2018•Unpublished venueRequires access

A 1.25Gbps Programmable FPGA I/O Buffer with Multi-Standard Support

Taotao Qian, Lei Chen, Xuewu Li, Huabo Sun, Jie Ni

Open publisher page 9 citations

Abstract

In this paper, a field programmable gate array (FPGA) I/O buffer developed to support 1.25 gigabits-per-second differential source-synchronous standards is presented. The I/O buffer provides the compatibility of 38 high-speed I/O standards, features wide supply voltage range, programmable drive strength and controlled impedance driver. To enhance the performance and drive capacity of low voltage standards, an auxiliary supply is introduced into the I/O buffer. The proposed I/O buffer has been fabricated and integrated in an SRAM-based FPGA with commercial 65nm CMOS technology.

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What this paper is about

In this paper, a field programmable gate array (FPGA) I/O buffer developed to support 1.25 gigabits-per-second differential source-synchronous standards is presented. The I/O buffer provides the compatibility of 38 high-speed I/O standards, features wide supply voltage range, programmable drive strength and controlled impedance driver. To enhance the performance and drive capacity of low voltage standards, an auxiliary supply is introduced into the I/O buffer. The proposed I/O buffer has been fabricated and integrated in an SRAM-based FPGA with commercial 65nm CMOS technology.

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OpenAlex reports 9 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

In this paper, a field programmable gate array (FPGA) I/O buffer developed to support 1.25 gigabits-per-second differential source-synchronous standards is presented. The I/O buffer provides the compatibility of 38 high-speed I/O standards, features wide supply voltage range, programmable drive strength and controlled impedance driver. To enhance the performance and drive capacity of low voltage standards, an auxiliary supply is introduced into the I/O buffer. The proposed I/O buffer has been fabricated and integrated in an SRAM-based FPGA with commercial 65nm CMOS technology.

Key concepts: Buffer (optical fiber), Field-programmable gate array, Buffer amplifier, Gigabit, CMOS, Embedded system, Computer science, Voltage

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