Abstract:
An object distance computing method, applied to an image sensor comprising a plurality of first type pixels. The first type of pixels comprises a first group and a second group of first type pixels. The method comprises: blocking a first part for each pixel for the first group of first type pixels, and blocking a second part for each pixel for the second group of first type pixels; retrieving a first image of an object via a non-blocked part of each pixel for the first group of first type pixels; retrieving a second image of an object via a non-blocked part of each pixel of the second group of first type pixels; combining the first image and the second image to generate a first combined image; and computing first distance information for the object and the image sensor according to a blur level of the first combined image.
Abstract:
An image system comprises a light source, an image sensing device, and a computing apparatus. The light source is configured to illuminate an object comprising at least one portion. The image sensing device is configured to generate a picture comprising an image. The image is produced by the object and comprises at least one part corresponding to the at least one portion of the object. The computing apparatus is configured to determine an intensity value representing the at least one part and to determine at least one distance between the at least one portion and the image sensing device using the intensity value and a dimension of the at least one part of the image.
Abstract:
A method and system provide light to project to an operation space so that a received image from the operation space will include, if an object is in the operation space, a bright region due to the reflection of light by the object, and identify a gesture according to the variation of a barycenter position, an average brightness, or an area of the bright region in successive images, for generating a corresponding command. Only simple operation and calculation is required to detect the motion of an object moving in the X, Y, or Z axis of an image, for identifying a gesture represented by the motion of the object.
Abstract:
A gesture recognition system includes an image capturing device, a memory unit and a processing unit. The image capturing device includes a zoom lens and captures an image frame with a focus length. The memory unit previously saves a lookup table of depths versus sharpness associated with at least one the focus length of the zoom lens. The processing unit is configured to calculate a current sharpness value of at least one object image in the image frame and to obtain a current depth of the object image according to the lookup table.
Abstract:
An image sensing apparatus comprises at least one sensing pixel and a control circuit. The sensing pixel comprises: a charge storing device; a light sensing device, for respectively generating photoelectrons with a first, second amount in a first, second mode; and a switch device, for determining an amount that the photoelectron can be transmitted to the charge storing device according to a control voltage. The control voltage generates the control voltage to control the amount that the photoelectrons can be transmitted to the charge storing device to be a first charge amount in a first mode and to be a second charge amount in a second mode. The first, second charge amounts are smaller than a maximum charge storing amount for the charge storing device.
Abstract:
A CMOS image sensor includes a pixel array unit, a row selection unit, and a logic circuit. The pixel array unit is used for sensing an object. The pixel array unit includes M pixels and P multiplexers and each of the M pixels is electrically connected to one of the P multiplexers, wherein M is a positive integer and P is a positive integer smaller than M. The row selection unit and the logic circuit are electrically connected to the P multiplexers. The row selection unit is used for generating a row selection signal. The logic circuit is used for determining a sensing region corresponding to the object wherein the sensing region includes N of the M pixels. Furthermore, the logic circuit controls Q multiplexers, which are electrically connected to the N pixels, to transmit the row selection signal to the N pixels.
Abstract:
An image sensing apparatus comprises at least one sensing pixel and a control circuit. The sensing pixel comprises: a charge storing device; a light sensing device, for respectively generating photoelectrons with a first, second amount in a first, second mode; and a switch device, for determining an amount that the photoelectron can be transmitted to the charge storing device according to a control voltage. The control voltage generates the control voltage to control the amount that the photoelectrons can be transmitted to the charge storing device to be a first charge amount in a first mode and to be a second charge amount in a second mode. The first, second charge amounts are smaller than a maximum charge storing amount for the charge storing device.
Abstract:
A video generating system and a video generating method, which combine images generated by a plurality of different image sensors to generate output images, are provided. In the inventive video generating system and method, the image sensors share a signal transmission interface to transmit image data and synchronization signals in a time-shared manner to reduce the complexity of the signal transmission interface.
Abstract:
An electronic apparatus includes a circuit system, a camera sensing circuit, and an object sensing circuit. The circuit system is utilized for controlling an operation of the electronic apparatus. The camera sensing circuit is coupled to the circuit system and utilized for sensing at least a portion of a portrait of a user. The object sensing circuit is coupled to the circuit system and utilized for sensing whether any object(s) is/are near to the electronic apparatus. The operation of the object sensing circuit is different from the operation of the camera sensing circuit. The camera sensing circuit is used for determining whether to notify the circuit system to switch from a first operation mode to a second operation mode. The object sensing circuit is used for determining whether to notify the circuit system to switch from the second operation mode to the first operation mode.
Abstract:
An electronic device for face recognition is provided. The electronic device is used to exclude an ineligible object to be identified according to the relative relationship between object distances and image sizes, the image variation with time and/or the feature difference between images captured by different cameras to prevent the possibility of cracking the face recognition by using a photo or a video.