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52results about How to "Well corrected for aberrations" patented technology

Folded telephoto camera lens system

ActiveUS20150253543A1Reduce total track lengthMinimum aberrationTelevision system detailsColor television detailsOptical pathCamera lens
A folded telephoto lens system may include multiple lenses with refractive power and a light path folding element. Light entering the camera through lens(es) on a first path is refracted to the folding element, which changes direction of the light on to a second path with lens(es) that refract the light to form an image plane at a photosensor. At least one of the object side and image side surfaces of at least one of the lens elements may be aspheric. Total track length (TTL) of the lens system may be 14.0 mm or less. The lens system may be configured so that the telephoto ration (TTL / f) is less than or equal to 1.0. Materials, radii of curvature, shapes, sizes, spacing, and aspheric coefficients of the optical elements may be selected to achieve quality optical performance and high image resolution in a small form factor camera.
Owner:APPLE INC

Small form factor telephoto camera

ActiveUS20150116569A1Well-corrected and balanced minimal residual aberrationReduce track lengthTelevision system detailsColor television detailsImage resolutionTelephoto lens
A compact telephoto lens system that may be used in a small form factor cameras. The lens system may include five lens elements with refractive power. Alternatively, the lens system may include four lens elements with refractive power. At least one of the object side and image side surfaces of at least one of the lens elements is aspheric. Total track length (TTL) of the lens system may be 6.0 mm or less. Focal length f of the lens system may be at or about 7.0 mm (for example, within a range of 6.5-7.5 mm). Lens elements are selected and configured so that the telephoto ratio (TTL / f) satisfies the relation 0.74<TTL / f<1.0. Materials, radii of curvature, shapes, sizes, spacing, and aspheric coefficients of the lens elements may be selected to achieve quality optical performance and high image resolution in a small form factor telephoto camera.
Owner:APPLE INC

Main-mirror and three-mirror integrated coaxial three-reflector infrared optical imaging device

The invention discloses a main-mirror and three-mirror integrated coaxial three-reflector infrared optical imaging device, and belongs to the technical field of infrared optical imaging. The device solves technical problems that a conventional spatial infrared reflecting-type optical device is large in size and weight. A reflecting main mirror and three reflectors of the device are of an integrated structure, and are installed in a main mirror seat through a main mirror core shaft. A secondary mirror seat is fixedly connected with the main mirror seat through a truss assembly, and a reflectingsecondary mirror is fixed on the secondary mirror seat through a secondary mirror core shaft. A secondary mirror shading cover is embedded in the truss assembly. A lens cone is connected with the main mirror seat, and a detector support is connected to an outer side of the main mirror seat. The image plane of a detector is installed on the detector support. The device employs a main-mirror and three-mirror integrated optical integrated imaging system design, and forms a super-compact coaxial three-reflector infrared optical imaging device. The device reduces the size, weight and cost of a spatial infrared optical system under the same focal length, increases the optimization variables of the system, and can achieve the better correction of aberration.
Owner:CHANGCHUN INST OF OPTICS FINE MECHANICS & PHYSICS CHINESE ACAD OF SCI

Refrigeration type medium wave infrared light and laser double-mode common-caliber camera lens

The invention relates to a refrigeration type medium wave infrared light and laser double-mode common-caliber camera lens. An optical system of the camera lens comprises a front infrared light and laser common-caliber set A, a rear infrared light set B and a rear laser set C. A positive lens A-1, a negative lens A-2, a positive lens A-3 and a light splitter A-4 are sequentially arranged on the front infrared light and laser common-caliber set A in the light incident direction. After light passes through the front infrared light and laser common-caliber set A, one path of the light is reflected to the rear infrared light set B, and the other path of the light is transmitted to the rear laser set C. A positive lens B-1, a negative lens B-2 and a reflector B-3 are sequentially arranged on the rear infrared light set B in the light incident direction. A positive lens C-1, a positive lens C-2, a reflector C-3, a positive lens C-4, a positive lens C-5, a light filter C-6 and a positive lens C-7 are sequentially arranged on the rear laser set C in the light incident direction. The camera lens has the advantages that medium wave infrared light and lasers are received in a common-caliber mode, and imaging quality, resolution, anti-jamming capability, operational flexibility and operational effectiveness are high.
Owner:FUJIAN FORECAM OPTICS CO LTD

Lens assembly applicable to an image sensor

A lens assembly includes a first lens including a first convex surface facing the object side, a first concave surface with an aperture stop facing the image side; a second lens including a second convex surface facing the object side and a second concave surface facing the image side; a first lens further including. Defining that f, f1, f2 are a focal length of the lens assembly, the first lens, and the second lens; D is a distance between the first lens and the second lens; TTL is a total track length; R1 is a radius of the first convex surface; R2 is a radius of the first concave surface; R3 and R4 are respectively radius of the second convex surface and the second concave surface; and Φ is the image circle; the following conditions are satisfied: 0.01<|f / f2|<0.2; 0.1<R1 / f1<0.5; 0.8<f1 / TTL<1.1; 0.2<D / f<0.5; 0.3<R2 / Φ<0.7; and 0.03<(R3−R4) / (R3+R4)<0.3.
Owner:POWER LENS TECH

Optical engine for barcode recognition device

The invention discloses an optical engine for a barcode recognition device. The optical engine comprises a lens module, a light supplementing module and a sensor circuit module, wherein the light supplementing module and the sensor circuit module are arranged on the two sides of the lens module respectively. First positive lens bodies are installed at the positions corresponding to light sources in the light supplementing module, and the light sources adopted to the light supplementing module are one kind or the combination of more than one kind of white light sources, red light sources and near-infrared light sources. The optical engine for the barcode recognition device further comprises an outer cover which covers the light supplementing module and is connected with a lens module base, and the first positive lens bodies are installed at the positions, corresponding to the light sources, of the outer cover. The lens module comprises the lens module base, a lens base and an imaging lens, wherein the lens base is arranged on the lens module base, the imaging lens is installed on the lens base, the number of optical lens bodies installed inside the imaging lens is five, and the optical lens bodies are sequentially the second positive lens body, the first negative lens body, the third positive lens body, the fourth positive lens body and the second negative lens body from the position far away from the front end of the lens of the lens module base to the position close to the rear end of the lens of the lens module base. According to the optical engine for the barcode recognition device, the recognition success rate of the barcode recognition device is improved.
Owner:SHENZHEN YUNHE TECH CO LTD

Optical system, camera module and electronic equipment

ActiveCN113253427AReasonable positive inflectionReduce eccentricity sensitivityOptical elementsImaging qualityOptical axis
The invention relates to an optical system, a camera module and electronic equipment. The optical system includes: a first lens element having an object-side surface being convex in a paraxial place and an image-side surface being concave in a paraxial place; a second lens element with positive refractive power which has an object-side surface and an image-side surface being convex in a paraxial place; a third lens element having an object-side surface being convex in a paraxial place; a fourth lens element with positive refractive power having an image-side surface being convex in a paraxial place; a fifth lens element with negative refractive power having an object-side surface being convex in a paraxial place and an image-side surface being concave in a paraxial place; a sixth lens element with positive refractive power, the object-side and image-side surfaces thereof being convex in paraxial place; and a seventh lens element having an object-side surface being convex in a paraxial placeand an image-side surface being concave in a paraxial place. The optical system satisfies the following relation: TTL / d15 is more than 3.8 and less than 4.3, TTL is the total optical length, and d15 is the sum of the thicknesses of all the lenses from the first lens to the fifth lens on the optical axis. The optical system can achieve both miniaturization and good imaging quality.
Owner:TIANJIN OFILM OPTO ELECTRONICS CO LTD

Optical lens, camera module and electronic equipment

The invention discloses an optical lens, a camera module and electronic equipment. The optical lens comprises first to fifth lenses from an object side to an image side along an optical axis; the first lens has positive focal power, and the object side surface of the first lens is a convex surface; the second lens has negative focal power, and the image side surface of the second lens is a concave surface; the third lens has focal power; the fourth lens has focal power, and the object side surface of the fourth lens is a convex surface; and the fifth lens has focal power, and the object side surface and the image side surface of the fifth lens are a convex surface and a concave surface. The optical lens further meets the relational expression that TTL / ImgH is larger than 1.1 and smaller than 1.3. According to the optical lens, the camera module and the electronic equipment provided by the embodiment of the invention, the design requirements of miniaturization, large image surface and high imaging quality of the optical lens can be met.
Owner:JIANGXI JINGCHAO OPTICAL CO LTD

Lens system and optical device having the same

A lens system has a plurality of lenses, a stop, and a diffractive surface, the entire lens system moves during focusing, and the lens system satisfies the condition of β≧0.5, where β is a maximum photographic magnification.
Owner:CANON KK
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