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- W3089849869 abstract "In this chapter, we review the challenges and effective design techniques for ultra-low-power analog integrated circuits. With the miniaturization, having low-power low-voltage mixed signal IC is essential to maintain the electric field in the device. This constraint presents bottleneck for the researchers to design robust analog circuits. Specifically, the low value of supply voltage with small technology influences many specifications of analog IC, e.g., power supply rejection, dynamic range and immunity to noise, etc. In addition, it also affects the ability of the MOS transistor to be operated in the strong inversion region. Note that with the technology reduction, power supply (textit{V}_mathrm{DD}) is reducing but the threshold voltage (textit{V}_mathrm{T}) is not decreasing proportionally to maintain low leakage current. However, this process reduces the overdrive voltage and limits the staking of transistors. In this case, the transistor can be made to work in weak inversion to work and reduce the power consumption. Further, reduction in (textit{V}_mathrm{DD}) to achieve low-power consumption causes many other circuit-related issues such as PVT variations, degradation of dynamic range, mismatching in circuits element and differential paths. There have been many design methods developed for the ultra-low-power analog ICs. In this chapter, we will discuss some of the design techniques to reduce the power consumption in analog ICs. In addition, we will also discuss the basic building blocks of analog circuits with discussed design techniques." @default.
- W3089849869 created "2020-10-08" @default.
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- W3089849869 date "2020-01-01" @default.
- W3089849869 modified "2023-09-26" @default.
- W3089849869 title "Low-Voltage Analog Integrated Circuit Design" @default.
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- W3089849869 doi "https://doi.org/10.1007/978-981-15-7937-0_1" @default.
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