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- W2910766720 abstract "This paper presents an intelligent packet transmission system between an Ethernet and a synchronous optical network involving format transformation based on a field-programmable gate array (FPGA) development board. Client data are fed to the RS485 port on the FPGA board (Tx) and then transformed into an Ethernet packet. The E/O converter (Tx) converts an electrical signal to an optical signal and transmits it through the optical fiber to the receiver. The O/E converter (Rx) converts an optical signal to an electrical signal, which is captured using the FPGA board. The signal is then sent to the client through the RS485 port. The client terminal can display the received data to verify the transceiver function. Optical fiber transmission has properties such as high speed, long distance, and low interference, whereas electrical transmission does not possess these features. The intelligent packet transformation and transmission mechanisms were implemented using the Verilog hardware description language and verified through the FPGA development board on the RS485 serial port. The measured results indicated that the operational frequency, data transfer rate of the RS485 port, power consumption, and chip size were 125 MHz, 115,200 bps, 137 mW, and 1.27 × 1.27 mm^2, respectively, at a data volume of 8 bits and a first-in-first-out queue of 1K bytes." @default.
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- W2910766720 date "2018-10-01" @default.
- W2910766720 modified "2023-09-24" @default.
- W2910766720 title "Intelligent Packet Transformation and Transmission Between Ethernet and Optical Fiber Systems Based on a Field-Programmable Gate Array Board" @default.
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- W2910766720 doi "https://doi.org/10.1109/smc.2018.00690" @default.
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