Abstract:
A two-stage type torsion pivot hinge mainly comprising: an axle which is connected with a base and has a shaft; the shaft is mounted thereon with a bush for a spring tube, the bush forms a first and a second protrusion sheet respectively extending out of its two ends; the spring tube is fixedly connected with a supporting member and is provided with two torsion sleeves respectively on the two ends of the bush; each torsion sleeve has an axial cut and has two contact sheets extending respectively toward the two ends of the bush; the contact sheets respectively interfere with the first and the second protrusion sheets. By the function between the torsion sleeve and the bush, the pivot hinge can provide different torsion forces for the stroke of rotating the screen from its closed position to a vertical angular position and for the stroke from the vertical position to its maximum opening angular position.
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:
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 two-stage torsion pivot hinge including an axle connected with a base and having a shaft mounted thereon with a bush for a spring tube. The bush forms a first and a second protrusion element respectively extending out of its two ends. The spring tube is fixedly connected with a supporting member and is provided with two torsion sleeves respectively on the two ends of the bush. Each torsion sleeve has an axial cut and has two contact elements extending respectively toward the two ends of the bush. The contact elements respectively interfere with the first and the second protrusion elements. By the function between the torsion sleeve and the bush, the pivot hinge can provide different torsion forces for the stroke of rotating the screen from its closed position to a vertical angular position and for the stroke from the vertical position to its maximum opening angular position.
Abstract:
A pivot hinge includes: a fixing seat having therein a round hole from which two grooves forming an inversed “V” shape are extended downwards, the grooves include two bevel groove segments extending laterally and obliquely form the central bottom of the round hole to two different directions at the opening of the round hole, and include two vertical groove segments formed on the ends of the bevel groove segments respectively; a shaft of a rotation axle extends into the round hole; and includes: at least two mutually reversely allocated “9” shaped spring tubes each having a slipping over portion over the shaft surface, the portion is formed on its periphery a slit, a lower area of each slipping over portion has a positioning sheet extending downwards obliquely but not radially, each positioning sheet has a bottom vertical portion; the positioning sheets and the vertical portions are slipped respectively in the bevel and the vertical groove segments, an area at an upper area of each positioning sheet contacting with an upper area of a corresponding bevel groove segment forms a surface contacting fulcrum.
Abstract:
A variable resistance hinge is mounted in a notebook computer having cover and a base and the hinge has a stationary leaf, a pivoting leaf and a pressing assembly. The stationary leaf is attached to the base and has a keyed shaft. The pivoting leaf is mounted pivotally on the shaft and is attached to the cover. The pressing assembly is mounted around the shaft, presses the pivoting leaf against the stationary leaf and has a pivoting ring and a stationary ring. The pivoting ring rotates around the shaft, is attached to the pivoting leaf and has at least one stepped detent. The stationary ring engages the shaft, abuts the pivoting ring and has at least one friction protrusion. Each friction protrusion corresponds a stepped detent and provides variable friction when opening the cover to enhance lifespan of the hinge and facilitate opening of the notebook.
Abstract:
A variable resistance hinge is mounted in a notebook computer having cover and a base and the hinge has a stationary leaf, a pivoting leaf and a pressing assembly. The stationary leaf is attached to the base and has a keyed shaft. The pivoting leaf is mounted pivotally on the shaft and is attached to the cover. The pressing assembly is mounted around the shaft, presses the pivoting leaf against the stationary leaf and has a pivoting ring and a stationary ring. The pivoting ring rotates around the shaft, is attached to the pivoting leaf and has at least one stepped detent. The stationary ring engages the shaft, abuts the pivoting ring and has at least one friction protrusion. Each friction protrusion corresponds a stepped detent and provides variable friction when opening the cover to enhance lifespan of the hinge and facilitate opening of the notebook.
Abstract:
A hinge assembly is mounted in an electronic appliance such as a notebook and has a stationary leaf, a pintle and a pivoting leaf. The notebook has a base and a cover. The stationary leaf is mounted securely on the base and has a pivoting sleeve having an outer edge, a limiting tab and at least one braking detent. The limiting tab and braking detent adjacently protrude longitudinally from the outer edge of the pivoting sleeve. The pintle is mounted rotatably in the stationary leaf and has an outer end and a limiting rod. The limiting rod is mounted securely in the pintle and selectively limits rotation of the hinge in both directions to leave a small gap when the cover folds toward the base to facilitate opening. The pivoting leaf is mounted securely on the outer end of the pintle and connects to the cover securely.
Abstract:
A stable hinge keeps elements of the hinge from shaking and has a pivoting assembly, a stabilizer and a stationary assembly. The pivoting assembly attaches the stable hinge to a cover of an electronic device and has a standoff, a leaf and a barrel. The standoff has a proximal edge, a distal edge and a notch formed in the proximal edge. The leaf is formed longitudinally on and protrudes from the distal edge. The barrel is formed longitudinally on the proximal edge and has a slot. The stabilizer is mounted in the slot and to the standoff. The stationary assembly attaches to a base of an electronic device and is mounted rotatably in the barrel and through the stabilizer to stabilize the hinge and give the stable hinge a longer useful life.
Abstract:
The present invention relates to a silicon-containing copolymer which includes a maleic anhydride repeating unit, a norbornene repeating unit, and at least one silicon group-containing norbornene repeating unit. The silicon-containing copolymer is suitable for use as a top layer resist in a bilayer resist system.