Multi-capacitor energy harvesting
An apparatus is disclosed for multi-capacitor energy harvesting. In example aspects, the apparatus includes energy storage including a first capacitor and a second capacitor. The apparatus also includes an energy harvester including at least one rectifier and one or more switches. The switches can be controlled to initially charge the first capacitor and subsequently charge the second capacitor.
1 . An apparatus comprising:
a first capacitor;
a second capacitor; and
an energy harvester comprising:
a first rectifier coupled to the first capacitor;
an oscillator including an input and an output, the input coupled to the first capacitor; and
a second rectifier coupled between the output of the oscillator and the second capacitor.
2 . The apparatus of claim 1 , wherein the first capacitor has a first capacitance that is greater than a second capacitance of the second capacitor.
3 . The apparatus of claim 2 , wherein:
the oscillator is configured to transfer charge from the first capacitor to the second capacitor.
4 . The apparatus of claim 3 , wherein:
the oscillator is configured to reduce a first voltage of the first capacitor and increase a second voltage of the second capacitor by transferring the charge from the first capacitor to the second capacitor; and
a first level of the first voltage of the first capacitor is less than a second level of the second voltage of the second capacitor, the first level of the first voltage corresponding to a first time before the oscillator starts transferring the charge, and the second level of the second voltage corresponding to a second time after the oscillator starts transferring the charge.
5 . The apparatus of claim 1 , wherein:
the first capacitor is coupled between the first rectifier and the input of the oscillator; and
the energy harvester comprises a switch coupled between the first capacitor and the input of the oscillator.
6 . The apparatus of claim 5 , wherein the energy harvester comprises:
a voltage monitor connected to a node coupled between the first rectifier and the input of the oscillator, the voltage monitor configured to detect a voltage at the node; and
the switch is configured to be opened or closed based on the voltage at the node.
7 . The apparatus of claim 1 , further comprising:
an antenna coupled to the first rectifier, the antenna configured to receive an alternating-current signal,
wherein the first rectifier is configured to accept the alternating-current signal from the antenna and rectify the alternating-current signal to provide a first direct-current signal to the first capacitor to generate a first voltage at the first capacitor.
8 . The apparatus of claim 7 , wherein:
the oscillator is configured to generate an oscillating signal at the output of the oscillator based on accepting the first voltage from the first capacitor at the input of the oscillator; and
the second rectifier is configured to accept the oscillating signal from the oscillator and rectify the oscillating signal to provide a second direct-current signal to the second capacitor to generate a second voltage at the second capacitor.
9 . The apparatus of claim 7 , wherein the apparatus comprises an electronic tag.