Abstract:
The present invention relates to an electrical card connector comprising: a first connector with a plurality of first contacts; a second connector located at the lateral side of the first connector and with a plurality of second contacts; a PCB located at the bottom of the first connector and the second connector; a shell covering the first connector; a bottom plate mounted at the bottom of the shell; the first connector and the second connector are held on the same side of the PCB, a first receiving room is defined between the shell and the bottom plate, and the second receiving room is defined between the bottom plate and the PCB.
Abstract:
A card connector (100) includes a first housing (1), a second housing (2) stacked with the first housing, and a pair of standoffs (7). The first housing includes a first shell (10) having a first main body (11) comprising a pair of clasps (15). The second housing includes a second shell (20) having a second main body (22) and a pair of side walls (21) extending from the second main body, and each side wall has a plurality of elastic pieces (210, 211, 212). The standoffs mounted on opposite lateral sides of the first shell and the second shell. Each standoff comprising a fixing plate (71) and a locking piece (72) extending towards to the first shell from the fixing plate. The fixing plate has a plurality of through holes (74, 75) to assemble with corresponding elastic pieces of the second shell, and each locking piece provides with a locking hole (720) to fasten with corresponding clasps of the first shell.
Abstract:
A card connector (1) includes a first insulating housing (30), a metal shell (21) associating with one side of the first insulating housing to define a first receiving space (140), a second insulating housing (22) cooperating with the first insulating housing to have the metal shell therebetween and assembled with the metal shell to define a second receiving space (220), a plurality of first terminals (4) retained in the first insulating housing, a plurality of second terminals (24) disposed in a terminal module (23), which is intimately associated with a face of the first insulating housing, and ejecting mechanisms (5, 6) equipped with the first insulating housing and protruding into the first and second receiving spaces respectively to eject the at least two cards, each ejecting mechanism can release the card from a lock position by pushing the card in the lock position along the insertion direction.
Abstract:
An electrical card connector assembly (10) for receiving a first and a cards includes a first card connector (100) and a second card connector (200). The first card connector includes a first housing (12), a plurality of first terminals (21) received in the first housing, and an L-shape shell assembled on the first housing. The first housing associating with the L-shape shell to define a rectangular space. The second card connector (200) includes a second housing (14) extending laterally from the first housing and a plurality of second terminals (22) received in the second housing. The second housing is located in the rectangular space.
Abstract:
An electrical card connector includes an insulating housing (2) having a base section (21) and a pair of lateral offsets (22) extending from the opposite ends of the base section, a shell (1) mounted on the insulating housing to define a card slot (5) therebetween for insertion of a card, a terminal module (321) retained in the insulating housing and comprising a plurality of terminals protruding into the card slot, and a pair of elastic pieces (6) mounted on the opposite lateral offsets of the insulating housing, respectively. Wherein each elastic piece protrudes into the card slot and a distance between the elastic pieces is smaller than a width of the inserted card.
Abstract:
An electrical card connector includes a metal shield (2), an insulated housing (3) and a terminal module (4). The metal shield defines a receiving room, in which a memory card is insertable in a card inserting direction through an insert opening generally at a front end thereof. The insulated housing is shielded by the metal shield, and defines a receiving portion (34) extending therethrough and adjacent to a rear end thereof. The terminal module is received in the receiving portion of the insulated housing and comprises a pair of locking boards (44) assembling the terminal module on a printed circuit board (5). A plurality of terminals (31) are insert-molded in the terminal module for electrical connection to the memory card.
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:
An electrical card connector assembly (10) for receiving a first and a cards includes a first card connector (100) and a second card connector (200). The first card connector includes a first housing (12), a plurality of first terminals (21) received in the first housing, and an L-shape shell assembled on the first housing. The first housing associating with the L-shape shell to define a rectangular space. The second card connector (200) includes a second housing (14) extending laterally from the first housing and a plurality of second terminals (22) received in the second housing. The second housing is located in the rectangular space.
Abstract:
A card connector (100) includes an insulating housing (2) comprising a base section (20) and a fixing portion (22) extending laterally from the base section, an ejecting mechanism (6, 7) mounted in the fixing portion, a plurality of first terminals (3) received in the base section for electrically engaging with a first card, a terminal module (45) located under the insulating housing and receiving a plurality of second terminals (6) for electrically engaging with a second card, and a socket device (9) comprising a spacer (91) mounted on a rear end of the insulating housing, a daughter board (92) in alignment with the spacer and having a plurality of connecting pins (921), and a rear socket (93) connecting with the connecting pins. Wherein the first terminals and the second terminals pass through corresponding terminal holes (912, 913) defined on the spacer, and engage with corresponding conductive portions (923, 924) formed on the daughter board.
Abstract:
A card connector comprises an insulating housing defining a card insertion/ejection direction; a plurality of contacts received in the insulating housing; a shell covering the insulating housing and an ejector. The ejector is assembled to the shell and comprises a push member, a moveable member mating with the push member, an ejecting member to eject a card and a pivoting member mating with the moveable member and the ejecting member. The ejecting member is moveable along a direction parallel to the card ejection direction to eject the card.