Abstract:
A clip mechanism includes a first lateral wall whereon a slot is formed, and a second lateral wall disposed on a side of the first lateral wall. At least one opening is formed on the second lateral wall for engaging with a protrusion of a casing. The clip mechanism further includes a bending part bent for connecting the first lateral wall and the second lateral wall. The clip mechanism further includes a resilient arm. A first end of the resilient arm is connected to an end of the slot of the first lateral wall, and a second end of the resilient arm protrudes out of a side of the slot. The resilient arm further includes a contacting part protruding out of the other side of the slot for contacting against an electronic device so as to ground the electronic device.
Abstract:
A clip mechanism includes a first lateral wall whereon a slot is formed, and a second lateral wall disposed on a side of the first lateral wall. At least one opening is formed on the second lateral wall for engaging with a protrusion of a casing. The clip mechanism further includes a bending part bent for connecting the first lateral wall and the second lateral wall. The clip mechanism further includes a resilient arm. A first end of the resilient arm is connected to an end of the slot of the first lateral wall, and a second end of the resilient arm protrudes out of a side of the slot. The resilient arm further includes a contacting part protruding out of the other side of the slot for contacting against an electronic device so as to ground the electronic device.
Abstract:
A cable-organizing circuit board includes a board body and a protruding hanger arm. The board body has a circuit-layout section and a non-circuit-layout section that are connected to each other. The protruding hanger arm is disposed at the non-circuit-layout section of the board body, and is adapted to be permit a segment of the transmission cable to pass thereunder. The segment of the transmission cable is disposed beneath a bottom surface of the protruding hanger arm, and remaining segments of the transmission cable are disposed above a top surface of the board body opposite to the bottom surface of the protruding hanger arm when the segment of the transmission cable passes under the protruding hanger arm.
Abstract:
A rotatable signal socket includes a fixing part, a connecting part, and a flexible printed circuit board (FPCB). The rotatable signal socket is assembled on a printed circuit board (PCB) of an electronic device for connecting a signal cable to the PCB. The fixing part is fixed on the PCB. One end of the connecting part is pivoted to the fixing part in order to rotate relative to the fixing part and the PCB. The signal cable is inserted into the other end of the connecting part. The FPCB extends from the fixing part to the connecting part, so as to electrically connect the PCB and the signal cable, thus providing a signal socket that is easy to be assembled and occupies little space.
Abstract:
A portable computer includes a base, a display module, and a support element. The base includes a first area, a second area, and a sliding assembly disposed at a substantially central position of the second area. The sliding assembly includes a sliding element and a guiding structure, and the sliding element can move along the guiding structure to slide at least in the second area. The display module includes a connecting end combined with the sliding element and a support plane. The support element includes a first area pivotally connected to the support plane and a second end pivotally connected to a rear end of the base. When the display module is opened, the display module further rotates around the first fixed end and moves the connecting end simultaneously. Then, the display module is supported by the support element to keep a suitable tilted angle.
Abstract:
An electronic device with a guiding mechanism for guiding a flexible printed circuit board includes a base, a cover, two guiding members, a pushing member, the flexible printed circuit board (FPC) and a rotating member. A through hole is formed on the base. The cover is movably disposed on a first side of the base. The two guiding members are disposed on the second side of the base in parallel. The pushing member is slidably disposed on the two guiding members and has a guiding surface. An end of the FPC is connected to the cover and an other end of the FPC passes through the through hole and surrounds the guiding surface of the pushing member so as to be connected to the base. The rotating member is rotatably disposed on the second side of the base and has a pushing portion abutting against the pushing member.
Abstract:
In an assembly of an electronic device and a battery, the battery includes a protrusion that is formed with an engaging hole, and the electronic device includes a housing and an engaging unit. The housing defines a receiving space and is formed with a first opening that is adapted for extension of the protrusion. The engaging unit includes a main body pivotable relative to the housing, an actuating member accessible from outside of the receiving space, and an engaging hook disposed on the main body adjacent to the first opening. The engaging hook is engageable with the engaging hole in the protrusion. The actuating member is actuable to pivot the main body so as to disengage the engaging hook from the engaging hole.
Abstract:
An input device with swing operation includes a supporting frame, a flexible printed circuit installed on the supporting frame for outputting a signal, a supporting base fixed on the supporting frame, a cap pivoted to the supporting base, and a hook respectively pivoted to the supporting base and the cap. An inclined angle is formed between the hook and the supporting frame when the cap is not pressed down. The hook and the cap pivots relative to the supporting base when the cap is pressed down. The input device further includes a resilient component disposed between the flexible printed circuit and the cap for being pressed by the cap to actuate the flexible printed circuit when the cap is pressed down.
Abstract:
The disclosure relates to a fixing mechanism for fixing a component. The fixing mechanism includes a base, a bottom wall disposed on the base, and two lateral walls disposed on the base and connected to the bottom wall. A containing space is formed between the base, the bottom wall, and the two lateral walls. The fixing mechanism further includes a hook. The hook includes a cantilever portion and a hooking portion. The cantilever portion is connected to the bottom wall and for pressing against the component when the component is contained inside the containing space. The hooking portion is connected to the cantilever portion and engages with a lateral surface of the component when the component is contained inside the containing space. The fixing mechanism further includes two engaging parts for laterally engaging against the component when the component is contained inside the containing space.
Abstract:
An electronic device includes a magnetic switch, a magnetic element for actuating the magnetic switch to send a control signal to an electronic element module, and a retaining mechanism for retaining the magnetic element at a housing. The retaining mechanism includes a retaining casing, a connecting member, and a blocking member. The retaining casing is disposed on and cooperates with the housing to define a receiving space to receive the magnetic element, and has an opening in spatial communication with the receiving space. The blocking member is connected to the housing by the connecting member and is adjacent to the opening to prevent removal of the magnetic element from the receiving space through the opening.