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非制冷红外焦平面读出电路用带隙基准电压源
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作者 赵公元 赵毅强 《红外与激光工程》 EI CSCD 北大核心 2015年第9期2627-2632,共6页
提出了一种高精度、低功耗、小面积的电流型CMOS基准电压源以满足非制冷红外焦平面(IRFPA)读出电路对基准电压源模块的要求。设计中采用两种分别具有正负一阶温度系数的电阻,通过对基准电压源的高阶温度系数进行补偿,获得更好的温度系... 提出了一种高精度、低功耗、小面积的电流型CMOS基准电压源以满足非制冷红外焦平面(IRFPA)读出电路对基准电压源模块的要求。设计中采用两种分别具有正负一阶温度系数的电阻,通过对基准电压源的高阶温度系数进行补偿,获得更好的温度系数TC(Temperature Coefficient)。通过使用共源共栅结构代替传统的运放,节约了传统运放和偏置电路的功耗,并且具有出色的电源电压抑制比PSRR(Power Supply Reject Ratio)。该设计使用标准0.18μm CMOS工艺实现,工作电压3.3 V,-40~120℃温度范围内,输出基准电压温度系数约为3.7 ppm/℃,PSRR约为-78 d B@1 k Hz,在25℃时消耗电流6.3μA,消耗芯片面积仅230μm×100μm,所提出的电路是一种低功耗、节约面积的设计。 展开更多
关键词 红外焦平面 带隙基准电压源 高阶曲率补偿 低功耗 常数电流
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Numerical modeling dynamic process of multi-feed microwave heating of industrial solution media 被引量:5
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作者 杨彪 孙俊 +7 位作者 李玮 彭金辉 李幼灵 罗会龙 郭胜惠 张竹敏 苏鹤州 史亚鸣 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第12期3192-3203,共12页
The exothermic efficiency of microwave heating an electrolyte/water solution is remarkably high due to the dielectric heating by orientation polarization of water and resistance heating by the Joule process occurred s... The exothermic efficiency of microwave heating an electrolyte/water solution is remarkably high due to the dielectric heating by orientation polarization of water and resistance heating by the Joule process occurred simultaneously compared with pure water.A three-dimensional finite element numerical model of multi-feed microwave heating industrial liquids continuously flowing in a meter-scale circular tube is presented.The temperature field inside the applicator tube in the cavity is solved by COMSOL Multiphysics and professional programming to describe the momentum,energy and Maxwell's equations.The evaluations of the electromagnetic field,the temperature distribution and the velocity field are simulated for the fluids dynamically heated by singleand multi-feed microwave system,respectively.Both the pilot experimental investigations and numerical results of microwave with single-feed heating for fluids with different effective permittivity and flow rates show that the presented numerical modeling makes it possible to analyze dynamic process of multi-feed microwave heating the industrial liquid.The study aids in enhancing the understanding and optimizing of dynamic process in the use of multi-feed microwave heating industrial continuous flow for a variety of material properties and technical parameters. 展开更多
关键词 microwave with multi-feed heating industrial flow dynamical process numerical computation solution media
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