Abstract:
A bonding structure includes a first connecting body, an adhesive, and a second connecting body. The first connecting body has a bonding surface subject to one or more recessed grooves. The second connecting body is bonded to the bonding surface of the first connecting body by the adhesive. The bonding surface of the first connecting body defines an adhesive receiving groove, the adhesive is received in the adhesive receiving groove and bonds with the second connecting body; the adhesive receiving groove defines an initial adhesive receiving portion recessed from a bottom surface of a portion of the adhesive receiving groove; the initial adhesive receiving portion is for receiving injected adhesive, a depth of the initial adhesive receiving portion is slightly greater than that of the adhesive receiving groove to allow flow and expansion of the glue into the adhesive receiving groove when external force to bond is applied.
Abstract:
An electrical card connector (100) includes an insulative housing (1), a plurality of contacts (2) retained in the insulative housing (1), and a mounting member (3) disposed on the insulative housing (1). The insulative housing (1) defining a receiving space (110). The mounting member (3) includes a first metal plate (31) defines an elastic plate (312) protruding into the receiving space (110) for abutting against the electrical card (200) when the electrical card (200) is inserted into the receiving space (110). The electrical card (200) can be fixed reliably and withdrawn from the electrical card connector (100) conveniently in virtue of the elastic plate (312).
Abstract:
An electrical card connector (100) includes a receiving space (10) for receiving an electrical card, and includes an insulative housing (1) and an ejecting mechanism (4) retained in the insulative housing (1). The ejecting mechanism (4) includes a movable slider (41), a coiled spring (42) urging the slider forwardly and a link rod (43) for controlling the slider to be positioned at a first position or a second position. The slider (41) includes a heart-shape groove (414) for guiding and limiting a movement of the slider (41) and a bulge (417) located at front of the heart-shape groove (414). The bulge (417) defines a second inclined plane (4171), the second inclined plane (4171) faces the heart-shape groove (414) for facilitating inclining movement of the link rod (43).
Abstract:
An electrical card connector (100) includes a receiving space (10) for receiving an electrical card, an insulative housing (1), a metal plate (3) installed on the insulative housing (1) and an ejecting mechanism (4) retained in the insulative housing (1). The ejecting mechanism (4) includes a movable slider (41), a coiled spring (42) urging the slider forwardly and a link rod (43) for controlling the slider to be positioned at a first position or a second position. The slider (41) includes a heart-shape groove (413) for guiding and limiting a movement of the slider (41). The metal plate (3) defines a pair of first and second retaining portions (31, 32) for limiting movement of the slider (41).
Abstract:
A memory card connector includes an insulative housing and a plurality of contacts retained in the insulative housing and a pair of switch contacts. The insulative housing defines a card receiving cavity for receiving a memory card. The pair of switch contacts are of a first status when the memory card is located in a deepest insertion position of the card receiving cavity, and the pair of switch contacts are of a second status different from the first status when the memory card is located in a final working position.
Abstract:
A memory card connector (100) for insertion of a memory card (8) includes an insulative housing (1) defining a cavity (110) for receiving the memory card and a side wall (11), a contact module (2), a pair of switch contacts (5) and a card eject mechanism (3). The side wall defines a cutout (110) and a pair of first and second protrusions (111, 112) extending into the cutout to form a pair of retaining apertures (1101, 1102) below corresponding first and second protrusions. The contact module includes a side portion (211) received in the cutout (110). The side portion further includes a pair of projecting blocks (2111, 2112) laterally received in the retaining apertures for stable assembly.
Abstract:
An electrical card connector for holding a card with a notch defined on a lateral side thereof, includes an insulative housing, a number of contacts and a push-push mechanism. The push-push mechanism includes a slider movable between an initial position and a final locking position along a front-to-back direction, a spring abutting against the slider and an elastic locking arm having a card lock for locking with the notch of the card. The slider further includes a rigid protrusion to engage with the notch of the card. The rigid protrusion not only helps the card lock hold the card when the slider is located at the final locking position, but also helps the card lock prevent the card from flying out of the card receiving space when the slider moves from the final locking position back to the initial position.
Abstract:
An electronic card connector defining a receiving space for receiving an electronic card, includes an insulative housing, a number of contacts retain in the insulative housing, and a metal shell covering the insulative housing. The insulative housing has a bottom wall. The metal shell has a top wall opposed to the bottom wall, and a pair of side walls. The metal shell defines a depressed portion outwardly recessed from an intersection portion of the top wall and the side wall.
Abstract:
An electrical connector includes an insulative housing having an inserting slot, and a bottom wall under the inserting slot. The bottom wall defines a supporting surface extending along a front-to-back direction, a horizontal guiding surface located in front of the supporting surface, and a plurality of depressions recessed from the supporting surface and arranged in one row along a transverse direction perpendicular to the front-to-back direction. A plurality of first contacts each has a planar first contact portion retained in the depression. A plurality of second contacts each has an arc-shaped second contact portion extending upwardly beyond the supporting surface and protruding into the inserting slot. The second contact portions are located behind the first contact portions.
Abstract:
A card connector for connecting an electronic card, comprises an insulative housing and an ejector. The insulative housing defines a receiving space extending backwardly along a front to back direction for receiving the electronic card. The ejector comprises a slider, a spring sandwiched between the slider and a rear end of the insulative housing and a pole for controlling movement of the slider. The slider includes a first protrusion and a second protrusion, the card connector has a first guiding groove engaging with the first protrusion and a second guiding groove engaging with the second protrusion, the slider defines a locking portion extending inwardly into the receiving space, the first guiding groove provides an escaping groove for the first protrusion thereby the slider can move along a insertion direction of the electronic card steadily.