Abstract:
An improved combined terminal for charging, which includes a plug-in part, a wiring part, and a resilient conducting part. The resilient conducting part is limitedly installed between an upper conducting part and a lower conducting part. A twist-lock assembly is set between the plug-in part and the wiring part. The twist-lock assembly includes a sleeve. The upper conducting part and the lower conducting part are respectively sleeved at both ends of the sleeve and positioned by a positioning pin in the twist-lock assembly. The resilient conducting part generates pressing resilient deformation under the squeezing force of the upper conducting part and the lower conducting part to achieve conducting contact with the upper conducting part and the lower conducting part. The invention adopts the design of combining the plug-in part, the wiring part, and the twist-lock assembly, using the twist-lock assembly to realize the axial positioning of the plug-in part.
Abstract:
Methods and apparatuses to power off a modem receiver or components of the receiver at a time prior to the end of the frame based on data in the frame being received and properly decoded before the end of the frame. In an aspect, the apparatuses and methods provide power saving in a wireless device, and include receiving data within a frame at a user equipment, determining whether all payload packet data has been correctly decoded prior to an end of the frame, and powering down a receiver component for a portion of a remainder of the frame in response to determining that all payload packet data has been correctly decoded and where a first time period to a next scheduled overhead hit transmission period of a slot in the frame is greater than a second time period corresponding to a warm-up period for the receiver component.
Abstract:
A printing system includes a portable communication device, a printing device and plural transmission channels. The printing device is used for receiving a to-be-printed data from the portable communication device, thereby performing a printing task. The plural transmission channels are selectively in communication with the portable communication device and the printing device for transferring the to-be-printed data to the printing device. The portable communication device includes a controlling unit for judging and setting priority values of the transmission channels and selecting one of the transmission channels as a priority transmission channel according to the priority values of the transmission channels, so that the to-be-printed data is transmitted from the portable communication device to the printing device through the priority transmission channel.
Abstract:
A docking station module for portable communication device is disclosed. The docking station module includes a main module configured to connect to a portable communication device and supply power to the portable communication device, and at least one peripheral device adapter module detachably connected to the main module and a peripheral device for allowing the data to be transferred between the portable communication device and the peripheral device in an one-way manner or in a two-way manner and enabling the peripheral device adapter module to execute an extension function.
Abstract:
A storage device includes a control unit, a first voltage supply unit for supplying a first working voltage to the control unit, N memory units, a second voltage supply unit for supplying a second working voltage to each memory unit, a logic gate, a first voltage detecting unit and a second voltage detecting unit. Once the first voltage detecting unit detects that the first working voltage of the control unit is abnormal, the logic gate outputs a first write protect signal to notify the control unit and control the memory units to enter a write protect mode. Once the second voltage detecting unit detects that the second working voltage of one or more memory units is abnormal, the logic gate outputs a second write protect signal to notify the control unit and control the one or more memory units to enter the write protect mode.
Abstract:
The present invention discloses a backlight unit having a reflecting device to enhance light directivity. The backlight unit comprises a light source module, comprising at least one light source, and a reflecting device. The reflecting device is provided to surround the light source or light source module and comprises a first surface. Besides, the first surface comprises at least two planes where every two planes are connected with an included angle more than 90 degrees and less than 180 degrees.
Abstract:
A probing apparatus comprises a wafer chuck configured to receive a semiconductor wafer having a plurality of integrated circuit devices and test keys configured to monitor the fabrication quality of the integrated circuit devices, a carrier configured to receive a probe card having a plurality of probe needles configured to contact the test keys of the semiconductor wafer and collect electrical information of the integrated circuit devices, and an angular adjusting module configured to adjust the angle between the probe card and the semiconductor wafer by rotating the semiconductor wafer.
Abstract:
According to one embodiment of the present invention, a card edge connector (100) includes an elongated insulative housing (1) having a central slot (15) cooperatively enclosed by a bottom wall (150) and a pair of sidewalls thereof (13). A number of conductive terminals (2) are arranged along the central slot for mechanical and electrical engagement with a daughter circuit board (5) coupled thereto. The bottom wall of the housing defines a number of airways (151) in communication with the central slot, so as to dissipate heat generated by the conductive terminals during signal transmission to the outer circumstance timely.
Abstract:
The electrical connector (1) includes a base having a number of terminals (12) thereon and a load plate (40) pivotally attached to a side of the base and locked in an opposite side of the base. The load plate (40) is stamped from a sheet of metal to form at least one pressing protrusion (43) to engagingly press an IC (60) in order to hold the IC (60) on the base. At least one pressing protrusion (43) has an outer edge (431) adjacent the IC (60) when the IC (60) is held on the base. The outer edge (431) is coined, thereby weeding out burrs formed on said outer edge (431) after the load plate (40) is stamped. As a result, the shape of the coined outer edge (431) of the pressing protrusion (43) can avoid scraping an IHS conglutinated on the IC (60) when the load plate (40) presses the IC (60), thereby to safely interconnect the IC (60) with the PCB.
Abstract:
A method for fabricating a thin film transistor (TFT) display is provided, wherein the processes of a liquid crystal substrate and an organic thin film transistor (OTFT) substrate are separated. The fabrication of liquid crystal substrate employs the technology of polymer encapsulated liquid crystal molecule, and leaves the polymeric layer as a substrate using a sacrificial layer, so as to improve the flexibility. And the TFT substrate has a high adhesive polymeric protective layer provided on its surface, so as to combine the fabricated TFT substrate and the liquid crystal substrate by laminating. Thereby, the processes of the liquid crystal substrate and the TFT substrate will not affect each other, to improve the process yield and meet the demand for the variety of products.