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A 13 pJ/bit 900 MHz QPSK/16-QAM Band Shaped Transmitter Based on Injection Locking and Digital PA for Biomedical Applications

机译:基于注入锁定和数字PA的13 pJ / bit 900 MHz QPSK / 16-QAM带状发射机,适用于生物医学应用

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摘要

This paper presents a 900 MHz highly digital transmitter capable of providing band shaped QPSK/16-QAM modulation for high data-rate applications with high energy efficiency. Injection-locked ring oscillator is used for multi-phase carrier generation which eliminates the use of power-hungry phase-locked loop. It also provides fast settling time that enables heavy duty cycling to maximize energy conservation. Direct modulation at power amplifier is adopted to simplify the transmitter architecture. Fabricated in 65 nm CMOS, the transmitter achieves maximum data rate of 50 Mbps/100 Mbps for QPSK/16-QAM with effective sideband suppression more than 38 dB. The chip occupies an active area of 0.08 mm and achieves a settling time of less than 88 ns. Under 0.77 V supply, it achieves an energy efficiency of 26 pJ/bit and 13 pJ/bit with and without band shaping respectively. The measured EVM is better than 6% for QPSK (at 50 Mbps) and 16-QAM (at 100 Mbps) while delivering 15 dBm of output power.
机译:本文提出了一种900 MHz的高数字发射器,该发射器能够为具有高能效的高数据速率应用提供带状QPSK / 16-QAM调制。注入锁定环形振荡器用于生成多相载波,从而无需使用耗电的锁相环。它还提供了快速的建立时间,使重载循环能够最大程度地节省能源。采用功率放大器的直接调制可简化发射机架构。该发射器采用65 nm CMOS制成,对于QPSK / 16-QAM,其最大数据速率达到50 Mbps / 100 Mbps,有效边带抑制超过38 dB。该芯片的有效面积为0.08 mm,建立时间少于88 ns。在0.77 V电源下,带和不带成形时,其能量效率分别为26 pJ / bit和13 pJ / bit。对于QPSK(50 Mbps)和16-QAM(100 Mbps),测得的EVM优于6%,同时提供15 dBm的输出功率。

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