Abstract:
A rubber composition obtained by kneading at least one selected from the group consisting of (A1), (B1), (C1) and (D1), a rubber component and a filler, and a method of improving the viscoelastic property of vulcanized rubber, comprising a first step of kneading at least one selected from the group consisting of (A1), (B1), (C1) and (D1), a rubber component, a filler and a sulfur component and a second step of thermally treating the kneaded material obtained in the previous step. (A1): a compound represented by formula (I) (B1): a salt of a compound represented by formula (I) (C1): a solvate of a compound represented by formula (I) (D1): a solvate of a salt of a compound represented by formula (I)
Abstract:
Optically active nipecotamide can be produced by a method for producing optically active nipecotamide comprising: a step of reacting nipecotamide with optically active lactic acid to prepare a mixture of diastereomer salts and then allowing one diastereomer salt in the mixture of the diastereomer salts to precipitate; a step of collecting the precipitated diastereomer salt; and, a step of treating the collected diastereomer salt with a base to cause optically active nipecotamide to release.
Abstract:
A wafer laser processing method for forming deteriorated layers in the inside of a wafer having a device area and a peripheral excess area surrounding the device area, the surface of the device area being higher than the surface of the peripheral excess area, involving a first step for forming a deteriorated layer in the insides of the peripheral excess area and device area by applying a laser beam to the peripheral excess area and the device area with its focal point set in the material of the peripheral excess area and the device area from the front surface side of the wafer; and a second step for forming a deteriorated layer in the inside of the device area by applying a laser beam to the device area with its focal point set in the material of the device area without applying the laser beam to the peripheral excess area.
Abstract:
Provided is a manufacturing method for a piperidine-3-ylcarbamate compound in which a pyridine-3-ylcarbamate compound and hydrogen are brought into contact in the presence of a palladium catalyst.
Abstract:
A wafer dividing method for dividing a wafer having a film on the front side thereof. The wafer dividing method includes a modified layer forming step of applying a laser beam having a transmission wavelength to the substrate of the wafer from the front side thereof along the streets so that a focal point of the laser beam is set inside the substrate, thereby forming a modified layer in the substrate along each street, a film dividing step of applying a laser beam having an absorption wavelength to the film from the front side of the wafer along each street to thereby form a laser processed groove for dividing the film along each street, a back grinding step of grinding the back side of the substrate of the wafer to thereby reduce the thickness of the wafer to a predetermined thickness, a wafer supporting step of attaching the wafer to a dicing tape supported to an annular frame, and a wafer breaking step of applying an external force to the wafer by expanding the dicing tape to thereby break the wafer along each street.
Abstract:
The present invention provides; a process for producing a compound (IV) comprising a step of reacting a compound (I) with a compound (II) in the presence of an optionally substituted cyclic secondary amine to obtain a compound (III) and a step of sequentially or simultaneously eliminating R1 and R2 from the compound (III), and then cyclizing the R1- and R2-eliminated compound to obtain the compound represented by the formula (IV); a process for producing a high purity compound (IV); an intermediate thereof; and a process for producing an intermediate.
Abstract:
A method of carrying out laser processing on a wafer having a plurality of parallel streets on the front surface along the streets, comprising the steps of: carrying out a first laser processing step of carrying out laser processing along streets formed in one half area of the wafer by carrying out a laser beam application step for applying a laser beam along the streets by positioning the outermost street on one side in the indexing-feed direction of the wafer right below a condenser and an indexing-feed step for positioning a street adjacent to the street which has undergone the laser beam application step on the wafer right below the condenser sequentially; and carrying out a second laser processing step of carrying out laser processing along streets formed in the other half area of the wafer by carrying out a laser beam application step for applying a laser beam along the streets by positioning the outermost street on the other side in the indexing-feed direction of the wafer which has undergone the first laser processing step right below the condenser and an indexing-feed step for positioning a street adjacent to the street which has undergone the laser beam application step on the wafer right below the condenser sequentially.
Abstract:
A wiring device is used in a folding portable device including a hinge unit permitting an upper unit to fold/unfold and/or to rotate with regard to a lower unit. The wiring device comprises a rotative direction wound portion having a first central axis corresponding to a rotating axis of the hinge. A folding/unfolding direction wound portion has a second central axis corresponding to a folding/unfolding axis of the hinge. A FPC fixing member fixes a FPC holding member holding a predetermined part of a FPC to the hinge. The rotative direction wound portion is wound with a first part of a flexible printed cable that is continuous with one end of the predetermined part. The folding/unfolding direction wound portion is wound with a second part of the flexible printed cable that is continuous with the other end of the predetermined part.
Abstract:
A fold-type cellular phone has a top unit, a bottom unit and a hinge coupling together the top unit and the bottom unit while allowing the top unit to turn and swivel with respect to the bottom unit. The top unit is first unfolded from a first folded position to an attitude angle of 160 to 170 degrees, and swiveled by 180 degrees to be folded onto the bottom unit in a second folded position at an attitude angle of 180 degrees. The swivel movement of the top unit causes a cam assembly to turn the top unit from the attitude angle of 160-170 degrees to an attitude angle of 180 degrees in the second folded position, thereby allowing the top unit to assume a suitable attitude with respect to the bottom unit.
Abstract:
In a portable wireless information terminal apparatus, a terminal main body unit having a receiver unit and a transmitter unit. A data display unit is movably provided on the terminal main body unit.