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Comparison between Spartan-3E and Virtex-6Technologies on FPGA for UART Transmission

机译:FPGA上用于UART传输的Spartan-3E和Virtex-6技术之间的比较

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This paper presents the hardware implementation of high speed (Universal Asynchronous Receiver/Transmitter) UART using (Field Programmable Gate Array) FPGA. UART is an integrated circuit containing a transmitter (parallel to serial converter) and a receiver (serial to parallel converter) each clocked separately. It transmit 9600 to 34800 bps for transmitting data bit. A high speed UART using 90nm and 40nm technologies has been designed by using FPGA’s Spartan 3E and Virtex 6 synthesized on the xilinx ISE 12.4i in VHDL language. By comparing these two technologies on the basis of number of slices, look up tables, GCLK’s, slice flip-flops and maximum frequency, it was seen that 40nm technology consumes less area and is 3 times faster than 90nm technology.
机译:本文介绍了使用(现场可编程门阵列)FPGA的高速(通用异步接收器/发送器)UART的硬件实现。 UART是一种集成电路,包含分别独立时钟的发送器(并行至串行转换器)和接收器(串行至并行转换器)。它传输9600到34800 bps,以传输数据位。通过使用在VHDL语言的xilinx ISE 12.4i上合成的FPGA Spartan 3E和Virtex 6,设计了使用90nm和40nm技术的高速UART。通过根据切片数,查找表,GCLK,切片触发器和最大频率对这两种技术进行比较,可以看出40nm技术消耗的面积更少,并且比90nm技术快3倍。

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