XCV50-5CS144C
XCV50-5CS144C
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rohs
Xilinx

XCV50-5CS144C


XCV50-5CS144C
F20-XCV50-5CS144C
Active
IC FPGA 94 I/O 144CSBGA
144-LCSBGA (12x12)

XCV50-5CS144C ECAD Model


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XCV50-5CS144C Attributes


Type Description Select
Mfr AMD Xilinx
Series Virtex®
Package Tray
Number of LABs/CLBs 384
Number of Logic Elements/Cells 1728
Total RAM Bits 32768
Number of I/O 94
Number of Gates 57906
Voltage - Supply 2.375V ~ 2.625V
Mounting Type Surface Mount
Operating Temperature 0°C ~ 85°C (TJ)
Package / Case 144-TFBGA, CSPBGA
Supplier Device Package 144-LCSBGA (12x12)
Base Product Number XCV50

XCV50-5CS144C Datasheet Download


XCV50-5CS144C Overview



The XCV50-5CS144C is a field-programmable gate array (FPGA) chip from Xilinx. It is a member of the Virtex-5 family of FPGAs and is based on the 65nm process technology. It has a total of 144,576 logic cells and 5,120 Kbits of embedded memory. It has four independent clock domains and can support up to four independent banks of DDR2/DDR3 memory. It also includes two high-speed serial transceivers, two PCI Express ports and four Gigabit Ethernet ports.


The XCV50-5CS144C is ideal for high-performance applications where multiple clock domains are needed. It can be used in a variety of applications such as video processing, communications, networking, storage, and embedded systems. It is well-suited for applications that require high I/O throughput and high-speed data processing. It is also suitable for applications that require high-speed memory access and low power consumption.


The XCV50-5CS144C has a total power dissipation of 11.5W and a maximum operating temperature of 85°C. It has a wide operating voltage range of 1.0V to 3.3V. It is also RoHS compliant and has a high-speed serial transceiver operating at up to 6.5Gbps. It is available in a variety of packages including the FBGA-1076, FBGA-1078, and FBGA-1079.


Overall, the XCV50-5CS144C is a highly versatile FPGA chip with a wide range of application areas. It is ideal for high-performance applications that require multiple clock domains, high I/O throughput, and low power consumption.



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