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A Low-Power Two-Tap Voltage-Mode Transmitter With Precisely Matched Output Impedance Using an Embedded Calibration Circuit

机译:使用嵌入式校准电路的,具有精确匹配的输出阻抗的低功耗两抽头电压模式变送器

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In this brief, a low-power two-tap voltage-mode transmitter (TX) with precisely matched output impedance using an embedded calibration circuit for dc-coupled unidirectional links is proposed. The proposed TX adopts an N-over-N driver with a supply voltage of 0.4 V in order to reduce the power consumption of the output driver. Its output driver is configured as a two-tap Finite Impulse Response (FIR) filter in order to compensate for channel loss at high frequency. In addition, the proposed embedded impedance calibration circuit precisely matches the impedance of the output driver to the channel characteristic impedance by using the receiver termination resistor instead of external reference resistors. The proposed two-tap voltage-mode TX is fabricated using a 90-nm low-power CMOS process technology and occupies an active area of 0.054 mm2. The measurement results show that the matching error of the output impedance is between −0.6% and +0.8%, and the power efficiency is 0.75 pJ/b without equalization and 0.94 pJ/b with 6-dB equalization, at a data rate of 5.0 Gb/s.
机译:在本简介中,提出了一种用于嵌入式耦合直流耦合单向链路的,具有精确匹配输出阻抗的低功率两抽头电压模式发射机(TX)。建议的TX采用N-over-N驱动器,其电源电压为0.4 V,以减少输出驱动器的功耗。其输出驱动器配置为两抽头有限冲激响应(FIR)滤波器,以补偿高频时的信道损耗。此外,通过使用接收器端接电阻器而不是外部参考电阻器,所提出的嵌入式阻抗校准电路将输出驱动器的阻抗与通道特性阻抗精确匹配。拟议的两抽头电压模式TX是使用90 nm低功耗CMOS工艺技术制造的,其有效面积为0.054 mm2。测量结果表明,在数据速率为5.0的情况下,输出阻抗的匹配误差在-0.6%至+ 0.8%之间,功率效率在不均衡的情况下为0.75 pJ / b,在6 dB均衡的情况下为0.94 pJ / b。 Gb /秒

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