Abstract:
A mobile communication device with a wireless module and a controller module is provided. The wireless module performs wireless transceiving to and from a service network. The controller module transmits a request message for a Mobility Management (MM) procedure to the service network via the wireless module, and receives a rejection message with an MM back-off timer corresponding to the request message from the service network via the wireless module. Also, the controller module resets an attempt counter for the MM procedure in response to the rejection message with the MM back-off timer.
Abstract:
A display system capable of switching 2D/3D mode includes a signal source, a 3D backlight control signal generation circuit, and a display. The signal source is used for transmitting a vertical synchronization signal and a left eye/right eye control signal. The 3D backlight control signal generation circuit is used for executing a first logic operation on the vertical synchronization signal and the left eye/right eye control signal to output a 3D left eye backlight control signal, and executing a second logic operation on the vertical synchronization signal and the left eye/right eye control signal to output a 3D right eye backlight control signal. The display displays 3D images according to the 3D left eye backlight control signal and the 3D right eye backlight control signal.
Abstract:
A method for manufacturing a patterned thin-film layer includes the steps of: providing a substrate with a plurality of banks thereon, the plurality of banks defining a plurality of spaces; providing an ink-jet device comprising a plurality of nozzles for depositing ink therefrom; generating a jetting information about ink volume that each of the nozzles deposits into the respective spaces by a random method, the jetting information meeting ink volume deposited into each of the spaces is in a range from about 92.5% to about 107.5% of an average volume of ink in the spaces; making the nozzles to deposit ink into the respective spaces according to the jetting information; and solidifying the ink so as to form a plurality of patterned thin-film layers formed in the spaces.
Abstract:
The present disclosure provides a dielectric material including a low dielectric constant material and an additive. The additive includes a compound having a Si—X—Si bridge, where X is a number of carbon atoms between 1 and 8. The additive may include terminal Si—CH3 groups. The dielectric material including the additive may be used as an inter-layer dielectric (ILD) layer of a semiconductor device. The dielectric material including the additive may be formed using a CVD or sol-gel process. One example of the additive is bis(triethoxysilyl)ethene.
Abstract:
The invention discloses a metal pattern formation system produced in the following steps: an organic liquid is first printed on a substrate to form a base pattern. A metal is then evaporated to generate several metal particles for covering the printed substrate. At last, the substrate is heated to vaporize the base pattern, and the metal particles adhered to the substrate forms a metal pattern complementary to the base pattern.
Abstract:
An electronic device such as a handheld electronic device may include wireless communications circuitry. The wireless communications circuitry may include a radio-frequency receiver circuit or other circuitry that is sensitive to noise. Audio amplifier circuitry may be provided in the electronic device to amplify audio signals for a speaker. The audio amplifier circuitry may include class AB amplifier circuitry for operating in a low noise mode and class D amplifier circuitry for operating in a low power mode. The audio amplifier circuitry may include a control input path that receives control signals in real time. When it is determined that the wireless receiver or other sensitive circuit is active, the audio amplifier can be configured to operate in its low noise mode using the class AB amplifier. When it is determine that the wireless receiver is not being used, the class D circuitry may be switched into use to conserve power.
Abstract:
A hybrid mobile ad-hoc network and a method of operating the same, including a mobile network node and a plurality of static network nodes randomly distributed over a coverage area with a predetermined density. The static network nodes form a static infrastructure backbone of the hybrid mobile ad-hoc network. Position information of the static network nodes, either through position awareness or triangulation with reference to other static nodes enhances the network function. The method tracks mobile node position with a minimum of overhead because of the fixed infrastructure of static nodes. The infrastructure can self-heal by placing excess static nodes in a hibernating state, and activating those in response to the failure of a nearby static node.
Abstract:
A fixing mechanism for fixing a display device includes a display casing whereon a hole is formed, a shielding wall connected to a side of the display casing, and a bracket wedged inside the shielding wall in a detachable manner and installed on the side of the display casing. An opening is formed on the bracket. The fixing mechanism further includes a screwing component. An end of the screwing component passes through the hole on the display casing and is screwed inside the opening on the bracket. The other end of the screwing component is installed inside a wall mount. The shielding wall is for shielding the end of the screwing component.
Abstract:
Deblock filtering for Microsoft WMV video decoders partitions the computation so that the deblock filtering operations can be performed on horizontal or vertical stripes or in one pass on oversized macroblocks.
Abstract:
MTC event monitoring methods and the network servers thereof. The MTC event monitoring method comprises configuring, by the network server, a detection sensitivity threshold, determining, by the network server, an MTC event at an MTC device and an associated detection sensitivity parameter, and reporting, by the network server, the MTC event to an MTC server only when the associated detection sensitivity parameter equals to or exceeds the detection sensitivity threshold.