Abstract:
A television signal receiver is connected to a plurality of recording apparatuses, and controls each of the plurality of recording apparatuses so as to record program data received by the television signal receiver. The television signal receiver includes an input unit for inputting program data, an identification unit for identifying a group to which the program data inputted by the input unit belongs, a selection unit for selecting a recording apparatus from among the plurality of recording apparatuses in accordance with the group identified by the identification unit, and an output unit for outputting the program data to the recording apparatus selected by the selection unit.
Abstract:
An electronic component of an embodiment of the present invention comprises a first piezoelectric thin film resonator and a second piezoelectric thin film resonator. The first piezoelectric thin film resonator and second piezoelectric thin film resonator are a piezoelectric thin film resonator that has a structure in which a piezoelectric thin film is interposed between a lower electrode and an upper electrode, that is constituted in an area where the lower electrode, piezoelectric thin film, and upper electrode overlap each other, and that obtains a signal with a predetermined resonance frequency by bulk waves propagating inside the piezoelectric thin film. The interval between a part of a periphery of the first piezoelectric thin film resonator and a part of a periphery of the second piezoelectric thin film resonator that face each other is not constant.
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:
[Problem to be solved] To provide a paper machine that can recover function of a belt being deteriorated in wet paper peeling performance while running the conveying belt without stopping the paper machine operation, and also can suitably modify or recondition the belt surface roughness according to operative condition of the paper machine, and to provide a method to recondition the paper conveying belt using such a paper machine. [Solving Means] Providing a press device having a pair of paper conveying endless belt and a polishing device disposed on a return side of the paper conveying belt having a polisher to polish a wet paper contacting face of the paper conveying belt, which are arranged in such a way that the polisher polishes the wet paper contacting face of the paper conveying belt to enhance wet paper peeling performance that has been deteriorated by means of controlling the surface smoothness, or to enable to modify or recondition suitably the surface roughness of the belt according to the operative condition of the paper machine.
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 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 layer is formed of a flexible resin material.
Abstract:
An SAW element 11 comprises a first wiring section 20 formed between an input terminal 18 and an output terminal 19, a plurality of first SAW resonators 15 which are located in serial to the first wiring section 20, a plurality of second SAW resonators 16 which are located in serial to the first wiring section 20 at the side of the input terminal 18 or at the side of the output terminal 19 with respect to the first SAW resonators 15, a plurality of second wiring section 22 which are formed between an intermediate point of the second SAW resonators 16 each other in the first wiring section 20 and a reference voltage electrode 21, and a plurality of third SAW resonators 17 which are located in the second wiring section 22, respectively, and which have anti-resonant frequencies corresponding with resonant frequencies of the second SAW resonators 16.
Abstract:
A piezoelectric resonator according to an embodiment of the present invention is a piezoelectric resonator for obtaining a signal of a predetermined resonance frequency from a bulk acoustic wave propagating inside a piezoelectric film. This piezoelectric resonator has a plurality of transducers stacked in a predetermined direction, and a propagation area of the bulk acoustic wave varies in a propagation direction of the bulk acoustic wave.
Abstract:
An image processing apparatus performs image processes corresponding to input signals of multiple types. The image processing apparatus includes a luminance correcting unit that performs correction process on input signal so as to correct for display luminance. The luminance correcting unit changes the correction process corresponding to the type of the input signal.
Abstract:
A film bulk acoustic resonator of the present invention includes an upper electrode 104, a lower electrode 102, and a piezoelectric film 103 as well as an acoustic multilayer 120 that are provided between the upper electrode 104 and the lower electrode 102. Thus, a distance between the upper electrode 104 and the lower electrode 102 is extended by a thickness of the acoustic multilayer 120, and electrostatic capacitance between the upper electrode 104 and the lower electrode 102 per unit area can be reduced accordingly. Therefore, an electrode area can be increased as compared to when there is no acoustic multilayer 120, and an influence of grains of a piezoelectric material can be reduced.
Abstract:
A method for manufacturing a piezo-resonator including: a first step of forming an upper electrode layer 20 on the piezoelectric film 14, a second step of coating the upper electrode layer 20 with a resist 21 and of performing patterning on the resist so as to have a shape of the upper electrode, a third step of masking the patterned resist 21 and removing the upper electrode layer 20 other than masked portions and forming two or more first upper electrodes 15a, a fourth step of removing the resist 21, a fifth step of coating the first upper electrodes 15a with a resist and performing patterning on the resist so that the first upper electrodes 15a are partially exposed, a sixth step of etching each of the exposed first upper electrodes 15a by a specified thickness to form a second upper electrode 15b, and a seventh step of removing the resist 22.