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A balanced hybrid ring oscillator for precise temperature compensation

机译:平衡的混合环形振荡器,可实现精确的温度补偿

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A balanced hybrid ring oscillator (RO) is proposed in this paper for the precise temperature compensation. Different from the previous ROs with only one type of delay cell, the proposed RO consists of both the delay cells with PTAT (proportional to the absolute temperature) characteristics and those with CTAT (complementary to absolute temperature) characteristics. The optimal temperature compensated point can then be found by adjusting the number of PTAT and CTAT delay cells and the load capacitance of each delay cell. Both ideal and non-ideal models are developed to explain this temperature compensation mechanism. Finally, combining the opposite temperature characteristics of normal RO and current-starved RO, a 13.4 MHz on-chip clock circuit is implemented in 0.13um CMOS process, with 14.6 ppm/°C over the temperature range from -40°C to 80°C. The worst process variation is 1.19% and the supply variation is 0.06%/V.
机译:本文提出了一种平衡混合环形振荡器(RO),用于精确的温度补偿。与以前的RO仅具有一种延迟单元类型不同,建议的RO由具有PTAT(与绝对温度成比例)特性的延迟单元和具有CTAT(与绝对温度成比例)特性的延迟单元组成。然后,可以通过调整PTAT和CTAT延迟单元的数量以及每个延迟单元的负载电容来找到最佳温度补偿点。开发了理想模型和非理想模型来解释这种温度补偿机制。最后,结合了普通RO和电流不足RO的相反温度特性,以0.13um CMOS工艺实现了13.4 MHz的片上时钟电路,在-40°C至80°C的温度范围内具有14.6 ppm /°C的温度。 C。最差的工艺变化是1.19%,电源变化是0.06%/ V。

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