Patent classifications
Y10T29/4922
Method of manufacturing a universal series bus connector
A universal series bus (USB) connector including a base, a first terminal set, and a second terminal set and a method of manufacturing the universal series bus connector are provided. The first terminal set includes a pair of first differential signal terminals and a pair of second differential signal terminals, and terminals of the pair of first differential signal terminals are adjacent to each other and terminals of the pair of second differential signal terminals are adjacent to each other. Two of terminals of the second terminal set are located at two opposite sides of the pair of first differential signal terminals, and another two of the terminals of the second terminal set are located at two opposite sides of the pair of second differential signal terminals.
Flippable electrical connector
A receptacle connector includes an insulating housing including a base and a mating tongue extending from the base and the mating tongue defining a thicken step portion at a root near to the base, two rows of contacts with contacting section exposing to opposite surfaces of the mating tongue in front of the step portion and tail sections extending out of the base, and a pair of separate metallic collars respectively disposed upon the opposite surface of the step portion. Two opposite ends of each metallic collar are embedded in the step portion of the insulating housing via an inserting mold process.
UNIVERSAL SERIES BUS CONNECTOR AND MANUFACTURING METHOD THEREOF
A universal series bus (USB) connector including a base, a first terminal set, and a second terminal set and a method of manufacturing the universal series bus connector are provided. The first terminal set includes a pair of first differential signal terminals and a pair of second differential signal terminals, and terminals of the pair of first differential signal terminals are adjacent to each other and terminals of the pair of second differential signal terminals are adjacent to each other. Two of terminals of the second terminal set are located at two opposite sides of the pair of first differential signal terminals, and another two of the terminals of the second terminal set are located at two opposite sides of the pair of second differential signal terminals.
VERY HIGH SPEED, HIGH DENSITY ELECTRICAL INTERCONNECTION SYSTEM WITH EDGE TO BROADSIDE TRANSITION
A modular electrical connector with broad-side coupled signal conductors in a right angle intermediate portion and edge coupled end portions. Broadside coupling provides balanced pairs for very high frequency operation, while edge coupling provides a high density interconnection system at low cost. Each module has separately shielded signal conductor pairs. The shielding is shaped to avoid or suppress undesirable propagation modes within an enclosure formed by shielding per module. Lossy material is selectively placed within and outside the shielding per module to likewise avoid or suppress unwanted signal propagation.
HIGH SPEED, HIGH DENSITY ELECTRICAL CONNECTOR WITH SHIELDED SIGNAL PATHS
A modular electrical connector with separately shielded signal conductor pairs. The connector may be assembled from modules, each containing a pair of signal conductors with surrounding partially or fully conductive material. Modules of different sizes may be assembled into wafers, which are then assembled into a connector. Wafers may include lossy material. In some embodiments, shielding members of two mating connectors may each have compliant members along their distal portions, such that, the shielding members engage at points of contact at multiple locations, some of which are adjacent the mating edge of each of the mating shielding members.
DISTAL CONNECTOR ASSEMBLIES FOR MEDICAL LEAD EXTENSIONS
Distal connector assemblies that are on the distal end of medical lead extensions provide increased rigidity by including a rigid holder that contains the electrical connectors. The electrical connectors are separated within the rigid holder by insulative spacers that may be individual items or may be formed from a compliant carrier that the electrical connectors may reside within where the carrier is positioned within the rigid holder. The rigid holder may also contain a set screw block defining set screw bore or the rigid holder may include an integral portion that defines a set screw bore. The integral portion may include a slot to allow a molding pin loaded with the electrical connectors and other components to be dropped into a cavity of the rigid holder. An overmold may be present to surround the rigid body containing the electrical connectors and insulative spacers.
FLIPPABLE ELECTRICAL CONNECTOR
A receptacle connector includes an insulating housing including a base and a mating tongue extending from the base and the mating tongue defining a thicken step portion at a root near to the base, two rows of contacts with contacting section exposing to opposite surfaces of the mating tongue in front of the step portion and tail sections extending out of the base, and a pair of separate metallic collars respectively disposed upon the opposite surface of the step portion. Two opposite ends of each metallic collar are embedded in the step portion of the insulating housing via an inserting mold process.
SEALED CORROSION-RESISTANT CONTACTS
Contacts and connector assemblies that may be space efficient, provide direct connections to flexible circuit boards, provide corrosion resistance, prevent moisture leakage into an electronic device housing the connector assembly, are readily assembled, and have an aesthetically pleasing appearance.
Battery clamp with endoskeleton design
A clamp for coupling an electronic battery tester to a post of a storage battery. The clamp includes a first metal arm that extends from a first proximal end to a first distal end and a second metal arm that extends from a second proximal end to a second distal end. A first hinge portion on the first metal arm is positioned between the first proximal end and the first distal end. A second hinge portion is positioned on the second metal arm between the second proximal end and the second distal end. A pivot is configured to pivotally couple the first hinge portion to the second hinge portion. A first covering is overmolded on the first metal arm and a second covering is overmolded on the second metal arm.
MOULDED IN PLACE SEAL PLUG AND SUTURE ANCHOR
An implantable pulse generator includes a device housing containing pulse generator circuitry and a header molded to the device housing. The header can be formed of an epoxy header material. A header component can have a first part molded in the header material to fix the header component to the header at a surface of the header and a second part extending out of the header material.