摘要:
A timepiece has a case back made of a thermally conductive material, an upper case body made of a thermally conductive material and disposed opposite to the case back, and a lower case body made of a thermally insulating material and disposed between the upper case body and the case back. A thermoelectric generator unit generates an electromotive force in accordance with heat conducted from the case back. At least one step-up circuit steps up an electromotive force generated by the thermoelectric generator unit. A storage member stores power and an electromotive force stepped up by the step-up circuit. A timepiece driving circuit is driven by power stored in the storage member or by electromotive force stepped up by the step-up circuit. A power supply operating control circuit controls power flow from the step-up circuit to the storage member and controls whether the electromotive force stepped up by the step-up circuit or the power stored in the storage member is supplied to the timepiece driving circuit. A display member displays time information in accordance with a signal outputted from the timepiece driving circuit.
摘要:
A power generating block is provided with a thermoelectric generator unit 180 containing one or more of electrothermic elements 140, further, including a 1st thermally conductive plate 120 constituting a heat absorbing plate and including a 2nd thermally conductive plate constituting a heat radiating plate. A thermal conductive body 244 made of a thermally conductive material is arranged to be brought into contact with the 2nd thermally conductive plate 170. The power generating block with a thermoelectric generator unit is provided with a step-up circuit block 240 including a step-up circuit 410 for boosting electromotive force generated by the thermoelectric generator unit 180 and a power supply operation control circuit 416 for controlling operation of storing the electromotive force generated by the thermoelectric generator unit 180 and controlling operation of the step-up circuit 410.
摘要:
A portable electronic device has a casing has an upper case body and a rear case cover both made of a thermally conductive material. A heat insulating member thermally insulates the rear case cover from the upper case body of the casing. A thermoelectric generator unit is disposed in the casing for generating an electromotive force based on the Seebeck effect. The thermoelectric generator unit has a heat radiating plate for transferring heat to the upper case body and a heat absorbing plate. A heat conductive spacer is made of a thermally conductive and elastically deformable sheet of material and has opposed main surfaces. One of the main surface is disposed in contact with the heat absorbing plate of the thermoelectric generator unit and the other main surface is disposed in contact with an inner side surface of the rear case cover for conducting heat from the rear case cover to the thermoelectric generator unit. A timepiece driving circuit is disposed in the casing and is driven by the electromotive force generated by the thermoelectric generator unit. At least one display member displays information in accordance with a signal output from the timepiece driving circuit.
摘要:
A power source inverter circuit is provided which, when a feeding unit generates enough electric power, puts a load circuit into operation while storing electric power in a storage unit and, when the power feeding unit stops generating power, efficiently uses up the electric power stored in the storage unit. The power source inverter circuit is composed of: a variable DC—DC converter for raising or dropping a voltage of electric power that is supplied from the power feeding unit; the storage unit; MOSFET switches for connecting the power feeding unit and the storage unit to an input of the variable DC—DC converter and for connecting an output of the variable DC—DC converter to the storage unit and the load circuit; a control circuit for controlling gates of the MOSFET switches; and a voltage detector for monitoring output of the power feeding unit, the voltage of the storage unit, the input voltage of the load circuit, and for outputting voltage information to the variable DC—DC converter as well as to the control circuit.
摘要:
An electronic apparatus which controls the driving of a load circuit in accordance with a detected feed power voltage. The feed power voltage can be accurately detected even when it is low. In order to achieve this, the apparatus in one embodiment includes a power feed unit, a boosting circuit for increasing a voltage of the supply power, a voltage detecting circuit for detecting the voltage of the supply power as increased by the boosting circuit and outputting a voltage detection signal, and the load circuit which is driven based on the supply power. A voltage detection circuit detects the supply voltage only when it is not being used to drive the load circuit.
摘要:
An electronic apparatus is comprised of a generator 11 in which a voltage is changed as time elapses, a booster circuit 12 for boosting an output voltage of the generator 11, and an oscillator circuit 13 that drives the booster circuit 12. When the voltage of the generator 11 changes as time elapses so that the voltage exceeds the minimum driving voltage of the oscillator circuit 13, the oscillator circuit 13 obtains power for starting oscillation from the generator 11. The oscillator circuit 13 that has started oscillation drives the booster circuit 12 to thereby boost the output voltage generated by the generator 11. Since the oscillator circuit 13 after starting oscillation continuously performs oscillation using the power boosted by the booster circuit 12, even if the voltage of the generator 11 changes as time elapses so that the voltage becomes lower than the minimum driving voltage of the oscillator circuit 13, the voltage can be boosted to the minimum driving voltage of the oscillator circuit 13 or higher.
摘要:
A Provided is an electronic device in which: alternating current power from an RF coil which receives an electromagnetic wave and converts the electromagnetic wave into power is rectified by a diode and a first capacitor; the power is stepped up by a charge pump type step-up circuit; the power stepped up by the step-up circuit is stored in a second capacitor by a charging and discharging circuit; and the stored power is supplied from the charging and discharging circuit to an RF transmission circuit.
摘要:
A Provided is an electronic device in which: alternating current power from an RF coil which receives an electromagnetic wave and converts the electromagnetic wave into power is rectified by a diode and a first capacitor; the power is stepped up by a charge pump type step-up circuit; the power stepped up by the step-up circuit is stored in a second capacitor by a charging and discharging circuit; and the stored power is supplied from the charging and discharging circuit to an RF transmission circuit.
摘要:
A semiconductor device is provided without degrading the performance of an internal circuit, which has an SOI structure coexistingly having an SOI static electricity protection circuit to prevent an internal circuit from being damaged due to static electricity through an input/output pad. To achieve this, a structure is made by comprising a silicon substrate of a first conductivity type, a buried oxide film formed on the silicon substrate, a first silicon layer of the first conductivity type formed on the buried oxide film, a second silicon layer of the first conductivity type formed on the buried oxide film and having a thickness smaller than the first silicon layer of the first conductivity type, and an SOI static electricity protection circuit provided between an input/output pad and an internal circuit. The internal circuit is formed in the second silicon layer of the first conductivity type, the SOI static electricity protection circuit being formed in the first silicon layer of the first conductivity type.
摘要:
Provided is an electronic device having a booster circuit, in which a booster circuit and other circuits are prevented from being damaged even when a voltage that is equal to or higher than a standard voltage is inputted. The booster circuit for boosting an input voltage and outputting the boosted voltage has an input voltage limiter circuit for regulating an upper limit of an output voltage, and a booster circuit for boosting the input voltage at a fixed magnification by using a capacitor.