Abstract:
A card connector comprises a shield [1] having a first [11], second [12]and a third side [13], a card pushing mechanism [2] including a first spring [3] having a first end [31] and a second end [32], the first end is fixed along the first side [11] of the shield, a linkage [4] having a first end [41]and a second end [42] and a position pin [43] having a first end [431] and a second end [432], a housing [5] having a groove [51] wherein the first end [41] of the linkage extends through the housing and is linked to the second end [32] of the spring, an ejector [6] disposed along the second side [12] of the shield, having a first end [61], a second end [62], and a contact surface [63], the first end is engaged with the second end [42] of the linkage, the contact surface is capable of coming into contact with the card a second spring [7] having a first end [71] and a second end [72], the first end is fixed along the third side [13] of the shield and the second end is coupled to the second end [62] of the ejector.
Abstract:
The present invention discloses a module card ejecting mechanism comprising an ejecting plate and a push-push ejecting mechanism, wherein the push-push ejecting mechanism substantially comprises a housing, a pushing rod, a rotator, a spring and an end cap.
Abstract:
Disclosed is a low-profile stacked media card connector (110), having: a housing (120) defining a first storage area (130) for receiving a first card-like media and a second storage area (140) for receiving a second card-like media, the second storage area (140) being stacked above the first storage area (130); a first connecting means (132) being arranged substantially between the first storage area (130) and the second storage area (140); and a second connecting means (142) for connecting the second card-like media, the second connecting means(142) being provided on the housing(120).
Abstract:
Disclosed is a sensor module (100) for a card connector (50), the connector having an inlet end (52) through which the card is inserted, and a terminating (54) end opposing the inlet (52) end, characterized in that: the sensor module (100) is provided at the terminating end (54) and activated by a leading edge of the card from a normally non-actuated position to an actuated position. Further disclosed is a card connector (50) having such a sensor module (100).
Abstract:
An electrical connector for use between two devices having conductive regions between which an electrical connection is to be formed, the electrical connection comprising, a housing including a passage therethrough, a conductive element of an elongate conductive material disposed within the passage. The conductive element is formed to define an upper contact region and a lower contact region for engagement to an upper the device and a lower the device respectively. Also provided are a location region which secures the conductive element to the housing,a beam region including a first end dependent from the location region and a free end at or towards which the upper contact region is located. The beam is resiliently deflectable to a position wherein the upper device is positioned for use having the upper contact region pressed thereto and wherein the upper contact is biased towards the first position. A fulcrum providing region is positioned. to become engaged with the beam at a region thereof between the first end and the upper contact region during engagement of the upper device prior to the upper contact region reaching the second position.
Abstract:
Disclosed is a receptacle connector assembly for an IC card, comprising: a connector housing (20) having a top surface (21), a bottom surface (22), and a peripheral wall (23) located between the top surface and bottom surface; a plurality of terminals (30) mounted in the connector housing and extending from the peripheral wall; a shielding member (40) removably attached to the top surface of the connector housing and having a portion extending over the terminals; and a supporting member (50) removably attached to the connector housing and covering the portion of the shielding member extending over the terminals.
Abstract:
A compression connector (1) for interconnecting a two electrical devices comprising, a housing (2) mounting at least one conductive element (3) defining; a first beam section (7) fastened to the housing (4) in a cantilevered manner allowing resilient deflection and having a first contact region (5) at the fastened end for connection to the first device, and a second beam section (8) extending at a first end thereof in a cantilevered manner from the movable end of the first beam section, the second beam section including a second contact (6) region away from the first end and disposed to engage with compressively, and deflectable by the first device. The conductive element is formed by out of plane bending to position the second beam back over the first beam, so that the wiping action by the first contact region of the second beam in a direction transverse to the compression engagement direction is controlled by geometry selection of the beams.
Abstract:
An electrical connector to interpose between a first electrical device and a second electrical device each having a plurality of conductive pads to electrically, the electrical connector comprising a housing carrying a plurality of conductive elements, each conductive element including a first contact region for engagement with a conductive pad of the first electrical device and a second contact region for engagement with a conductive pad of the second electrical device. The conductive elements are carried by the housing to present at least the first contact region for compressive engagement with the surface of the first electrical device. The housing presents a latching means to engage with the first electrical device to retain the first electrical device with the housing in a direction which extends parallel to the direction of compressive engagement to thereby hold the plurality of conductive pads of the first electrical device in physical contact with respective the first contact regions of the conductive elements.
Abstract:
An electrical connector comprising a dielectric housing (20); and a plurality of arrays (31, 33, 35) of terminals (28, 30) disposed in respective portions of the dielectric housing, wherein at least two of the arrays (31, 33, 35) of terminals (28, 30) have different pitches; and wherein at least one of the respective portions of the dielectric housing is partially removed such that a value of the dielectric constant between terminals of the array of terminals in said portion of the dielectric housing is controlled.
Abstract:
A soldering method using light beams and a mask for light beam shielding. The soldering method is a method for connecting a conductive line with a contact by light beams, which includes a step of arranging the conductive line in an area whereupon the contact is formed, a step of supplying a solder to the area whereupon the contact is formed, a step of arranging the mask for partially shielding the connector from light beams, and a step of connecting the conductive line with the contact by melting the solder by irradiating light beams.