Abstract:
An electronic device includes a first body, a second body, a first pivot structure, a second pivot structure, and a locking structure not in contact with the second pivot structure. The second pivot structure is pivoted to the first body along a first axis through the first pivot structure. The second body is pivoted to the first pivot structure along a second axis through the second pivot structure. When the second body is unfolded to an open position along the first axis, the first pivot structure drives the locking structure to go to an unlocked state, and the second body is adapted to rotate along the second axis. When the second body is folded or unfolded to other positions along the first axis, the first pivot structure drives the locking structure to go to a locked state, and the locking structure stops the second body rotating along the second axis.
Abstract:
A hinge structure includes a first shaft, a second shaft, a pivot base and a position-limiting mechanism. The first and second shafts are pivoted on the pivot base. The position-limiting mechanism includes a first position-limiting portion, a second position-limiting portion and a position-limiting component. The first position-limiting portion is fixed to the first shaft. The second position-limiting portion is fixed to the second shaft. The position-limiting component is slidably disposed on the pivot base and has first and second ends opposite to each other. When the position-limiting component moves to a first position, the first end and the first position-limiting portion interfere with each other to stop the first shaft and the pivot base from rotating relatively. When the position-limiting component moves to a second position, the second end and the second position-limiting portion interfere with each other to stop the second shaft and the pivot base from rotating relatively.
Abstract:
A double sliding stability space-saving slide cover lifting structure used in an electronic device consisting of a base member and a cover panel is disclosed to include a pair hinges, a pair of sliding rail holders, a pair of bearing members, a pair of plastic slide guides, a pair of sliding rails, a pair of gears and a pair of gear racks is disclosed. The sliding rails are respectively slidably coupled to channel bars of the plastic slide guides in the bearing members, enhancing sliding stability. Further, the bearing members are prepared by a high load strength material and fixedly mounted on the sliding rail holders to support the plastic slide guides and the sliding rails, saving the space and enhancing the cover panel connection stability and preventing gear slippage and uneven bias of the cover panel.
Abstract:
An electronic device includes at least one hinge assembly and two bodies. The hinge assembly includes a main body and two shafts. One end of each of the shafts is pivotally connected to the main body, another end of each of the shafts has an embedded portion, and the embedded portion has a roughened structure thereon. The two bodies correspond to the two shafts respectively, each of the bodies has at least one depression, and the embedded portion of each of the shafts is embedded in the depression of the corresponding body and contacts an inner wall of the depression through the roughened structure.
Abstract:
A hinge module includes the two spindles, the two brackets, a gear set and a torque part. The two spindles are spaced apart from each other. The two brackets are respectively connected to a first side of the two spindles, where an installing direction of each of the brackets is perpendicular to an axial direction of each of the spindles. The gear set is disposed at a second side opposite to the first side of the two spindles. The torque part is disposed on the two spindles and is located between the two brackets and the gear set, where each of the brackets is adapted to rotate relative to the torque part with the corresponding spindle, and the gear set is configured to drive the two spindles rotating in opposite directions.
Abstract:
An expansion hinge including a torque module, two first brackets, two sliding brackets, two second brackets and two elastic modules is provided. The torque module is configured to provide torques. The two first brackets are rotatably connected to two opposite ends of the torque module. The two sliding brackets are rotatably connected to the two opposite ends of the torque module. The two second brackets are slidably disposed in the two sliding brackets respectively. Each of the two elastic modules is disposed between the respective sliding bracket and the respective second bracket. The two sliding brackets are adapted to synchronously slide with respect to the two second brackets, and each of the elastic modules is configured to push the respective sliding bracket and the respective second bracket to form a pulled-out state or a pushed-in state.
Abstract:
A lifting hinge module includes a first bracket, a rotating shaft rotatably connected to the first bracket, a driving bracket disposed on the rotating shaft, a first guiding bracket disposed on the first bracket, a second guiding bracket disposed on the first bracket and spaced from the first guiding bracket, a sliding link having a first end rotatably connected to the driving bracket and a second end slidably connected to the first guiding bracket, and a supporting link rotatably connected to a second end of a sliding link and slidably connected to the second guiding bracket. When the rotating shaft rotates relative to the first bracket, the driving bracket is adapted to drive the second end of the sliding link to slide relative to the first guiding bracket, and the sliding link is adapted to drive the supporting link to slide and lift relative to the second guiding bracket.
Abstract:
A hinge module includes a base, a torsional force providing structure, two axles, two brackets, and at least one fixing component. The base has at least one first concave. The torsional force providing structure is disposed in the base and has two torsional force providing portions. The two axles penetrate the two torsional force providing portions respectively. The two brackets are connected to the two axles respectively. The fixing component is disposed in the first concave and abuts the torsional force providing structure, such that the torsional force providing structure is fixed to the base. In addition, an electronic device including the hinge module is also provided.
Abstract:
An electronic device is provided, including at least one body, at least one functional assembly, and at least one elastic positioning assembly. The functional assembly is slidably disposed on the body along a sliding direction. The elastic positioning assembly is disposed on the body and adapted to prop the functional assembly along a direction perpendicular to the sliding direction, so that a gap is formed between the functional assembly and the body. When the functional assembly slides to a predetermined position with respect to the body, the elastic positioning assembly provides a positioning force to the functional assembly along a direction parallel to the sliding direction.
Abstract:
An electronic device includes two bodies, at least one hinge structure, a functional assembly, and at least one linkage structure. The two bodies are pivotally connected to each other through the hinge structure. The functional assembly is movably disposed on one of the two bodies. The linkage structure is connected between the two bodies, and the functional assembly is connected to the linkage structure. The linkage structure is adapted to drive the functional assembly to move relative to the corresponding body as the two bodies are rotated relative to each other.