Abstract:
A power socket includes a socket main body, a front cover and a safety gate mechanism. The front cover has two openings. The safety gate mechanism includes a casing and a safety gate. The casing located between the socket main body and the front cover has two inserted holes and a protrusion. The inserted holes are aligned with the openings. The safety gate slidably disposed at the casing is dislocated from the protrusion. When the safety gate is at a first position, the safety gate blocks the inserted holes, and two terminals of a plug push the safety gate through the two openings to make the safety gate slide to expose the inserted holes. When an object pushes the safety gate through one of the openings, the safety gate rotates to drive a part of the safety gate to be aligned with the protrusion to avoid exposing the inserted holes.
Abstract:
An electronic device with electromagnetic interface protection including a first printed circuit board, a second printed circuit board, a shielding member, and a first fixing member is provided. The shielding member is located between the first printed circuit board and the second printed circuit board. A first end of the shielding member is fixed to the first printed circuit board, and the first fixing member is buckled to a second end of the shielding member so that the shielding member is fixed to the second printed circuit board.
Abstract:
A printed circuit board grounding structure for use with a communication apparatus is configured for use with a printed circuit board to contact a grounded casing and thereby form a grounded circuit capable of electromagnetic wave shielding. The printed circuit board ground structure includes a copper conductive layer and a plurality of solder contacts. The copper conductive layer is circumferentially disposed along the periphery of the printed circuit board. The solder contacts are disposed on the copper conductive layer and used for electrically contacting with the casing. The printed circuit board grounding structure prevents deterioration of electromagnetic wave shielding despite oxidation of the copper conductive layer. The circumferentially-disposed copper conductive layer blocks electromagnetic wave generated from inside the printed circuit board, prevents leakage of the electromagnetic wave, and ultimately prevents the electromagnetic wave from interfering with other electronic apparatuses.
Abstract:
A signal expansion selection device receives a plurality of selection data from users to select one of audio-video signals generated from audio-video apparatuses. Each of the audio-video signals selected by a corresponding one of the users is converted into an audio-video datum for use by the user. The signal expansion selection device includes selection ports, a processing unit, multiplexing modules, and audio-video output ports. The selection ports send the selection data to the processing unit. The processing unit processes the selection data with an algorithm to generate a control command. The multiplexing modules select one of the audio-video signals according to the control command. The processing unit decodes and converts the selected audio-video signal to audio-video data and enables the audio-video data to be sent from one of the audio-video output ports.
Abstract:
It is a snap-engagement structure whereby a mother body and a daughter body of a portable electronic device are snap-engaged with each other and thereby fixed to each other. The mother body includes two installation units. The snap-engagement structure includes a key unit, fastening units, and a first restoring unit. The key unit and the fastening units move relative to each other in different directions to effectuate enhanced snap-engagement, watertightness, and miniaturization.
Abstract:
A HomePlug having a panel replacement structure includes a HomePlug body and a panel. The HomePlug body has an operation side and a network port. The operation side has an insertion portion and a first coupling portion. The panel has an opening and second coupling portion. The second coupling portion can be coupled to the first coupling portion so as to allow the opening to correspond in position to the insertion portion. Changes in the appearance of the HomePlug are brought about by panel replacement. A heat dissipation vent is disposed at the junction of the operation side and an adjacent side, such that heat dissipation takes place at the adjacent side-neighboring portion of the heat dissipation vent when the panel is coupled to the operation side and covers the operation side.
Abstract:
A waterproof element with reinforced structure includes a flexible body and a rigid element. The flexible body has a first opening. The rigid element is disposed in the flexible body. The rigid element has a second opening corresponding to the first opening. An electronic device with the waterproof element is also disclosed.
Abstract:
A multiband antenna for an electronic device includes a resonance radiation body, a grounding end, and a spread spectrum portion. The resonance radiation body receives a first electromagnetic wave signal at a first frequency (known as fundamental frequency). The grounding end and the electronic device are connected. The spread spectrum portion is disposed between the resonance radiation body and the grounding end. The spread spectrum portion includes first and second shunting bodies to form a loop bypass between the resonance radiation body and the grounding end and thereby decrease and increase the first frequency by a specific frequency value so as to define a bandwidth equal to two times the specific frequency value. Hence, the electronic device receives a second electromagnetic wave signal at any frequency within the bandwidth. Since the spread spectrum portion defines the bandwidth, the electronic device can receive the first and second electromagnetic wave signals.
Abstract:
A circuit board having antenna structure for use with portable communication devices includes a substrate and an antenna body provided on the substrate. The substrate has a first, a second and a third surface that adjoin one another, and has a ground metallic element mounted thereon parallel to the third surface. The antenna body includes a radiation portion located on the first and second surfaces, a feed-in portion located on the third surface and connected to the radiation portion, and a ground portion located on the third surface and connected to the radiation portion and the ground metallic element. With these arrangements, the antenna structure provided on the circuit board overcomes the problems of limited antenna position and insufficient antenna area without being hindered by other electronic components or structural elements on the circuit board, and is operable at both higher and lower frequency bands.
Abstract:
An electronic communication device with an antenna structure includes a casing defining a receiving space therein, a circuit board, an antenna module, and at least an elastic conductive element. The circuit board is received in the receiving space and has a first electrically connecting portion. The antenna module is received in the receiving space and has a second electrically connecting portion corresponding in position to the first electrically connecting portion. The elastic conductive element is disposed between the circuit board and the antenna module and corresponds in position to the first and second electrically connecting portions. The elastic conductive element produces an elastic deforming force to enable electrical connection between the first and second electrically connecting portions and thereby enable electrical connection between the circuit board and the antenna module, thereby facilitating assembly and dispensing with a cable otherwise required to connect the antenna module and the circuit board.