Abstract:
Row electrode pairs and column electrodes are provided between the front glass substrate and the back glass substrate. Magnesium oxide single-crystal particles, which are doped with aluminum and have characteristics of causing cathode luminescence having a peak within a wavelength range of 200 nm to 300 nm upon excitation by application of electron beams, are disposed in a position facing the discharge cells, and form part of a protective layer for a dielectric layer overlying the row electrodes and/or phosphor layers.
Abstract:
A switching power supply with output ripple suppression includes a rectification circuit, a filtering circuit, a PFC, a transformer, a voltage stabilization circuit and a DC/DC converting circuit with feedback control. The DC/DC converting circuit includes a switching circuit, a PWM generator and a feedback circuit. The feedback circuit receiving feedback signals reflects an actual output voltage of the switching power supply and transmits the feedback signals to the PWM generator. The PWM generator produces PWM waves to control an on-off time ratio of the switching circuit by comparing the feedback signals with a reference signal that reflects a desired output voltage of the switching power supply. The switching circuit in turn controls the actual output voltage of the switching power supply.
Abstract:
An improved hot attach & detach application cartridge that can be externally or internally connected to a computer host easily, comprises a portable computer bracket that is specifically designed to enclose and electrically connect the application cartridge to a mother board of a computer host, wherein the portable computer bracket comprises a circuit board and an ejector that allow the application cartridge to install and electrically connect to the computer host via the circuit board of the computer bracket easily. The application cartridge can be disconnected and detached from the computer host without any difficulty by pushing the ejector of the computer bracket to eject the application cartridge.
Abstract:
An exemplary mounting apparatus for a storage device includes a chassis, a locking member, and a fastener. The storage device defines a pair of fixing holes in one sidewall thereof. The locking member is attached to the other sidewall thereof and includes a pair of slots defined therein. The chassis includes a side panel, and a bottom panel. The side panel includes a pair of pins extending therefrom and engaging in the fixing holes of the storage device. The bottom panel includes a pair of bridges extending therefrom and slidably engaging in the slots of the locking member. The fastener is attached to the locking member to secure the locking member to the bottom panel of the chassis.
Abstract:
A hot attach & detach application cartridge includes an adapter module fixedly mounted in a bay on a computer host to electrically connect to a main board in the computer host, and an application cartridge adapted to receive a corresponding peripheral apparatus therein and to insert into a bay on the computer host having the adapter module mounted therein. The adapter module is provided at a predetermined position with a hot attach & detach SATA male connector; and the application cartridge is provided with a hot attach & detach SATA female connector corresponding to the SATA male connector on the adapter module, and a hot attach & detach USB female connector. Thus, the application cartridge may be internally or externally hot attached to or detached from the computer host via the SATA connector or the USB connector.
Abstract:
A liquid crystal display. The liquid crystal display comprises a liquid crystal panel, a backlight module, a bezel and a light-inductive adhesive layer. The backlight module and the bezel are disposed respectively on the two surfaces of the liquid crystal panel so that the liquid crystal panel and the backlight module are enclosed by the bezel. The light-inductive adhesive layer is disposed between the liquid crystal panel and the bezel to adhere the bezel to the liquid crystal panel. When light of a specific wavelength irradiates the light-inductive adhesive layer, the light-inductive adhesive layer loses adhesion, enabling separation of the liquid crystal panel and the bezel.
Abstract:
A plasma display apparatus and a driving method of a plasma display panel which can improve a gradation expressing ability at low luminance. A magnesium oxide layer containing a magnesium oxide crystal which is excited by irradiation of an electron beam and performs a cathode luminescence light emission having a peak in a wavelength range of 200 to 300 nanometers is provided in each of display cells formed on the plasma display panel. When driving for a plurality of subfields having different luminance weights is performed, a sustaining discharge is caused only once in the subfield having the minimum luminance weight.
Abstract:
A liquid crystal display. The liquid crystal display comprises a liquid crystal panel, a backlight module, a bezel and a light-inductive adhesive layer. The backlight module and the bezel are disposed respectively on the two surfaces of the liquid crystal panel so that the liquid crystal panel and the backlight module are enclosed by the bezel. The light-inductive adhesive layer is disposed between the liquid crystal panel and the bezel to adhere the bezel to the liquid crystal panel. When light of a specific wavelength irradiates the light-inductive adhesive layer, the light-inductive adhesive layer loses adhesion, enabling separation of the liquid crystal panel and the bezel.
Abstract:
A composition for an anti-scale-forming agent includes oil-based polyalkylenes, amines phosphorous and oxygen in a polymer for providing dispersivity and anti-oxidation and having the following formula: By integrating both characteristics into a single polymer, the anti-scale-forming agent in accordance with the present invention can be used as an anti-scale-forming agent for a manufacturing process in a petroleum refinery plant or the like chemistry factory. R1, R2 and x are defined herein.
Abstract:
Disclosed herein is a novel optical particle characterization system and method of use that can be applied to harsh environments. By separating the sensing components from the electronics unit and using optical fibers for interconnection, only the sensing components need to endure harsh environmental conditions. This reduces the design constraints on the electronics unit and permits the incorporation of optical components into the sensing probe that can withstand high-temperature and high-pressure environments.