Abstract:
An image capture device includes an image sensor having an array of pixels therein, which are configured to receive light reflected from an object during an image capture time interval. A light source is provided, which is configured to project light to the object during at least a portion of the image capture time interval. A control circuit/unit is provided, which is electrically coupled to the image sensor and the light source. This control circuit is configured to drive the light source with signals that cause the light source to project light to the object without interruption during at least a first time interval when all rows of a frame of pixels within the array are being sequentially read and during a second time interval when all rows of the frame of pixels within the array are being sequentially read.
Abstract:
An apparatus for recovering valuable elements is provided herein. In some embodiments, the apparatus having a conveyor; a container configured to be moved on the conveyor, wherein the container has an open surface; a paper package which contains a mixture containing valuable elements, the paper package being configured to be disposed in the container and to be combusted; a cover that covers the open surface of the container, the cover having an opening for discharging valuable elements vaporized from the mixture; a microwave oven through which the container having the cover and the paper package passes, wherein the microwave oven having a microwave generator and a discharging opening for discharging the valuable elements vaporized from the mixture; and a condenser coupled to the discharge opening, wherein the condenser recovers the valuable elements vaporized from the mixture.
Abstract:
An image capture device includes an image sensor having an array of pixels therein, which are configured to receive light reflected from an object during an image capture time interval. A light source is provided, which is configured to project light to the object during at least a portion of the image capture time interval. A control circuit/unit is provided, which is electrically coupled to the image sensor and the light source. This control circuit is configured to drive the light source with signals that cause the light source to project light to the object without interruption during at least a first time interval when all rows of a frame of pixels within the array are being sequentially read and during a second time interval when all rows of the frame of pixels within the array are being sequentially read.
Abstract:
A user interface for an induction heating cooker, a method of controlling the same and an induction heating cooker thereof are provided. The user interface, if a drag touch signal of a drag touch from one position to another position on a display unit is sensed, is configured to change power levels of all of coils in operation to a predetermined reference power level and displays the changed power level. The induction heating cooker is configured to supply the coils with a power corresponding to the reference power level, thereby controlling all of the coils with one drag touch and enabling enhanced security while in a rapid manner.
Abstract:
A three-dimensional image sensor may include a light source module configured to emit at least one light to an object, a sensing circuit configured to polarize a received light that represents the at least one light reflected from the object and configured to convert the polarized light to electrical signals, and a control unit configured to control the light source module and sensing circuit. A camera may include a receiving lens; a sensor module configured to generate depth data, the depth data including depth information of objects based on a received light from the objects; an engine unit configured to generate a depth map of the objects based on the depth data, configured to segment the objects in the depth map, and configured to generate a control signal for controlling the receiving lens based on the segmented objects; and a motor unit configured to control focusing of the receiving lens.
Abstract:
The present invention relates to an apparatus for recovering valuable elements. The apparatus for recovering valuable elements according to an embodiment of the present invention includes: i) a conveyor; ii) a microwave heater that is located on the conveyor and that radiates microwaves; iii) a heating container of which a surface is opened; and iv) a cover that covers the surface of the heating device. The heating container passes through the microwave heater while being moved on the conveyor, and is configured to contain a mixture containing carbonaceous materials and waste discharged from an iron making plant therein. The microwave heater includes a casing that blocks the microwaves from the outside. The casing includes i) a lower portion that is opened to be opposed to the conveyor, and ii) an upper portion on which a discharging opening for discharging metal vaporized from the mixture is formed. The upper portion opposes the lower portion. The valuable elements contained in the mixture are configured to be recovered by heating the mixture by the microwaves.
Abstract:
This invention relates to a polyester based coating composition for anti-stain PCM outside panel and more particularly, to the polyester based coating composition for anti-stain PCM outside panel having the excellent combination of physical properties such as surface compactness, anti-contamination effect, acid resistance and self-cleaning effect, wherein the polyester based coating composition comprises: a) hydroxy unsaturated polyester resin and a melamine curing agent as main ingredients, b) sulfonic acid blocked with a secondary amine or epoxy resin, c) sulfonic acid blocked with a tertiary amine, d) an isocyanate compound blocked with malonate, e) a tin based curing catalyst, f) polyalkyl silicate, and g) an alkoxy compound; further, the polyester based coating composition for anti-stain PCM outside panel can demonstrate excellent properties of a film of paint such as appearance and workability even without the addition of any defoaming agent and leveling agent by adjusting the compatibility of both hydroxy unsaturated polyester resin and polyalkyl silicate.
Abstract:
A method of providing a design crowdfunding service for a design product in a design crowdfunding system according to an embodiment of the present disclosure may include initiating crowdfunding by exposing an image of the design product; setting an investment period for the design product; recruiting an investor by providing an expected rate of return and a real-time rate of return during the investment period; and settling, when the investment period has elapsed, an amount of profit for the crowdfunding based on a number of sales and a displayed rate of return for the design product.
Abstract:
The present invention relates to a conductive lift pin used in an electrostatic chuck, an electrostatic chuck including same, and a semiconductor manufacturing method using same. Provided in the present invention are a conductive electrostatic chuck lift pin and an electrostatic chuck having the lift pin mounted therein, the lift pin including AlTiC, which has a TiC phase dispersed on an Al2O3 phase, and having electrical resistivity of 2.5×10-5 to 3.5×10-5 Ω·m. The electrostatic chuck lift pin of the present invention can solve the problem of defects induced by static electricity and electric reaction due to contact between the components and insulating ceramic when using existing insulating ceramic, and is conductive and thus can release residual charge between a semiconductor wafer and the electrostatic chuck even without the presence of plasma. Therefore, since the lift pin can be raised immediately after de-chucking, treatment time per wafer sheet is reduced.
Abstract:
A user interface for an induction heating cooker, a method of controlling the same and an induction heating cooker thereof are provided. The user interface, if a drag touch signal of a drag touch from one position to another position on a display unit is sensed, is configured to change power levels of all of coils in operation to a predetermined reference power level and displays the changed power level. The induction heating cooker is configured to supply the coils with a power corresponding to the reference power level, thereby controlling all of the coils with one drag touch and enabling enhanced security while in a rapid manner.