Start-up circuit for low-power indoor light energy harvesting applications

A start-up circuit, used in a micro-power indoor light energy harvesting system, is described. This start-up circuit achieves two goals: first, to produce a reset signal, power-on-reset (POR), for the energy harvesting system, and secondly, to temporarily shunt the output of the photovoltaic (PV) cells, to the output node of the system, which is connected to a capacitor. This capacitor is charged to a suitable value, so that a voltage step-up converter starts operating, thus increasing the output voltage to a larger value than the one provided by the PV cells. A prototype of the circuit was manufactured in a 130 nm CMOS technology, occupying an area of only 0.019 mm 2 . Experimental results demonstrate the correct operation of the circuit, being able to correctly start-up the system, even when having an input as low as 390 mV using, in this case, an estimated energy of only 5.3 pJ to produce the start-up.

[1]  Joseph A. Paradiso,et al.  Energy scavenging for mobile and wireless electronics , 2005, IEEE Pervasive Computing.

[2]  Bernard H. Stark,et al.  Start-up circuit with low minimum operating power for microwatt energy harvesters , 2011, IET Circuits Devices Syst..

[3]  Nuno Paulino,et al.  A step-up μ-power converter for solar energy harvesting applications, using Hill Climbing maximum power point tracking , 2011, 2011 IEEE International Symposium of Circuits and Systems (ISCAS).

[4]  J.M. Conrad,et al.  A survey of energy harvesting sources for embedded systems , 2008, IEEE SoutheastCon 2008.

[5]  J. Wenck,et al.  AC Power Supply Circuits for Energy Harvesting , 2007, 2007 IEEE Symposium on VLSI Circuits.