C03C3/072

Method and device for encapsulating components
11152590 · 2021-10-19 · ·

A method and a device for hermetically encapsulating components using at least one gas discharge lamp, an inorganic material that is transparent for light and a light-absorbing inorganic medium, are provided. With a suitable selection, inorganic materials or inorganic media guarantee a very low level of permeability for oxygen, water vapor and reactive gases in contrast to organic materials or organic media. The encapsulation occurs in a time period of less than one second. In addition, the average temperature of the component only increases slightly, such that even components with temperature-sensitive regions can be encapsulated.

COATED GLASS SUBSTRATE OR GLASS CERAMIC SUBSTRATE WITH RESISTANT MULTIFUNCTIONAL SURFACE PROPERTIES, METHOD FOR PRODUCTION THEREOF, AND USE OF THEREOF

The invention relates to a coated glass substrate or glass ceramic substrate with resistant, multi-functional surface properties, including a combination of anti-microbial, anti-reflective and anti-fingerprint properties, or a combination of anti-microbial, anti-reflective and anti-fingerprint properties where the substrate is chemically pre-stressed, or a combination of anti-microbial and anti-reflective properties where the substrate is chemically pre-stressed. The coated glass substrate or glass ceramic substrate exhibits a unique combination of functions which are permanently present and do not exert a negative effect on each other.

COATED GLASS SUBSTRATE OR GLASS CERAMIC SUBSTRATE WITH RESISTANT MULTIFUNCTIONAL SURFACE PROPERTIES, METHOD FOR PRODUCTION THEREOF, AND USE OF THEREOF

The invention relates to a coated glass substrate or glass ceramic substrate with resistant, multi-functional surface properties, including a combination of anti-microbial, anti-reflective and anti-fingerprint properties, or a combination of anti-microbial, anti-reflective and anti-fingerprint properties where the substrate is chemically pre-stressed, or a combination of anti-microbial and anti-reflective properties where the substrate is chemically pre-stressed. The coated glass substrate or glass ceramic substrate exhibits a unique combination of functions which are permanently present and do not exert a negative effect on each other.

CONDUCTIVE PASTE FOR N-TYPE SOLAR CELL, METHOD FOR MANUFACTURING N-TYPE SOLAR CELL AND N-TYPE SOLAR CELL
20210126141 · 2021-04-29 ·

A conductive paste for N-type solar cells, comprising (a) 70 to 99.75 wt % of a silver power; (b) 0.1 to 3.0 wt % of an aluminum powder, wherein D50 of the aluminum powder is not larger than 3 μm; (c) 5 to 10 wt % of a glass frit; and (d) 3 to 30 wt % of an organic medium; wherein % is based on the total weight of the paste composition.

CONDUCTIVE PASTE FOR SOLAR CELL ELECTRODE, AND SOLAR CELL MANUFACTURED USING SAME

The present invention relates to a conductive paste for a solar cell electrode, comprising: a metal powder; glass frit; and organic vehicles, wherein the glass frit includes a first glass frit having a first glass transition temperature and a second glass frit having a second glass transition temperature that is higher than the first glass transition temperature, wherein the glass frit is contained in an amount of 1-10% by weight with respect to the total weight of the paste, the content of the first glass frit being larger than that of the second glass frit. The present invention can improve the conversion efficiency and adhesion characteristics of a solar cell by using two or more kinds of glass frits having different glass transition temperatures in combination.

SOLAR CELL AND PASTE COMPOSITION FOR ELECTRODE OF SOLAR CELL
20200165470 · 2020-05-28 · ·

Discussed is a paste composition for an electrode of a solar cell, the paste including a conductive powder, an organic vehicle, and an inorganic composition formed by including a plurality of metal compounds including a gallium compound including gallium as a component of a main network former of the inorganic composition.

ENVIRONMENTALLY-FRIENDLY GLASS COMPOSITION FOR LAUNDRY DETERGENTS AND WASHING SUPPLEMENTS, AND METHOD FOR MANUFACTURING GLASS POWDER THEREOF
20240076585 · 2024-03-07 ·

Disclosed are an environmentally-friendly glass composition for laundry detergents and washing supplements, and a method for manufacturing a glass powder thereof, wherein the glass composition is a borate glass containing large amounts of K.sub.2O and Na.sub.2O and a small amount of SiO.sub.2, and the elution properties of ions are maximized, thus enabling the production of a high concentration of elution water. As a result, the present invention uses to advantage the low chemical durability of borate glass, which is a major disadvantage of borate glass, and thereby maximizes the elution properties of the glass to form a large amount of OH.sup.? ions and B(OH).sub.4.sup.? ions within a short period of time, and thus can exhibit excellent washing power during the washing of laundry.

ENVIRONMENTALLY-FRIENDLY GLASS COMPOSITION FOR LAUNDRY DETERGENTS AND WASHING SUPPLEMENTS, AND METHOD FOR MANUFACTURING GLASS POWDER THEREOF
20240076585 · 2024-03-07 ·

Disclosed are an environmentally-friendly glass composition for laundry detergents and washing supplements, and a method for manufacturing a glass powder thereof, wherein the glass composition is a borate glass containing large amounts of K.sub.2O and Na.sub.2O and a small amount of SiO.sub.2, and the elution properties of ions are maximized, thus enabling the production of a high concentration of elution water. As a result, the present invention uses to advantage the low chemical durability of borate glass, which is a major disadvantage of borate glass, and thereby maximizes the elution properties of the glass to form a large amount of OH.sup.? ions and B(OH).sub.4.sup.? ions within a short period of time, and thus can exhibit excellent washing power during the washing of laundry.

Thick film resistor and production method for same
10403421 · 2019-09-03 · ·

A thick film resistor excluding a toxic lead component from a conductive component and glass and having characteristics equivalent to or superior to conventional resistors in terms of, in a wide resistance range, resistance values, TCR characteristics, current noise characteristics, withstand voltage characteristics and the like. The thick film resistor is formed of a fired product of a resistive composition, wherein the thick film resistor contains ruthenium-based conductive particles containing ruthenium dioxide and a glass component essentially free of a lead component and has a resistance value in the range of 100 / to 10 M/ and a temperature coefficient of resistance within 100 ppm/ C.

Thick film resistor and production method for same
10403421 · 2019-09-03 · ·

A thick film resistor excluding a toxic lead component from a conductive component and glass and having characteristics equivalent to or superior to conventional resistors in terms of, in a wide resistance range, resistance values, TCR characteristics, current noise characteristics, withstand voltage characteristics and the like. The thick film resistor is formed of a fired product of a resistive composition, wherein the thick film resistor contains ruthenium-based conductive particles containing ruthenium dioxide and a glass component essentially free of a lead component and has a resistance value in the range of 100 / to 10 M/ and a temperature coefficient of resistance within 100 ppm/ C.