Abstract:
A solid pickup apparatus comprises a photo sensitive portion comprising photosensitive means and photosensitive transfer means for receiving a light including image information and generating respectively first signal charges and second signal charges therein corresponding to the image informations, the photosensitive transfer means mutually transferring the first and second signal charges, gate means for controlling the flow of said first signal charges of said photosensitive means to said photosensitive transfer means under transfer device control, drive control means for controlling the transference of the first and second signal charges in said photosensitive transfer means, and color filters covering the photosensitive portion. An electronic still camera comprises a solid pickup element having color filters for picking up an image of an object to generate color image signals in facial sequence, recording means for recording the color image signals in recording areas corresponding to the respective color image signals in accordance with the facial sequence, and playback means for simultaneously playing back color image signals recorded in the respective recording areas of the recording means.
Abstract:
A solid pickup apparatus comprises a photo sensitive portion comprising photosensitive means and photosensitive transfer means for receiving a light including image information and generating respectively first signal charges and second signal charges therein corresponding to the image informations, the photosensitive transfer means mutually transferring the first and second signal charges, gate means for controlling the flow of said first signal charges of said photosensitive means to said photosensitive transfer means under transfer device control, drive control means for controlling the transference of the first and second signal charges in said photosensitive transfer means, and color filters covering the photosensitive portion. An electronic still camera comprises a solid pickup element having color filters for picking up an image of an object to generate color image signals in facial sequence, recording means for recording the color image signals in recording areas corresponding to the respective color image signals in accordance with the facial sequence, and playback means for simultaneously playing back color image signals recorded in the respective recording areas of the recording means.
Abstract:
A color solid-state image pickup device includes a plurality of photoelectric conversion areas provided in an array pattern on a surface of a semiconductor substrate. The inside of each of photoelectric conversion areas 10 is two-dimensionally partitioned into a plurality of segments R, G1, G2, and B which output a plurality of photoelectric conversion signals of different spectral sensitivities. As a result, occurrence of a false signal and a false color is suppressed, and high-sensitivity, high-resolution image data having superior color reproducibility can be obtained.
Abstract:
A solid state image pickup device comprises: a semiconductor substrate defining a two-dimensional surface; a number of photoelectric conversion elements disposed in a light receiving area of the semiconductor substrate in a matrix shape and in a plurality of rows and columns; signal processors, each formed for each column of the photoelectric conversion elements, the signal processor at least converting analog image data from the photoelectric conversion elements into digital image data; and a non-volatile memory formed in correspondence with respective photoelectric conversion elements at a succeeding stage of the signal processor, the non-volatile memory recording the digital image data.
Abstract:
A solid-state imaging device including a photoelectric conversion portion and a charge transfer portion equipped with charge transfer electrodes to transfer the charge generated in the photoelectric conversion portion, wherein the charge transfer portion is provided with a charge transfer electrodes having a first electrode including a first layer electric conductive film, and a second electrode having a second layer electric conductive film provided contiguously to the first electrode with an electrode insulating film therebetween, and the first electrode is coated with a silicon oxide film that is the electrode insulating film formed by side wall oxidation in the state that the upside is coated with an antioxidizing film so as to coat the side wall.
Abstract:
A solid-state imaging device including a photoelectric conversion portion and a charge transfer portion equipped with charge transfer electrodes to transfer the charge generated in the photoelectric conversion portion, wherein the charge transfer portion is provided with a charge transfer electrodes having a first electrode including a first layer electric conductive film, and a second electrode having a second layer electric conductive film provided contiguously to the first electrode with an electrode insulating film therebetween, and the first electrode is coated with a silicon oxide film that is the electrode insulating film formed by side wall oxidation in the state that the upside is coated with an antioxidizing film so as to coat the side wall.
Abstract:
A solid state image pickup device is provided which performs a new form of image signal reading operation. The image pickup deice comprises a semiconductor substrate and a plurality of pixels that are formed on the semiconductor substrate, with each pixel having a photodetection element, which generates signal charges upon receiving incident light, a first MOS transistor structure, which has a first floating gate that is disposed above the semiconductor substrate and a first control gate that is capacitively coupled to the first floating gate, and a second MOS transistor structure, which has a second floating gate that is disposed above the semiconductor substrate and is electrically connected to the first floating gate and a second control gate that is capacitively coupled to the second floating gate.
Abstract:
In a complementary insulated-gate field effect transistor including insulated-gate field effect transistors of p-channel and n-channel types, a portion of the insulating material layer to be used to form the n-channel transistor is formed to be thicker than a portion thereof to be used to form the p-channel transistor, and a portion of the electrode material layer to be used to constitute the p-channel transistor is formed to be longer along the channel than a portion thereof to be used to constitute the n-channel transistor. This prevents the threshold voltage in the n-channel and p-channel transistors from scattering widely. Alternatively, the ion peak concentration of the ions implanted in the semiconductor substrate and the insulating material layer is located in the proximity of the boundary between the insulating material layer and the semiconductor substrate in the portion to be used to constitute the n-channel transistor, and is located in the semiconductor substrate apart from the insulating material layer in the portion to be used to constitute the p-channel transistor. This also enables the threshold voltage in the n-channel and p-channel transistors to be precisely controlled in the manufacturing processes.
Abstract:
A computed tomographic (CT) system includes a gantry having a rotating part including a light source, a light source drive control circuit, a rechargeable battery, and a rotating part interface. The gantry includes a detector, a detector control and signal processing circuit, and an image memory. The rotating part may rotate around a central axis. The CT system includes a gantry table on which the gantry is mounted and which includes a host interface. The CT system includes a motor that may cause the gantry to move within a gantry moving range, and a control unit that may process and display image data obtained from the gantry. The rotating part interface may face the host interface, such that the rotating part and host interfaces are configured to be electrically connected with each other, based on the gantry being at a predetermined position within the gantry moving range.
Abstract:
A color solid-state image pickup device comprises a plurality of light-receiving sections being arranged on the surface of a semiconductor substrate; complementary color filters which are stacked on all or portions of the plurality of light-receiving sections, each complementary color filter blocking incident light of one color of the three primary colors, to thereby permit transmission of incident light of remaining two colors; at least first and second color signal detecting layers which have the complementary color filters stacked thereon and are formed so as to be separated in a depthwise direction of the light-receiving section, the first and second signal detecting layers detecting a respective color signal of the light of two colors having passed through the complementary color filters; and a signal reading unit for reading the respective color signals in a distinguished manner, the signal reading unit being connected to the respective color signal detecting layers.