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:
An electrical connector (100) includes an insulative housing (10) with a base portion (11, 12), a first engaging portion (14) and a second engaging portion (121) extending from the base portion along same direction, a plurality of conductive terminals (30) retained in the insulative housing (10) and a shielding member (20) assembled on the housing. The shielding member (20) has a pair of sidewalls (21, 23) opposite to each other and a pair of end walls (22) surrounding the first engaging portion (14) thereby forming a mating cavity between thereof. One of the end walls (22) is served as a partition located between the first engaging portion (14) and the second engaging portion (121) which extends outwards through the shielding member (20) then nearly presses against the shielding member.
Abstract:
A card connector comprises an insulating housing comprising a base and a plurality of tongue portions extending from the base; a shell covering the insulating housing; a plurality of contacts arranged in upper and lower line each retained on the housing; the contacts each comprising a contacting portion extending into the mating portion, a containing portion secured in the housing, and a soldering portion extending behind the housing; a spacer and a Printed Circuit Board (PCB) each mounted on the insulating housing and the soldering portion of the contacts each receiving in the spacer and the PCB; the distance between the soldering portions of the upper and the lower contacts is smaller than that of the containing portions.
Abstract:
A stacked card connector (100) adaptor for receiving cards includes a first electrical card connector (1), a second electrical card connector (2) under the first electrical card connector and a retaining member (4) integral with the second insulating housing. The first card connector includes a first insulating housing (12) received a plurality of first terminals (13). The second card connector includes a second insulating housing (22) received a plurality of second terminals (23). The retaining member defines a plurality of slots (41), said first and second terminals partially passing through the slots.
Abstract:
An electrical card connector assembly (100) includes an electrical card connector and a printed circuit board (PCB) (4). The electrical card connector includes an insulating housing (2), a plurality of terminals (31) received in the insulating housing and a metal shield (1) covering the insulating housing to define a card receiving room. The insulating housing forms an upper face (20), a lower face (21) and two lateral walls (22) and defines at least one cavity (24). The lateral walls form a plurality of blocks (221). The metal shield includes a base (11), a pair of sidewalls (12) and at least one elastic piece (110) extending along a card insertion direction. The sidewalls define openings (121) receiving the blocks of the sidewalls and form at least one retention portion (120). The base forms a baffle (13) at a rear edge thereof. The PCB is attached with the lower face of the insulating housing and electrically connected with the terminals. Both the retention portion and the baffle press against a lower surface of the PCB and the elastic piece extends into the cavity by a horizontal movement of the metal shield relative to the insulating housing and the PCB.
Abstract:
An electrical card connector assembly (100) comprising: a first electrical card connector (1); a second electrical card connector (2) disposed below the first electrical card connector; a third electrical card connector (3); a fourth electrical card connector (4) arranged abreast with the third electrical card connector; a PCB (5) defining an upper surface (50) and a lower surface (51), the upper and lower surface having a plurality of traces, respectively; wherein the combined first and second card connector are disposed on the upper surface (50) of the PCB and electrically connected with the corresponding traces of the upper surface, and the third and fourth electrical card connector are arranged abreast on the lower surface of the PCB (5) and electrically connecting with the corresponding traces of the lower surface (51).
Abstract:
An electrical card connector assembly includes an electrical card connector (100) and a PCB (4) where the electrical card connector is assembled. The electrical card connector includes a metal shield (1), an insulating housing (2) and a terminal module (3) received in the insulating housing. The insulating housing associates with the metal shield to define a card receiving room. The terminal module includes a body portion (30) and a plurality of terminals (31) received in the body portion. The metal shield forms a base (10) and a plurality of sidewalls (11) extending vertically from the base. The metal shield further comprises at least one elastic piece (13) extending from the edge of the base, which forms a grounding portion (131) at a free end thereof. The PCB defines at least one grounding pad (47) mating with the grounding portion of the elastic piece.
Abstract:
An electrical card connector (100) includes an insulating housing (2), a metal shield (1) covering the insulating housing for defining a card receiving space therebetween, a printed circuit board (PCB) (5), an insulator (3) assembled on the PCB and a plurality of terminals (4) received in the insulator. The insulating housing defines a cutout (210) at a rear part thereof and the cutout communicates with the card receiving space. The PCB has a smaller size than the insulating housing and is received in the cutout. The PCB is fused with the insulating housing.
Abstract:
A card connector comprises an insulating housing comprising a base and a plurality of tongue portions extending from the base; a shell covering the insulating housing; a plurality of contacts arranged in upper and lower line each retained on the housing; the contacts each comprising a contacting portion extending into the mating portion, a containing portion secured in the housing, and a soldering portion extending behind the housing; a spacer and a PCB each mounted on the insulating housing and the soldering portion of the contacts each receiving in the spacer and the PCB; the distance between the soldering portions of the upper and the lower contacts is smaller than that of the containing portions.
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. The first card connector comprises a first insulating housing (12) received a plurality of first terminals (13), and the first terminals comprises a vertical portion (132). The second card connector (2) includes a second insulating housing (22) received a plurality of second terminals (24), the second terminals comprises a tail portion (242). And the tail portion of the second terminals defines at least one cutout (2420) among the tail portion (242), the distance between two adjacent vertical portions (132) being equal with the distance between two adjacent tail portions (242).