Abstract:
A device for providing a marking arranged or arrangeable in a circumferentially closed manner around a prolate object includes: a material interface for receiving a printed product output from a printer; a print signal interface for acquiring a control signal related to the printed product output; at least one sensor for acquiring a control signal related to providing of the marking; and at least one actuator for arranging the marking on the object in a circumferentially closed manner or to provide the marking for circumferentially closed arrangement depending on the control signal related to the printed product output and the control signal related to the providing of the marking using the printed product output by the printer.
Abstract:
An apparatus for controlling the printing on wire or cable. The apparatus including a processor, a bus connected to the processor, a user input connected to the bus, a display screen connected to the user input and the bus, a first storage system connected to the bus, data stored in the first storage system and displayable on the display screen, wherein the data includes manufacturing and print information, a printer connected to the bus, wherein the printer prints the data on the wire or cable, a communication device connected to the bus, and an identification device connected to the bus, wherein identification device receives information from a user.
Abstract:
Methods, apparatuses, and computer program products for estimating physical disparity for data locality in software-defined infrastructures are disclosed. For each node in a cluster of nodes connected to a switch, vital product data (VPD) of a cable connecting the node to the switch is obtained, and for each cable, a length of the cable is determined from the VPD. A management application assigns a group identifier to each node in the cluster based on the length of the cable connecting the node to the switch. The management application selects a node in the cluster for storing a data set in dependence upon the group identifier of the node.
Abstract:
The present invention provides an identifiable armored cable sheath. In accordance with an aspect of the present invention, there is provided an identifiable armored cable sheath comprising: an armored cable sheath having an outer surface, and a visual indicia applied on the outer surface of the cable sheath in a patterned arrangement, wherein the visual indicia possesses visibility features in low light. Another aspect of the present invention provides a method of making an identifiable armored cable sheath comprising: providing an armored cable sheath, and applying a visually distinctive tape to the outer surface of the sheath in a patterned arrangement.
Abstract:
An apparatus for controlling the printing on wire or cable. The apparatus including a processor, a bus connected to the processor, a user input connected to the bus, a display screen connected to the user input and the bus, a first storage system connected to the bus, data stored in the first storage system and displayable on the display screen, wherein the data includes manufacturing and print information, a printer connected to the bus, wherein the printer prints the data on the wire or cable, a communication device connected to the bus, and an identification device connected to the bus, wherein identification device receives information from a user.
Abstract:
A theft deterrent product may be provided. The theft deterrent product may comprise a jacket and a core under the jacket. In addition, the theft deterrent product may include an identification tape under the jacket. The identification tape may comprise a plurality of indicia located periodically and longitudinally on the identification tape. The plurality of indicia may respectively correspond to a plurality of unique codes.
Abstract:
A catheter or other elongated member can include an elongated inner portion, an elongated outer portion, a flex circuit ribbon comprising at least one conductor, and an electrical contact. The flex circuit ribbon can be situated between the inner portion and the outer portion. The inner portion and the outer portion can be (1) affixed together between portions of the flex circuit ribbon or (2) integrally formed such that masses of the inner and outer portions are joined together between portions of the flex circuit ribbon. The electrical contact can be configured to be exposed during use. The electrical contact can be situated at, or connected to, the at least one conductor of the flex circuit ribbon.
Abstract:
A method for manufacturing an insulated conductive material includes providing a continuous feed of a conductive material, a first continuous feed of insulating material above a top surface of the conductive strip, and a second continuous feed of insulating material below a bottom surface of the conductive strip. Portions of the first and second continuous feeds of insulating material are compressed against a portion of the conductive material. The portions of the first and second insulating material are cured to thereby provide a continuous feed of insulated conductive material.
Abstract:
Provided is a conductive resin composition suitable for forming a transparent conductive film with good appearance and excellent transparency. The conductive resin composition includes: (A) a conductive polymer; (B) a conductivity enhancer; (C) a binder; and (D) a thickener, the composition having a viscosity at 25° C. of 50 to 8000 dPa·s, and containing the thickener (D) in an amount of less than 200 parts by weight per 100 parts by weight of solids of the conductive polymer (A).
Abstract:
A process and system for printing sequences of alpha-numeric characters on segments of wire or cable during production. In one embodiment, the process and system comprises printing a sequence of alpha-numeric values onto a first segment of wire up to an input target value. The process and system further comprises printing a sequence of alpha-numeric values onto a second segment of wire up to a second input target value. In one embodiment, the process and system is capable of printing sequences on segments of wire or cable up to variable target values without requiring a shutdown of the production process, and without requiring lag time between printing on subsequent wire or cable segments.