Abstract:
A camera lens assembly for a portable terminal. The camera lens assembly comprises a cylindrical housing having a receiving space extended in the longitudinal direction thereof, a camera holder inserted into or drawn out from the housing at one end of the housing, a bracket fixed to the end of the camera holder and linearly reciprocated in the housing, a guide plate linearly reciprocated on the bracket in the direction perpendicular to the longitudinal direction of the bracket and having a guide groove formed in the shape of a prescribed figure, a supporting cap attached to the other end of the housing and having a guide protrusion formed at the inner circumferential surface thereof and slidably moved along the guide groove for stopping the linear movement of the bracket at least once, and a spring supported by the supporting cap at one end thereof for applying an elastic force to the camera holder in the direction of drawing out the camera holder from the housing.
Abstract:
A structure adjusts a gap between a paper money discriminating sensor and paper money feed rollers in a paper money discriminating apparatus. The structure includes a lower body and an upper body upwardly rotating about a hinge shaft to open a conveyance path. The structure includes a paper money discriminating sensor that is provided in the upper body and discriminates whether a paper money to be conveyed along the conveyance path is counterfeit money, paper money feed rollers that are rotatably provided in the lower body facing the paper money discriminating sensor and are spaced from each other at a predetermined interval, and gap adjusters that are provided between the paper money discriminating sensor and the paper money feed rollers and adjust a gap between the paper money discriminating sensor and the paper money feed rollers.
Abstract:
Low-latency equalization mechanisms for multi-PAM communication systems are disclosed that reduce delay and complexity in signal correction mechanisms. The equalization mechanisms tap into input signals for a multi-PAM signal driver, and compensate for attenuation along a signal transmission line, crosstalk between adjacent lines, and signal reflections due to impedance discontinuities along the line.
Abstract:
A portable device embodying both sliding and rotating types is described. The portable device including: a main unit; a display unit sliding and horizontally rotating on a top surface of the main unit, and having a display on its top surface; and a keypad unit sliding in an opposite direction from the display unit and horizontally rotating on a bottom surface of the main unit and having an additional keypad which is provided on its top surface and externally exposed after rotating. Also, the portable device may be transformed into various operating modes by sliding and/or rotating of the display unit and the keypad unit, which are suitable for phone calling, game play and multimedia replay.
Abstract:
A portable communication device includes a first housing extending in a first direction, a second housing extending in a second direction perpendicular to the first direction and formed at a bottom surface of the first housing so that a predetermined region of an outer circumferential surface of the second housing protrudes perpendicularly outward from the bottom surface of the first housing, and a camera lens module rotatably or linearly movably mounted in the second housing. The camera lens module is inserted into or drawn out from the second housing in the second direction. The camera lens module is repeatedly inserted into and drawn out from the second housing by pushing the camera lens module, and the camera lens module moves upward and downward when it is drawn out from the second housing.
Abstract:
A rechargeable battery includes a PTC device including a cover member provided on the surface of the PTC body to prevent high-temperature hot-melt resin from making direct contact with the surface of the PTC body when the battery pack is being fabricated and to provide a space to allow the PTC body to expand during the operation of the PTC device.
Abstract:
An apparatus for operating an auto-shutter in an air-conditioner is provided, which includes an external casing in which a louver frame having an exit is installed in the inner portion of the upper end thereof, an auto-shutter movable between an opened position opening the exit and a closed position closing the exit, and a shutter driver driving the auto-shutter. The shutter driver includes a driving motor which is rotatable forwardly and backwardly, a screw-rod shaped rotational rod which is coupled with the driving motor and thus rotates, a bushing which is coupled with the rotational rod and ascends and descends along with the rotational rod, a slider one end of which is coupled with the auto-shutter and the other end of which is coupled with the bushing, an angular rotating unit which makes the driving motor and the rotational rod rotate by a predetermined angle when the auto-shutter moves from the opened position to the closed position, and a rotational rod guider which guides and supports rotation of the rotational rod, wherein guide rails are formed on both side surfaces in the louver frame in order to guide the auto-shutter. Also, the shutter driver may include a driving motor which is provided to provide a driving force for opening and closing and moving the auto-shutter and is rotatable forwardly and backwardly, a screw-rod shaped rotational rod which is coupled with the driving motor and thus rotates, a bushing which is coupled with the rotational rod and ascends and descends along with the rotational rod, and a slider one end of which is coupled with the auto-shutter and the other end of which is coupled with the bushing, wherein guide rails are formed on both side walls in the louver frame in order to guide the auto-shutter. Likewise, without employing an auto-shutter driving system which is opened and closed by the rack-and-pinion mutual operation in a conventional rack and pinion structure, the auto-shutter is opened and closed by a new system having a shutter driver which includes a screw-rod shaped rotational rod, a bushing, a slider, and a driving motor, thereby driving the auto-shutter more effectively in view of driving power used.
Abstract:
A receiver adapted to be coupled to a data bus and configured to receive data in accordance with a receive clock includes first and second delay-locked loops. The first delay-locked loop is configured to generate a plurality of phase vectors from a first reference clock, and the second delay-locked loop is coupled to the first delay-locked loop and configured to generate the receive clock from at least one phase vector selected from the plurality of phase vectors and a second reference clock.