Abstract: A cable exit trough is mountable to a lateral trough section either during initial assembly of the cable routing system, or at a later date. The exit trough includes a bracket portion mountable to the top edge of one of the sides of the lateral trough section. Two lead-ins are provided to lead the cable in an upward direction from the lateral trough section to the exit trough. The exit trough includes an exit trough portion extending from the bracket portion upwardly away from the lateral trough section. The exit trough portion includes a convexly curved bottom trough surface, and two convexly curved upstanding sides. The exit trough portion and the lead-ins define a cable pathway from the lateral trough section to an exit point of the exit trough portion which can either lead downwardly relative to the lateral trough section or horizontally.
Type:
Grant
Filed:
December 7, 2006
Date of Patent:
November 11, 2014
Assignee:
ADC Telecommunications, Inc.
Inventors:
Timothy Jon Haataja, Thomas Walter Kampf
Abstract: A magnetic memory device comprises magneto-resistance elements each including a cylindrical fixed magnetization layer, an insulating film which covers an external surface of the fixed magnetization layer, and a free magnetization layer which faces the fixed magnetization layer through the insulating film and covers a surface of the insulating film, wherein a magnetization direction of the fixed magnetization layer is parallel to a central axis direction of the cylinder.
Abstract: A tubular or spherical nanostructure composed of a plurality of peptides, wherein each of the plurality of peptides includes no more than 4 amino acids and whereas at least one of the 4 amino acids is an aromatic amino acid.
Abstract: An improved positional transducer is disclosed which utilizes an elongated, hollow, cylindrical tube of a magnetically saturable material, a sense wire that runs through the tube parallel to its elongated axis and a pair of elongated, generally rectangular shaped magnets of opposite polarity which are closely positioned adjacent diametrically opposite exterior portions of the tube. As the magnets move over in the tube, they provide substantially complete saturation of the tube in the portion over which they extend while the remaining portion of the tube remains unsaturated thereby giving a linear indication of the position of the magnets with respect to the tube. In the improved version, shown herein, adjustments of the electrical slope (volts/inches of travel) are achieved by a slot cut through the wall of the tube in the direction of the tube's length.