Abstract:
Search results are provided for mobile computing devices. Search results are retrieved based on a search term. Each of the search results is assigned to one or more categories. The categories and the assigned search results are provided to the mobile computing device. The mobile computing device is adapted to display each of the categories and a partial list of the search results for each of the categories.
Abstract:
A lithographic printing plate support includes an aluminum plate and an anodized film formed at a surface of the aluminum plate and having micropores which extend in a depth direction of the anodized aluminum film from a surface of the anodized film opposite from the aluminum plate. Each of the micropores includes a large-diameter portion and a dendritic small-diameter portion. The lithographic printing plate support has excellent scratch resistance and is capable of obtaining a presensitized plate which exhibits excellent on-press developability and enables a lithographic printing plate formed therefrom to have a long press life and excellent deinking ability after suspended printing.
Abstract:
A presensitized plate having a long press life and excellent resistance to scum and corrosive micro-stains and capable of on-press development is provided. The presensitized plate includes a photosensitive layer containing (A) a sensitizing dye, (B) a polymerization initiator, (C) a polymerizable compound, and (D) a binder polymer; and a protective layer which are formed on a support in this order. The support is prepared from an aluminum alloy plate containing intermetallic compound particles with a circle equivalent diameter of 0.2 μm or more at a surface density of 35,000 pcs/mm2 or more and aluminum carbide particles with a maximum length of 1 μm or more in an amount of up to 30,000 pcs/g.
Abstract translation:提供具有长的印刷寿命和优异的抗浮渣和腐蚀性微污染并且能够进行印刷机发展的预感板。 预感板包括含有(A)增感染料,(B)聚合引发剂,(C)可聚合化合物和(D)粘合剂聚合物的感光层; 和保护层,其形成在载体上。 该载体由含有金属间化合物颗粒的铝合金板制备,其中当量直径为0.2μm或更大的圆形当量的表面密度为35,000pcs / mm 2或更高,最大长度为1μm或更大的碳化铝颗粒的量为 高达30,000个/ g。
Abstract:
An apparatus for manufacturing aluminum alloy strip for a lithographic printing plate supports includes a filter, a launder connected to the filter, a liquid level controller connected to the launder, and a melt feed nozzle connected to the liquid level controller. The liquid level controller includes a step to trap settled particles within an aluminum melt which forms the alloy strip. The launder has a length L (m) which satisfies the condition 4≧L≧V×270×1.2×D, where V is the flow velocity in meters per second of the aluminum melt in the launder and D is the depth in meters of the aluminum melt in the launder.
Abstract:
A lithographic printing plate support in which surface unevenness due to surface treatment has been suppressed and a presensitized plate of excellent sensitivity are produced from an aluminum alloy plate containing iron, silicon, titanium and boron by specifying the state in which TiB2 particles are present in the surface layer and the width of the crystal grains, and by having specific indicators relating to the respective concentrations of iron and silicon in the surface layer following graining treatment fall within specific ranges. In a method of manufacturing the lithographic printing plate support, an aluminum alloy melt having specified alloying ingredients is subjected to a specified casting process to have the amount of the alloying ingredients in solid solution following cold rolling fall within specified ranges.
Abstract:
An aluminum alloy plate for a lithographic printing plate capable of obtaining a lithographic printing plate having an excellent resistance to spotting, a method of manufacturing such aluminum alloy plate, a lithographic printing plate support obtained by using such aluminum alloy plate, and a presensitized plate and in particular an on-machine developable presensitized plate are provided. The aluminum alloy plate contains 0.08 to 0.45 wt % of iron and 0.05 to 0.20 wt % of silicon, with the balance being inadvertent impurities and aluminum, and the content of aluminum-iron intermetallic compounds is not more than 0.05 wt %.
Abstract:
A presensitized plate bringing about the lithographic printing plate which exhibits a high resistance to scumming and in which formation of bulges causing image dropouts is suppressed is provided with the lithographic printing plate support which includes an aluminum plate and an anodized film of aluminum provided on the aluminum plate, and has a micropore extending in the anodized film in the direction of depth from a film surface opposite with a film surface facing the aluminum plate. The micropore is sealed at least partially on its inside with protrusions made of boehmite, and the protrusions made of boehmite which are located on the anodized film have a mean height of less than 15 nm.
Abstract:
This invention improves linearity of a solid-state image pickup device beyond that of the prior art source follower to improve image quality. The image pickup device has plural pixels disposed in an array. Each pixel includes: a photodiode (PD); a transfer transistor (Tr1); a floating diffusion (FD); and an amplification transistor (Tr4). A compensating circuit has an amplifier (AP) receiving the output of the amplification transistor (Tr4), and a compensating transistor (M2) matched to the pixel amplification transistor (Tr4). Compensation is provided using negative feedback in the amplifier (AP).
Abstract:
The objective of this invention is to provide a solid-state imaging device and drive method with which sampling before the output values from pixels have reached a constant value can be avoided. The solid-state imaging device comprises photosensitive pixels arranged in the form of an array on a photosensitive surface and that have a photodiode that generates and stores a photocharge, a transfer transistor that transfers the photocharge, a floating diffusion to which the photocharge is transferred, and an amplifying transistor that converts the photocharge into a voltage signal and that amplifies the signal; photosensitive-surface output line connected to the source/drain of one of the amplifying transistors; power source connected thereto; sampling circuit connected to the photosensitive-surface output line; and current source regulating circuit, which regulates the current source current, connected to the current source so that, for sampling of the output values, the sampling circuit samples the output values after the output values have essentially become constant by comparing the output values immediately after they are output to the photosensitive-surface output lines.
Abstract:
Technologies are described herein for providing search results for mobile computing devices. Search results are retrieved based on a search term. Each of the search results is assigned to one or more categories. The categories and the assigned search results are provided to the mobile computing device. The mobile computing device is adapted to display each of the categories and a partial list of the search results for each of the categories.