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首页> 外文期刊>IEEE Transactions on Electron Devices >Impact of Halo Doping on the Subthreshold Performance of Deep-Submicrometer CMOS Devices and Circuits for Ultralow Power Analog/Mixed-Signal Applications
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Impact of Halo Doping on the Subthreshold Performance of Deep-Submicrometer CMOS Devices and Circuits for Ultralow Power Analog/Mixed-Signal Applications

机译:晕轮掺杂对超低功耗模拟/混合信号应用中深亚微米CMOS器件和电路的亚阈值性能的影响

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In addition to its attractiveness for ultralow power applications, analog CMOS circuits based on the subthreshold operation of the devices are known to have significantly higher gain as compared to their superthreshold counterpart. The effects of halo [both double-halo (DH) and single-halo or lateral asymmetric channel (LAC)] doping on the subthreshold analog performance of 100-nm CMOS devices are systematically investigated for the first time with extensive process and device simulations. In the subthreshold region, although the halo doping is found to improve the device performance parameters for analog applications (such as gm/Id, output resistance and intrinsic gain) in general, the improvement is significant in the LAC devices. Low angle of tilt of the halo implant is found to give the best improvement in both the LAC and DH devices. Our results show that the CMOS amplifiers made with the halo implanted devices have higher voltage gain over their conventional counterpart, and a more than 100% improvement in the voltage gain is observed when LAC doping is made on both the p- and n-channel devices of the amplifier
机译:除了其对超低功耗应用的吸引力外,基于器件亚阈值操作的模拟CMOS电路与其超阈值同类器件相比还具有明显更高的增益。首次通过广泛的工艺和器件仿真系统地研究了晕圈[双晕圈(DH)和单晕圈或横向非对称通道(LAC)]掺杂对100 nm CMOS器件亚阈值模拟性能的影响。在亚阈值区域中,尽管发现通常采用晕环掺杂可以改善器件性能参数(例如gm / Id,输出电阻和本征增益),但在LAC器件中,这种改善是显着的。发现晕环植入物的低倾斜角可在LAC和DH器件中提供最佳的改善。我们的结果表明,用光晕注入器件制成的CMOS放大器具有比常规放大器更高的电压增益,并且在p沟道和n沟道器件上进行LAC掺杂时,可以观察到电压增益提高了100%以上。放大器的

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