Yoshiyuki Okuda
Yoshiyuki Okuda, Tsurugashima-Shi JP
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20080290254 | IMAGING APPARATUS HAVING ELECTRON SOURCE ARRAY - An imaging apparatus includes an electron emission array having electron sources arranged in matrix form and having a plurality of horizontal scan lines, a photoelectric conversion film opposed to the electron emission array, and a control and drive circuit configured to select one or more of the horizontal scan lines in a given video signal output period and to cause the electron sources included in the selected one or more horizontal scan lines to emit electrons toward the photoelectric conversion film to produce a video signal, wherein the control and drive circuit is configured to cause the electron sources included in unselected one or more horizontal scan lines not selected in the given video signal output period to emit electrons toward the photoelectric conversion film in a blanking period immediately preceding the given video signal output period. | 11-27-2008 |
20080291307 | IMAGING APPARATUS HAVING ELECTRON SOURCE ARRAY - An imaging apparatus includes an electron emission array having electron sources arranged in matrix form, a photoelectric conversion film opposed to the electron emission array, and a control and drive circuit configured to select one or more horizontal scan lines in a given video signal output period and to cause the electron sources included in the selected one or more horizontal scan lines to emit electrons toward the photoelectric conversion film, wherein the control and drive circuit is further configured to cause the electron sources included in the selected one or more horizontal scan lines to emit electrons toward the photoelectric conversion film in any one or more blanking periods excluding both a blanking period immediately following the given video signal output period and a blanking period immediately preceding a next video signal output period in which the one or more horizontal scan lines will be selected next time. | 11-27-2008 |
20080291308 | IMAGING APPARATUS HAVING ELECTRON SOURCE ARRAY - An imaging apparatus includes an electron emission array having electron sources arranged in matrix form and having a plurality of horizontal scan lines, a photoelectric conversion film opposed to the electron emission array, and a control and drive circuit configured to select one or more of the horizontal scan lines in a given video signal output period and to cause the electron sources included in the selected one or more horizontal scan lines to emit electrons toward the photoelectric conversion film to produce a video signal, wherein the control and drive circuit is configured to control electron emission of the electron emission array in a blanking period in response to a signal level of the video signal produced in the given video signal output period. | 11-27-2008 |
20100025568 | IMAGE SENSING DEVICE - A device includes an electron emission source array including a plurality of electron emission sources, a photoelectric conversion film disposed to face the electron emission source array, and an intermediate electrode provided between the electron emission source array and the photoelectric conversion film, and an intermediate electrode current detector that applies a positive potential, relative to a potential of the electron emission source array, to the intermediate electrode and detects a current flowing in the intermediate electrode. | 02-04-2010 |
Yoshiyuki Okuda, Saitama JP
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20080211401 | Electron Emission Device And Manufacturing Method Of The Same - An electron emission device including a lower electrode on a near side to a substrate and an upper electrode on a far side to the substrate and an insulator layer and an electron supply layer stacked between the lower electrode and the upper electrode and emitting an electron from the upper electrode side at the time of applying a voltage between the lower electrode and the upper electrode, which includes an electron emission part provided with an opening formed by an inner wall of a stepped shape in which a thickness of the insulator layer decreases stepwise; and a carbon-containing carbon region which is connected to the upper electrode side and which is brought into contact with the insulator layer and the electron supply layer. | 09-04-2008 |
20090284129 | Electron Emitting Device, Display Apparatus Using Electron Emitting Device, and Method of Manufacturing Electron Emitting Device - [PROBLEMS] To provide an electron emitting layer with improved efficiency of electron emission and prevented damage of the device. | 11-19-2009 |
Yoshiyuki Okuda, Kofu-Shi JP
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20110278435 | IMAGE SENSOR APPARATUS - An image sensor comprises a photoelectric-conversion-film current detector which detects a photoelectric conversion film current produced by combination of holes generated in a photoelectric conversion film with electrons supplied from an electron supplying source array to the photoelectric conversion film; a plurality of integrators which sequentially perform temporal integration on the photoelectric conversion film current during respective corresponding pixel periods during which electrons are supplied to said pixel areas, so as to generate integral signals; and sampling means which samples the integral signals of the plurality of integrators in each of the pixel periods to generate an image signal. | 11-17-2011 |
Yoshiyuki Okuda, Yamanashi JP
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20110285888 | IMAGE SENSING DEVICE - An image device is provided. The image device includes a photoelectric conversion film current detector, an offset current source, an integrator, and a sampling unit. The photoelectric conversion film current detector is coupled to the photoelectric conversion film through a capacitor and detects photoelectric conversion film current that flows as holes generated in the photoelectric conversion film combine with electrons supplied from the electron supply source array to the photoelectric conversion film. The offset current source generates an offset current and superimposes the offset current on the photoelectric conversion film current. The integrator performs time-integration of the photoelectric conversion film current on which the offset current has been superimposed to generate an integration signal. The sampling unit samples the integration signal in each of respective pixel periods of the pixel regions, in which electrons are supplied to the pixel regions, to generate an image signal. | 11-24-2011 |
Yoshiyuki Okuda, Kai JP
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20120145885 | IMAGING APPARATUS - An imaging apparatus which can provide a uniform magnetic field distribution in an image pickup device and can reduce the size of the device includes an electron emission source array with a plurality of electron emission sources arranged on a plane, and a translucent substrate having an optoelectronic film opposed to the electron emission source array with a space therebetween. The imaging apparatus includes a magnet portion for forming in the space a magnetic field in a direction orthogonal to each principal plane of the translucent substrate and the electron emission source array, and a magnetic force supply portion. The magnetic force supply portion has a magnetic body which is disposed on the light incident side to be opposed to the translucent substrate with a space therebetween and connected to the magnet portion, and an opening which defines an optical path that will not hinder formation of the optical image. | 06-14-2012 |
20120194881 | IMAGE SENSING APPARATUS - The image sensing apparatus includes an intermediate electrode disposed between the electron emission source array and the photoelectric conversion film; an intermediate-electrode current detection portion for detecting an intermediate electrode current flowing in the intermediate electrode when an electron is emitted from the electron emission source array to the photoelectric conversion film; an intermediate current complete integrator for generating an integration signal by performing complete time integration of the intermediate electrode current; and an intermediate-electrode signal generating device for generating an intermediate electrode signal by sampling the integration signal for every pixel period that is a period for supplying electrons to each of the pixel regions. | 08-02-2012 |
Yoshiyuki Okuda, Kanagawa JP
Patent application number | Description | Published |
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20150157194 | ENDOSCOPE - The object lens | 06-11-2015 |