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Low-power Inductive-coupling Transmitter Using Supply-insensitive Auxiliary Driving Switch under Supply-voltage Fluctuation

机译:低功耗电感耦合发射器在电源电压波动下使用供应不敏感辅助驱动开关

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摘要

In this study, a constant-power inductive-coupling transmitter for low-power supply-sensing biosensing platforms is proposed. The proposed inductive-coupling transmitter is composed of two driving transistors with different inputs from different pulse generators. The two pulse generators have different working threshold voltages, and one of them works as the main driving switch, while the other works as an auxiliary driving switch, which turns on only at low supply voltages. This auxiliary driving technique realizes the constant power characteristics of the inductive-coupling transmitter because the auxiliary driving transistor only functions at low supply voltages, which reduces waste power at high supply voltages. To verify the effectiveness of the proposed inductive-coupling transmitter, a test chip is fabricated using 65 nm silicon-on-thin-box (SOTB) CMOS technology. The test chip successfully demonstrates constant power characteristics, whereas the power consumed by the conventional inductive-coupling transmitter increases with an increase in the supply voltage.
机译:在该研究中,提出了一种用于低电源供电感测的生物传感平台的恒定功率耦合发射器。所提出的电感耦合发射器由具有来自不同脉冲发生器的不同输入的两个驱动晶体管组成。两个脉冲发生器具有不同的工作阈值电压,其中一个是作为主驱动开关的工作,而另一个工作用作辅助驱动开关,仅在低电源电压下打开。该辅助驱动技术实现了电感耦合发射器的恒定功率特性,因为辅助驱动晶体管仅在低电源电压下起作用,这减少了高电源电压下的废功率。为了验证所提出的电感耦合发射器的有效性,使用65nm硅嵌入式盒(SOTB)CMOS技术制造测试芯片。测试芯片成功地展示了恒定功率特性,而传统电感耦合发射器消耗的功率随电源电压的增加而增加。

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