Abstract:
A method for determining the synchronization code under a standard mobile imaging architecture is provided. This method is essentially to solve any possible error occurring as transferring the images among the mobile devices. If any error is occurred to the transferred bit stream, it will cause fault in the image data. Consequently, the present invention provides an approach to compare every input data with iterative comparison operation, so as to obtain the position of synchronization codes under SMIA. Therefore, the correct synchronization code will solve the possible error translation.
Abstract:
This invention relates to novel compounds having the formula (I): and to their pharmaceutical compositions and to their methods of use. These novel compounds provide a treatment for cancer.
Abstract:
In a custom code setting system of a remote control chip, M keyboard input/output pins are connected to an external keyboard to receive the input of the external keyboard. A first pin is connected to one terminal of an external resistor, while the other terminal of the external resistor is connected to ground, wherein there are N resistance values selectable for the external resistor. A resistance detecting unit is connected to the first resistor to detect the resistance of the first resistor. A second pin is connected to one of the M keyboard input/output pins for setting a custom code. When power on reset occurs, a control logic receives the resistance from the resistance detecting unit, and one of the N×M custom codes is determined according to connection between the second pin and one of the M keyboard input/output pins.
Abstract:
This invention relates to a preparation method and equipment of graphite and catalyst composite for a kind of synthetic diamond. Firstly, graphite particles shall be placed into the heating chamber for pre-heating; secondly, the heated graphite particle will be fed into the coating room with vibrator or agitator and steam of carbonyl metal complex is input for coating; finally, the coated graphite particles are fed into a cooling and passivation room for cooling and passivation of the discharging materials or enter a next round of heating and coating. The surface of each graphite particle is plated with metal layer which can promote the crystal nucleus growing into perfect diamond crystal.
Abstract:
The present invention discloses a method for allocating MBMS resources and a method for receiving non MBMS data, wherein said method for allocating MBMS resources comprises: way 1: a transmitter using parts on the MBMS resources allocated for the MBMS to send a non MBMS, and informing a receiver of usage state of resources which are used to send the non MBMS in said parts of the MBMS resources through system information; or way 2: a transmitter using parts of the MBMS resources allocated for the MBMS to send a non MBMS only for one or more receivers which are not power limited. The present invention can avoid configuring the MBMS for the over allocation MBMS subframes using complex scheduling algorithms, and implements the flexible allocation of the MBMS subframes.
Abstract:
An operation platform disposed on a substrate includes two guiding rail, two first driving devices, a carrying board and a second driving device. Each of the guiding rails includes a fixed bracket, a movable bracket and a plurality of rollers. The movable bracket received in the fixed bracket includes a pair of second sidewalls. Each second sidewall includes a plurality of bevels having a top portion and a bottom portion. The rollers positioned to the fixed bracket engage with the bevels to move perpendicularly to the substrate. The carrying board disposed on the guiding rails to support workpieces includes a plurality of supporting blocks. The first and second driving devices are used to drive the movable brackets and the carrying board respectively.
Abstract:
A machine motion control system includes a number of moving parts for securing test electronic devices, a machine and an axis control card mounted on the machine. The machine includes a number of servo modules and a number of sensing units. The servo modules drive and control the corresponding moving parts on the machine. Each sensing unit is electrically connected to a corresponding moving part; the sensing units are operable to sense and transmit location information of the moving parts and the machine. The axis control card is electrically connected to the moving parts, the machine, and the sensing units. The axis control card receives location information of each moving part and processes the location information to generate a corresponding command signal, and transmits the generated command signal to the servo modules to control and adjust the moving parts.
Abstract:
An exemplary embodiment of machine motion control system for testing electronic devices includes a machine and a control module electrically connected to the machine. The machine secures the electronic devices and includes a sensing unit and a servo unit, the sensing unit obtains different test parameters of the electronic devices to generate corresponding sensed signal. The control module includes a signal conversion unit electrically connected to the sensing unit and a main control circuit, the main control circuit is electrically connected to the signal conversion unit and the servo unit. The signal conversion unit converts the sensed signal into corresponding command signal, and the main control circuit drives and controls the servo unit to adjust the motion state and test strength on the electronic device according to the command signal.
Abstract:
An exemplary pin bending device (200) includes a base (210), a sliding member (230), a fixing member (240), and a latch member (250). The sliding member (230) is slidably positioned on the base and defines a plurality of holes (2303) for receiving first portions of pins. The fixing member is fixed on the base. The latch member is movably positioned on the base. The latch member is able to move towards the fixing member in a direction perpendicular to the sliding direction of the sliding member and engage with the fixing member to fix second portions of the pins.
Abstract:
A game controller glove includes a main body, a MEMS, and a power supply. The main body includes five finger portions for receiving fingers of a game player's hand. The MEMS includes finger-movement sensors, MEMS sensors, and a processor. The finger-movement sensors are positioned at the finger portions and used for detecting the movements of the fingers. The MEMS sensors are connected to the corresponding finger-movement sensors and used for sensing pressures applied by the corresponding finger-movement sensors, and converting the pressure into electrical signals. The processor is electrically connected to the MEMS sensors and used for obtaining the electrical signals and then restores the electrical signals back to pressure values. The power supply is used for supplying electrical power to the processor.