Abstract:
A shielded telecommunications connector comprising a conductive core having core side walls and a horizontal shield joined to and perpendicular to the side walls. At least one contact carrier contains a contact, the contact having an insulation displacement contact for making electrical connection with a wire, the contact carrier being positioned on the horizontal shield between the side walls. At least one termination cap receives the wire and the insulation displacement contact, the termination cap positioning the wire relative to the insulation displacement contact. Each of the sidewalls has a sidewall ledge and the termination cap includes two first lips positioned beneath the sidewall ledges. The horizontal shield extends beyond a length of the termination cap.
Abstract:
Multimedia bezels designed to receive a variety of connectors and fit within a standard panel cut-out. The bezels include top and bottom notches that engage the edge of the panel cut-out. An opening in the body of the bezel receives the connector. A resilient section allows one of the sets of notches to deflect towards the body for insertion in the panel cut-out. Once within the panel cut-out, the resilient section presses against the edge of the panel cut-out to firmly mount the bezel in the panel. The body of the bezel may be parallel (flat) or at an oblique angle (angled) to the panel. Both the flat and angled embodiments include icon holding grooves for receiving an icon for coding the port. In the flat embodiment, the icon also prevents deflection of the resilient section and acts as a lock. The bezels are side stackable so that a variety of simplex and duplex bezels can be utilized in a panel cut-out.
Abstract:
A device for promoting the clotting of blood comprises a clay material in particle form and a receptacle for containing the clay material. At least a portion of the receptacle is defined by a mesh. Another device comprises a gauze substrate and a clay material disposed on the gauze substrate. Another device is a bandage comprising a substrate, a mesh mounted on the substrate, and particles of a clay material retained in the mesh. A hemostatic sponge comprises a substrate, a hemostatic material disposed on a first surface of the substrate, and a release agent disposed on a second surface of the substrate. The release agent is disposed on the wound-contacting surface of the substrate. When treating a bleeding wound, application of the hemostatic sponge causes at least a portion of the hemostatic material to come into contact with blood through the release agent and through the substrate.
Abstract:
Compositions that include a clay such as kaolin dispersed in a liquid such as water may be useful for promoting the clotting of blood. The compositions may be in a liquid, gel, paste, foam, or another form. Uses may include treating a traumatic injury such as in injury caused by a bullet, an explosive, a blade etc., or an injury caused during a medical procedure such as surgery.
Abstract:
A method for decreasing the time it takes for a wound to heal includes applying hemostatic agent to the wound, inflaming tissue surrounding the wound to facilitate the deposition of fibroblast, thereby accelerating the subsequent contraction of the wound and the onset of the proliferative healing stage, and causing the re-epithelization of the tissue at a faster rate than if no hemostatic agent was applied. A method for promoting the healing of a bleeding wound includes coating a hemostatic agent onto a substrate, applying the substrate to the bleeding wound so that an effective amount of the hemostatic agent is applied to the wound, inflaming the tissue, and causing the re-epithelization of the tissue at a faster rate than if no hemostatic agent was applied. In at least some methods, a clotting cascade and platelet aggregation within the bleeding wound is accelerated, and blood loss from the wound is decreased.
Abstract:
A composition for promoting hemostasis is defined by a substrate in particle or pellet form and a hemostatic agent disposed on the substrate such that when using the composition to treat a bleeding wound, contacting the bleeding wound with the hemostatic agent causes blood to clot. The hemostatic agent may be a zeolite, bioactive glass, siliceous oxide, clay, biological hemostatic material, diatomaceous earth, or a combination of the foregoing. The substrate may be clay, glass, bioactive glass, diatomaceous earth, wax, polymer, plastic, metal, or a combination of the foregoing. A method of fabricating a hemostatic composition includes providing a substrate and a material having hemostatic characteristics. The hemostatic composition is fabricated by providing a material to operate as a carrier for the hemostatic material. The material is formed into particles or pellets. The material having hemostatic properties is applied or coated onto the particles of the carrier material.
Abstract:
A telecommunications connector includes a housing and a plurality of contacts mounted in the housing, the contacts having a first connection end and a second connection end. A modular element having a plurality of leads in electrical contact with the plurality of contacts is removably mounted to the housing.
Abstract:
An axial latch actuator includes: a mating portion having a latch for engaging a jack; and a slidable housing that slides along the mating portion and engages the mating portion, wherein when the slidable housing slides in a first direction, the mating portion is in a latched position and when the slidable housing slides in a second direction, the mating portion is in an unlatched position. The housing also includes a locking wedge. The latch in this embodiment includes first and second fingers adjacent to one another that extend over the mating portion and have first ends connected to the mating portion.
Abstract:
An axial latch actuator includes: a mating portion having a latch for engaging a jack; and a slidable housing that slides along the mating portion and engages the mating portion, wherein when the slidable housing slides in a first direction, the mating portion is in a latched position and when the slidable housing slides in a second direction, the mating portion is in an unlatched position. The housing also includes a locking wedge. The latch in this embodiment includes first and second fingers adjacent to one another that extend over the mating portion and have first ends connected to the mating portion.