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Analysis and Design of a High Voltage Integrated Class-B Amplifier for Ultra-Sound Transducers

机译:超声换能器高压集成B类放大器的分析与设计

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Pulsers are usually adopted in ultra-sound applications due to their high efficiency. On the other hand, linear amplifiers would enable apodization profiles with high resolution, beams with low harmonic content and instantaneous changes in transmit energy between pulses. Their use is rather limited when relying on a discrete technology approach, due to high manufacturing costs and space occupation. In view of an increased level of integration, the availability of a BCD technology, capable of watts level driving at high frequency, encourages investigation of linear amplifiers, the topic of this work. Advantages in terms of reliability, space and cost would derive. The proposed amplifier, closed in a feedback loop, uses a high ${rm g}_{rm m}$ low-voltage transconductor driving a high voltage trans-impedance stage operating in class-B. Device parameters vary with signal amplitude making circuit analysis involved. Techniques to analyze large signal frequency response, distortion and stability are proposed in this paper leading to useful design insights. The amplifier has been realized in a BCD6-SOI technology and, from experimental results, it shows the following performances: $90{rm V}_{rm pk-pk}$ output swing with better than 60% power efficiency, 720 MHz GBW, and ${rm HD}_{2}$ lower than $-$ 35 dB when driving a load made of a 100 $Omega$ resistor shunted with a 150 pF capacitor, emulating the ultrasound transducer. Quiescent power dissipation is 37 mW only.
机译:脉冲发生器由于其效率高而通常用于超声应用中。另一方面,线性放大器将实现具有高分辨率的变迹曲线,具有低谐波含量的光束以及脉冲之间的发射能量的瞬时变化。由于高制造成本和占用空间,在依靠离散技术方法时,它们的使用受到很大限制。鉴于集成度的提高,能够在高频下以瓦特级驱动的BCD技术的可用性鼓励研究线性放大器,这是这项工作的主题。将获得可靠性,空间和成本方面的优势。拟议的放大器封闭在反馈环路中,它使用高电平的低压跨导器来驱动以B类运行的高压跨阻级。器件参数随信号幅度的变化而变化,从而引起电路分析。本文提出了用于分析大信号频率响应,失真和稳定性的技术,从而获得了有用的设计见解。该放大器已采用BCD6-SOI技术实现,根据实验结果,该放大器具有以下性能:输出摆幅$ 90 {rm V} _ {rm pk-pk} $,功率效率优于60%,720 MHz GBW,当驱动由100pΩ电阻与150 pF电容并联的负载时,模拟超声换能器,并且$ {rm HD} _ {2} $低于$-$ 35 dB。静态功耗仅为37 mW。

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