Abstract:
A stereo image pickup unit includes: first and second image pickup apparatuses including first and second image pickup devices and first and second mount boards, the image pickup apparatuses being formed in a same shape each other; and a holding frame for holding the first and second image pickup devices, the first and second mount boards including non-mounting surfaces perpendicular to rear surfaces of the first and second image pickup devices and projecting toward an outer side of projection surfaces of the first and second image pickup devices, the holding frame holding the first and second image pickup apparatuses such that the non-mounting surfaces are opposed to each other on a parallax direction inner side.
Abstract:
An imaging module includes: a chip size package having an image sensor that has a light receiving unit on a front side of the image sensor, the chip size package having connection lands on a back side of the image sensor; a circuit board having connection electrodes being electrically and mechanically connected to the connection lands of the chip size package through bumps; and an underfill material filled into a gap between the chip size package and the circuit board. The circuit board and the underfill material are provided within a projection plane on which the chip size package is projected in an optical axis direction of the image sensor. The circuit board has a cutout portion on a side surface thereof orthogonal to a connection surface of the circuit board with the chip size package such that the cutout portion is open to at least the connection surface.
Abstract:
An image processing apparatus includes an inference part which is capable of inference by using a first inference model for finding of a specific target object and by using a second inference model for discrimination about the specific target object and a control unit to which a first picked-up image obtained under a first image pickup condition and a second picked-up image obtained under a second image pickup condition different from the first image pickup condition can be inputted and which performs control such that in a case where the first picked-up image is inputted, the inference part is caused to execute inference by using the first inference model, and in a case where the second picked-up image is inputted, the inference part is caused to execute inference by using the second inference model.
Abstract:
An image processing apparatus includes a processor including hardware. The processor is configured to: set a first acquisition condition and a second acquisition condition for a video processor configured to acquire a first image that is based on a display-purpose acquisition condition for acquiring an image for display at a frame rate for viewing and a second image that is based on an analysis-purpose acquisition condition for acquiring an image for image analysis at a frame rate that is lower than the frame rate for viewing, in a mixed manner, the first acquisition condition including the display-purpose acquisition condition, the second acquisition condition including the display-purpose acquisition condition and the analysis-purpose acquisition condition; generate support information based on an image analysis result; and control switching between the first acquisition condition and the second acquisition condition according to the image analysis result.
Abstract:
An image pickup unit includes: a metal barrel holding an objective lens; a substrate barrel formed of a circuit formed product having insulation property; an image sensor having a chip size package; plural electrodes formed in a penetrating manner from an inside of a substrate barrel to a proximal end side in an exposed manner, the plural electrodes being electrically connected to an image sensor in the substrate barrel; an electric conductive portion formed on an outer surface of the substrate barrel, having an insulation property with respect to the metal barrel, and having a predetermined creepage distance by which a current such as static electricity can be discharged; a ground electrode electrically connected to the electric conductive portion; and a cable provided with plural wires connected to a ground wire connected to the ground electrode and plural wires connected to the plural electrodes.
Abstract:
An endoscope includes: a first lens located at a distal-most position, a part of the first lens being exposed outside; a movable lens barrel configured to be able to move, and configured to hold a movable lens disposed on a proximal end side with respect to the first lens; an actuator unit including a coil that drives the movable lens barrel and generates heat by receiving a supply of electric power; and a control section that outputs first electric power to the coil when holding the movable lens barrel at a predetermined position, and outputs second electric power larger than the first electric power to the coil when conducting heat generated from the coil to the first lens at the predetermined position.
Abstract:
An image pickup unit includes: a circuit substrate electrically connected with an image pickup device that detects an image of an object, the circuit substrate including a land at least on a surface thereof; a connecting member having conductivity and fixed to the circuit substrate; a wiring connecting portion provided on the connecting member; a substrate connecting portion extended bent from a side portion of the wiring connecting portion, and electrically connected to a land; and a wiring configured to be connected to the wiring connecting portion and electrically connected to the land through the connecting member.
Abstract:
An endoscope system includes: an endoscope having an insertion section adapted to be inserted into a subject; an optical member positioned at a distal end portion; a heating section configured to heat the optical member; a first temperature detector configured to detect first temperature information of the distal end portion; a second temperature detector connected in parallel with the heating section and configured to detect second temperature information of the distal end portion; a control unit configured to control the heating section based on the first temperature information; and an abnormality determination unit configured to determine presence or absence of abnormality in the first temperature detector and the second temperature detector based on the first temperature information and the second temperature information.
Abstract:
A stereo image pickup unit includes a first image pickup device configured to receive a first optical image formed by a first objective optical system, a second image pickup device configured to receive a second optical image formed by a second objective optical system, a single centering glass that is disposed on optical paths of the respective first and second optical images and to which light receiving surfaces of the respective first and second image pickup devices are positioned and fixed through bonding, and a holding frame that holds the first and second image pickup devices through the centering glass.
Abstract:
An endoscope includes: a first lens located at a distal-most position, a part of the first lens being exposed outside; a movable lens barrel configured to be able to move, and configured to hold a movable lens disposed on a proximal end side with respect to the first lens; an actuator unit including a coil that drives the movable lens barrel and generates heat by receiving a supply of electric power; and a control section that outputs first electric power to the coil when holding the movable lens barrel at a predetermined position, and outputs second electric power larger than the first electric power to the coil when conducting heat generated from the coil to the first lens at the predetermined position.