2006Proceedings of ESSCIRCRequires access

A 6-Gbps/pin 4.2mW/pin Half-Deuplex Pseudo-LVDS Transceiver

Sua Kim, Bae-sun Kong, Chil-gi Lee, Jin-Hyun Kim, Young-Hyun Jun, Changhyun Kim

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Abstract

This paper presents a half-duplex pseudo-LVDS (low voltage differential signaling) transceiver for low-power high-speed interface system. The data rate of 6Gbps/pin and output data window of 147ps pk-pk was demonstrated using a 1.6GHz clock and 196mV swing. The power consumed by the only I/O circuit was measured to be 4.2mW/pin, when connected to a 10pF load, at a 1.2V output supply voltage. The transmitter uses a pseudo LVDS output driver and a common-mode feedback controller, achieving the reduction of driver currents and the constant common-mode as half voltage level. To achieve the low-transmit jitter, the driver uses the double step pre-emphasis. The receiver employs a shared preamplifier scheme. This scheme ensures transmit power reduction. The proposed LVDS transceiver is fabricated using an 80-nm, DRAM process. It exhibits 25.65ps rms transmitter jitter on the given channel

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What this paper is about

This paper presents a half-duplex pseudo-LVDS (low voltage differential signaling) transceiver for low-power high-speed interface system. The data rate of 6Gbps/pin and output data window of 147ps pk-pk was demonstrated using a 1.6GHz clock and 196mV swing. The power consumed by the only I/O circuit was measured to be 4.2mW/pin, when connected to a 10pF load, at a 1.2V output supply voltage. The transmitter uses a pseudo LVDS output driver and a common-mode feedback controller, achieving the reduction of driver currents and the constant common-mode as half voltage level. To achieve the low-transmit jitter, the driver uses the double step pre-emphasis. The receiver employs a shared preamplifier scheme. This scheme ensures transmit power reduction. The proposed LVDS transceiver is fabricated using an 80-nm, DRAM process. It exhibits 25.65ps rms transmitter jitter on the given channel

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Available abstract

This paper presents a half-duplex pseudo-LVDS (low voltage differential signaling) transceiver for low-power high-speed interface system. The data rate of 6Gbps/pin and output data window of 147ps pk-pk was demonstrated using a 1.6GHz clock and 196mV swing. The power consumed by the only I/O circuit was measured to be 4.2mW/pin, when connected to a 10pF load, at a 1.2V output supply voltage. The transmitter uses a pseudo LVDS output driver and a common-mode feedback controller, achieving the reduction of driver currents and the constant common-mode as half voltage level. To achieve the low-transmit jitter, the driver uses the double step pre-emphasis. The receiver employs a shared preamplifier scheme. This scheme ensures transmit power reduction. The proposed LVDS transceiver is fabricated using an 80-nm, DRAM process. It exhibits 25.65ps rms transmitter jitter on the given channel

Key concepts: Jitter, Transceiver, Transmitter, Preamplifier, Electrical engineering, Voltage, Dram, Electronic engineering

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