Title :
A 13.56-MHz Low-Voltage and Low-Control-Loss RF-DC Rectifier Utilizing a Reducing Reverse Loss Technique
Author :
Yuh-Shyan Hwang ; Chia-Cheng Lei ; Yao-Wei Yang ; Jiann-Jong Chen ; Cheng-Chieh Yu
Author_Institution :
Dept. of Electron. Eng., Nat. Taipei Univ. of Technol., Taipei, Taiwan
Abstract :
A low-voltage and low-control-loss RF-dc rectifier with high power conversion efficiency (PCE) at 13.56 MHz band is presented in this paper. This is achieved by utilizing novel reducing reverse loss (RRL) techniques to reduce the reverse leakage current loss. Higher output voltage can also be generated by the multistage stacking method with RRL technology. A boost-type front-end converter composed of an RF-dc rectifier with the RRL technique and a boost converter operating in a discontinuous-conduction mode are also proposed. The single-stage, three-stage pump-type RF-dc rectifier and the boost-type front-end rectifier have been implemented in TSMC 0.18 μm 1P6M technology. Experimental results show that the maximum PCE of the single-stage and three-stage pump-type RF-dc active rectifiers are 68.6% and 67.9% with input powers of 4.9 and 12.8 dB·m, respectively. The maximum PCE of the boost-type front-end converter is 41.3% with 1.2 dB·m input power.
Keywords :
leakage currents; power conversion; rectifiers; boost type front end converter; boost type front end rectifier; discontinuous conduction mode; efficiency 67.9 percent; efficiency 68.6 percent; frequency 13.56 MHz; low control loss RF DC rectifier; low voltage RF DC rectifier; multistage stacking method; power conversion efficiency; reducing reverse loss technique; reverse leakage current loss; size 0.18 mum; Leakage currents; MOS devices; Rectifiers; Schottky diodes; Telemetry; Threshold voltage; Wireless communication; Active diode; RF-dc rectifier; active rectifier; boost converter; discontinuous-conduction mode (DCM); front-end rectifier; power conversion efficiency (PCE); radio-frequency identification; reducing reverse loss (RRL) technique; wireless telemetry systems;
Journal_Title :
Power Electronics, IEEE Transactions on
DOI :
10.1109/TPEL.2014.2304517