Abstract:
A composite optical device 1 includes a first optical section 10 having an optical functional surface 11 and a second optical section 20 bonded to the first optical section 10 on the optical functional surface 11. The optical functional surface 11 includes a smooth part 13 and a concave-convex part 12 adjacent to each other, and is constructed so that a position P2, along a normal direction of the smooth part 13, of a concave bottom of the concave-convex part 12 can be closer to the center of the first optical section 10 than a position P1 along the normal direction of an end of the smooth part 13 on a side of the concave-convex part 12 in a boundary vicinity portion NR between the smooth part 13 and the concave-convex part 12.
Abstract:
In the content playback method of the present invention, when a skip operation is carried out and then another skip operation is carried out next, it is determined whether or not a direction of a first skip operation and a direction of a skip operation carried out next are opposite directions. If the direction of the skip operation carried out next is the opposite to the direction up to that point in time and there is a change point between scenes in a skip segment of the skip operation carried out next, skip processing is carried out such that the playback position is placed to the change point of this scene. Thereby, for example, when the content is played back after jumping past a CM, the boundary between the CM and program can be easily found, and the replay can be started.
Abstract:
The present invention relates to a composite lens and a method for manufacturing the same, particularly to a composite lens in which a second lens component is coupled to a first lens component at part of a first surface, and intends to improve optical characteristics. A composite lens (1) has a first lens component (10) and a second lens component (20). The first lens component (10) has a first surface including a first lens surface (13), a peripheral surface (15a) surrounding the first lens surface (13) and a ring surface (17a) included in the peripheral surface (15a) and surrounding the first lens surface (13), and a second lens surface (12) on the opposite side of the first lens surface (13). The second lens component (20) is coupled to the first lens component (10) at part of the first surface surrounded by the ring surface (17a). The ring surface (17a) is positioned on a portion of the first lens component protruding from a joint portion (14) between the first lens surface (13) and the peripheral surface (15a) in a first direction from the second lens surface (20) to the first lens surface (10) along an optical axis of the first lens component (10) and is exposed out of the second lens component (20).
Abstract:
An image signal processing circuit, comprising: a first memory part; a second memory part; and a control circuit which controls the first memory part and the second memory part, wherein the image signal processing circuit is constituted so that image signals outputted from one of the first memory part and the second memory part are inputted into the other of the first memory part and second memory part; and wherein the control circuit is a circuit which controls the first memory part so that image signals are outputted in inverse order from the first memory part to inputted order into the first memory part, and controls the second memory part so that image signals are outputted in inverse order of lines composed of image signals from the second memory part to inputted order of lines composed of image signals into the second memory part.
Abstract:
The present invention is directed to a video signal switching apparatus having editing function to select an arbitrary video signal from plural video signals or carry out synthesis thereof, which allows an operation unit to be of modular configuration every respective functions to electrically connect adjacent modules of panel modules (22A to 22D) which serve as respective operation modules to each other by relay bases (23), (24) to carry out transmission of signals between both modules, and to allow connection between the panel modules (22A to 22D) and the relay bases (23), (24) to be connector connection to thereby have ability to freely change layout of the panel modules (22B to 22D) of division size in which 19 inches rack size is fundamental in accordance with fondness of operator.
Abstract:
A composite optical device 1 includes a first optical section 10 having an optical functional surface 11 and a second optical section 20 bonded to the first optical section 10 on the optical functional surface 11. The optical functional surface 11 includes a smooth part 13 and a concave-convex part 12 adjacent to each other, and is constructed so that a position P2, along a normal direction of the smooth part 13, of a concave bottom of the concave-convex part 12 can be closer to the center of the first optical section 10 than a position P1 along the normal direction of an end of the smooth part 13 on a side of the concave-convex part 12 in a boundary vicinity portion NR between the smooth part 13 and the concave-convex part 12.
Abstract:
A touch panel has an optically transparent upper board having an upper conductive layer formed on its lower face, an optically transparent lower board having a lower conductive layer, which is formed on its upper face and faces to the upper conductive layer with a predetermined gap in between, a pair of upper electrodes extending along an outer periphery of the upper conductive layer and having an upper electrode lead, a pair of lower electrodes extending along an outer periphery of the lower conductive layer and having a lower electrode lead, and a slit in a predetermined shape formed at the upper conductive layer and the lower conductive layer. One of the pair of upper electrodes is formed along a side of the upper conductive layer, and the other of the pair of upper electrodes is formed in substantially U shape surrounding whole periphery excluding the upper electrode lead. One of the pair of lower electrodes is formed in a direction orthogonal to the side of the upper conductive layer, and the other of the pair of lower electrodes is formed in substantially U shape surrounding whole periphery excluding the lower electrode lead.
Abstract:
A television broadcast receiving apparatus which displays one of television programs received by two tuners on a main picture screen and displays the other on a child picture screen, where one of audios of a program of the main picture screen and a program of the child picture screen is selected and outputted, and the state of an audio signal to be outputted is switched according to the audio state of the program of the child picture screen.
Abstract:
A paper transporting felt includes a base layer, a first batt layer formed on a wet paper side surface of the base layer, a second batt layer formed on a roll side surface or a shoe side surface of the base layer, and a wet paper contacting fibrous layer formed on a wet paper side surface of the first batt layer so as to come into direct contact with a wet paper. The wet paper contacting fibrous layer is made of modified cross-section fibers.
Abstract:
A piezoelectric resonator includes; a lower electrode 24 formed on a substrate 11; a piezoelectric film 23 formed on the lower electrode 24; an upper electrode 25 formed on the piezoelectric film 23 and obtaining, in collaboration with the lower electrode 24, a signal having a predetermined resonance frequency by a propagation of a bulk acoustic wave inside the piezoelectric film 23; and an acoustic multilayer reflective film 28 including an SiO2 film 28a having a predetermined acoustic impedance and an AIN film 28b having an acoustic impedance higher than the SiO2 film 28a, and reflecting the bulk acoustic wave, the SiO2 film 28a and the AIN film 28b being alternately stacked on the upper electrode 25, and the SiO2 film 28a being in contact with the upper electrode 25.