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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research >Design of high-linear CMOS circuit using a constant transconductance method for gamma-ray spectroscopy system
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Design of high-linear CMOS circuit using a constant transconductance method for gamma-ray spectroscopy system

机译:基于恒定跨导方法的伽马射线光谱系统高线性CMOS电路设计

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摘要

We propose a novel circuit to be applied to the front-end integrated circuits of gamma-ray spectroscopy systems. Our circuit is designed as a type of current conveyor (ICON) employing a constant-g_m (transconductance) method which can significantly improve the linearity in the amplified signals by using a large time constant and the time-invariant characteristics of an amplifier. The constant-g_m method is obtained by a feedback control which keeps the transconductance of the input transistor constant. To verify the performance of the propose circuit, the time constant variations for the channel resistances are simulated with the TSMC 0.18 μm transistor parameters using HSPICE, and then compared with those of a conventional ICON. As a result, the proposed ICON shows only 0.02% output linearity variation and 0.19% time constant variation for the input amplitude up to 100mV. These are significantly small values compared to a conventional ICON'S 1.39% and 19.43%, respectively, for the same conditions.
机译:我们提出了一种新颖的电路,将其应用于伽玛射线光谱系统的前端集成电路。我们的电路被设计为一种采用常量g_m(跨导)方法的电流传输器(ICON),通过使用较大的时间常数和放大器的时不变特性,可以显着改善放大信号的线性。 constant-g_m方法是通过保持输入晶体管的跨导恒定的反馈控制获得的。为了验证所建​​议电路的性能,使用HSPICE使用TSMC 0.18μm晶体管参数模拟了沟道电阻的时间常数变化,然后将其与常规ICON进行比较。结果,对于高达100mV的输入幅度,建议的ICON仅显示0.02%的输出线性变化和0.19%的时间常数变化。在相同条件下,与传统ICON的1.39%和19.43%相比,这些值非常小。

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