Abstract:
A stand includes a body, sliding front and rear extending frames, first and second pivotal supports at two sides respectively, and two third pivotal supports at two sides of the sliding lower extending frame. The first, second and third pivotal supports are each capable of pivoting to dispose the body in an acute angle with respect to a supporting surface or rest the body on the supporting surface. The sliding front and rear extending frame each include a cross member and two sliding rods disposed at two ends of the cross member respectively, each sliding rod extending into the body. An angle of the stand with respect to the supporting surface is adjustable.
Abstract:
A multitier folding stand is provided with a rectangular base (1) including two parallel toothed members (11), a transverse groove (12), two cavities (13), two detents (14), two rear bossed holes (15), and a rotatable disc (16); a pivotal platform (2); a bent support (3) pivotably secured to the platform (2); two aligned pivotal arms (4) pivotably secured to the bossed holes (15) respectively and including a lengthwise trough (43); two opposite pivotal support arms (5) including a main part (51), two pivots (52) at two ends of the main part (51) respectively, first and second bearings (53, 54) for securing the pivots (52) to the base (1) respectively, a sliding groove (55) in the main part (51), a first hole (56) through a first end of the sliding groove (55), and a sleeve (58) in the first hole (56); and two opposite pivotal legs (6).
Abstract:
A stand includes a base including a seat, a cover having a front groove, and a PCB in the seat; a stem extending from the base and including a rear plate having a trough, a receptacle having LEDs, a front transparent covering, a tubular member on top of the rear plate, and a sliding groove in the rear plate; a holder on top of the stem and including upper and lower slides, the upper and lower slides being slidable each other and through the tubular member; and an attachment mechanism including an insert releasably secured to the seat, a guide member extending upward from the insert into the sliding groove, a handle secured to the guide member through the lengthwise trough, and two biasing members each having two ends secured to the guide member and urging against the rear plate respectively. Alternatively, the slides are replaced by pivotal supports.
Abstract:
A detachable, multifunctional rack for electronic devices includes a rectangular platform (1) including a lower board (10) secured to an underside, two sets of a plurality of hollow members (11) on two sides of the lower board (10) respectively, and a space (15) under the lower board (10); two L-shaped supports (2) mounted to two sides of the platform (1) respectively, each support (2) including a horizontal member (21) releasably secured to either side of the platform (1), a vertical member (22) releasably secured to the horizontal member (21), and a plurality of aligned, spaced tubular members (23) on one side of the horizontal member (21); and two pins (14) each passing through one set of the hollow members (11) and the tubular members (23) at either side of the platform (1) to fasten the platform (1) and the supports (2) together.
Abstract:
A fan assembly includes a housing including two first slits on a bottom; a mount on the housing and including two second slits aligned with the first slits; a louver on the housing and including openings and at least one outtake between the louver and a front of the housing; first and second side caps for fastening the housing and the louver together; a PCB on a side of the housing; an exposed touch screen adjacent to the PCB and configured to activate the PCB; a transverse fan in the mount and electrically connected to the PCB; two pivotal members each including two opposite projections slidably disposed in the first and second slits; and two auxiliary supports on the at least one outtake, each auxiliary support including a shaft rotatably disposed in the pivotal member, and slots.
Abstract:
A laptop cooling pad includes a cover including a top louver, an intermediate recess, openings between the louver and the recess, a rear channel communicating the recess with an open rear end, and two stop members pivotably disposed on the rear end of the cover; a casing releasaby secured to the cover and including extendible legs pivotally on a bottom of the front portion of the cover; a transverse fan in the casing and under the louver, the transverse fan including a shock absorbing member; and a PCB for supplying power to the transverse fan and configured to control the transverse fan. In response to activating the transverse fan, cooling air is drawn into the transverse fan via the louver and flows upward and rearward respectively.
Abstract:
A notebook computer cooling pad capable of temperature detection and fan-speed adjustment is equipped with heat-dissipating fans, a control panel and plural movably deposited temperature sensors, so that when a notebook computer is placed on the notebook computer cooling pad, a user may be informed of real-time temperature readings related to different locations of the notebook computer and use the use the fan-speed adjusting button to adjust a rotational speed of the heat-dissipating fans.
Abstract:
A multifunction peripheral includes a scanning platform, a scanning module, a recording unit and a controlling unit. The scanning platform includes a standby position, a position-calibrating structure and a datum line. The scanning platform is divided into a first zone and a second zone by the datum line. The position-calibrating structure is included in the second zone. The scanning module is movable with respect to the scanning platform for performing a scanning operation. The recording unit is used for recording a parameter associated with a position of the scanning module with respect to the scanning platform. The controlling unit is used for controlling movement of the scanning module according to the parameter recorded in the recording unit, so that the scanning module is moved through the position-calibrating structure to perform a position-calibrating operation. After the position-calibrating operation is completed, the scanning module is moved to the standby position.
Abstract:
A multifunction peripheral includes a scanning platform, a scanning module, a recording unit and a controlling unit. The scanning platform includes a standby position, a position-calibrating structure and a datum line. The scanning platform is divided into a first zone and a second zone by the datum line. The position-calibrating structure is included in the second zone. The scanning module is movable with respect to the scanning platform for performing a scanning operation. The recording unit is used for recording a parameter associated with a position of the scanning module with respect to the scanning platform. The controlling unit is used for controlling movement of the scanning module according to the parameter recorded in the recording unit, so that the scanning module is moved through the position-calibrating structure to perform a position-calibrating operation. After the position-calibrating operation is completed, the scanning module is moved to the standby position.
Abstract:
A photoelectric lens module is utilized to focus a light source. A fabrication method comprises steps of providing a first substrate; positioning a plurality of gap units on the first substrate, and forming a plurality of gap regions amongst the gap units on the first substrate; providing a second substrate comprising a plurality of photoelectric lens units, in which the positions of the photoelectric lens units are corresponding to the locations of the gap regions; and filling a transparent rubber in the gap regions in such that the first substrate and the second substrate are adhered closely.