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:
A shielded connector (100) includes an insulative housing (1) having a base portion (11) and an engaging portion (12), a plurality of contacts (2) disposed in the housing (1), each of the contacts (2) defining a contacting portion (21) extending into the engaging portion (12) and a soldering portion (22) extending out of the housing (1), a metallic shell (3) having side walls surrounding the engaging portion (12) and a pair of positioning brackets (31) folding outwards from an upper edge of the side walls (303). The shielded connector furthermore defines a pair of insulative supporting sections (15) respectively disposed and supported under the positioning brackets (31) thereby forming a positioning device.
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 card connector (100) includes a metal shield (1), an insulated housing (2) and a terminal module (3) having a plurality of terminals (33) received therein. The metal shield covers the insulated housing to define a card receiving room and a card insertion/ejection direction. The insulated housing defines a receiving cavity (24, 25) and forms an elastic piece (26). The terminal module is slidably received in the receiving cavity of the insulated housing along the card ejection direction and is fixed in the insulated housing by the elastic piece.
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:
An electrical card connector (100) includes an insulating housing (30), a metal shield (10) shielding over the insulating housing for defining a card receiving space, a plurality of contacts (32) received in the insulating housing and a base (20) assembled at a side of the metal shield. The insulating housing has a body portion (31) and first and second assembling boards (301, 302) formed at two ends of the body portion. The first assembling board defines a first retaining hole (35) and the second assembling board defines a second retaining hole (37). The base includes a guiding portion (21), an extending portion (22) at a front part of the guiding portion and a protruding portion (23) bending laterally from a distal end of the extending portion. The metal shield forms a first fastening element (15) received in the first retaining hole. A second fastening element (27) is retained by the protruding portion and is received in the second retaining hole.
Abstract:
A stacked card connector (100) includes a first electrical card connector (1), a second electrical card connector (2) under the first electrical card connector, and a converting mechanism (5) on the second electrical card connector having a pair of opposite surfaces (431, 432) in a card inserting direction. The first card connector comprises a first insulating housing (12) received a plurality of first terminals (13) and a first ejecting mechanism (61) and a second ejecting mechanism (62) arranged side by side. The second card connector (2) includes a second insulating housing (23) received a plurality of second terminals (24). The first and the second terminals extend into corresponding surfaces of the converting mechanism.
Abstract:
A stacked card connector (100) adaptor for receiving cards includes a first card connector (1), a second card connector (2) under the first card connector and a converting plate (3) assembled on the second card connector. The first card connector includes a plurality of first terminals (13) with a vertical portion (132). The second card connector includes a plurality of second terminals (23) with a tail portion (232). The converting plate includes a plurality third terminals (32) with a contacting part (326). The distance between two adjacent vertical portions is equal with the distance between two adjacent tail portions, and integer times of the distance between two adjacent contacting parts. The vertical portions and the tail portions electrically engaging with corresponding contacting parts.
Abstract:
A stacked card connector (1) includes a first connector (10) and a second connector (20). The first connector includes a first insulating housing (30) having a base section (31) and a base seat (33) extending laterally from the base section, a first metal shell (11) covering the first insulating housing and defining a first receiving space (14), a plurality of first terminals (4) retained in the base section for connecting to a first card, and a first ejecting mechanism (6) and a second mechanism (5) located on the base seat. The second connector includes a second insulating housing (22) located under the first insulating housing, a plurality of second terminals (24) receiving in the second insulating housing for engagement with the second card which is received in a second receiving space defined by the second connector. The first ejecting mechanism and the second ejecting mechanism extend into the first receiving space and the second receiving space, respectively, to remove the first card and the second card in a fitting/ejecting direction.
Abstract:
A card connector (100) includes an insulating housing (10), first and second sets of contacts (22, 24) received in the insulating housing (10), a protection door (40) and a mating member (4821). The insulating housing (10) defines a receiving space (18) with a first entrance opening (19). The protection door (40) moveably covers the first entrance opening (19) for receiving a first card and the protection door (40) defines a second entrance opening (46) smaller than the first entrance opening (19) therein for receiving a second card and is formed with a guiding device (48) for guidable insertion of the second card. The mating member (4821) is disposed on the guiding device to securely engage with the insulating housing when the second card is inserted into the receiving space (18).