Abstract:
An electronic and a gate structure including a first door-leaf, a second door-leaf, and a latch are provided. The first door-leaf having three first locking portions is movably assembled to an entrance of an object. The second door-leaf having two second locking portions is movably disposed at the first door-leaf, such that the first door-leaf closes or opens the entrance. The latch having a third locking portion and a fourth locking portion is movably disposed on the first door-leaf and between the first and the second door-leaves. The first locking portions are located on a moving path of the third locking portion. The second door-leaf is locked to the object and the third locking portion is located at the middle one of the three first locking portions, the fourth locking portion is blocked with one second locking portion and the first door-leaf covers the entrance.
Abstract:
A snap-on battery includes a battery body and a fastening element, and the battery body has a guiding element disposed on a side of the battery body, and the fastening element is slidably coupled to and positioned at the guiding element, and the fastening element has a combining portion for combining an external connecting element. With the aforementioned components, the battery can be detachably snapped on a portable electronic device, and even if a user forgets to close a door with cover or secure the door with cover, the battery will be still hard to slip off the portable electronic device or damages due to falling out
Abstract:
An electronic device assembly includes an expansion component and a host. The expansion component includes a first case, a first circuit board, and a first connector. The host includes a second case, a main circuit board, and a main connector. The first circuit board is arranged in the first case. The first connector is electrically connected to the first circuit board and is exposed from a top plate of the first case. The main circuit board is arranged in the second case. The main connector is electrically connected to the main circuit board and exposed from a second surface of the second case. When the host is assembled to the expansion component, the second surface of the second case covers the top plate of the first case, and the first connector is electrically connected to the main connector.
Abstract:
A float-type connecting module and a float-type docking device having the module. The float-type docking device includes a float-type connecting module and a pluggable device including at least one dock connector. The float-type connecting module includes a position limiting structure, at least one flexible circuit board and at least one connector. The position limiting structure is provided at the hard circuit board. The connector is for electrically connecting to the dock connector, is electrically connected to the hard circuit board through the flexible circuit board, and floats in the position limiting structure. Thus, the issues of precise alignment required between a slot of a housing and a port of the connector and precise alignment respectively required between connectors and dock connectors are resolved.
Abstract:
A heat dissipation module includes a diversion case and a fan. The diversion case includes an input section, an output section, and a connecting section that connects the input section and the output section, where an angle is defined between an extending direction of the input section and an extending direction of the output section, and an end of the input section away from the connecting section and an end of the output section away from the connecting section are respectively inclined relative to the connecting section. The fan is accommodated in the connecting section. An electronic device assembly includes an expansion component and the heat dissipation module.
Abstract:
A battery fold structure of an electronic device includes a device proper and at least one battery. The device proper has battery compartments and movable structures corresponding in position thereto, respectively. Each movable structure is movable relative to the device proper. At least one blocker is fixedly disposed at each movable structure. At least one bidirectional blocking element is fixedly disposed on the battery. The bidirectional blocking element has a first blocking portion and a second blocking portion. When the battery is received in one of the battery compartments, the first blocking portion of the bidirectional blocking element fixedly disposed on the battery is blocked by the blockers. When the battery is received in the other battery compartment, the second blocking portion of the bidirectional blocking element fixedly disposed on the battery is blocked by the blockers. Two batteries are mounted inside two battery compartments interchangeably and unlocked simultaneously.
Abstract:
The present invention relates to a detachable connection port and an electronic device having the same. The detachable connection port is detachably assembled at an electronic device, which includes a board-to-board connector. The detachable connector includes a sub circuit board and a socket connector. The sub circuit board includes a golden finger. The socket connector is fixed at and electrically connected to the sub circuit board, and includes an installation portion. The socket connector is installed at the electronic device through the installation portion, and is electrically connected to the board-to-board connector through the golden finger. Thus, the detachable connection port achieves an advantage of easy replacement, further reducing repair costs and standby time for a user.
Abstract:
A waterproof lockable door and an automatic pressure adjusting plug set thereof are provided. An electronic device is formed with an opening having an annular wall. The waterproof lockable door includes a cover member formed with at least a penetrated hole and an automatic pressure adjusting plug set including a waterproof member and at least a fastening unit. The waterproof member is formed with at least a fasten hole. The fastening unit is formed with a head portion and a rod portion, and the rod portion is received in the penetrated hole and generates a movement relative to the cover member thereby driving the outer periphery of the waterproof member to be tightly adjacent to annular wall. Accordingly, the tolerance of the annular wall and the waterproof member and the air pressure inside an opening both force the waterproof member to move.