Abstract:
A connecting apparatus adapted in a conjunctive structure is provided. The conjunctive structure comprises a baseboard, a peripheral element and a connecting apparatus. The connecting apparatus comprises at least one first connecting element and at least one second connecting element. The first connecting element is a magnetic element and is placed on one corner of the peripheral element. The second connecting element is placed around a hole of the baseboard, and the second connecting element comprises two adjacent magnetic elements with opposite polarity arrangement.
Abstract:
A detachable connection mechanism is to establish an electrical connection between a mobile phone and a notebook computer. The detachable connection mechanism is designed at a housing board. The housing board has an opening. A load board is pivotally connected with the housing board, and in contact with or away from the housing board in parallel. When the load board is in contact with the housing board, the load board is fitted within the opening. Two rotatable members are pivotally connected with housing board. Several resilient arms are respectively pivotally connected with the housing board at one end and with the load board at the other end. The mobile phone is selectively connected or disconnected with the notebook computer by interacting the rotatable members, movable members, resilient arms and the load board.
Abstract:
A removable mechanism for drawing an object from a housing is disclosed. The removable mechanism includes a first rail disposed inside the housing and on a side of the object for guiding the object to move inside the housing. The removable mechanism further includes a driving rod installed on the first rail in a movable manner for driving the object to move in a first direction, and a pull rod pivoted to the driving rod for pulling the driving rod to drive the object to move in the first direction so as to eject from the housing when being rotated out of the housing and being pulled.
Abstract:
A docking station includes a connector, a first sliding component whereon a first incline and at least one incline are formed, and a second sliding component whereon a third incline is formed. When the second sliding component moves in a first direction so that the third incline slides relative to the first incline, the second sliding component pushes the first sliding component in a second direction for driving the connector to electrically connect with a notebook computer. The second sliding component further includes at least one protrusion. When the second sliding component moves in a third direction opposite to the first direction so that the protrusion slides relative to the second incline, the protrusion drives the first sliding component to move in a fourth direction opposite to the second direction so as to drive the connector to separate from the notebook computer.
Abstract:
The invention discloses a portable electronic apparatus with an adjustable display panel. The portable electronic apparatus uses a retained portion cooperated with a plurality of retaining portions (like a recess) to support the display panel. Thereby, the display panel of the portable electronic apparatus can be adjusted to a plurality of angles so as to adapt to real conditions, such as angles of light source, operational behaviors of users and the like, which further enhances the utility of the portable electronic apparatus. Furthermore, because the supporting force offered by the retained portion cooperated with the retaining portions is greater than a pressing force generated as a user operates the display panel, the display panel can remain steady when the user operates the display panel.
Abstract:
The invention discloses an adjustable support apparatus for adjusting an object to a target position. The adjustable support apparatus comprises a metal member, a support member, and a magnetic member. The metal member has an inner space. The support member has a first end and a second end, and is movably disposed in the inner space of the metal member through the first end. The object is attached on the second end. The magnetic member is disposed on the support member and is adjacent to the first end. A magnetic force exists between the magnetic member and the metal member. When an external force capable of overcoming the magnetic force is applied on the object or the support member, the support member moves with respect to the metal member; and when the external force disappears, the magnetic force makes the support member stay at the target position statically.
Abstract:
The invention discloses an adjustable support apparatus for adjusting an object to a target position. The adjustable support apparatus comprises a metal member, a support member, and a magnetic member. The metal member has an inner space. The support member has a first end and a second end, and is movably disposed in the inner space of the metal member through the first end. The object is attached on the second end. The magnetic member is disposed on the support member and is adjacent to the first end. A magnetic force exists between the magnetic member and the metal member. When an external force capable of overcoming the magnetic force is applied on the object or the support member, the support member moves with respect to the metal member; and when the external force disappears, the magnetic force makes the support member stay at the target position statically.
Abstract:
A portable electronic device includes an electronic module and an electronic module fixing structure. The electronic module fixing structure includes a main body, a sliding component, a rod and an elastic component connected between the main body and the sliding component. The main body has a track with a positioning portion. The sliding component is slidably disposed on the main body. The rod is rotatably connected with the sliding component. An end of the rod is adapted to move along the track. When the end is located at the positioning portion, the end and the positioning portion are interfered with each other to position the sliding component. When the electronic module pushes the sliding component, the rod is rotated to drive the end to move away from the positioning portion, and the sliding component pushes the electronic module away from the main body through elastic force of the elastic component.
Abstract:
A docking station includes a connector, a first sliding component whereon a first incline and at least one incline are formed, and a second sliding component whereon a third incline is formed. When the second sliding component moves in a first direction so that the third incline slides relative to the first incline, the second sliding component pushes the first sliding component in a second direction for driving the connector to electrically connect with a notebook computer. The second sliding component further includes at least one protrusion. When the second sliding component moves in a third direction opposite to the first direction so that the protrusion slides relative to the second incline, the protrusion drives the first sliding component to move in a fourth direction opposite to the second direction so as to drive the connector to separate from the notebook computer.
Abstract:
An electronic apparatus comprising a base, a first body, a second body and at least an adjusting apparatus is provided. The first body and the second body disposed respectively at two ends of the base are rotatable relative to the base. The adjusting apparatus is coupled to the first body and the second body. When the second body rotates relative to the base within a predetermined angle, the adjusting apparatus accordingly leads the first body to rotate so as to adjust a relative angle between the first body and the base.