Abstract:
A power receptacle for a portable electronic device suitable for connecting a power plug is provided. The power plug has a tubular terminal and a clamping terminal in the tubular terminal. The power receptacle includes an insulating housing, an anode terminal, and a cathode terminal. The insulating housing has a receiving cavity, and the power plug is suitable for being plug in the receiving cavity. The anode terminal disposed in the insulating housing is located at the central part of the receiving cavity. The cathode terminal disposed in the insulating housing is located at a side of the receiving cavity. During a process of plugging the power plug into the receiving cavity, the tubular terminal contacts the cathode terminal, and then the clamping terminal contacts the anode terminal, so that the power plug is electrically connected to the power receptacle.
Abstract:
Systems and methods electrically connect a first electronic device or electrical component, having a external electrical connector, to a circuit board of a second electronic device. A low-cost, user-installable connection system isolates mechanical stresses imposed on the external electrical connector to within the user-installable connection system, thereby preventing the mechanical stresses from reaching the circuit board in the second electronic device. If the connection becomes faulty, only the low-cost, user-installable connection system must be replaced.
Abstract:
A cable connector assembly (100) in accordance with the present invention comprises an insulative housing (1) and a plurality of contacts (2) received therein, a cable (5) connected with the contacts (2), a strain relief portion (50) molded on the cable (5), the strain relief portion (5) having a extruding portion (52) on the front end thereof and a retaining portion (51) behind the extruding portion (52), a plurality of retaining blocks arranged between the extruding portion (52) and the retaining portion (51), a cover (8) enclosing the aforementioned components, the cover (8) comprising an upper cover (81) and a lower cover (82), a back surface of the upper cover (81) and the lower cover (82) defining a arc-shaped cutout, the retaining portion (51) is mounted in the front of the arc-shaped cutout and the retaining block is locked in the arc-shaped cutout.
Abstract:
An automatic sensing power system automatically determines a power requirement for an electrical device, converts power to the required level, and outputs the power to the electrical device when the electrical device is connected to the automatic sensing power system.
Abstract:
The invention provides a connector wherein a highly reliable shielding performance can be realized while reducing the production cost and the size. A connector includes a shield cover configured by one metal plate. In the shield cover, a tubular portion which forms a fitting portion for a plug, mounting terminals for a printed circuit board, first contact pieces for a shield member of the plug, and second contact pieces for a case of an apparatus are integrally disposed. In the tubular portion, inner and outer double right and left side plates are disposed. The mounting terminals are configured by right and left extended portions downward projected from portions of the outer right and left side plates in rear of a front end opening of the tubular portion. The second contact pieces are configured by elastic pieces inward extended from the front end faces of the mounting terminals.
Abstract:
The present invention relates to an improved electrical connector adapted to transmit high-definition (HD) digital images. The improved electrical connector comprises a body, a first terminal assembly, a second terminal assembly, a first terminal connecting device, a second terminal connecting device, a first housing and a second housing. The first terminal assembly and the second terminal assembly are adapted to transmit signals, and by using the first housing and the second housing to cover the first terminal assembly and the second terminal assembly simultaneously, the problem of electromagnetic interference (EMI) suffered by the first terminal assembly and the second terminal assembly during high-frequency transmission is obviated, thereby improving the electromagnetic disturbance susceptibility thereof.
Abstract:
An adjusting module is provided. The adjusting module includes a fixed object and a movable object. The fixed object includes a first fixing base and a sliding rail. The first fixing base includes a socket; and at least two guiding pins configured around the socket. The movable object includes a holder sliding on the sliding rail; and a second fixing base configured on the holder and a plug having at least two guiding holes configured around the plug and positioned corresponding to the guiding pins.
Abstract:
A plug-in device detection module includes a measurement signal generator for generating a measurement signal. A port coupler couples the measurement signal to a selected plug-in receptor of a plurality of plug-in receptors, generates an input/output signal and generates a port signal in response to the measurement signal. A reference signal generator generates a reference signal based on the input/output signal, the reference signal having a plurality of reference signal values. A detection module detects a plug-in device type of a plug-in device coupled to the selected plug-in receptor, based on the reference signal and the port signal.
Abstract:
The invention relates to a device or connecting multi-conducting plugs that can be inserted into said device in respectively opposite directions. The device of the invention includes two sockets (1, 2) for receiving the plugs, an internal multi-conducting link (3) connecting the sockets, and a housing (4a, 4b) for maintaining the sockets in opposite directions, the internal link being in the form of a ply folded into a bayonet and having on both sides of an intermediate portion (33) two end portions (31, 32) physically connected to the respective inner faces (12, 22) of the sockets (1, 2).
Abstract:
An electronic apparatus includes: a display portion including a display screen; a main body portion including upper and bottom surfaces; and a coupling portion to couple the display portion with the main body portion such that the display portion becomes rotatable between a first state where the display screen faces the upper surface and a second state where the display screen forms a predetermined angle with respect to the upper surface, the main body portion including a pair of side surfaces, and a first connector connectable with a first external connector and includes a lower surface exposed from the bottom surface, the display portion including a first leg portion that protrudes to be positioned lower than the bottom surface in the second state and comes into contact with a surface on which the main body portion is placed to form a predetermined tilt with respect to the surface.