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Jaewoo Joung

Jaewoo Joung, Suwon KR

Patent application numberDescriptionPublished
20110017288Thin film type solar cell and method of manufacturing the same - There is provided a thin film type solar cell including: a crystalline silicon wafer subject to surface texturing and forming an n-type semiconductor layer; a pn junction formed of a non-crystalline p-type silicon layer deposited on one surface of the crystalline silicon wafer and a non-crystalline n-type silicon layer deposited on the other surface thereof; a transparent surface electrode formed outward of the pn junction; a water repellent light transmitting layer formed on the pn junction, the surface electrode, or both the pn junction and the surface electrode and allowing for an increase in light transmittance; and a pattern electrode formed on the surface electrode or the water repellent light transmitting layer.01-27-2011
20110065229Method of manufacturing back-surface electrode type solar cell - There is provided a method of manufacturing a back-surface electrode type solar cell. The method may include: forming a conductive metal thin film on a crystalline silicon wafer; forming plate-resistant partition walls on a top surface of the conductive metal thin film; forming a metal layer in a space between the plate-resistant partition walls and then removing the plate-resistant partition walls; and removing the conductive metal thin film that is exposed by removing the plate-resistant partition walls so as to expose the crystalline silicon wafer.03-17-2011

Jaewoo Joung, Suwon-Si KR

Patent application numberDescriptionPublished
20090031856Method for manufacturing metal nanoparticles - The present invention provides a method for manufacturing metal nanoparticles, comprising: dissociating at least one metal precursor selected from the group consisting of silver, gold and palladium; reducing the dissociated metal precursor; and isolating the capped metal nanoparticles with an alkyl amine.02-05-2009
20090078915Nonaqueous conductive nanoink composition - The present invention relates to a non-aqueous conductive nanoink composition including 20 to 85 parts by weight of metal nanoparticles which is chosen from silver, copper, nickel, platinum, palladium, and gold; 0.5 to 10 parts by weight of a polymer having an anhydride group; 15 to 80 parts by weight of a non-aqueous organic solvent.03-26-2009
20090294162Printed circuit board and manufacturing method thereof - Disclosed are a printed circuit board and a manufacturing method thereof. The printed circuit board, having an electronic component mounted thereon, in accordance with an embodiment of the present invention includes: a substrate having a circuit pattern and a pad formed on one side thereof; a solder resist layer formed on one side of the substrate so as to expose the pad; and a dam formed on the solder resist layer by an inkjet printing method and disposed at a position corresponding to where the electronic component is mounted so as to control a flow of an underfill solution injected between the substrate and the electronic component.12-03-2009
20090310155Processing image data - A method of obtaining image data for printing a circular pad having a radius R by forming ink blots having a radius r in an overlapping manner. The method can include: setting a base pitch as the base distance between adjacent ink blots, arranging the vector data of the pad in an x-y coordinate system, setting a first base point in the coordinate system, selecting a first determination point that is separated from the first base point by a unit distance along each of the x-axis and y-axis in any one direction of 45 degrees and 135 degrees, comparing the distance from the first base point to the first determination point with the base pitch, and storing the coordinates of the first determination point as print data if the distance from the first base point to the first determination point is greater than or equal to the base pitch.12-17-2009
20100002031PROCESSING IMAGE DATA - A method of processing image data is disclosed. According to an embodiment of the present invention, the method, which obtains image data for printing the edge of a circular pad having a radius of R by forming ink blots having a radius of r in an overlapping manner, includes: setting a permissible pitch range as a distance between adjacent ink blots; arranging first image data to the edge of the pad, in an x-y coordinate system; generating second image data with a smaller radius than the first image data, the second image data sharing the center with the first image data; arranging a first base point on the second image data; selecting the first determination point on the second image data separated from the first base point; determining if a distance between the first base point and the first determination point is within the permissible pitch range; and storing a coordinate, located at a shortest distance from the first determination point, as print data.01-07-2010
20100002931Processing image data - A method of processing image data, to obtain image data for printing a junction area connecting a circular pad having a radius R with a linear line pattern by forming ink blots having a radius r in an overlapping manner, includes: setting a base pitch P as a base distance between adjacent ink blots; arranging image data of the pad, line pattern, and junction area, which is defined by an extension of the line pattern, in an x-y coordinate system; selecting a first determination point, which corresponds to one side of the junction area; comparing a distance from a center of the pad to the first determination point with a value of (R−r+P); and storing coordinates of the first determination point as print data if the distance from the center of the pad to the first determination point is greater than or equal to the value of (R−r+P).01-07-2010