Abstract:
A portable industrial computer includes a host having an aperture located on a bottom side leading to the interior of the host and a movable heat dissipation panel pivotally coupled on the aperture in a movable manner to open or close the aperture. The movable heat dissipation panel has a top end extended outside the bottom side of the host and the aperture when the movable heat panel closes the aperture so when the portable industrial computer rested on a loading object generating a reaction force towards the interior of the host to push the movable heat dissipation panel to open the aperture for dispersing heat from the interior of the host. When the portable industrial computer removed from the loading object, the movable heat dissipation panel closes the aperture to prevent water or dust from entering the interior of the host avoiding damage.
Abstract:
A lid mechanism for an interface slot opening of notebook computers includes a notebook computer body, which has an interface slot opening on a lateral side and a first sliding trough formed on one side of the opening, and a lid located on the interface slot opening in a turning manner to close the opening. The lid includes a lid body, which has a recess on the surface in the center, an inner surface attaching to a water-proof plate and a second sliding trough on an upper side corresponding to the first sliding trough. The recess has a lever fastening to a latch arm and driving the latch arm, to move in the second sliding trough. When the lid is in a closed condition to compress the waterproof plate, the latch arm is wedged gradually in the first sliding trough.
Abstract:
A lid mechanism for an interface slot opening of notebook computers includes a notebook computer body, which has an interface slot opening on a lateral side and a first sliding trough formed on one side of the opening, and a lid located on the interface slot opening in a turning manner to close the opening. The lid includes a lid body, which has a recess on the surface in the center, an inner surface attaching to a water-proof plate and a second sliding trough on an upper side corresponding to the first sliding trough. The recess has a lever fastening to a latch arm and driving the latch arm, to move in the second sliding trough. When the lid is in a closed condition to compress the waterproof plate, the latch arm is wedged gradually in the first sliding trough.
Abstract:
An antenna connection module adopted for use on electronic devices has an anchoring and rotary structure to provide discrete and staged positioning. It includes a rotary tray, which has a plurality of anchor troughs formed thereon, and an antenna dock coupled with the rotary tray to turn relative to the rotary tray without separating. The antenna dock houses rolling balls that engage with the anchor troughs to provide discrete and staged clicking and anchoring effects.
Abstract:
An antenna connection module adopted for use on electronic devices has an anchoring and rotary structure to provide discrete and staged positioning. It includes a rotary tray, which has a plurality of anchor troughs formed thereon, and an antenna dock coupled with the rotary tray to turn relative to the rotary tray without separating. The antenna dock houses rolling balls that engage with the anchor troughs to provide discrete and staged clicking and anchoring effects.
Abstract:
A stopping mechanism is disposed on a machine body and a removable device. The stopping mechanism includes a rectilinearly moving action member, a rotationally moving clipping member, and a stopping member fixedly disposed on the machine body, in which the action member pushes and presses against the clipping member so that the clipping member rotates to a holder position. The action member presses against the stopping member fixedly disposed on the machine body through a tilt angle relation at the holder position, so that an accelerating force generated by the removable device under impact is transferred to the machine body, thus dispersing the impact force.