Abstract:
An electrical switching apparatus interface assembly provides remote actuation of the operating handle of a circuit breaker. The interface assembly includes the circuit breaker, a second switching apparatus, such as an actuating handle disposed in a remote location from the circuit breaker, a connector and an operating handle attachment including a handle-engaging segment for securely engaging the circuit breaker operating handle and an interfacing segment for receiving the connector. The actuating handle is operable between ON and OFF positions corresponding to ON and OFF positions, respectively, of the circuit breaker operating handle. The connector interfaces or links the circuit breaker to the actuating handle. In this manner, when the actuating handle is moved from the ON or OFF position, the connector moves the circuit breaker operating handle in a likewise manner.
Abstract:
A mounting mechanism for mounting a enclosure-mountable device to an equipment enclosure having a plurality of vertical mounting rails disposed so as to define an equipment storage region is disclosed. The mounting mechanism includes a first portion configured to be attached to the enclosure-mountable device, and a second portion configured to be attached to one or more of the vertical mounting rails. The first and second portions are configured such that the enclosure-mountable device may be disposed in a first position outside the equipment storage region and a second position outside the equipment storage region.
Abstract:
A computer program product for image manipulation of a source data set, the product being operable to: load a source data set, for example of voxel data, for image manipulation by the computer program product; generate and display image data of the source data set by allowing interactive user adjustment of a plurality of operational state conditions; and store the image data of a currently displayed image together with operational state data corresponding to at least a subset of its current operational state conditions in a standard image data format, such as DICOM. Storing operational state data with the image data allows a user later to reload the image data and return the computer program's other important configuration settings, so that a user can seamlessly continue with an interrupted session, either on the same workstation, or on a different workstation at a remote location. This is a major improvement for medical imaging applications, since hospital networks are generally incapable of supporting general-purpose file transfer.
Abstract:
A control (60) for an EGR valve (24) including an actuator (16) for moving the EGR valve (24) between a closed position and an open position, and a position sensor (48) for detecting the position of the EGR valve (24) and generating a position output signal. A processing circuit (70,72) receives the position output signal and transmits electrical control signals to energize the actuator (16) and move the EGR valve (24). Control logic is implemented whereby, when the EGR valve (24) is moving towards the closed position, the processing circuit (70,72) transmits first electrical control signals for energizing the actuator (16) in a first predetermined manner when the position output signal indicates that the EGR valve (24) is at least a predetermined distance away from the closed position. When the position output signal indicates that the EGR valve (24) is less than the predetermined distance away from the closed position, the processing circuit (70,72) transmits second electrical control signals for energizing the actuator (16) in a second predetermined manner.
Abstract:
There is provided a convenient-to-carry helmet stand. The portable helmet stand includes a first body portion, a second body portion, and a receipt surface on which a crown portion of a helmet can be placed in an operating mode of the portable helmet stand. The first body portion and the second body portion are operationally connected to one another such that the first body portion and the second body portion can be disposed, in an operating mode of the portable helmet stand, to delimit an operating mode width between themselves.
Abstract:
A method for manufacturing the cushioning elements may include utilizing a die with a plurality of die elements positioned in a particular arrangement. A polymer material, which may be a polymer foam material, is located between the die and an extractor. The polymer material is compressed between the die and the extractor, and the die elements cut the polymer material to form a plurality of pad components, which are arranged like the die elements. The die and the extractor are separated, and the pad components are secured to the extractor in the arrangement of the die elements. Additionally, the pad components are bonded to at least one material layer such that the pad components remain in the arrangement of the die elements.
Abstract:
A computer-implemented method for generating a memory map of a target computer includes specifying, from a plurality of identifiers stored in a memory of a host computer, at least one identifier associated with a memory layout of the target computer. The method further includes specifying a value associated with the specified at least one identifier. The method further includes generating a memory map definition of the memory map using the at least one identifier and the associated at least one value. The method also includes deploying software on the target computer, the software incorporating the memory map definition and including an executable instruction that references the at least one identifier which is replaced with the associated value.
Abstract:
An article of apparel may include may include a garment portion and at least one protective element. The garment portion and the protective element have a configuration that forms a gap, separation, or pleat structure through, for example, folding or overlapping of a textile element of the garment portion. The gap, separation, or pleat structure may permit the protective element to move independent of other portions of the apparel at the joint, thereby enhancing a range of movement of the individual and the overall comfort of the apparel.
Abstract:
Cushioning elements for apparel may include a pair of material layers and a pad component that is located between and secured to the material layers. At least one of the material layers is formed from an at least partially transparent material. The pad component includes a polymer foam material that defines at least one of a groove and a void, and the pad component includes a surface that includes a bonding agent that joins the pad component to the first material layer. The polymer foam material has a first color and the bonding agent has a second color that is different than the first color.
Abstract:
A pad element may include a base member, a pair of cover layers, and a plurality of insert elements. The base member defines a plurality of apertures. The cover layers are secured to opposite surfaces of the base member and extend across the apertures. The insert elements are located within the apertures and between the cover layers. As examples, the base member and the insert elements may be formed from polymer foam materials, and the cover layers may be formed from textile materials. The pad element may be utilized to attenuate impact forces and provide one or more of breathability, flexibility, a relatively low overall mass, and launderability.