Abstract:
A system for a replenishment door of a vehicle includes a body having a port and defining a latch aperture, a door pivotably attached to the body with a hinge, a system controller, and a latch assembly. The door is pivotable between a closed position and an open position. The latch assembly is configured for securing the door to the housing in the closed position. Further, the latch assembly includes a housing and a light source disposed within the housing, the light source being configured to project light through the housing, and the system controller being configured to control an intensity of the light source.
Abstract:
A movable wall panel system may include a bottom drop seal assembly that maintains a constant force relative to a floor portion of an environment through a damper. The movable wall panel system may include an automatic top seal assembly that seals a gap between the movable wall panel system and a ceiling of the environment. The moveable wall panel system may include multiple panels and a plurality of seals positioned between adjacent panels to seal a gap between the adjacent panels.
Abstract:
The invention relates to a weight compensation device for a drive of a lifting door, for the position-dependent compensation of the weight force of a door leaf of the lifting door, with a force transmission unit which can be coupled to the drive in order to carry out an opening movement which raises the door leaf and a closing movement which lowers the door leaf, wherein at least one compression spring is provided which is arranged in such a way that it supports the opening movement. The invention also relates to a lifting door, in particular an industrial lifting door, which has a door leaf, with a drive, such as a motor, and with a weight compensation device according to the invention.
Abstract:
The present disclosure relates to extrusion-coated structural systems including at least one extruded profile member coupled to and extending outwardly from an extrusion-coated structural member, as well as methods of making and using the same. Structural systems of the present invention that include at least one extruded profile member may exhibit enhanced flexibility, functionality, and/or durability. Structural systems according to embodiments of the present invention can be suitable for use in a variety of applications, including in ready-to-assemble furniture or cabinetry applications or as building and construction materials such as wall board, flooring, trim, and the like.
Abstract:
The lid opening and closing mechanism in the present disclosure has an operating member which is displaceable relative to a housing body, and a drive mechanism. When the operating member is in a first position relative to the housing body, the drive mechanism locks the lid so that the lid does not move in a predetermined direction, and when the operating member is moved to a second position relative to the housing body, the drive mechanism releases the lock on the lid, moves the lid in the predetermined direction by at least a predetermined distance, and separates the lid from a predetermined face in a direction perpendicular to the predetermined face.
Abstract:
The invention relates to a lifting door, comprising a movable door leaf made of slats, the slats being connected to one another so as to bend, and comprising structure-mounted frames. Lateral guides for the door leaf having a vertical section and a lintel section, and frame sealing elements of a sealing assembly are arranged thereon, which close a gap between the door leaf and a section of the frames facing the door opening when the lifting door is closed. The lintel sections of the guides, together with the vertical sections of the guides, are displaceably mounted on the frames, wherein the guides can only be displaced in a direction that is diagonal to the door leaf plane, but not in a moving direction of the door leaf. Thus, an improved lifting door having greater operational safety, and at the same time an improved sealing effect between the door leaf and the door opening can be achieved.
Abstract:
A support bracket for supporting a glass panel comprises a base adapted to be anchored to a ground or structure. A glass interface is configured to be connected to a glass panel for the support bracket to support a portion of the glass panel. A height adjustment mechanism operatively connects the base to the glass interface, the height adjustment mechanism enabling a translational upward and downward movement of the glass interface relative to the base and being lockable to maintain the glass interface at a desired height. A leveling adjustment mechanism is in the base for adjusting a level of the base relative to the ground or structure, the leveling adjustment mechanism being lockable to maintain the base at a desired leveling.
Abstract:
An anti-fall transmission device for a handling door (1) having a flexible curtain (5) to be stacked or rolled about a drive shaft (4) during the movements thereof between an open and a closed position, includes a separate electric motor or gear motor (7) attached along a rotational axis which is offset and parallel to that of the drive shaft (4), as a protective anti-fall device (8) for connecting the motor or the gear motor (7) to the drive shaft (4) and for preventing the flexible apron (5) from accidentally falling.
Abstract:
An apparatus having a base portion configured to be secured to a mounting surface and a sensor connected to the base portion that is configured to interface with an elongate member and measure one or more characteristics of the elongate member as the elongate member moves from being wound up on or paid out from a rotatable drive of a movable barrier operator. The one or more characteristics can include, for example, position, velocity, and direction of movement of the elongate member. By measuring the one or more characteristics of the elongate member, corresponding properties of a movable barrier connected to the elongate member can be accurately determined. The apparatus may be also used to supplement an estimate of the properties of the movable barrier obtained from measurement of the rotatable drive and provide a more accurate estimate of the movable barrier properties.
Abstract:
A high-speed door assembly for selectively permitting and prohibiting access through an opening in a wall, or other blocking structure, the door assembly having a shaft or drum located proximate the wall or other blocking structure and outside of the opening, and the shaft or drum having a longitudinal axis, and, a flexible door panel attached to the shaft or drum so as to be capable of being wound and unwound about the drum for selectively permitting and prohibiting access through the opening, the door panel being wound on the shaft or drum in an orientation such that the door panel defines at least one vertical plane when unwound from the shaft or drum, the vertical plane being spaced farther from the wall than the longitudinal axis of the shaft or drum is spaced from the wall or other blocking structure.