Abstract:
An electronic device and a hinge assembly thereof are provided. The hinge assembly includes a first and a second fixed block, a first and a second polyline rod, a damper rod and a fastener. The first fixed block has a first and a second end, the second fixed block has a third and a fourth end, and the first polyline rod has a fifth and a sixth end, wherein the fifth end is connected to the second end, and the sixth end is connected to the fourth end. The second polyline rod has a seventh connected to the fourth end, and an eighth end, connected to the second end and the sixth end. The damper rod is slidably disposed on the first fixed block, the fastener is fixed to the first fixed block, and a distal end of the damper rod is fastened into the fastener.
Abstract:
A hinge module including a fixing member, a moving assembly, and a torque member is provided. The moving assembly includes a bracket and an axis body protruding from the bracket. The torque member includes a first end portion and a second end portion opposite to each other. The first end portion is fixed to the fixing member. The second end portion includes a lunular shape axle sleeve with an opening. The lunular shape axle sleeve is rotatably sleeved around the axis body for providing friction so as to form torques while the axis body is rotated relative to the lunular shape axle sleeve. The lunular shape axle sleeve has a gradual changed thickness. An electronic device having the hinge module is further provided.
Abstract:
A hinge module assembled to a first body and a second body of an electronic device and including a first rotating shaft assembled to the first body and having a first limiting portion, a second rotating shaft movably and rotatably assembled to the second body, a linking member, a switching member, and a transmission couple is provided. The second rotating shaft is fixed to the linking member and has a second limiting portion. The first rotating shaft is rotatably assembled to the linking member. The switching member movably passes through the linking member. The first limiting portion and the second limiting portion are located at two opposite ends of a moving path of the switching member to be interfered therewith. The transmission couple is respectively disposed at the second rotating shaft and the second body.
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:
Used in an electronic device comprising a cover panel and a base member, a slide cover mounting structure includes two hinges bilaterally mounted on the top wall of the base member, two sliding rail holders respectively connected to the pivot shafts of the hinges, two sliding rails bilaterally mounted on the bottom surface of the cover panel and respectively slidably coupled to a sliding groove on each of the sliding rail holder, two gears pivotally connected between fixed rails on the sliding rail holders, and two gear racks respectively mounted on the cover panel and meshed with the gears. Thus, the cover panel is prohibited from biasing during sliding movement, and turnable about the pivot shafts of the hinges from a horizontal position to a tilted position relative to the base member.
Abstract:
A space-saving slide cover lifting structure consisting of a pair hinges, a pair of sliding rail holders, a pair of plastic slide guides, a pair of sliding rails, a pair of gears and a pair of gear racks is disclosed. The gear racks are respectively accommodated in the sliding rails to reduce space occupation, minimizing the width of the assembly of the gear rack and the respective sliding rail. The arrangement of the plastic slide guides prohibits direction contact between the metal sliding rails and the sliding rail holders, avoiding friction noise.
Abstract:
FIG. 1 is a perspective view of a notebook computer showing a first embodiment of our new design; FIG. 2 is a front view of the first embodiment; FIG. 3 is a rear view of the first embodiment; FIG. 4 is a left side view of the first embodiment; FIG. 5 is a right side view of the first embodiment; FIG. 6 is a top view of the first embodiment; FIG. 7 is a bottom view of the first embodiment; FIG. 8 is a perspective view of the first embodiment in a state of use in which the curved surface is less exposed than in FIGS. 1-7; FIG. 9 is a perspective view of the first embodiment in another state of use in which the curved surface is more exposed than in FIGS. 1-8; FIG. 10 is a perspective view of a notebook computer showing a second embodiment of our new design; FIG. 11 is a front view of the second embodiment; FIG. 12 is a rear view of the second embodiment; FIG. 13 is a left side view of the second embodiment; FIG. 14 is a right side view of the second embodiment; FIG. 15 is a top view of the second embodiment; FIG. 16 is a bottom view of the second embodiment; FIG. 17 is a perspective view of the second embodiment in a state of use in which the curved surface is less exposed than in FIGS. 10-16; and, FIG. 18 is a perspective view of the second embodiment in another state of use in which the curved surface is more exposed than in FIGS. 10-17.
Abstract:
A foldable electronic device includes a first body, a second body, a dual-axis hinge module, a first linkage mechanism, a second linkage mechanism, a first object and a second object. The dual-axis hinge module is disposed between the first body and the second body. The first linkage mechanism is disposed to the first body and is coupled to the dual-axis hinge module. The second linkage mechanism is disposed to the second body and is coupled to the dual-axis hinge module. The first object is slidably disposed to the first body and connected to the first linkage mechanism. The second object is slidably disposed to the second body and connected to the second linkage mechanism.
Abstract:
A seamless hinge including two fixing frames, a shaft, and a carrying frame. The shaft is pivotally connected to the two fixing frames and has a gear portion located between the two fixing frames. The carrying frame is slidably disposed in the two fixing frames and has a rack portion engaged with the gear portion. The carrying frame is adapted to slide in an angular range relative to the two fixing frames and the shaft is driven by the rack portion, so that the carrying frame is pivotally rotated along a virtual axis.
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.