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12.3 PWM buck converter with >80 PCE in 45μA-to-4mA loads using analog-digital hybrid control for impiantale biomedical systems

机译:12.3 PWM降压转换器,使用Impiantale生物医学系统的模拟数字混合控制,45μA-to-4mA负载中的> 80%PCE

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Implantable biomedical systems usually operate in energy-limited environments and exhibit large variation of power consumption ranging from constant low-power (bio-signal sensing) to sporadic high-power (stimulation and/or burst data transmission) [1]. Thus, energy-efficient switching power converters that can support a wide range of load variation are necessary to meet this requirement. Pulse frequency modulation (PFM) power converters can support this large load variation with a high power-conversion efficiency (PCE) [2]. However, their unpredictable switching noise degrades the power supply integrity and hence deteriorates the signal quality in implantable biome?dical systems. Pulse-width modulation (PWM) power converters can provide predictable output spectrum, but their PCE in light loads suffers. Although various techniques have been explored over the past years [3-5], the PCE of the PWM converters is still not adequate for low current levels (<;100uA) that most of the implantable biomedicai systems consume.
机译:可植入的生物医学系统通常在能量限制环境中运行,并且从恒定的低功耗(生物信号传感)到零星大功率(刺激和/或突发数据传输)[1]表现出大的功耗变化。因此,能够支持宽范围的负载变化的节能开关功率转换器以满足此要求。脉冲频率调制(PFM)功率转换器可以支持具有高功率转换效率(PCE)[2]的大负载变化。然而,它们不可预测的开关噪声降低了电源完整性,因此降低了可植入生物群系的信号质量。脉冲宽度调制(PWM)功率转换器可以提供可预测的输出频谱,但它们在轻度负荷中的PCE受到影响。虽然在过去几年中已经探索了各种技术[3-5],但PWM转换器的PCE仍然不适用于低电流水平(<; 100ua),即大多数植入的生物专业系统消耗。

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