Abstract:
Backlight modules. A backlight module for a flat display device includes a light guide element and a fluorescent lamp assembly. The fluorescent lamp assembly disposed on a first side of the light guide element includes a first fluorescent lamp and a second fluorescent lamp. The first fluorescent lamp comprises a first end, a second end and a first phosphor coating on an inner surface of the first fluorescent lamp, wherein the first phosphor near the first end is thicker than the second end. The second fluorescent lamp comprises a third end adjacent to the second end, a fourth end adjacent to the first end, and a second phosphor coating on an inner surface of the second fluorescent lamp, wherein the second phosphor near the third end is thicker than the fourth end.
Abstract:
An apparatus for driving a liquid crystal display (LCD) includes a timing controller, a source driver and a gate driver. A panel of the LCD includes gate line groups, and each of the gate line groups includes gate lines. Scan pulse signals having a same scan pulse period and output enable signals are generated by the gate driver. The scan pulse signals are respectively enabled by the output enable signals and each of the scan pulse signal has one of a data writing period and a gray level writing period during the scan pulse period. During the data writing period, only one of the gate lines is turned on at a point in time by the scan pulse signals. During the gate level writing period, one of the gate line groups is turned on by the scan pulse signals. Thus, the edge blur of displaying moving images is eliminated.
Abstract:
A method and apparatus for the transition of display panel are provided. The method and apparatus are applied to a display panel which is transforming from an abnormal display state into a normal display state. The display panel includes a data electrode and a reference electrode. According to this invention, a low-frequency alternative voltage signal is applied to the reference electrode together with a driving voltage designed to be applied to the data electrode. Then, a transformation electric field which is formed between the reference electrode and the data electrode makes the display panel transform into the normal display state quickly.
Abstract:
A solid flat antenna includes a reflecting unit, a first radiating unit and a second radiating unit. The reflecting unit has a first reflecting surface and a second reflecting surface. The first radiating unit, which has a first radiating portion and a first electrically connecting portion, is disposed opposite to the first reflecting surface, and one end of the first electrically connecting portion is electrically connected with the first radiating portion, which is disposed parallel to the first reflecting surface approximately. The second radiating unit, which has a second radiating portion and a second electrically connecting portion, is disposed opposite to the second reflecting surface, and one end of the second electrically connecting portion is electrically connected with the second radiating portion, which is disposed parallel to the second reflecting surface approximately. The other ends of the second electrically connecting portion and the first electrically connecting portion are electrically connected.
Abstract:
A method for driving a thin film transistor liquid crystal display (TFT LCD) not only accelerates a response speed of the liquid molecules, but applies to the highest and the lowest margin voltage as well. In addition, this method comprises the following steps: during a period of a changing of one sub-pixel's data, when the sub-pixel is positive-polarity driven, lowering a common voltage of the sub-pixel and raising its source line voltage at the same time; and when the sub-pixel is negative-polarity driven, raising the its common voltage common voltage of the sub-pixel and lowering its source line voltage at the same time.
Abstract:
The photovoltaic concentrating apparatus includes a supporter and at least one collecting unit positioned on the supporter. The supporter includes a plurality of beams having at least one groove positioned on a side surface of the beam. The collecting unit includes a Fresnel lens and a solar cell module. The Fresnel lens is positioned on the supporter via a loading frame with a wing capable of engaging with the groove of the beam, and the solar cell module is positioned on the supporter via a substrate. Particularly, the supporter includes an upper frame for supporting the Fresnel lens and a bottom frame for supporting the solar cell module.
Abstract:
An automatic focusing method is provided, which is realized through an imaging device as based on the multi-stage search principle and a focusing function. Thus the focusing position search is implemented in three stages of: the optimal focusing position gross search, the wave packet interval search, and the optimal focusing position minute search, with the respective stages having different search-step-magnitudes. Wherein, the integer times of one half the wavelength of the incident light of the imaging device is utilized as the search-step-magnitude to search for the maximum value of the focusing function in the wave packet interval, and define the focusing position corresponding to the maximum value of the focusing function as the optimal focusing position, hereby obtaining the optimal focusing position in a speedy and efficient manner.
Abstract:
A low-sidelobe dual-band and broadband flat endfire antenna includes a substrate, a first radiator, a second radiator, two refraction portions, and a conductive element. The substrate has a side surface, a first surface, and a second surface. The first radiator is disposed on the first surface and has a first oblique portion, a first concave portion, and a first electrically connecting portion disposed opposite to the first concave portion. The second radiator is disposed on the second surface and has a second oblique portion, a second concave portion, and a second electrically connecting portion disposed opposite to the second concave portion. The second oblique portion is disposed opposite to the first oblique portion to form an included angle. The refraction portions are disposed on the side surface and are opposite to one another. The conductive element has a conductive body and a grounded conductor electrically connected to the first conductivity portion and the second conductivity portion, respectively.
Abstract:
In the Taylor reactor, in accordance with a first alternative of the invention, the reactor housing and/or the rotor are/is equipped such that the cross section of the reaction volume initially rises from the inlet to the outlet but the rise in cross section decreases in the direction of the outlet at least over part of the length of the rotor. In accordance with a second alternative of the invention, which may also find application in addition to the first, the end face of the rotor is designed in such a way that the reaction volume opens out into the outlet in such a way that it is at least substantially free from deadspaces (FIG. 4).
Abstract:
A program correction method. A program-driven electronic device for implementing the program correction method contains an erasable memory storing a program comprising to-be-replaced codes need to be replaced stored in a first section. First, updated codes for replacing the to-be-replaced codes are acquired. Next, the updated codes are stored in a second section of the erasable memory. An initial instruction of the to-be-replaced codes is amended to be an exception-causing code which generates a corresponding code-replacement exception when executed. The updated codes are executed when the corresponding code-replacement exception is received.