Abstract:
The invention discloses an image presenting method for generating an image to meet a lenticular sheet of a particular specification. The method includes the following steps: providing a database where at least one lenticular sheet data and at least one alignment pattern data are stored; reading out a lenticular sheet data and an alignment pattern data from the database; processing an image data and the alignment pattern data according to the lenticular sheet data; combining the image data and the alignment pattern data to generate a mixed image which meets the lenticular sheet of the particular specification; and outputting the mixed image.
Abstract:
The invention discloses a stereoscopic image generating method including the steps of capturing a first image and a second image from two different view angles, wherein the two images have a common primary target and a common secondary target; recognizing the common secondary target; analyzing respective capture information of the secondary target in the first image and the second image; according to the respective capture information in the first image and the second image, generating an image object placed in the first image and the image object placed in the second image; and according to an arrangement criterion, arranging the pixels of the first image, the pixels of the second image, the pixels of the image object placed in the first image and the pixels of the image object placed in the second image to generate a single mixed image.
Abstract:
An optical imaging lens includes: a first, second, third, fourth, fifth and sixth lens element. The first lens element has positive refracting power, an object-side surface with a convex part in a vicinity of the optical axis, and a convex part in a vicinity of its periphery, the second lens element has negative refracting power, an image-side surface with a convex part in a vicinity of its periphery, the third lens element has an image-side surface with a concave part in a vicinity of the optical axis, the fourth lens has an image-side surface with a convex part in a vicinity of the optical axis, the fifth lens element has object-side surface with a concave part in a vicinity of the optical axis, and the sixth lens element has an image-side surface with a concave part in a vicinity of the optical axis.
Abstract:
An optical imaging lens set includes an aperture stop, a first lens element to a sixth lens element from an object side toward an image side along an optical axis. The first lens element has an image-side surface with a convex portion in a vicinity of its periphery. The second lens element has an image-side surface with a concave portion in a vicinity of the optical axis and a convex portion in a vicinity of its periphery. The third lens element is made of plastic. The fourth lens element has an image-side surface with a concave portion in a vicinity of its periphery. The fifth lens element is made of plastic. The sixth lens element is made of plastic and has an object-side surface with a concave portion in a vicinity of the optical axis.
Abstract:
In an optical imaging lens set a first lens of positive refractive power has an object-side surface with a convex portion around the optical axis and a convex portion around its periphery, an image-side surface with a convex portion around its periphery, a second lens of negative refractive power has an object-side surface with a concave portion around its periphery, a third lens has an image-side surface with a concave portion around its periphery, a fourth lens has an image-side surface with a convex portion around the optical axis, a fifth lens has an object-side surface with a concave portion around its periphery, a sixth lens has an image-side surface with a concave portion around the optical axis and a convex portion around its periphery. The sum of total five air gaps AAG and a second lens thickness T2 satisfy AAG/T2≦3.6.
Abstract:
An optical imaging lens set includes an aperture stop, a first lens element to a sixth lens element from an object side toward an image side along an optical axis. The first lens element has an image-side surface with a convex portion in a vicinity of its periphery. The second lens element has an image-side surface with a concave portion in a vicinity of the optical axis and a convex portion in a vicinity of its periphery. The third lens element is made of plastic. The fourth lens element has an image-side surface with a concave portion in a vicinity of its periphery. The fifth lens element is made of plastic. The sixth lens element is made of plastic and has an object-side surface with a concave portion in a vicinity of the optical axis.
Abstract:
An optical imaging lens includes: a first, second, third, fourth, fifth and sixth lens element, the first lens element having an image-side surface with a concave part in a vicinity of its periphery, the second lens element has negative refractive power, the third lens element has an image-side surface with a convex part in a vicinity of its periphery, the fourth lens element has positive refractive power, the fifth lens element has an image-side surface with a concave part in a vicinity of the optical axis, the sixth lens element has an image-side surface with a concave part in a vicinity of the optical axis, and with a convex part in a vicinity of its periphery, where the optical imaging lens set does not include any lens element with refractive power other than said first, second, third, fourth, fifth and sixth lens elements.
Abstract:
An optical imaging lens includes: a first, second, third and fourth lens element, the first lens element has an object-side surface with a convex part in a vicinity of the optical axis, the second lens element has an image-side surface with a concave part in a vicinity of its periphery; the third lens element has an image-side surface with a convex part in a vicinity of the optical axis, the fourth lens element has an object-side surface with a concave part in a vicinity of the optical axis; the fifth lens element has an object-side surface with a convex part in a vicinity of the optical axis, wherein the optical imaging lens set does not include any lens element with refractive power other than said first, second, third, fourth and fifth lens elements.
Abstract:
An optical imaging lens includes: a first, second, third, fourth and fifth lens element, the first lens element has an object-side surface with a convex part in a vicinity of the optical axis and a convex part in a vicinity of its periphery; the second lens element has an object-side surface with a convex part in a vicinity of its periphery; the third lens element has positive refractive power, having an object-side surface with a concave part in a vicinity of its periphery; the fourth lens element has positive refractive power, having an object-side surface with a concave part in a vicinity of its periphery and an image-side surface with a convex part in a vicinity of the optical axis; the fifth lens element has an image-side surface with a concave part in a vicinity of the optical axis and a convex part in a vicinity of its periphery.
Abstract:
An optical imaging lens set, including: a first lens element having an object-side surface with a convex part in a vicinity of the optical axis, and with a convex part in a vicinity of its periphery, a second lens element with negative refractive power, a third lens element with positive refractive power, having an object-side surface with a concave part in a vicinity of its periphery, and having an image-side surface with a convex part in a vicinity of the optical axis, a fourth lens element having an object-side surface with a convex part in a vicinity of its periphery, and having an image-side surface with a concave part in a vicinity of the optical axis, and a convex part in a vicinity of its periphery.