Title :
An Ultralow-Power Overcurrent Protection Circuit for Micropower Class D Amplifiers
Author :
Linfei Guo ; Tong Ge ; Chang, Joseph
Author_Institution :
Sch. of Electr. & Electron. Eng., Nanyang Technol. Univ., Singapore, Singapore
Abstract :
Although class D amplifiers (CDAs) are highly advantageous over their linear amplifier counterparts in terms of power efficiency, their power efficiency remains undesirably low at nominal operation conditions where the output power is ~26 dB lower than its peak output power (due to the large crest factor of the audio/speech signal and headroom for adjustment). This is particularly the case for power-critical micropower applications such as hearing instruments. At nominal conditions, we find that the overcurrent protection circuit (for the output stage) is unexpectedly the most power-dissipative block in micropower CDAs. In this brief, we propose a novel ultralow-power overcurrent protection circuit, which features 67% lower power dissipation compared to conventional overcurrent protection circuit without compromising the IC area. To further verify the advantages of the proposed overcurrent protection circuit, an ultralow-power bang-bang CDA is designed. We show that, by employing the proposed overcurrent protection circuit, the power efficiency of the bang-bang CDA is significantly improved from 10.5% to 23.7% for a 64-Ω load and from 1.8% to 4.7% for a 400-Ω load.
Keywords :
low-power electronics; overcurrent protection; power amplifiers; IC area; class D amplifiers; efficiency 1.8 percent; efficiency 10.5 percent; efficiency 23.7 percent; efficiency 4.7 percent; micropower CDA; peak output power; power efficiency; power-critical micropower applications; resistance 400 ohm; resistance 62 ohm; ultralow-power bang-bang CDA; ultralow-power overcurrent protection circuit; Hysteresis; Integrated circuit modeling; Modulation; Power dissipation; Power generation; Sensors; Transistors; Bang-Bang; Bang???bang; Class D amplifiers; class D amplifiers (CDAs); overcurrent protection; ultra low power; ultralow power;
Journal_Title :
Circuits and Systems II: Express Briefs, IEEE Transactions on
DOI :
10.1109/TCSII.2015.2458035