Abstract:
The present invention provides a compound having a lysine-specific demethylase 1 inhibitory action, and useful as a medicament such as a prophylactic or therapeutic agent for cancer, and central nervous system diseases, and the like. The present invention relates to a compound represented by the formula wherein A is a hydrocarbon group or heterocyclic group optionally having substituent(s); R is H, a hydrocarbon group or heterocyclic group optionally having substituent(s); A and R are optionally bonded to each other to form a ring optionally having substituent(s); Q1, Q2, Q3 and Q4 are each a hydrogen atom or a substituent; Q1 and Q2, and Q3 and Q4, are each optionally bonded to each other to form a ring optionally having substituent(s); X is H, an acyclic hydrocarbon group or saturated cyclic group optionally having substituent(s); Y1, Y2 and Y3 are each H, a hydrocarbon group or heterocyclic group optionally having substituent(s); X and Y1, and Y1 and Y2, are each optionally bonded to each other to form a ring optionally having substituent(s); and Z1, Z2 and Z3 are each H or a substituent, or a salt thereof.
Abstract:
The present invention provides a configuration in which a service corresponding to a user can be provided by using an apparatus near the user, even when the user moves from one location to another and apparatuses near the user change. A mobile apparatus carried by the user forms cells, with the mobile apparatus itself being the master, collects information of nearby apparatuses from a space directory (SDR), which stores information of directly-accessible slaves or nearby apparatuses, and generates and updates mobile directory information in a storage unit based on the collected information. Accordingly, the user can obtain the information of nearby information processors unconsciously without performing a special process and, thus, the user can receive services, such as content distribution and communication services, by using the nearby apparatuses based on the obtained information.
Abstract:
An acoustic wave device includes: a comb-like electrode provided on a piezoelectric substrate; and a first medium that covers the comb-like electrode and has at least a silicon oxide film in which an element is doped, wherein sonic speed in the silicon oxide film in which the element is doped is lower than sonic speed in an undoped silicon oxide film.
Abstract:
An acoustic wave device includes a plurality of acoustic wave devices each including a substrate made of a piezoelectric material, a pair of interdigital electrodes formed on the substrate, each of the interdigital electrodes including a plurality of electrode fingers, and an adjustment medium. The adjustment medium includes at least a single layer and is formed on at least a part of the pair of the interdigital electrodes. The adjustment medium further includes at least one thick portion and a thin portion, the thin portion being null or thinner than the thick portion, a total area of the at least one thick portion in a region covering the pair of interdigital electrodes being determined according to a predetermined characteristic value, wherein the plurality of acoustic wave devices include at least two acoustic wave devices that differ from each other with respect to the size of the total area of the at least one thick portion of the adjustment medium.
Abstract:
A filter includes a parallel resonator having first comb electrodes provided on a piezoelectric substrate and a first dielectric film that covers the first comb electrodes, and a series resonator having second comb electrodes provided on the piezoelectric substrate and a second dielectric film covers the second comb electrodes and is made of a material identical to that of the first dielectric film. The first dielectric film has a different thickness from that of the second dielectric film.
Abstract:
An elastic boundary wave device of the present invention includes a plurality of elastic boundary wave elements. The elastic boundary wave elements each include a piezoelectric material layer, an electrode disposed over the piezoelectric material layer, a first dielectric layer formed over the piezoelectric material layer so as to cover the electrode, and a second dielectric layer formed over the first dielectric layer. An acoustic velocity of the second dielectric layers is faster than an acoustic velocity of the first dielectric layers, and the acoustic velocity of the second dielectric layer of at least one elastic boundary wave element from among the plurality of elastic boundary wave elements is different from the acoustic velocity of the second dielectric layer of another of the elastic boundary wave elements. This enables improving the degree of suppression in use as a filter in the elastic boundary wave device.
Abstract:
An acoustic wave device includes a piezoelectric substrate, a first dielectric film formed on the piezoelectric substrate, and electrodes that are provided on the first dielectric film and excite an acoustic wave, the electrodes including electrode fingers. At least a part of the first dielectric film is cut out between adjacent electrode fingers among the electrode fingers.
Abstract:
A display driving circuit includes an amplifier circuit including an output stage including first and second MOS transistors which are complementary to each other to perform a push-pull operation, an output terminal, a switch element provided between an output end of the output stage and the output terminal, and a controller which enables the first and second MOS transistors to exclusively turn on and off.
Abstract:
An elastic boundary wave device includes a first medium with piezoelectricity, an electrode exciting an elastic wave and provided on the first medium, a second medium made of a different material from the first medium and provided on the first medium to cover the electrode, and a sound absorbing portion provided on the second medium.
Abstract:
A surface-acoustic-wave device includes a piezoelectric substrate and first and second comb-shaped electrodes each having a bus-bar portion parallel to a propagation direction of a surface acoustic wave in the substrate. Respective electrode fingers are periodically formed on the piezoelectric substrate and extend in directions perpendicular to the propagation direction, wherein the electrode fingers of the first comb-shaped electrode and the electrode fingers of the second comb-shaped electrode are separated away from the bus-bar portion of the opposing comb-shaped electrode. The respective electrode fingers being periodically arrayed in the propagation direction of the surface-acoustic-wave, and the electrode fingers of each comb-shaped electrode are inclined at root portions thereof outwardly right and left from the bus-bar portion of the corresponding comb-shaped electrode so that the inclined portions of the electrode fingers face a direction of a leaking surface-acoustic-wave perpendicularly.