Abstract:
Provided are a connector and a manufacturing method thereof. The connector is configured to dispose on a circuit board including a mounting hole. The connector includes a guide pin module and a conductive cover. The guide pin module is located on one side of the circuit board and includes a base, a metal guide pin, and a glass sealing layer. The base has a perforation hole corresponding to the mounting hole. The metal guide pin is inserted into the perforation hole and the mounting hole. The glass sealing layer is disposed at the perforation hole and wraps around part of the metal guide pin. The conductive cover is disposed at the mounting hole, connected to the top of the metal guide pin, and protrudes from the circuit board. The conductive cover is bonded to the circuit board by soldering to electrically connect the metal guide pin to the circuit board.
Abstract:
A waterproof connector including one or more contacts each having a contact-side waterproof shaped section formed around a surface of a contact-side fixed section, a shell having a fitted section with a pair of flat shell outer surfaces and a shell-side waterproof shaped section formed around a surface of a shell-side fixed section, a housing holding the one or more contacts and the shell, and a seamless waterproof member disposed around a periphery of the housing, the shell-side fixed section being positioned closer to a fitting axis between the waterproof connector and a counter connector than the shell outer surfaces of the fitted section is when viewed in a direction of the fitting axis, the shell-side waterproof shaped section, the contact-side waterproof shaped section and the waterproof member being disposed to overlap each other at a position in the direction of the fitting axis.
Abstract:
A secondary disconnect assembly is for an electrical switching apparatus. The secondary disconnect assembly includes a terminal block assembly comprising a mounting member including a number of protrusions, and a cradle assembly coupled to the mounting member and being movable among a plurality of positions with respect to the mounting member. The cradle assembly includes a cradle housing and an inner cradle movably disposed with the cradle housing. The protrusions align and guide the inner cradle with respect to the mounting member. When the inner cradle is disposed in a first predetermined one of the positions, the number of protrusions engage and lock the inner cradle to restrict movement of the inner cradle with respect to the mounting member. When the inner cradle is moved toward a second predetermined one of the positions, the number of protrusions release the inner cradle to move independently with respect to the mounting member.
Abstract:
In various examples, a connector apparatus includes at least one connector including an integral conductor and an encapsulation housing. The at least one connector includes a contact portion and a tail portion, wherein the contact portion is configured to selectively accept and electrically couple to a therapy delivery element. The tail portion extends outwardly from the contact portion. The encapsulation housing at least partially surrounds at least some of the contact portion of the conductor. The encapsulation housing includes an inner surface, wherein at least some of the contact portion of the conductor extends from the inner surface of the encapsulation housing. With a contact of the therapy delivery element disposed within the encapsulation housing, the conductor is configured to contact and electrically couple with the contact of the therapy delivery element.
Abstract:
Electrical connector for supplying electronic circuits with current. The connector comprises a flat metal bar and an insulating case comprising an open cavity extended by an inclined support covered by an end portion of the bar.
Abstract:
The connector includes a first insulator including a first retaining surface and a protrusion portion formed on and protruding from the first retaining surface, and a second insulator including a second retaining surface opposed to the first retaining surface and a recess portion formed in the second retaining surface and corresponding to the protrusion portion, the first insulator and the second insulator are connected to each other with the sheet type conductive member and the electric wire being held between the first retaining surface and the second retaining surface, and at least part of the protrusion portion is housed in the recess portion, whereby the conductor portion of the electric wire is electrically connected to the flexible conductor of the sheet type conductive member in the recess portion.
Abstract:
A lighting assembly is presented herein. The lighting assembly includes a receptacle terminal having a connection portion defining an aperture configured to receive a corresponding plug terminal along a longitudinal axis and a terminal housing defining an opening and a cavity in which the connection portion is disposed. The connection portion is sized, shaped, and arranged within the cavity to be movable along a lateral axis perpendicular to the longitudinal axis.
Abstract:
An electronic device includes an attaching member including a first attaching member having a first male portion protruding in a first direction from an outer circumference of the first attaching member, and a second attaching member having a first female portion corresponding to the first male portion, and an attached member to which the attaching member is attached. The attaching member includes either one of a second male portion extending in a second direction different from the first direction and a second female portion corresponding to the second male portion. The attached member includes the other of the second male portion and the second female portion.
Abstract:
A connection cable is provided with a plurality of structures, a first connector, and a second connector. The plurality of structures include a concave-shaped structure and a convex-shaped structure. The first connector includes the concave-shaped structure and the convex-shaped structure that are arranged in line symmetry with respect to a predetermined reference line. The second connector includes the concave-shaped structure and the convex-shaped structure that are arranged in line symmetry with respect to a predetermined reference line.
Abstract:
A watch band can provide both a physical connection and an electrical connection with a watch body of a watch. The watch band is fixed relative to the watch body and an electrical connection is either performed either simultaneously or shortly thereafter. The electrical connection enables data and power transfer between the watch body and the watch band. The electrical connection can also be performed by a secondary user interaction. Secondary user inactions can involve the user sliding, pulling, pushing, or rotating a portion of the watch band or watch body.