Abstract:
A motion control sensor system and motion control system for a moving unit have a physical quantity sensor in an unsprung mass of the moving unit so that physical quantities in the unsprung mass can be detected, bypassing the spring. An acceleration sensor for detecting acceleration exerted on the unsprung mass of the moving unit is placed so that its detection axis crosses the operation axis of the moving unit, so acceleration due to angular acceleration around the operation axis is not detected. Accordingly, the motion control sensor system and motion control system are suitable for running stability control during cornering of the moving unit.
Abstract:
The present invention provides a chemically amplified positive composition comprising:(A) a resin comprising a structural unit having an acid-labile group and being itself insoluble or poorly soluble in an alkali aqueous solution but becoming soluble in an alkali aqueous solution by the action of an acid,(B) a resin comprising a structural unit represented by the formula (I): wherein R1 represents a hydrogen atom, a halogen atom, a C1-C4 alkyl group or a C1-C4 perfluoroalkyl group, Z represents a single bond or —(CH2)k—CO—X4—, k represents an integer of 1 to 4, X1, X2, X3 and X4 each independently represents an oxygen atom or a sulfur atom, m represents an integer of 1 to 3 and n represents an integer of 0 to 3, and a structural unit having a fluorine atom in a side chain, andan acid generator.
Abstract:
After silicon oxide film (9) is formed on the surface of a semiconductor substrate (1), the silicon oxide film (9) in a region in which a gate insulation film having a small effective thickness is formed is removed using diluted HF and after that, high dielectric constant insulation film (10) is formed on the semiconductor substrate (1). Consequently, two kinds of gate insulation films, namely, a gate insulation film (12) comprised of stacked film of high dielectric constant insulation film (10) and silicon oxide film (9) and gate insulation film (11) comprised of the high dielectric constant insulation film (10) are formed on the semiconductor substrate (1).
Abstract:
The present invention aims to provide a non-aqueous electrolyte secondary cell having high capacity and capable of preventing elution of cobalt and decomposition of the electrolyte. This aim can be accomplished by providing a non-aqueous electrolyte secondary cell comprising a positive electrode having a positive electrode active material, an negative electrode having an negative electrode active material, and non-aqueous electrolyte, wherein the positive electrode active material comprises lithium cobalt oxide to which at least one material selected from the group consisting of Mg, Al, Ti, and Zr was added, and the positive electrode comprises lithium phosphate.
Abstract:
Provided is an electrochromic compound represented by the following general formula (I) or (II) where R1 to R13 are each independently a hydrogen atom, a halogen atom, a monovalent organic group, or a polymerizable functional group, and at least one of the R1 to the R13 is a polymerizable functional group.
Abstract:
A resist composition contains (A1) a resin having a structural unit represented by the formula (I), (A2) a resin being insoluble or poorly soluble in alkali aqueous solution, but becoming soluble in an alkali aqueous solution by the action of an acid, and (B) an acid generator represented by the formula (II). wherein R1 represents a hydrogen atom or a methyl group; A1 represents a C1 to C6 alkanediyl group; R2 represents a C1 to C10 hydrocarbon group having a fluorine atom; R3 and R4 independently represent a fluorine atom or a C1 to C6 perfluoroalkyl group; X1 represents an C1 to C17 divalent saturated hydrocarbon group; R5 represents a group having cyclic ether structure; and Z1+ represents an organic cation.
Abstract:
A resist composition contains; a resin having a structural unit derived from a compound represented by the formula (a); and an acid generator. wherein R1 represents a hydrogen atom or a methyl group; R2 represents an optionally substituted C1 to C18 aliphatic hydrocarbon group; A1 represents an optionally substituted C1 to C6 alkanediyl group or a group represented by the formula (a-g1); wherein s represents 0 or 1; A10 and A12 independently represent an optionally substituted C1 to C5 aliphatic hydrocarbon group; A11 represents a single bond or an optionally substituted C1 to C5 aliphatic hydrocarbon group; X10 and X11 independently represents an oxygen atom, a carbonyl group, a carbonyloxy group or an oxycarbonyl group; provided that a total number of the carbon atom of A10, A11, A12, X10 and X11 is 6 or less.
Abstract:
An electronic device mounting structure including: a supporting member that includes a supporting substrate, and a through electrode that penetrates the supporting substrate from a first principal surface that is one principal surface of the supporting substrate to a second principal surface that is the other principal surface, and that includes a projecting portion that projects from the second principal surface; and an electronic device that includes a device substrate on which a circuit is formed, and a through hole that penetrates between both principal surfaces of the device substrate, wherein the electronic device is arranged on the second principal surface of the supporting substrate so that the projecting portion of the supporting member is inserted into the through hole, and the circuit of the electronic device is electrically connected with the projecting portion.
Abstract:
To provide a nonaqueous electrolyte secondary battery with a small increase in internal resistance and less gas generation during high-temperature charged storage, and with a high residual capacity, when using a non-aqueous electrolyte containing a nitrile group-containing compound. The nonaqueous electrolyte secondary battery includes a positive electrode plate containing positive electrode active material, a negative electrode plate containing negative electrode active material, a nonaqueous electrolyte containing a nitrile group-containing compound, and a separator provided between the positive electrode plate and the negative electrode plate, and is also provided with a layer of inorganic particles between the positive electrode plate and the separator or between the negative electrode plate and the separator. It is preferable that the layer of inorganic particles be formed on a surface of the positive electrode plate.
Abstract:
Work required for the creation of reports based on measurement data obtained by a specimen measurement apparatus was reduced. A data analysis processing apparatus for creating reports by supplying measurement data to a report template includes: a display screen 50; a graph/table creation means 22 for allowing a user to create graphs/tables based on measurement data; a screen image creation means 23 for displaying the graph/table that was created by the graph/table creation means 22 on a display screen 50, allowing the user to defines the form, size and layout of each of the graphs/tables that are displayed, and creating a screen image; an output media setting means 60 for defining the size and shape of the output media; and a report automatic template creation means 241 for using the screen image that was created by the screen image creation means 23 to create a template that fits the size and shape of the output media that is defined by the output media setting means 60. The screen image that is defined by the user is used as a basis to automatically create a template that fits the shape and size of the output media, thus reducing the work required for the creation of reports.