Abstract:
A medical instrument sterilization container has a plurality of walls and a rotatably displacing cover. A rotatable device is integral with the cover. An elongate slot is formed in a side of the container for receiving the rotatable device. The rotatable device is slidable within the elongate slot.
Abstract:
A rotating mechanism, comprises a retaining plate having a cut-out defined therethrough, the cut-out being curved; a rotating plate being capable of rotating in a plane parallel to the plane of the retaining plate by a shaft; a pin slidably engaging with the cut-out and retained on the rotating plate; and a guiding assembly is coupled between the rotating plate and the retaining plate to guide the rotating plate to rotate relative to the retaining plate.
Abstract:
A hinge includes a first connecting member, a second connecting member defining a through hole, a sleeve member fixed to the second connecting member, a shaft movably mounted to the first connecting member, and a fastener. The sleeve member defines a spiral slide groove therein. A clamping protrusion extends from the first connecting member for slidably engaging in the slide groove. The shaft includes a fixing portion rotatably passed through the sleeve member and the through hole. The fastener is fixed to a distal end of the fixing portion.
Abstract:
A support structure for at least two flat panel display devices that permits adjustment of the at least two display devices in or about one or more axes, and a display system including such support structure and display devices while maintaining a constant space between the display devices in various configurations, alignments and orientations of the display devices. Such support structure, as provided in accordance with embodiments of the invention, provides for configuration of the at least two display devices, in a plurality of alignments in which fronts of the two display devices are generally aligned in a plane, for viewing together. Embodiments of the support structure provide for the two display devices to be positioned in a landscape and/or portrait configuration. Embodiments of the support structure provide for repositioning the display devices between horizontally and vertically-aligned configurations without disassembling the support structure itself and without disassembling either or both of the two display devices from the support structure.
Abstract:
A collapsible device includes a base, a cover, and a hinge. The hinge includes a first connecting member fixed to the base, a second connecting member defining a through hole, a sleeve member fixed to the second connecting member, a shaft movably mounted to the first connecting member, and a fastener. The sleeve member defines a spiral slide groove therein. A clamping protrusion extends from the first connecting member for slidably engaging in the slide groove. The shaft includes a fixing portion rotatably passed through the sleeve member and the through hole. The fastener is fixed to a distal end of the fixing portion. The second connecting member is fixed to the cover. During the rotation of the cover relative to the base via the hinge, the cover is synchronously moved transversely relative to the base along the axial direction of the hinge.
Abstract:
A hinge includes a first connecting member, a second connecting member defining a through hole, a sleeve member fixed to the second connecting member, a shaft movably mounted to the first connecting member, and a fastener. The sleeve member defines a spiral slide groove therein. A clamping protrusion extends from the first connecting member for slidably engaging in the slide groove. The shaft includes a fixing portion rotatably passed through the sleeve member and the through hole. The fastener is fixed to a distal end of the fixing portion.
Abstract:
An exemplary cover assembly includes a bezel, and a spring-loaded cover. The bezel includes an opening, a pair of slots, and a pair of pins. The opening is defined in the bezel for accessing a device installed thereto. The slots are defined adjacent opposite ends of the opening respectively. The pins are formed adjacent the slots respectively. The spring-loaded cover covers the opening of the bezel, includes a pair of fixing plates formed thereon slidably received in the slots of the bezel. Each of the fixing plates defines an arcuate groove that slidably receives the corresponding pin of the bezel, where the cover is capable of being pivoted open and shut.
Abstract:
An exemplary double hinge assembly includes a first hinge assembly, a second hinge assembly, a guide rail, a sliding member, a first bracket, a second bracket. The sliding member is slidably positioned on the guide rail. The first hinge assembly includes a first rotatable pivot shaft. The second hinge assembly includes a second rotatable pivot shaft. The first bracket is fixed to the first rotatable pivot shaft, and the guide rail rotatably connects to the first rotatable pivot shaft. The second bracket is fixed to the second rotatable pivot shaft, and the sliding member rotatably connects to the second rotatable pivot shaft. A rotating axis of the first rotatable pivot shaft is substantially parallel to a rotating axis of the second rotatable pivot shaft. In addition, an electronic device using the double hinge assembly is also provided.
Abstract:
A multifunctional hinge is provided. In one embodiment, a device for coupling a panel relative to frame is provided. The device comprises a first body including an elongated cylindrical cavity; and a second body including a shaft having a tab extending from a lateral portion the shaft, the shaft having an axis of rotation about the center of the shaft. The first body is configured to accept insertion of the shaft of the second body into the elongated cylindrical cavity and further configured to allow movement of the second body about the axis of rotation. The first body further includes a slot connected to the elongated cylindrical cavity and configured to allow the tab of the second body to slide therethrough when the second body is rotated.
Abstract:
A hinge assembly for use with a pivotally movable closure panel is operable to provide a counterbalancing force to lock or hold the closure panel in an open configuration against a predetermined threshold closure force without the need of separate support components such as gas-charged struts or prop rod. The hinge assembly is provided with upper and lower hinge arms which are pivotally connected towards their rearward ends for movement relative to each other for pivotal movement about a hinge pivot axis. A generally elongated or guide slot is formed in the lower hinge arm. A prop arm is pivotally secured at a first end to a forward portion of the upper hinge arm forwardly from the hinge pivot axis. A sliding member is secured toward the second other end of the prop arm and engages the guide slot so as to be reciprocally movable therealong as the hinge arms are moved between a fully closed and fully open positions. The guide slot includes an operational section and an engaged section. A resilient biasing member is used to engage and bias the sliding member forwardly relative to the guide slot as it moves through the engaged section while disengaging from or passively engaging the sliding member as it moves along the operational section of the guide slot.