Abstract:
The present embodiment relates to a camera module, comprising: a housing; an elastic member; a holder; a magnet; a coil; a lens module; and a filter, wherein the magnet comprises a first magnet, a second magnet disposed opposite to the first magnet, a third magnet, and a fourth magnet disposed opposite to the third magnet, and wherein the coil comprises a first coil facing the first magnet, a second coil facing the second magnet, a third coil facing the third magnet, and a fourth coil facing the fourth magnet, and wherein the first to fourth coils are independently applied with a current, and the filter is tilted to a diagonal direction by control of a current applied to the first and third coils.
Abstract:
Disclosed in an embodiment is a camera module comprising: a housing; a lens module coupled to the housing; a holder disposed in the housing; an elastic member connecting the housing and the holder; a magnet part and an optical member that are coupled to the holder; and a coil part facing the magnet part, wherein the holder includes a first protrusion that extends in an optical axis direction so as to be coupled to the elastic member, and the elastic member includes a first coupling portion coupled to one surface of the first protrusion; the first protrusion includes a guide protrusion which protrudes from the one surface of the first protrusion in the optical axis direction, wherein the guide protrusion is disposed outside the elastic member and has a shape corresponding to at least a portion of the outer circumference of the first coupling portion.
Abstract:
The wireless power transmitter includes a first wireless transmitting unit disposed at a rear surface of the wireless power receiver and having a first charging scheme, and a second wireless transmitting unit disposed on at least one of side surfaces of the wireless power receiver and having a second charging scheme different from the first charging scheme. The wireless power transmitter may more efficiently charge the wireless power receiver.
Abstract:
A camera module according to an embodiment of the present invention comprises: a light emitting unit for outputting an optical signal to an object; and a light receiving unit for receiving a reflected light obtained after the optical signal is reflected by the object, wherein the light receiving unit comprises: a sensor for receiving the reflected light; a filter for transmitting the reflected light in a specific wavelength band; a driving unit for tilting the filter; and a driving circuit for driving the driving unit, and the filter is sequentially tilted from a reference state, in which the filter is not tilted, to a first to a third tilted state in which the filter is tilted in different directions, so as to allow the sensor to receive the reflected light.
Abstract:
A portable apparatus can be used for a wireless charging operation. The portable apparatus includes a charging body including a transmitter configured to send a power signal for a charging operation, a first rotating member supporting a charging target, and a second rotating member supporting the charging body. Herein, the first rotating member and the second rotating member revolve around the charging body in a predetermined direction, but move within different rotating angles.
Abstract:
The wireless power transmitter includes a substrate; a first blocking unit disposed over the substrate and formed of a metallic material; a second blocking unit over the first blocking unit; and a wireless transmission unit mounted on at least one of the first blocking unit and the second blocking unit, wherein the wireless transmission unit includes: a first wireless transmission unit including a first transmission coil; a second wireless transmission unit including a second transmission coil; and a control unit to control such that AC power is output to a transmission coil of one of the wireless transmission units according to a power transmission scheme.
Abstract:
A wireless charging device includes a transmitter configured to transmit a power signal for wireless charging, a circuit board including at least one component configured to control an operation of the transmitter, a shielding plate configured to block an electrical interference between the transmitter and the circuit board, and a connector configured to penetrate through the circuit board and the shielding plate so as to electrically connect the transmitter with the at least one component.
Abstract:
An embodiment of a tri-axial rotation apparatus comprises: a drive part; a first housing which rotates about a first axis and with respect to the drive unit and accommodates a first motor; a second housing which rotates about a second axis, perpendicular to the first axis, and with respect to the first housing, and accommodates a second motor, a third housing which rotates about a third axis, perpendicular to the first axis and the second axis, and with respect to the second housing, accommodates a third motor, and has a camera mounted thereon; a first connection part disposed between the first motor and the first housing along the outer peripheral surface of the first motor; a second connection part disposed between the second motor and the second housing along the outer peripheral surface of the second motor; and a third connection part disposed between the third motor and the third housing along the outer peripheral surface of the third motor, wherein the first connection part, the second connection part, and the third connection part are formed of flexible material and may be electrically connected to the drive part.
Abstract:
A heat conversion apparatus according to one embodiment of the present invention comprises: a pipe which includes a first flat surface and a second flat surface disposed parallel to the first surface, and through which air having a lower temperature than entered air is discharged; a plurality of thermoelectric elements that have heat-absorbing surfaces disposed in external sides of the respective first and second surfaces; a plurality of printed circuit boards (PCBs) that are electrically connected to the plurality of thermoelectric elements; and coolant passing members that are disposed on heat-radiating surfaces of the plurality of thermoelectric elements, wherein an external floor surface of the coolant passing member includes a plurality of first external floor surfaces having a first height and a plurality of second external floor surfaces having a second height that is different from the first height, the plurality of first external floor surfaces are in contact with the heat-radiating surfaces of the plurality of thermoelectric elements, and the plurality of PCBs are disposed in the plurality of second external floor surfaces.
Abstract:
A heat conversion apparatus according to one embodiment of the present invention comprises: a pipe which includes a first flat surface and a second flat surface disposed parallel to the first surface, and through which air having a lower temperature than entered air is discharged; a plurality of thermoelectric elements that have heat-absorbing surfaces disposed in external sides of the respective first and second surfaces; a plurality of printed circuit boards (PCBs) that are electrically connected to the plurality of thermoelectric elements; and coolant passing members that are disposed on heat-radiating surfaces of the plurality of thermoelectric elements, wherein an external floor surface of the coolant passing member includes a plurality of first external floor surfaces having a first height and a plurality of second external floor surfaces having a second height that is different from the first height, the plurality of first external floor surfaces are in contact with the heat-radiating surfaces of the plurality of thermoelectric elements, and the plurality of PCBs are disposed in the plurality of second external floor surfaces.