Abstract:
A switched-mode light-emitting diode (LED) display unit satisfying fire-fighting smoke exhaust and ventilation requirements includes an LED display unit, a mounting member, an opening-closing actuator and a pressing member. The LED display unit is mounted on the mounting member and the mounting member is mounted on a display panel by an opening-closing actuator and pressed against the display panel by a pressing member. The switched-mode LED display unit provides the pressing member that works to release the pressed mounting member after obtaining a triggering command and the opening-closing actuator that turns on the LED display unit subsequently, thereby meeting the fire smoke exhaust ventilation requirement of the internal surface or the external surface of a building.
Abstract:
According to one embodiment, an oven includes an oven chamber operable to be heated and having a front opening. The oven further includes a frame coupled to and at least partially surrounding the oven chamber. The oven further includes a door operable to seal the front opening of the oven chamber, and a pair of hinges pivotally coupling the door to the frame. Each hinge is positioned on opposing sides of the oven chamber. The oven further includes a pair counterweights that are each coupled to the rear portion of a respective hinge, and a pair of dampers. Each damper is coupled to the frame and operable to resist movement of the door in a single direction opposite that of the other damper.
Abstract:
A system and method of use relating to a hidden motorized system for use in windows that can reliability and consistently open and close the window via remote operation. Specifically, a motorized system is disposed inside a window in a manner without requiring unsightly modifications to the window. The motorized system can be controlled via wireless remote or wired remote switch. The entire system fits within a conventional window, such as a single or double hung window, in a manner that is hidden from view, thereby keeping the conventional ornamental look of the window.
Abstract:
An automated door-opening device is disclosed that includes a first sensor disposed on the outside of the door. The first sensor is adapted to recognize a predetermined pattern of a gesture made by a patron. The gesture made in front of the first sensor opens the door by a first actuator. A second actuator can be used to lock or unlock the door, thereby providing full hand-free operation of the door. A hinge system is disclosed that includes three off-set hinges adapted to utilize the weight of the door to cause the door to self position and allow manual operation of the door.
Abstract:
A hinge assembly includes a guiding unit connected between and slidable relative to first and second hinge units along arcuate lines. The second hinge unit has a pivot shaft extending through first and second rings, and a resilient washer. The second ring is rotatable on the pivot shaft relative to the first ring and has a radial extension member telescopically connected to a pivotal arm of the first hinge unit. The resilient washer pushes the second ring against the first ring. A protrusion of the first ring slides along a contact surface of the second ring having a groove so that a variable friction toque is created against relative movement of the first and second hinge units.
Abstract:
A bottom door of a carriage includes a telescoping cylinder and at least two sets of door bodies, each set of the door body is provided with one set of driving mechanisms, each of the driving mechanisms includes a rotating shaft and a driving rod, and the rotating shaft is connected with the respective door body by the driving rod, to allow the door body to be driven to rotate when the rotating shaft rotates; each of the rotating shaft is driven to rotate by the telescoping cylinder, and at least two of the rotating shafts are configured to be driven to rotate successively by the telescoping cylinder.
Abstract:
The inner surface of one side section of a frame has the base-end section of a rotation arm of a rotation-biasing element that is rotatable. A roller is provided on the tip-end section of the rotation arm. The roller is pressed against and contacts the rear surface of a door as a result of the biasing by the rotation-biasing element. The rear surface of the door is equipped with a damper element. The damper element has a contact member for pressing against and contacting the roller when the door is in the closed position or in a prescribed intermediate position. The contact member minimizes the speed at which the roller moves forward.
Abstract:
The inner surface of one side section of a frame (1) has the base-end section of a rotation arm (44) of a rotation-biasing means (4) provided so as to be rotatable. A roller (47) is provided on the tip-end section of the rotation arm (44). The roller (47) is pressed against and contacts the rear surface (2a) of a door (2) as a result of the biasing by the rotation-biasing, means (nut illustrated). The rear surface of the door (2) is equipped with a damper means (5). The damper means (5) has a contact member (52) for pressing against and contacting the roller (47) when the door is in the closed position or in a prescribed intermediate position. The contact member (52) minimizes the speed at which the roller (47) moves forward.
Abstract:
The storage device (1) comprises a storage compartment (2), comprising an upper opening (10), and a lid (6), said lid (6) being movable between a closed position and a first opened position, wherein the storage compartment (2) is accessible from a first side (12) of the opening (10), and a second opened position, wherein the storage compartment (2) is accessible from a second side (14) of the opening (10). The storage compartment (2) comprises a locking device comprising a first locking element (16) and a second locking element (18), respectively extending on the first side (12) and the second side (14) of the opening (10), each locking element (16, 18) being engaged in the lid (6) in the closed position in order to lock said lid (6), the storage compartment (2) further comprising an unlocking device selectively actuable to retract the first locking element (16) from the lid (6), while maintaining the second locking element (18) engaged in the lid (6), to move the lid (6) towards its first opened position, and to retract the second locking element (18) from the lid (6), while maintaining the first locking element (16) engaged in the lid (6), to move the lid (6) towards its second opened position.
Abstract:
A driver assistance system is provided for a motor vehicle, which has a first ascertainment device, the first ascertainment device implemented to ascertain at least one parameter that characterizes a possible fatigue of a current driver of the motor vehicle. In addition, the driver assistance system has a second ascertainment device, which is implemented to ascertain a degree of fatigue of the driver based on the at least one ascertained parameter. In addition, the driver assistance system has an opening device, which is implemented to at least partially open at least one window of the motor vehicle if the ascertained degree of fatigue of the driver exceeds a first predetermined threshold value.