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发光二极管负电容与角频率的关系
引用本文:谭延亮,游开明,陈列尊,袁红志. 发光二极管负电容与角频率的关系[J]. 半导体学报, 2007, 28(5): 741-744
作者姓名:谭延亮  游开明  陈列尊  袁红志
作者单位:1. 衡阳师范学院物电系,衡阳,421008
2. 湖南天雁机械有限公司,衡阳,421005
摘    要:利用正向交流(AC)小信号方法对发光二极管(LED)的电容-电压特性进行测量,可以观察到发光二极管中的负电容现象.提出了测量到的负电容现象是表象,不存在负电容;发光二极管p-n结的结电容在特定的正向电压范围内等效于可变电容.分析可变电容对交流小信号响应得到:特定参数的可变电容使电流的相位移相π,使得在测量中表现为负电容;得到了发光二极管负电容与角频率的关系表达式.

关 键 词:发光二极管  负电容  正向交流小信号方法  可变电容  角频率
收稿时间:2015-08-18
修稿时间:2006-11-16

Relation of Negative Capacitance in LED to Rotational Frequency
Tan Yanliang, You Kaiming, Chen Liezun, Yuan Hongzhi. Relation of Negative Capacitance in LED to Rotational Frequency[J]. Journal of Semiconductors, 2007, In Press. Tan Y L, You K M, Chen L Z, Yuan H Z. Relation of Negative Capacitance in LED to Rotational Frequency[J]. Chin. J. Semicond., 2007, 28(5): 741.Export: BibTex EndNote
Authors:Tan Yanliang  You Kaiming  Chen Liezun  Yuan Hongzhi
Affiliation:Department of Physics and Electronics, Hengyang Normal University, Hengyang 421008, China;Department of Physics and Electronics, Hengyang Normal University, Hengyang 421008, China;Department of Physics and Electronics, Hengyang Normal University, Hengyang 421008, China;Hunan Tyen Machine LPT.Co, Hengyang 421005,China
Abstract:Using the forward alternating current (ac) small signal method to measure the capacitance-voltage characteristic of an LED, negative capacitance can be observed.We propose that this phenomenon is a surface phenomenon, and there is no real negative capacitance.We further propose that the capacitance of the p-n junction in an LED is equivalent to the variable capacitance in a certain range of forward voltage.By the corresponding analysis of variable capacitance to the alternating current small signal, we find that the variable capacitance for certain parameters can shift the phase of the current by π,leading to negative capacitance in measurement.Additionally, an expression for the negative capacitance in an LED that relates it to the rotational frequency is obtained for the first time.
Keywords:light-emitting diode   negative capacitance   forward alternating current small signal method   variable capacitance   rotational frequency
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