designs can achieve synchronous system clock rates up to 240 MHz including I/O or 622 Mb/s using Source Synchronous data transmission architechtures. Virtex-E XQV1000E-2CG560I I/Os comply fully with 3.3V PCI specifications, and interfaces can be implemented that operate at 33 MHz or 66 MHz. While performance is design-dependent, many designs operate internally at speeds in excess of 133 MHz and can achieve over 311 MHz.

XQV1000E-2CG560I Tags integrated circuit

1. XQV1000E evaluation board
2. XQV1000E reference design
3. QPro Virtex-E 1.8V QML High-Reliability FPGAs evaluation kit
4. XQV1000E-2CG560I Datasheet PDF
5. QPro Virtex-E 1.8V QML High-Reliability FPGAs starter kit
6. Xilinx QPro Virtex-E 1.8V QML High-Reliability FPGAs development board
7. XQV1000E development board
8. Xilinx XQV1000E
9. XQV1000E-2CG560I Datasheet PDF

Xilinx XQV1000E-2CG560I TechnicalAttributes