Abstract:
An electrical card connector comprises an insulating header (1) having a mounting face (10), a plurality of electrical contacts (2) retained in the insulating header (1) and each having a soldering portion (22) arranging along the mounting face (10) and an engaging portion (21) for electrically connecting with an inserted electronic card, and a metallic shell (5) defining a receiving room (57) with an opening (59), through which the electronic card is inserted into the receiving room (57) along a direction, and further having a metallic header (58) disposed at a longitudinal end of the receiving room (57) and far from the opening (59), which is assembled onto the insulating header (1). Wherein the card inserting direction is perpendicular to the mounting face (10).
Abstract:
An electrical card connector (1) stacking on a bracket (2) for receiving a hard disk drive comprises an insulating body (3) having a transverse wall (31) far from a front edge (22) of the bracket (2) and relatively adjacent to a rear edge (23) of the bracket (2), a shielding shell (7) covering on the insulating body (3), and a plurality of terminals (5) retained in the insulating body (3). Each terminal (5) has a securing portion secured in the transverse wall (31), an engaging portion (50) extending ahead from the transverse wall (31) for electrically connecting with the electronic card, and an extended portion (51) extending backwardly from the transverse wall (31) and towards and further beyond the rear edge (23) of the bracket (2).
Abstract:
An electrical connector includes an insulative housing (1) defining a base portion and a tongue portion extending forwardly from the base portion; a plurality of terminals (2) each having a retention portion, a contacting portion extending forwardly from the retention portion and a tail portion; an insulative spacer disposed behind the base portion, and the insulative spacer (3) defining a plurality of positioning holes for the tail portions passing therethrough, respectively; and waterproof material (5) stuffing corresponding seam between the insulative spacer and the base portion.
Abstract:
An electrical connector (100) includes an insulative housing (20) defining a plurality of passageways (20a) with an inserted opening (215), a plurality of forniciform terminals (30) inserted into the passageways (20a) from the inserted openings (215) and disposed therein, each defining a soldering portion (34) extending towards outside of the insulative housing (20) and a connecting portion (33) folding and extending from one end of soldering portion (34). Each of the connecting portions (33) covers the inserted opening (215), both cut sides (331) of which are pressed against by a pair of protecting protrusions (216) which integrally protrudes outwards from both sides of inserted opening (215) of the insulative housing (20).
Abstract:
An electrical connector (100) includes an insulative housing (1) with an engaging portion (1b), a plurality of contacts (2) received in the inslulitive housing (1) with a contacting portion (22) disposed in the engaging portion (1b) and at least one latch (4) received in the insulative housing (1) with a locking portion (42a) exposed at outside of the insulative housing (1). The latch (4) has a retaining portion (41) hold in the insulative housing (1) and a locking arm (42) unitarily connecting with the retaining portion (41) obliquely.
Abstract:
A card connector (100) mounted on a printed circuit board to connect with an electronic element, includes an insulating housing (50) retaining a plurality of terminals (51), a shell (31) covering on the insulating housing to define a cavity (20) for receiving a card, the cavity defining a first portion (310) and a second portion (311), the first portion having a width greater than that of the second portion along a direction perpendicular to an inserting direction of the card, a void space (34) located at a lateral side of the second portion, and at a front of the first portion, and a mating connector (14) mounted on the printed circuit board and located at the void space for connecting the card connector with the electronic element electrically.
Abstract:
A card connector (100) for connecting with an electronic element, includes a first connector (30) comprising a first insulating housing (50) retaining a plurality of first terminals (51) and a first cavity (20) for receiving a first card; a second connector (40) stacked with the first connector and comprising a second insulating housing (60) retaining a plurality of second terminals (131) and a second cavity (80) for receiving a second card; a printed circuit board (10) sandwiched by the first connector and the second connector, the first terminals and the second terminals set on opposite sides of the circuit board; and a third connector (14) mounted on the printed circuit board for connecting the first connector and the second connector with the electronic element electrically.
Abstract:
A card connector (1) includes an insulating housing (30), a metal shell (11), a plurality of terminals (4) and an ejecting mechanism (6). The insulating housing includes a base section (31), a base seat (33) extending from one side of the base section, and a guiding portion (34) extending forwardly from the base seat. The metal shell is mounted on the insulating housing to define a card receiving space (14). The terminals are retained in the base section and protrude into the receiving space. The ejecting mechanism includes an ejecting member (64) protruding into the receiving space, a spring member (62) for moving the ejecting member towards an ejecting direction of the card, a heart groove (63) fitted on the ejecting member, and a latch member (61) for holding the ejecting member in position. The ejecting mechanism is mounted in a sliding groove (330) formed on the base seat, and the ejecting member is capable of sliding in the sliding groove.
Abstract:
An electrical connector (100) includes an insulating housing (30), a plurality of terminals (32) received in the insulating housing, an L-shaped metal shield (10), a base portion (20) and an ejector (40). The metal shield covers the insulating housing for defining a card receiving space. The base portion comprises a guide rail (21) and a cam plate (22) integral with the guide rail. A pair of arms (not labeled) extends upwardly from the cam plate to define a receiving channel (225) and the receiving channel defines a heart-shaped slot (220) at a front end thereof. The ejector is received in the receiving channel of the base portion and comprises a slider piece (41), a pin member (42) and a resilient element (43). The slider piece is being moveable to drive the pin member to move in the heart-shaped slot.
Abstract:
A card connector (100) includes an insulating housing (4) receiving a plurality of terminals, a first shell (1) mounted on the insulating housing to define a first receiving space for retaining a first card and having a locking piece (15, 16) on a lateral side thereof, a second shell (2) mounted on the insulating housing opposite to the first shell to define a second receiving space for retaining a second card and having a locking piece (25, 26) on a lateral side thereof, a partition plate placed between the first shell and the second shell and between the first receiving space and the second receiving space, and a stand off (7) mounted on a lateral side of the first shell and the second shell and comprising a pair of locking devices (74, 72) fastening with the locking pieces of the first shell and the second shell.