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A high cell count cascade full bridge converter forudwide bandwidth ultrasonic transducer excitation

机译:高单元数级联全桥转换器,用于 ud宽带超声换能器激励

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摘要

A nine level modular multilevel cascade converter (MMCC) based on four full bridge cells is shown driving audpiezoelectric ultrasonic transducer at 71 and 39 kHz, in simulation and experimentally. The modular cells are small stackable PCBs, each with two fully integrated surface mount 22 V, 40 A MOSFET half-bridge converters, and include all control signal and power isolation. In this work, the bridges operate at 12 V and 384 kHz, to deliver a 96 Vpp 9 level waveform with an effective switching frequency of 3 MHz. A 9 pH air cored inductor forms a low pass filter in conjunction with the 3000 pF capacitance of the transducer load. Eight equally phase-displaced naturally sampled pulse width modulation (PWM) drive signals, along with the modulating sinusoid, are generated using phase accumulation techniques in a dedicated FPGA. Experimental time domain and FFT plots of the multilevel and transducer output waveforms are presented and discussed.
机译:在仿真和实验中,显示了基于四个全桥单元的九级模块化多级级联转换器(MMCC),以71kHz和39kHz的频率驱动超声压电换能器。模块化单元是可堆叠的小型PCB,每个PCB都具有两个完全集成的表面贴装22 V,40 A MOSFET半桥转换器,并包括所有控制信号和电源隔离。在这项工作中,电桥以12 V和384 kHz的频率工作,以提供3 MHz的有效开关频率的96 Vpp 9电平波形。一个9 pH值的空心电感器与传感器负载的3000 pF电容一起形成一个低通滤波器。在专用FPGA中使用相位累加技术生成了八个均相位移自然采样的脉冲宽度调制(PWM)驱动信号以及正弦波调制信号。提出并讨论了多电平和换能器输出波形的实验时域和FFT图。

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