Abstract:
An image signal producing part (11) produces an image signal of variable-frame-rate picked-up image. A signal production control part (24) drives the image signal producing part (11) and produces an image pickup setting information (IF) for producing an image signal frame-synchronized with an image signal (DVd) produced by the image signal producing part (11). The image pickup setting information (IF) is inserted into the produced image signal (DVd) and then outputted. When receiving image pickup setting information (IFex), the signal production control part (24) controls, based on the image pickup setting information (IFex), the operation of the image signal producing part (11) such that the image signal to be produced is frame synchronized with an image signal of a reference variable-frame-rate picked-up image of the source of the image pickup setting information (IFex). When a plurality of image pickup apparatuses capable of varying their frame rates are used, then their image signals can be frame synchronized.
Abstract:
An image signal generation portion 11 generates an image signal of a variable frame-rate picked-up image. A signal generation control portion 24 drives the image signal generation portion 11 and generates image pick-up setting information IF to generate an image signal that is frame-synchronized with a generated image signal DVd. The generated image signal DVd is output in condition where the image pick-up setting information IF is inserted in it. When supplied with image pick-up setting information IFex, the signal generation control portion 24 controls the driving operations of the image signal generation portion 11 based on the image pick-up setting information IFex, to frame-synchronize the generated image signal with an image signal of a reference variable frame-rate picked-up image of a source that has supplied the image pick-up setting information IFex. If a plurality of image pick-up devices capable of varying a frame rate is used, the image signals can be frame-synchronized with each other.
Abstract:
A color image pickup device is provided for controlling an exposure so that the main objects keeps its brightness proper independently of the background brightness, for producing an imaging output having excellent image quality secured therein. An integrator 62C integrates and detects the imaging output level of a specific luminance level area inside of the imaged screen, the area specified by an area generated 63C, based on a color imaging output signal produced by a color image pickup unit provided with light quantity control means. The integrator 62D integrates and detects the imaging output level of a skin tone area inside of the imaged screen specified by an area generator 63D based on the color imaging output signal. Then, a iris controller 65 provides an iris control unit 60 for controlling the light quantity control means of the color image pickup unit based on each of the detected outputs.
Abstract:
An image signal generation portion 11 generates an image signal of a variable frame-rate picked-up image. A signal generation control portion 24 drives the image signal generation portion 11 and generates image pick-up setting information IF to generate an image signal that is frame-synchronized with a generated image signal DVd. The generated image signal DVd is output in condition where the image pick-up setting information IF is inserted in it. When supplied with image pick-up setting information IFex, the signal generation control portion 24 controls the driving operations of the image signal generation portion 11 based on the image pick-up setting information IFex, to frame-synchronize the generated image signal with an image signal of a reference variable frame-rate picked-up image of a source that has supplied the image pick-up setting information IFex. If a plurality of image pick-up devices capable of varying a frame rate is used, the image signals can be frame-synchronized with each other.
Abstract:
An image signal generation portion 11 generates an image signal of a variable frame-rate picked-up image. A signal generation control portion 24 drives the image signal generation portion 11 and generates image pick-up setting information IF to generate an image signal that is frame-synchronized with a generated image signal DVd. The generated image signal DVd is output in condition where the image pick-up setting information IF is inserted in it. When supplied with image pick-up setting information IFex, the signal generation control portion 24 controls the driving operations of the image signal generation portion 11 based on the image pick-up setting information IFex, to frame-synchronize the generated image signal with an image signal of a reference variable frame-rate picked-up image of a source that has supplied the image pick-up setting information IFex. If a plurality of image pick-up devices capable of varying a frame rate is used, the image signals can be frame-synchronized with each other.
Abstract:
An image signal producing part (11) produces an image signal of variable-fra me- rate picked-up image. A signal production control part (24) drives the image signal producing part (11) and produces an image pickup setting information (IF) for producing an image signal frame-synchronized with an image signal (DVd) produced by the image signal producing part (11). The image pickup setting information (IF) is inserted into the produced image signal (DVd) an d then outputted. When receiving image pickup setting information (IFex), the signal production control part (24) controls, based on the image pickup setting information (IFex), the operation of the image signal producing part (11) such that the image signal to be produced is frame synchronized with an image signal of a reference variable-frame-rate picked-up image of the sourc e of the image pickup setting information (IFex). When a plurality of image pickup apparatuses capable of varying their frame rates are used, then their image signals can be frame synchronized.
Abstract:
An image signal generation portion 11 generates an image signal of a variable frame-rate picked-up image. A signal generation control portion 24 drives the image signal generation portion 11 and generates image pick-up setting information IF to generate an image signal that is frame-synchronized with a generated image signal DVd. The generated image signal DVd is output in condition where the image pick-up setting information IF is inserted in it. When supplied with image pick-up setting information IFex, the signal generation control portion 24 controls the driving operations of the image signal generation portion 11 based on the image pick-up setting information IFex, to frame-synchronize the generated image signal with an image signal of a reference variable frame-rate picked-up image of a source that has supplied the image pick-up setting information IFex. If a plurality of image pick-up devices capable of varying a frame rate is used, the image signals can be frame-synchronized with each other.
Abstract:
An image signal generation portion 11 generates an image signal of a variable frame-rate picked-up image. A signal generation control portion 24 drives the image signal generation portion 11 and generates image pick-up setting information IF to generate an image signal that is frame-synchronized with a generated image signal DVd. The generated image signal DVd is output in condition where the image pick-up setting information IF is inserted in it. When supplied with image pick-up setting information IFex, the signal generation control portion 24 controls the driving operations of the image signal generation portion 11 based on the image pick-up setting information IFex, to frame-synchronize the generated image signal with an image signal of a reference variable frame-rate picked-up image of a source that has supplied the image pick-up setting information IFex. If a plurality of image pick-up devices capable of varying a frame rate is used, the image signals can be frame-synchronized with each other.
Abstract:
A color image pickup device is provided for controlling an exposure so that the main objects keeps its brightness proper independently of the background brightness, for producing an imaging output having excellent image quality secured therein. An integrator 62C integrates and detects the imaging output level of a specific luminance level area inside of the imaged screen, the area specified by an area generated 63C, based on a color imaging output signal produced by a color image pickup unit provided with light quantity control means. The integrator 62D integrates and detects the imaging output level of a skin tone area inside of the imaged screen specified by an area generator 63D based on the color imaging output signal. Then, a iris controller 65 provides an iris control unit 60 for controlling the light quantity control means of the color image pickup unit based on each of the detected outputs.