Abstract:
A connector in which a large contact pressure between male and female terminals is obtained. The female terminal has an elastic wall portion that is outwardly pressed by the displaced elastic contact piece to be displaced. The elastic lance is disposed on the side of the elastic wall portion of the socket portion so as to be outwardly pressed by the displaced elastic wall portion to be displaced. The displaced elastic contact piece is pressed by the displaced elastic wall portion and the elastic lance, thereby increasing the contact pressure of the elastic contact piece.
Abstract:
The invention provides a module being connectable to a mating connector having a tube and including a case and a connector. The case has a through hole that is larger than the tube so as to receive the tube. The connector fits into the tube along a first direction and includes a tuboid shell that includes a lip, first to fourth corners, and guides. The first and second corners are provided where the distal face of the lip meets outer faces on one and the other sides, respectively, of a second direction of the lip. The third and fourth corners are provided where the distal face of the lip meets outer faces on one and the other sides, respectively, of a third direction of the lip. The guides, each at least one of a chamfer, a rounded face, and a curved portion curved inward of the connector, are provided at the respective first to fourth corners.
Abstract:
An optical fiber including a circuit board, a converter, an optical fiber, an external connecting part, and a pressable part. The circuit board includes first and second faces opposite to each other. The first face has first and second regions being different regions. The second face has third and fourth regions on the opposite side to the first and second regions, respectively. The converter is an opto-electronic or electro-optic converter on the first region of the circuit board. The optical fiber includes a leading end portion optically connected to the converter. A circuit on the first region of the circuit board is electrically connected to the converter. The external connecting part is disposed on the fourth region of the circuit board. The pressable part is fixed to the circuit board and positioned on the second region of the circuit board without contacting the converter, the optical fiber, or the circuit.
Abstract:
An optical fiber including a circuit board, a converter, an optical fiber, an external connecting part, and a pressable part. The circuit board includes first and second faces opposite to each other. The first face has first and second regions being different regions. The second face has third and fourth regions on the opposite side to the first and second regions, respectively. The converter is an opto-electronic or electro-optic converter on the first region of the circuit board. The optical fiber includes a leading end portion optically connected to the converter. A circuit on the first region of the circuit board is electrically connected to the converter. The external connecting part is disposed on the fourth region of the circuit board. The pressable part is fixed to the circuit board and positioned on the second region of the circuit board without contacting the converter, the optical fiber, or the circuit.
Abstract:
A shield case including a first shell having electrical conductivity and a second shell having electrical conductivity. The first shell includes a connecting portion and a cover. The connecting portion is a tube extending in a first direction and including a first portion and a second portion. The first portion is a portion of the connecting portion on one side in a second direction, the second direction crossing the first direction. The second portion is a portion of the connecting portion on the other side in the second direction. The cover extends in the first direction contiguously from the first portion of the connecting portion and includes a pair of walls opposed to the second portion, with interstices left between the respective walls and the second portion. The second shell includes a first blocking portion, the first blocking portion blocking the interstices.
Abstract:
Provided is an inexpensive and compact optical transmission module having high coupling efficiency between an optical fiber and a light projecting element and/or a light receiving element. This optical transmission module includes a lead frame including an electric wiring pattern formed therein, a resin housing formed through insert-molding of the lead frame, and an electric device mounted on the lead frame and including a light projecting element for photoelectric conversion. The lead frame forms a slit positioning an optical fiber to be coupled and a reflection mirror reflecting and condensing light from the light projecting element to the optical fiber.
Abstract:
[Purpose] The invention provides a connector capable of suppressing plastic deformation of a contact portion of a contact and also provides an electronic device provided with the connector.[Configuration] A connector C includes a first contact 200a, a second contact 200b in spaced relation to the first contact 200a along a first direction X, and a first stop 300a having an insulation property. The first contact 200a includes a contact portion 220a that is elastically deformable toward the second contact 200b. The first stop 300a is disposed between the first and second contacts 200a, 200b and on an elastic deformation direction side of the contact portion 220a so as to be abuttable on the contact portion 220a.
Abstract:
A board edge connector to which a board is inserted along an oblique direction relative to its fixed posture includes a main body, a plurality of contacts arranged in juxtaposition on the main body along a direction perpendicular to an insertion direction of the board, and a cover member covering the main body. The main body includes a base portion on which the multiple contacts are juxtaposed and a pair of arm portions extending from the base portion along opposed lateral edges of the board which assumes a fixed posture. The cover member includes an attaching portion covering the base portion and a pair of arm members covering lateral faces of the pair of arm portions, the pair of arm members being formed integral with the attaching portion.
Abstract:
The invention provides a shield shell that allows easy insertion of a circuit board or other insulator into the shield shell. A shield shell 300 includes a shell body 310 and first and second position restrictors 320a and 320b. The first position restrictor 320a is provided at an edge portion 315 of an insertion port 310 of the shell body 310 and is located inside the insertion port 315. The second position restrictor 320b is provided in the shell body 310 so as to oppose the first position restrictor 320b with a spacing in a Z-Z′ direction. A distance in the Z-Z′ direction from the first position restrictor 320a to the second position restrictor 320b is substantially equal to, or slightly larger than, a distance in the Z-Z′ direction from a first face 101 to a second face 102 of a circuit board 100. When the circuit board 100 is inserted into the shell body 310 through the insertion port 315, the first position restrictor 320a and the second position restrictor 320b are abuttable on the first face 101 and the second face 102, respectively, of the circuit board 100.
Abstract:
An optical fiber including a circuit board, a converter, an optical fiber, an external connecting part, and a pressable part. The circuit board includes first and second faces opposite to each other. The first face has first and second regions being different regions. The second face has third and fourth regions on the opposite side to the first and second regions, respectively. The converter is an opto-electronic or electro-optic converter on the first region of the circuit board. The optical fiber includes a leading end portion optically connected to the converter. A circuit on the first region of the circuit board is electrically connected to the converter. The external connecting part is disposed on the fourth region of the circuit board. The pressable part is fixed to the circuit board and positioned on the second region of the circuit board without contacting the converter, the optical fiber, or the circuit.