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首页> 外文期刊>Mechatronics, IEEE/ASME Transactions on >Experimental Study of a Hybrid Small-Signal Parameter Modeling and Extraction Method for a Microoptoelectronic Device
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Experimental Study of a Hybrid Small-Signal Parameter Modeling and Extraction Method for a Microoptoelectronic Device

机译:光电器件混合小信号参数建模与提取方法的实验研究

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摘要

In the device performance variation and control for microdevices, accurate models are critical for predicting dc behaviors as well as high-frequency behaviors. Thus, acquiring the characteristics of an optoelectronic device is essential for estimating its application to high-throughput control systems. In particular, we present an experimental and analytical investigation for extracting the parameters and intrinsic properties of an optoelectronic microdevice. Our study utilizes a near-infrared, InGaAsP buried heterostructure, multiquantum well distributed-feedback laser. We utilize a modified frequency response model and the conventional method of subtracting frequency responses in two different bias currents above the laser threshold current to attain the resonance frequency and damping factor using a simple four-parameter curve-fitting procedure. With this method, we were able to acquire the intrinsic properties of the laser and its frequency response. In addition, the series resistance, which is drawn directly from a modified current–voltage (–) curve, can explicitly reflect the operation of the laser below and above the threshold current. The parasitic capacitance was found by comparing the measured and extracted intrinsic frequency responses. Our extracted results agree well with previously published results.
机译:在微设备的设备性能变化和控制中,准确的模型对于预测直流行为以及高频行为至关重要。因此,获取光电器件的特性对于估算其在高通量控制系统中的应用至关重要。特别是,我们目前进行实验和分析研究,以提取光电微器件的参数和固有特性。我们的研究利用了近红外InGaAsP掩埋异质结构,多量子阱分布反馈激光器。我们利用改进的频率响应模型和常规方法,通过简单的四参数曲线拟合程序,在高于激光阈值电流的两个不同偏置电流中减去频率响应,以获得谐振频率和阻尼因子。使用这种方法,我们能够获得激光器的固有特性及其频率响应。此外,直接从修改后的电流-电压(-)曲线中得出的串联电阻可以明确反映激光器在阈值电流以下和以上的操作。通过比较测得的和提取的固有频率响应发现寄生电容。我们提取的结果与以前发布的结果非常吻合。

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