Abstract:
A card connector includes an insulative housing (1) having a receiving space (10); a set of contacts (2) retained in the insulative housing and protruding into the receiving space for electrical connection to the electrical card; a metal spring member (3) having an arcuate locking arm (34) protruding toward the receiving space for retaining the electrical card in the receiving space; and a metal guiding member (4) having a guiding portion (41) extending along the front-to-back direction for guiding a lateral side of the electrical card and a resisting portion (44) extending from a back end of the guiding portion for resisting a front free end portion (34) of the locking arm outwardly.
Abstract:
A method for communicating a signal to an instrument in a wellbore includes axially accelerating the instrument in a preselected pattern of acceleration. The predetermined pattern corresponds to the signal to be communicated. The axial acceleration of the instrument is detected, and the signal is decoded from the detected axial acceleration. A signal detection system for an instrument in a wellbore includes an accelerometer oriented along a longitudinal axis of the instrument and means for comparing measurements made by the accelerometer to at least one predetermined pattern.
Abstract:
A resistive random access memory (ReRAM) cell comprising a first conductive electrode and a dielectric storage material layer over the first conductive electrode. The dielectric storage material layer is conducive to the formation of conductive filaments during the application of a filament forming voltage to the cell. The cell includes a second conductive electrode over the dielectric storage material layer and a layer of conductive nanoclusters (911, 1211) including a plurality of nanoclusters in contact with the dielectric storage material layer and in contact with the first conductive electrode or the second conductive electrode.
Abstract:
An electronic card connector includes an insulative housing, a number of contacts and a first switch terminal retained on the insulative housing. The insulative housing has a receiving space, a receiving slot communicating with the receiving space along an up to down direction and a limiting block at a front side of the receiving slot. The first switch terminal has a fastening portion retained on the insulative housing, a connecting portion forwardly extending to the receiving slot, a limiting portion forwardly extending to a lower side of the limiting block and a tail portion. The switch terminal further has a guiding portion extending sidewardly. The insulative housing has a pre-pressing surface at one side of the receiving slot to pre-press the guiding portion and prevent the switch terminal from bouncing upwardly to resist a front side of the limiting block in an assembly process of the switch terminal.
Abstract:
A method for testing electronic apparatuses is provided. The method includes: reading an identification (ID) of an emulator adapter; searching for the script name in a test table according to the ID; fetching the script from a storage according to the determined script name and running the fetched script to pass each of input commands; and receiving and identifying each of the input commands to simulate a key input via an electrical conductive path, correspondingly to the input command, of the emulator adapter, such that an input key corresponding to the key input of the to-be-tested electronic apparatus is activated and the to-be-tested electronic apparatus performs a function associated with the input key correspondingly. A related test apparatus is also provided.
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 shockproof nut kit includes an upper nut and a lower nut, in which an end surface of the upper nut is provided with a boss of elliptic cylinder; on the upper end surface of the elliptic cylinder at a longer planar extension side is provided an unfilled corner; in an end surface of the lower nut is concavely formed a cylindrical groove matching with the boss of elliptic cylinder, and in the assembly state, the boss of elliptic cylinder on the upper nut is in clearance fit with the cylindrical groove in the lower nut. The present invention avoids the slipping and displacement of nuts in the meshing process, and ensures the coaxiality of the upper and lower nuts during installation to the utmost. In terms of both safety and shockproof, the present invention achieves satisfactory results, the installation thereof is convenient and reliable, and the disassembly thereof is simple.
Abstract:
A card connector includes an insulative housing defining a card receiving space, a number of contacts retained in the insulative housing, an ejector received in the insulative housing and a metal shell covering the insulative housing. The ejector includes a movable slider, a spring, and a pin member, the slider defines a heart-shaped slot, and the pin member has a positioning end being rotatablely retained to the insulative housing and a free end being slidable along the heart-shaped slot to lock the slider. A latching piece is retained to the insulative housing and has a catching portion catching the pin member and an elastic portion connecting with the catching portion. When the pin member slides, the catching portion will bring the elastic portion to deflect and provide an outward or inward force to the pin member so as to control a movement trace of the pin member.
Abstract:
A card connector (100) comprises an insulative housing (1), a plurality of contacts (2) retained in the insulative housing (1) and an ejecting mechanism (4). The insulative housing (1) defines an interface (14) in front and a receiving space (10) extending backwardly from the interface (14). The ejecting mechanism (4) comprises a slider (41), a spring (42) sandwiched between the slider (41) and the insulative housing (1), and a pole (43) for controlling the slider (41). The slider (41) defines a heart-shape groove (414) and a heart-shape block (415) located in the heart-shape groove (414). The heart-shape groove (414) includes a first slot (4141). The heart-shape block (415) includes a mucro (4154) at a rear end thereof. The mucro (4154) and the first slot (4141) define an escaping space (4153) therebetween. When the pole (43) moves aslant, the escaping space (4153) will receive the pole (43) for avoiding the pole (43) colliding with the mucro (4153).
Abstract:
An uplink feedback channel reporting method is disclosed for using the primary and secondary fast feedback channels to efficiently report the channel quality, MIMO feedback, and CQI types of data from a mobile station to a base station. The reporting method reports regular information periodically and non-regular information on demand.