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XCV2000E-6FG680C from XILINX

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XCV2000E-6FG680C

Manufacturer: XILINX

Virtex-E 1.8V field programmable gate array.

Partnumber Manufacturer Quantity Availability
XCV2000E-6FG680C,XCV2000E6FG680C XILINX 578 In Stock

Description and Introduction

Virtex-E 1.8V field programmable gate array. The **XCV2000E-6FG680C** is a member of the **Virtex-E** family of Field Programmable Gate Arrays (FPGAs) manufactured by **Xilinx**. Below are its key specifications, descriptions, and features:

### **Specifications:**
- **Device Family:** Virtex-E  
- **Part Number:** XCV2000E-6FG680C  
- **Logic Cells:** ~2 million system gates  
- **CLB (Configurable Logic Blocks):** 4,928  
- **Flip-Flops:** 27,648  
- **Max User I/Os:** 512  
- **Block RAM:** 160 Kb (80 x 2Kb blocks)  
- **Speed Grade:** -6 (moderate speed performance)  
- **Package:** 680-pin Fine-Pitch Ball Grid Array (FG680)  
- **Operating Voltage:** 1.8V core, 3.3V I/O  
- **Process Technology:** 0.18µm CMOS  

### **Descriptions:**
- The **XCV2000E-6FG680C** is a high-performance FPGA designed for complex digital logic applications.  
- It supports **on-chip block RAM**, **distributed RAM**, and **high-speed I/O interfaces**.  
- Suitable for **telecommunications, networking, DSP, and high-speed computing applications**.  
- Features **dedicated carry logic** for arithmetic functions and **four digital delay-locked loops (DLLs)** for clock management.  

### **Features:**
- **High-Density Programmable Logic:** Supports large-scale designs with millions of system gates.  
- **Flexible Memory Resources:** Includes both block RAM and distributed RAM for data storage.  
- **High-Speed I/O:** Supports **LVTTL, LVCMOS, PCI, GTL+, HSTL, and SSTL** standards.  
- **Clock Management:** Integrated **DLLs** for zero-delay clock distribution and deskewing.  
- **Reconfigurable Design:** Supports in-system programming (ISP) for dynamic reconfiguration.  
- **Low-Power Operation:** 1.8V core voltage reduces power consumption.  

This FPGA is ideal for applications requiring **high logic density, fast processing, and flexible I/O options**.

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