Abstract:
A fixing structure is disposed on a surface of a case. An opening is disposed on the surface of the case. The fixing structure comprises a suspension arm and a hook portion. The suspension arm is extended from the surface of the case. The suspension arm has an engaging end and a suspending end. The engaging end is connected to the surface of the case. The suspending end is suspended at the opening. The hook portion is extended from the suspending end and reaches inside the opening. The disclosure further discloses an electronic device applying the fixing structure.
Abstract:
A latch mechanism including a housing, a first device, a first sliding member, a second sliding member, a stopping portion and a second device is provided. The first and second devices and the first and second sliding members are disposed on the housing, wherein the first sliding member is located between the first device and the second sliding member. The stopping portion is disposed on at least one of the first device and the first sliding member for restricting a sliding distance of the first sliding member relative to the first device. The first sliding member is not allowed to drive the second sliding member to slide relative to the housing along a first direction to disengage the second device when sliding until the first device is detached from the housing and the engagement between the first device and the first sliding member is released.
Abstract:
A fastening and automatic ejecting structure for a battery of a notebook is provided, which comprises: a first fastening element disposed on a predetermined position of the computer and swinging to and fro between a first position and a second position in a predetermined direction; a second fastening element disposed on a predetermined position of the battery and moving to and fro between a third position and a fourth position in a predetermined direction along with the battery. Moreover, when the battery is pushed and moves from the third position to the fourth position, the first fastening element will be forced to swing towards the second position and to be bound with the predetermined position of the battery. When the battery is pushed again and moves from the fourth position to the third position, the first fastening element will be released from the battery.
Abstract:
A latch module and an electronic device using the same are provided. The electronic device includes the latch module as well as first and second bodies that are opened and closed relative to each other. The latch module in the first body includes a pressing member, a linking member, and a latch. The pressing member is movably configured in and passes through the first body along a first axis. The linking member is pivoted to the first body. The pressing member leans against the linking member. The latch is configured in the first body along a second axis. The linking member leans against the latch. The pressing member moves relative to the first body along the first axis to press and rotate the linking member relative to the first body. Thus, the linking member presses the latch to move relative to the first body along the second axis.
Abstract:
A latch module and an electronic device using the same are provided. The electronic device includes the latch module as well as first and second bodies that are opened and closed relative to each other. The latch module in the first body includes a pressing member, a linking member, and a latch. The pressing member is movably configured in and passes through the first body along a first axis. The linking member is pivoted to the first body. The pressing member leans against the linking member. The latch is configured in the first body along a second axis. The linking member leans against the latch. The pressing member moves relative to the first body along the first axis to press and rotate the linking member relative to the first body. Thus, the linking member presses the latch to move relative to the first body along the second axis.
Abstract:
A latch mechanism including a housing, a first device, a first sliding member, a second sliding member, a stopping portion and a second device is provided. The first and second devices and the first and second sliding members are disposed on the housing, wherein the first sliding member is located between the first device and the second sliding member. The stopping portion is disposed on at least one of the first device and the first sliding member for restricting a sliding distance of the first sliding member relative to the first device. The first sliding member is not allowed to drive the second sliding member to slide relative to the housing along a first direction to disengage the second device when sliding until the first device is detached from the housing and the engagement between the first device and the first sliding member is released.
Abstract:
A magnetic latch assembly includes a first body, a second body, and a magnetic block and a magnetic latch. The magnetic block is movably disposed on the first body; therefore, it can be selectively moved close to or far away a first opening of the first body. The magnetic latch is disposed on the second body corresponding to a second opening of the second body. In addition, two ends of the magnetic latch form a hook portion and a tip portion, respectively. When the first body is close up against the second body and the magnetic block is moved close to the first opening, the magnetic block and the tip portion repel each other due to magnetic force so as to drive the magnetic latch rotating, so that the hook portion is moved and passing through the second opening and the first opening and hooked against the first body.
Abstract:
A card insertion structure of an electronic device is provided, which includes an accommodating groove caved in the electronic device, a first cover covered on the accommodating groove, a card slot extending from a wall of the accommodating groove, and a second cover pivotally disposed on the electronic device. The card slot is used for inserting a card such as a subscriber identity module (SIM) card, and the first cover catches the second cover to be in a covered position. When the card is to be ejected, the second cover cannot be pivoted unless the first cover is removed first, and the second cover pushes the card to move outwards when being pivoted, thus achieving the purpose of ejecting the card. Furthermore, due to the catch of the first cover, the card cannot be ejected if the second cover is inappropriately pivoted, thereby avoiding damaging the card.
Abstract:
A magnetic latch assembly includes a first body, a second body, and a magnetic block and a magnetic latch. The magnetic block is movably disposed on the first body; therefore, it can be selectively moved close to or far away a first opening of the first body. The magnetic latch is disposed on the second body corresponding to a second opening of the second body. In addition, two ends of the magnetic latch form a hook portion and a tip portion, respectively. When the first body is close up against the second body and the magnetic block is moved close to the first opening, the magnetic block and the tip portion repel each other due to magnetic force so as to drive the magnetic latch rotating, so that the hook portion is moved and passing through the second opening and the first opening and hooked against the first body.
Abstract:
A button module including a cap, a first arm, a second arm, and a base is provided. The first arm has a first pivoting shaft, a first end connected to the cap, and a second end opposite to the first end. The second arm has a second pivoting shaft, a third end connected to the cap, and a fourth end opposite to the third end and pivoted to the second end. The first pivoting shaft and the second pivoting shaft are pivoted to the base respectively. A projection of the first pivoting shaft on the base is between a projection of the first end on the base and a projection of the second end on the base. A projection of the second pivoting shaft on the base is between a projection of the third end on the base and a projection of the fourth end on the base.