Department of Medical IT Convergence Engineering and Kumoh National Institute of Technology, Gumi 39253, Korea.
Sensors (Basel). 2019 Feb 21;19(4):898. doi: 10.3390/s19040898.
Transistor linearizer networks are proposed to increase the transmitted output voltage amplitudes of class-C amplifiers, thus, increasing the sensitivity of the echo signals of piezoelectric transducers, which are the main components in portable ultrasound instruments. For such instruments, class-C amplifiers could be among the most efficient amplifier schemes because, compared with a linear amplifier such as a class-A amplifier, they could critically reduce direct current (DC) power consumption, thus, increasing the battery life of the instruments. However, the reduced output voltage amplitudes of class-C amplifiers could deteriorate the sensitivity of the echo signals, thereby affecting the instrument performance. Therefore, a class-C linearized amplifier was developed. To verify the capability of the class-C linearized amplifier, typical pulse-echo responses using the focused piezoelectric transducers were tested. The echo signal amplitude generated by the piezoelectric transducers when using the class-C linearized amplifier was improved (1.29 V) compared with that when using the class-C amplifier alone (0.56 V). Therefore, the class-C linearized amplifier could be a potential candidate to increase the sensitivity of echo signals while reducing the DC power consumption for portable ultrasound instruments.
晶体管线性化网络被提出用于增加 C 类放大器的传输输出电压幅度,从而提高压电换能器的回波信号灵敏度,而压电换能器是便携式超声仪器的主要组成部分。对于此类仪器,C 类放大器可能是最高效的放大器方案之一,因为与线性放大器(如 A 类放大器)相比,它们可以显著降低直流(DC)功耗,从而延长仪器的电池寿命。然而,C 类放大器的输出电压幅度降低会降低回波信号的灵敏度,从而影响仪器性能。因此,开发了一种 C 类线性化放大器。为了验证 C 类线性化放大器的性能,使用聚焦压电换能器测试了典型的脉冲回波响应。与单独使用 C 类放大器(0.56 V)相比,使用 C 类线性化放大器时产生的压电换能器的回波信号幅度得到了提高(1.29 V)。因此,C 类线性化放大器可能是一种潜在的候选方案,可以在降低便携式超声仪器的 DC 功耗的同时提高回波信号的灵敏度。