单片单电源功率放大器PSpice宏模型的开发

I. Pandiev
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引用次数: 3

摘要

开发了一个简单的PSpice宏模型,并在单电源电压下对单片功率放大器进行了验证。所提出的宏观模型是使用简化和构建技术开发的,用于运算放大器的宏观建模,并模拟基本的静态和动态特性,包括输入阻抗,各种电压增益下的小信号频率响应,输出功率与电源电压,旋转速率限制,电压限制,输出失调电压与电源电压波纹以及输出电阻。此外,宏模型还考虑了放大器在单一电源电压下的接地参考电压。该模型采用适合PSpice电路仿真平台的分层结构实现。该子电路采用标准PSpice组件和模拟行为(ABM)模块构建。通过对样品电路的实验测试,将电参数的仿真结果与实测值进行比较,验证了模型的准确性。对比分析表明,模拟的大信号参数相对误差小于15%。此外,考虑到这种类型的模拟ic的电气参数的技术公差,15%的误差是完全可以接受的。
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Development of PSpice Macromodel for Monolithic Single-Supply Power Amplifiers
A simple PSpice macromodel was developed, and verified for monolithic power amplifiers operated with a single-supply voltage. The proposed macromodel is developed using simplification and build-up techniques for macromodeling of operational amplifiers and simulates the basic static and dynamic characteristics, including input impedance, small-signal frequency responses at various voltage gains, output power versus supply voltage, slew-rate-limiting, voltage limiting, output offset voltage versus supply voltage ripples, and output resistance. Furthermore, the macromodel also takes into account the ground reference voltage in the amplifier at a single power supply voltage. The model was implemented as a hierarchical structure suitable for the PSpice circuit simulation platform. The sub-circuit was built using standard PSpice components and analog behavioral (ABM) blocks. The accuracy of the model was verified by comparing the simulation results of the electrical parameters with the respectively measured values by experimental testing of sample circuits. The comparative analysis showed that the relative error of the modeled large-signal parameters is less than 15%. Moreover, an error of 15% is quite acceptable, considering the technological tolerances of the electrical parameters for this type of analog ICs.
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