高速光电探测器饱和特性测试数据
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面向高功率光探测场景的动态范围设计需求建设,背景是饱和特性决定探测器在高光功率下的线性工作范围,避免信号失真。产生方法通过逐步增加光功率,测量输出电流的线性度变化。主要记录不同偏置下输出电流随输入光功率的变化曲线、饱和光功率阈值等数据。意义在于明确探测器动态范围,指导系统光功率设计。体量包含多组偏置条件下的饱和特性曲线,数十组测试数据。
Construction of dynamic range design requirements for high-power optical detection scenarios: The underlying principle is that the saturation characteristics of the detector determine its linear operating range under high optical power, thereby preventing signal distortion. The data generation method gradually increases the input optical power and measures the changes in the linearity of the detector's output current. The dataset primarily records data such as the curves of output current varying with input optical power under different bias conditions, and the saturation optical power threshold. The significance of this dataset is to clarify the dynamic range of the detector and provide guidance for the optical power design of the detection system. The dataset includes multiple sets of saturation characteristic curves under different bias conditions, as well as dozens of test data sets.




