Takashi Mizuno
Takashi Mizuno, Tokyo JP
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20100146282 | DYNAMIC IMAGE CONTENT TAMPER DETECTING DEVICE AND SYSTEM - Regularity information such as time codes embedded preliminarily through an electronic watermark is detected from a predetermined number of pieces of continuous frame data of video content through the electronic watermark. In the case where the electronic watermark is not detected from the predetermined number of pieces of continuous frame data, a non-detection count is calculated, and falsification of the predetermined number of pieces of frame data is determined on the basis of the detected regularity information and the non-detection count. Accordingly, falsification such as deletion, addition, and replacement of video content is detected with high accuracy using the electronic watermark. | 06-10-2010 |
20100289920 | IMAGE CAPTURING APPARATUS AND CONTROL METHOD THEREFOR - An image capturing apparatus and a control method therefor provide privacy protection by obtaining the current location of the image capturing apparatus and determining whether or not the current location is within a preset location information addition-inhibited area. If the image capturing apparatus is within a location information addition-inhibited area, the image capturing apparatus and control method therefor do not add location information to captured image data. | 11-18-2010 |
20110103696 | IMAGE DISTRIBUTION APPARATUS AND IMAGE DISTRIBUTION METHOD - The present invention enables image distribution while maintaining privacy, using a simple configuration. An image distribution apparatus which distributes image data to which location information has been added stores information specifying an inhibited area concerning the location information and determines whether or not a location indicated by the location information added to the image data to be distributed falls within the stored inhibited area. If it is determined that the location indicated by the location information falls within the inhibited area, the image distribution apparatus distributes the image data by deleting the location information from the image data to be distributed. On the other hand, if it is determined that the location indicated by the location information falls outside the inhibited area, the image distribution apparatus distributes the image data with the location information added. | 05-05-2011 |
20120057844 | IMAGING APPARATUS AND CONTROL METHOD FOR THE SAME, SHOOTING CONTROL APPARATUS, AND SHOOTING CONTROL METHOD - An imaging apparatus includes a shooting rate setting unit configured to set a shooting rate, a shooting unit configured to shoot a moving image at the shooting rate set by the shooting rate setting unit, an acquisition unit configured to acquire a shooting duration time from a start of shooting, a calculation unit configured to calculate a playback time based on a playback rate in a case of playing back the moving image shot by the shooting unit, and a display control unit configured to display the shooting duration time acquired by the acquisition unit and the playback time calculated by the calculation unit together on a display unit while the shooting is conducted by the shooting unit. | 03-08-2012 |
20130136413 | PLAYBACK APPARATUS, CONTROL METHOD AND RECORDING MEDIUM - A playback apparatus obtains section information, which is included in obtained moving image data, and includes a shooting frame rate, information required to identify a start frame, and information of a range of an elapsed time from a shooting start timing for each section having the same shooting frame rate. When a playback position of the moving image data is specified using an elapsed time from the shooting start timing, the playback apparatus determines a section including the playback position using pieces of section information of respective sections. Then, the playback apparatus identifies a playback frame corresponding to the playback position from information of a range of an elapsed time of the determined section, a shooting frame rate of that section, information required to identify a start frame of that section, and the playback position. | 05-30-2013 |
20130294741 | IMAGING APPARATUS AND CONTROL METHOD FOR THE SAME, SHOOTING CONTROL APPARATUS, AND SHOOTING CONTROL METHOD - An imaging apparatus includes a shooting rate setting unit configured to set a shooting rate, a shooting unit configured to shoot a moving image at the shooting rate set by the shooting rate setting unit, an acquisition unit configured to acquire a shooting duration time from a start of shooting, a calculation unit configured to calculate a playback time based on a playback rate in a case of playing back the moving image shot by the shooting unit, and a display control unit configured to display the shooting duration time acquired by the acquisition unit and the playback time calculated by the calculation unit together on a display unit while the shooting is conducted by the shooting unit. | 11-07-2013 |
20130301956 | IMAGE DISTRIBUTION APPARATUS AND IMAGE DISTRIBUTION METHOD - The present invention enables image distribution while maintaining privacy, using a simple configuration. An image distribution apparatus which distributes image data to which location information has been added stores information specifying an inhibited area concerning the location information and determines whether or not a location indicated by the location information added to the image data to be distributed falls within the stored inhibited area. If it is determined that the location indicated by the location information falls within the inhibited area, the image distribution apparatus distributes the image data by deleting the location information from the image data to be distributed. On the other hand, if it is determined that the location indicated by the location information falls outside the inhibited area, the image distribution apparatus distributes the image data with the location information added. | 11-14-2013 |
20140055138 | NMR Detection Module - An NMR (nuclear magnetic resonance) detection module (such as an NMR probe) mounted in a vacuum vessel permits a transmit/receive coil to be cooled efficiently and to be placed closer to a sample container. The NMR detection module includes a core module (detection module) ( | 02-27-2014 |
20140055139 | NMR Detection Probe - A cooled NMR detection probe including a detection coil and an internal structure ( | 02-27-2014 |
20150116524 | IMAGE CAPTURING APPARATUS, TERMINAL APPARATUS, CONTROL METHOD FOR THE SAME, AND SYSTEM - A system in which an image capturing apparatus is externally operated by a terminal apparatus, the terminal apparatus comprises a unit which instructs the image capturing apparatus to start image capture processing, a unit which receives a first image acquired by the image capturing apparatus, a unit which acquires a second image by executing image capture processing for an object in response to the instruction, and a unit which records the first image and the second image in association with each other, and the image capturing apparatus comprises a unit which acquires the instruction for starting the image capture processing from the terminal apparatus, a unit which acquires the first image, and a unit which transmits the first image to the terminal apparatus. | 04-30-2015 |
Takashi Mizuno, Kyoto JP
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20100321018 | High-Resolution NMR Probe - A high-resolution NMR probe is offered which is simple in structure and can be fabricated at low cost. The inside of the probe is maintained in a vacuum to adiabatically isolate the inside from the outside. Liquid helium is sent into a first heat exchanger located immediately close to a measurement portion via the innermost region of a triple tube placed in the vacuum. The helium is evaporated in the exchanger to cool a transmit-receive coil and a variable capacitor. The evaporated helium gas is returned via the outermost region of the triple tube. At this time, a radiation shield placed in the vacuum is cooled by a second heat exchanger placed in the return path. | 12-23-2010 |
20110080171 | Method and Apparatus for Accurately Adjusting Magic Angle in NMR - Method and apparatus for accurately adjusting the magic angle in NMR. The NMR probe has a uniform magnetic field coil assembly disposed to produce a uniform magnetic field H. The uniform magnetic field H is produced by controlling the currents flowing through the uniform magnetic field coil assembly. The vector sum of the external field B | 04-07-2011 |
Takashi Mizuno, Aichi JP
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20110052742 | MOLD CLAMPING APPARATUS - There is provided a mold clamping apparatus that can prevent a molding material from spouting from a split surface of a mold even if in-cavity resin pressure causes offset of a mold opening force, and can extend the life of the mold. The mold clamping apparatus includes a control device that estimates a mold opening force by mold internal pressure for molding with mold internal pressure being asymmetrical with respect to a center of a mold block, determines a mold clamping hydraulic value applied to each time bar correspondingly to the estimated mold opening force, and distributes hydraulic pressure supplied to each tie bar so that the determined mold clamping hydraulic value is reached. | 03-03-2011 |
Takashi Mizuno, Yokohama-Shi JP
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20100305861 | SYSTEMS AND METHODS TO PROCESS OILFIELD DATA - Systems and methods to process oilfield data are disclosed. An example system for processing oilfield data includes a first computer comprising a first processor and first memory and a second computer coupled to the first computer, the second computer having a second processor and a second memory. The example second processor has a faster processing speed than the first processor and the first memory stores an amount of oilfield data larger than the second memory and instructions for: receiving the oilfield data at the first computer, processing the oilfield data at the first computer to generate second data, transmitting at least a portion of the second data to the second computer for processing performed by the second computer, wherein the processing performed by the second computer has a higher computational load than the processing performed by the first computer, and receiving data resulting from the processing by the second computer. | 12-02-2010 |
Takashi Mizuno, Shizuoka JP
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20100053316 | OPHTHALMIC PHOTOGRAPHY APPARATUS - There is provided a photographic stop unit ( | 03-04-2010 |
Takashi Mizuno, Miyagi JP
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20110183452 | SEMICONDUCTOR LIGHT EMITTING DEVICE, ITS MANUFACTURING METHOD, SEMICONDUCTOR DEVICE AND ITS MANUFACTURING METHOD - A method of manufacturing a semiconductor light emitting device made of nitride III-V compound semiconductors is includes an active layer made of a first nitride III-V compound semiconductor containing In and Ga, such as InGaN; an intermediate layer made of a second nitride III-V compound semiconductor containing In and Ga and different from the first nitride III-V compound semiconductor, such as InGaN; and a cap layer made of a third nitride III-V compound semiconductor containing Al and Ga, such as p-type AlGaN, which are deposited in sequential contact. | 07-28-2011 |
20130230936 | SEMICONDUCTOR LIGHT EMITTING DEVICE, ITS MANUFACTURING METHOD, SEMICONDUCTOR DEVICE AND ITS MANUFACTURING METHOD - A semiconductor light emitting device made of nitride III-V compound semiconductors including an active layer made of a first nitride III-V compound semiconductor containing In and Ga, such as InGaN; an intermediate layer made of a second nitride III-V compound semiconductor containing In and Ga and different from the first nitride III-V compound semiconductor, such as InGaN; and a cap layer made of a third nitride III-V compound semiconductor containing Al and Ga, such as p-type AlGaN, which are deposited in sequential contact. | 09-05-2013 |
Takashi Mizuno, Kyoto-Shi JP
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20110187371 | Transmit-Receive Switching Circuit for NMR Spectrometer and NMR Spectrometer Incorporating Same - A transmit-receive switching circuit is offered which is for use in an NMR spectrometer that employs a solid-state NMR probe using a cooled detection coil. The switching circuit is cryogenically cooled to reduce thermal noise in use. The switching circuit has a first terminal for applying high-power RF pulses sent in from the power amplifier of the NMR spectrometer, a second terminal for sending the RF pulses applied from the first terminal to the NMR detector via crossed-diodes and for receiving and entering a low-power NMR signal detected by the NMR detector, and a third terminal for sending the NMR signal entered from the second terminal toward a preamplifier. Plural stages of shunts are connected to the transmission line connecting the second and third terminals such that one stage of shunt corresponds to a 90° phase shift in the RF radiation. | 08-04-2011 |
20130088232 | Solid-State NMR Spectrometer, Sample Holder Therefor, and Method of Solid-State NMR Spectroscopy - A high-resolution solid-state NMR spectrometer which can measure a disklike sample. The spectrometer includes: a stator having an air bearing disposed within the static magnetic field, the rotor being disposed in the stator; and an engaging mechanism mounted in a one-end portion of the rotor and detachably holding a sample holder that holds the disklike sample. | 04-11-2013 |
Takashi Mizuno, Toyohashi-Shi JP
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20110188961 | BLIND RIVET - A mandrel has an anti-dropping-off portion that is formed between a head and a breakable portion thereof. In the anti-dropping-off portion, a plurality of latching ridges is formed which have peaks that protrude outwardly in the radial direction and frictionally engage with the inner wall surface of a sleeve. The latching ridges are formed in the outer surface of the portion of the mandrel that is between the head and breakable portion thereof, so as to be diagonal relative to the circumferential direction of the outer surface of the mandrel and to cross each other, with the peaks thereof formed in a twill pattern protruding out from the outer surface of that mandrel portion. | 08-04-2011 |
Takashi Mizuno, Konan-Shi JP
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20160122610 | THERMAL CONDUCTIVE ELECTROMAGNETIC WAVE ABSORBING SHEET - A thermal conductive electromagnetic wave absorbing sheet to be provided includes: a polymer including acrylate ester as a monomer; a metal magnetic oxide; and flame retardant filler subjected to surface treatment. The metal magnetic oxide includes a small-diameter metal magnetic oxide with an average particle diameter of 1 to 10 μm and a large-diameter metal magnetic oxide with an average particle diameter of 50 to 100 μm. A mixing ratio between the small-diameter metal magnetic oxide and the large-diameter metal magnetic oxide is in a range of 9:13 to 15:7 in volume ratio. The small-diameter metal magnetic oxide and the large-diameter metal magnetic oxide are contained by 55 to 60 vol % in total in the entire thermal conductive electromagnetic wave absorbing sheet. The flame retardant filler subjected to the surface treatment is contained by 8 to 10 vol % in the entire thermal conductive electromagnetic wave absorbing sheet. | 05-05-2016 |