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EPOXY REACTIVE DILUENT AND MANUFACTURING METHOD THEREFOR

Реферат: Provided is an epoxy reactive diluent, wherein the content of a compound represented by Formula 1 below is 85% by weight or more based on a total weight of an epoxy reactive diluent composition:

Заявка: 3. The epoxy reactive diluent according to claim 1 , wherein the composition has a viscosity of 40 to 90 cps at 25° C.4. A method of preparing an epoxy reactive diluent claim 1 , the method comprising:(a) a step of reacting a mixture comprising cardanol and epicholorhydrin in a presence of a catalyst to obtain a product in which a content of epoxidized cardanol is 85% by weight or more; and(b) a step of isolating and purifying the product.5. The method according to claim 4 , wherein the catalyst is a base.6. The method according to claim 5 , wherein the base is one selected from the group consisting of NaOH claim 5 , KOH claim 5 , NaCO claim 5 , KCO claim 5 , NaH and a combination of two or more thereof.7. The method according to claim 5 , wherein the base is a 1 to 60% aqueous solution at a concentration.8. The method according to claim 4 , wherein claim 4 , in step (a) claim 4 , the catalyst is added dropwise to the mixture for 45 to 135 minutes claim 4 , followed by allowing a reaction to occur for 60 to 180 minutes.9. The method according to claim 4 , wherein claim 4 , in step (a) claim 4 , an equivalent ratio of the cardanol to the epicholorhydrin is 1:1 to 1:10.10. The method according to claim 4 , wherein claim 4 , in step (a) claim 4 , an equivalent ratio of the cardanol to the catalyst is 1:0.1 to 1:1.5.11. The method according to claim 4 , wherein step (b) comprises:(b1) a step of filtering the product to obtain a filtrate;(b2) a step of separating the filtrate into an upper layer and a lower layer to remove the lower layer;(b3) a step of vacuum-evaporating the upper layer to recover epicholorhydrin; and(b4) a step of filtering a product generated in the vacuum-evaporating.12. The method according to claim 11 , wherein claim 11 , in step (b2) claim 11 , layer separation is performed by allowing the filtrate to stand for 60 to 180 minutes without addition of an organic solvent.13. The method according to claim 11 , wherein claim 11 , in step (b3) claim 11 , the vacuum-evaporating is performed at 100 to 120° C.

Описание: The present invention relates to an epoxy reactive diluent and a method of preparing the same, and more particularly to an epoxy reactive diluent including epoxidized cardanol and a method of preparing the same.Conventionally, various components including epoxy components such as benzyl glycidyl ether, n-butyl glycidyl ether, phenyl glycidyl ether, o-cresyl glycidyl ether, aliphatic glycidyl ether, etc. have been added as plasticizers and diluents for epoxy paint. Such components, which are added as reactive diluents to epoxy paint, have been used to impart plasticity or adjust pot-life.Thereamong, epoxidized cardanol, i.e., cardanol glycidyl ether, produced using cardanol as a raw material extracted from natural cashew nuts has an epoxy functional group in a molecular structure thereof, thereby being capable of providing excellent film properties during the hardening reaction of epoxy paint. In addition, unsaturated hydrocarbon chains of cardanol can facilitate crosslinking, thereby being capable of improving the strength, flexibility and heat resistance of a film. The structure of epoxidized cardanol is shown in Formula 1 below:wherein Formula 1, n is 0, 2, 4 or 6.illustrates a method of extracting a cardanol raw material from cashew nuts. Cardanol extracted by such a method has a hydrocarbon chain at a meta position of a phenolic hydroxy group thereof. Epoxidized cardanol can be obtained by reacting cardanol with epicholorhydrin in the presence of an alkylation catalyst. This reaction has been conventionally performed in the presence of an aqueous solution or a dimethyl sulfoxide solvent. In addition, a base such as sodium hydroxide, potassium hydroxide, sodium carbonate, potassium carbonate, sodium hydride, etc. has been used as a catalyst, and a phase transfer catalyst such as tetra-n-butylammonium chloride, etc. as a subcatalyst for reaction activation has been added. After completion of the reaction, epoxidized cardanol was extracted using an organic solvent, and reaction byproducts were removed through a washing process so as to improve the purity of a diluent.Nevertheless, existing technologies have problems that the purity of a desired product, epoxidized cardanol, is low due to the high content of reaction byproducts, and it is difficult to treat wastewater generated in an extraction process using an organic solvent. In addition, in the case of some technologies, products may be hydrolyzed due to a long reaction time, and thus reaction byproducts increase, resulting in increases in viscosity and epoxy equivalent weight.Therefore, the present invention has been made in view of the above problems, and it is one object of the present invention to provide an epoxy reactive diluent having high purity and low viscosity and a low epoxy equivalent weight through minimization of hydrolysis and side reactions and a method of preparing the same.It is another object of the present invention to provide a method of preparing an epoxy reactive diluent that is extracted without use of an organic solvent and thus does not require a washing process causing waste water.In accordance with an aspect of the present invention, the above and other objects can be accomplished by the provision of an epoxy reactive diluent, wherein a content of a compound represented by Formula 1 below is 85% by weight or more based on a total weight of an epoxy reactive diluent composition:wherein n is 0, 2, 4 or 6.In an embodiment, contents of cardanol, a compound represented by Formula 2 below, a compound represented by Formula 3 below, and a compound represented by Formula 4 below in the composition may be respectively less than 2% by weight, less than 5% by weight, less than 5% by weight, and less than 4% by weight:wherein, Formulas 2 to 4, n is 0, 2, 4 or 6.In an embodiment, the composition may have a viscosity of 40 to 90 cps at 25° C.In accordance with another aspect of the present invention, there is provided a method of preparing an epoxy reactive diluent, the method including: (a) a step of reacting a mixture including cardanol and epicholorhydrin in a presence of a catalyst to obtain a product in which a content of epoxidized cardanol is 85% by weight or more; and (b) a step of isolating and purifying the product.In an embodiment, the catalyst may be a base.In an embodiment, the base may be one selected from the group consisting of NaOH, KOH, NaCO, KCO, NaH and a combination of two or more thereof.In an embodiment, the base may be a 1 to 60% by weight aqueous solution.In an embodiment, in step (a), the catalyst may be added dropwise to the mixture for 45 to 135 minutes, followed by allowing a reaction to occur for 60 to 180 minutes.In an embodiment, an equivalent ratio of the cardanol to the epicholorhydrin may be 1:1 to 1:10.In an embodiment, in step (a), an equivalent ratio of the cardanol to the catalyst may be 1:0.1 to 1:1.5.In an embodiment, step (b) may include (b1) a step of filtering the product to obtain a filtrate; (b2) a step of separating the filtrate into an upper layer and a lower layer to remove the lower layer; (b3) a step of vacuum-evaporating the upper layer to recover epicholorhydrin; and (b4) a step of filtering a product generated in the vacuum-evaporating.In an embodiment, in step (b2), layer separation may be performed by allowing the filtrate to stand for 60 to 180 minutes without addition of an organic solvent.In an embodiment, in step (b3), the vacuum-evaporating may be performed at 100 to 120° C.In accordance with an aspect of the present invention, an epoxy reactive diluent having high purity and low viscosity and a low epoxy equivalent weight through minimization of hydrolysis and side reactions and a method of preparing the same can be provided.In accordance with another aspect of the present invention, a method of preparing an epoxy reactive diluent that is extracted without use of an organic solvent and thus does not require a washing process causing waste water can be provided.It should be understood that the effects of the present invention are not limited to the effects described above, but include all effects that can be deduced from the detailed description of the present invention or the constitution of the invention described in the claims.Exemplary embodiments of the present invention are described in detail with reference to the accompanying drawings. However, the present invention may be implemented in various different forms and is not limited to these embodiments. To clearly describe the present invention, a part unrelated to the description is omitted in the drawings, and like reference numerals in the specification denote like elements.In the specification, when it is described that a certain part is “connected” to another part, it should be understood that the certain part may be directly connected to the other part or indirectly connected to the other part via another part therebetween. In addition, when a certain part “includes” a certain component, this indicates that the part may further include another component instead of excluding the other component unless otherwise disclosed.In the present specification, “reactive diluent” refers to an additive used to reduce the viscosity of epoxy paint. A reactive diluent participates in a hardening reaction during hardening of the epoxy paint to form a portion of a crosslinked structure.“Plasticity” refers to a deformation property of a material by an external force. In the case of materials having low plasticity, cracks can be easily generated even by a weak external force. When the diluent is added to impart plasticity, the flexibility and heat resistance of the epoxy paint can be increased.“Pot-life” refers to the time during which two or more components maintain appropriate fluidity and adhesion without being gelated or hardened. The pot-life of the epoxy paint may be controlled by adjusting the content of the diluent.“Epoxy equivalent weight” refers to the weight of a resin including 1 equivalent of an epoxy group. The number of epoxy groups in a resin decreases with an increasing epoxy equivalent weight value.Hereinafter, an embodiment of the present invention is described in detail with reference to the accompanying drawings.With regard to an epoxy reactive diluent according to an aspect of the present invention, the content of a compound represented by Formula 1 below may be 85% by weight or more based on a total weight of an epoxy reactive diluent composition:wherein n may be 0, 2, 4 or 6. CH-n chain structures according to the n value are illustrated in .The diluent may be added to an epoxy paint to impart plasticity thereto and control the pot-life thereof during a hardening reaction.is a schematic diagram illustrating a method of obtaining cardanol from natural cashew nut shells, and illustrates a reaction scheme wherein the compound represented by Formula 1 is generated by reacting the cardanol.In a process of obtaining the cardanol, cardol and 2-methyl cardol by-products represented by Formulas 5 and 6 below may be obtained. An appearance color of the cardanol may be changed depending upon the contents of the cardol and the 2-methyl cardol.Referring to , the compound represented by Formula 1 may be prepared by reacting the cardanol and epicholorhydrin in the presence of a base. Based on a total weight of the composition, the content of the compound represented by Formula 1 may be 85% by weight or more, and the content of unreacted cardanol may be less than 2% by weight.illustrates a reaction scheme wherein the compound represented by Formula 1 is hydrolyzed so that reaction byproducts are generated, and illustrates a reaction scheme wherein the compound represented by Formula 1 and compounds represented by Formulas 2 to 4 below are generated by reacting the cardanol.Referring to , the compound represented by Formula 1 may be easily hydrolyzed under a water condition to form 3-cardanoxy-1,2-propanediol as a reaction byproduct, which may increase an epoxy equivalent weight value of the composition. When an epoxy equivalent weight value increases, hardening reaction characteristics of epoxy paint may be decreased. Accordingly, the properties of epoxy paint may be increased by reducing the content of the reaction byproducts.Based on a total weight of the composition, the contents of cardanol, a compound represented by Formula 2 below, a compound represented by Formula 3 below, and a compound represented by Formula 4 below may be respectively less than 2% by weight, less than 5% by weight, less than 5% by weight, and less than 4% by weight:In Formulas 2 to 4, n may be 0, 2, 4 or 6. A CHchain structure according to the n value may be the same as the compound represented by Formula 1.The cardanol may be a product which does not react during the preparation of the composition.The compound represented by Formula 2 is 2-methyl-cardol glycidyl ether. The compound represented by Formula 3 is cardol-diglycidyl ether. The compound represented by Formula 4 is a dimer and may include both the compounds with different structures shown in Formula 4.Referring to , the viscosity of the composition increases as the contents of the compound represented by Formula 2, the compound represented by Formula 3, and the compound represented by Formula 4 increase, so that viscosity control characteristics may be decreased. Accordingly, the properties of epoxy paint may be improved by lowering the contents of the compound represented by Formula 2, the compound represented by Formula 3 and the compound represented by Formula 4. The viscosity of the composition may be 40 to 90 cps, preferably 40 to 60 cps, at 25° C.The composition may not include organic solvents such as methanol, ethanol, isopropanol, acetone, toluene and dimethyl sulfoxide. When the organic solvents are included, organic solvent waste water may be generated in a process of preparing a diluent, resulting in environmental pollution.A method of preparing an epoxy reactive diluent according to another embodiment of the present invention may include (a) a step of reacting a mixture including cardanol and epicholorhydrin in the presence of a catalyst to obtain a product in which the content of epoxidized cardanol is 85% by weight or more; and (b) a step of isolating and purifying the product.The epicholorhydrin may be used as a reactant and a solvent at the same time. A product generated by performing the reaction, illustrated in , is hydrolyzed in an aqueous solution and reaction byproducts are generated, by a reaction illustrated in , so that an epoxy equivalent weight value of a produced diluent may increase. Addition of an organic solvent such as dimethyl sulfoxide or methanol may cause environmental destruction and an increase in generation amounts of the compound represented by Formula 2, the compound represented by Formula 3 and the compound represented by Formula 4.The catalyst may be a base. The base may be one selected from the group consisting of NaOH, KOH, NaCO, KCO, NaH and a combination of two or more thereof, preferably, NaOH.The base may be a 1 to 60% by weight aqueous solution, preferably, a 30 to 50% by weight aqueous solution. When the concentration of the base is less than 1% by weight, a reaction time increases so that a generation amount of reaction byproducts may increase due to hydrolysis. When the concentration of the base is greater than 60% by weight, there may be a problem in controlling a reaction temperature in step (a).In step (a), the catalyst may be added dropwise to the mixture for 45 to 135 minutes, followed by allowing a reaction to occur for 60 to 180 minutes. When the catalyst is added dropwise for less than 45 minutes, the temperature of the mixture rapidly increases and thus safety accidents may occur. When the catalyst is added dropwise for greater than 135 minutes, a generation amount of reaction byproducts may increase due to hydrolysis. When the reaction is performed for less than 60 minutes, a reaction yield may be decreased. When the reaction is performed for greater than 180 minutes, the epoxy equivalent weight and viscosity of a produced diluent may excessively increase.An equivalent ratio of the cardanol to the epicholorhydrin may be 1:1 to 1:10, preferably, 1:2 to 1:5. When the equivalent of the epicholorhydrin is less than 1, the content of unreacted cardanol in an obtained product may increase. When the equivalent of the epicholorhydrin is greater than 10, resources for recovering the epicholorhydrin may be excessively consumed.An equivalent ratio of the cardanol to the catalyst may be 1:0.1 to 1:1.5. When the equivalent of the catalyst is less than 0.1, a reaction may not smoothly proceed. When the equivalent of the catalyst is greater than 1.5, a generation amount of reaction byproducts may increase.Step (b) may include (b1) a step of filtering the product to obtain a filtrate; (b2) a step of separating the filtrate into an upper layer and a lower layer to remove the lower layer; (b3) a step of vacuum-evaporating the upper layer to recover epicholorhydrin; and (b4) a step of filtering a product generated in step (b3).In step (Ill), the catalyst and metal chloride salts generated from epicholorhydrin may be removed. For example, when NaOH is used as a catalyst, NaCl may be removed through filtration. The filtration may be performed using a metal filter net with a pore size of 1 to 100 μm, preferably, 10 to 30 lm.In step (b2), the filtrate is injected into a separatory funnel, followed by being allowed to stand for 60 to 180 minutes without addition of an organic solvent. As a result, the filtrate is separated into an upper layer and a lower layer. Since the product is present in the upper layer, the lower layer, as a water-soluble layer, may be removed. The present invention extracts a product without addition of an organic solvent and a separate washing process, thereby being ecofriendly.The vacuum evaporation of step (b3) may be performed at 100 to 120° C. to recover a volatile material. The evaporated and recovered epicholorhydrin may be recycled.In step (b4), filtration may be performed in the same manner as in step (b1) to remove a trace amount of remaining metal chloride salts.Hereinafter, embodiments of the present invention will be described in more detail. However, the following experimental results correspond to representative experimental results of the embodiments, and the scope and content of the present invention should not be interpreted as being reduced or limited by the embodiments and the like. The effects of each of various embodiments of the invention, which are not explicitly set forth below, will be described in detail in a corresponding section.The following experimental results show comparison results of the properties and compositions of an epoxy reactive diluent prepared according to an embodiment of the present invention and an epoxy reactive diluent prepared according to a conventional method.Cardanol (720 g, 1.0 eq) and epicholorhydrin (670 g, 3.0 eq) were fed into a reactor, and 40% NaOH (337.7 g, 1.0 eq) was added thereto dropwise for 90 minutes until a reaction temperature increased from 20° C. to 70° C. After completing the addition of NaOH, the reactants were further reacted for 2 hours while maintaining a reaction temperature of the reactants at 55 to 60° C., thereby obtaining a solution including epoxidized cardanol. The solution was analyzed by gas chromatography (GC). As a result, the solution was analyzed to be constituted of 1.2% unreacted cardanol, 85.9% epoxidized cardanol, 4.2% 2-methyl-cardol glycidyl ether, 4.7% cardol-diglycidyl ether, and 3.6% dimer.Next, the obtained solution was filtered to remove a sodium chloride salt. The resultant filtrate was injected into a separatory funnel, followed by allowing layer separation to occur for 1 hour. A separated lower layer was removed, and a separated upper layer was fed into a reactor, followed by vacuum-evaporating at 120° C. to remove water and unreacted epicholorhydrin. The resultant concentrate was filtered to remove a sodium chloride salt, thereby obtaining an epoxy reactive diluent.Cardanol (720 g, 1.0 eq) and epicholorhydrin (670 g, 3.0 eq) were fed into a reactor, and 40% NaOH (405 g, 1.2 eq) was added thereto dropwise for 90 minutes until a reaction temperature increased from 50° C. to 90° C. After completing the addition of NaOH, the reactants were further reacted for 2 hours while maintaining a reaction temperature of the reactants at 60 to 65° C., thereby obtaining a solution including epoxidized cardanol. The solution was analyzed by gas chromatography (GC). As a result, the solution was analyzed to be constituted of 1.4% unreacted cardanol, 81.8% epoxidized cardanol, 7.1% 2-methyl-cardol glycidyl ether, 6.8% cardol-diglycidyl ether, and 2.6% dimer.Next, the obtained solution was filtered to remove a sodium chloride salt. The resultant filtrate was injected into a separatory funnel, followed by allowing layer separation to occur for 1 hour. A separated lower layer was removed, and a separated upper layer was fed into a reactor, followed by vacuum-evaporating at 120° C. to remove water and unreacted epicholorhydrin. The resultant concentrate was filtered to remove a sodium chloride salt, thereby obtaining an epoxy reactive diluent.Cardanol (720 g, 1.0 eq) and epicholorhydrin (670 g, 3.0 eq) were fed into a reactor, and 50% NaOH (347.4 g, 1.2 eq) was added thereto dropwise for 90 minutes until a reaction temperature increased from 50° C. to 90° C. After completing the addition of NaOH, the reactants were further reacted for 2 hours while maintaining a reaction temperature of the reactants at 60 to 65° C., thereby obtaining a solution including epoxidized cardanol. The solution was analyzed by gas chromatography (GC). As a result, the solution was analyzed to be constituted of 3.6% unreacted cardanol, 81.7% epoxidized cardanol, 6.9% 2-methyl-cardol glycidyl ether, 5.6% cardol-diglycidyl ether, and 2.2% dimer.Next, the obtained solution was filtered to remove a sodium chloride salt. The resultant filtrate was injected into a separatory funnel, followed by allowing layer separation to occur for 1 hour. A separated lower layer was removed, and a separated upper layer was fed into a reactor, followed by vacuum-evaporating at 120° C. to remove water and unreacted epicholorhydrin. The resultant concentrate was filtered to remove a sodium chloride salt, thereby obtaining an epoxy reactive diluent.Cardanol (720 g, 1.0 eq) and epicholorhydrin (670 g, 3.0 eq) were fed into a reactor, and 30% NaOH (501.8 g, 1.2 eq) was added thereto dropwise for 90 minutes until a reaction temperature increased from 50° C. to 90° C. After completing the addition of NaOH, the reactants were further reacted for 2 hours while maintaining a reaction temperature of the reactants at 60 to 65° C., thereby obtaining a solution including epoxidized cardanol. The solution was analyzed by gas chromatography (GC). As a result, the solution was analyzed to be constituted of 3.9% unreacted cardanol, 80.7% epoxidized cardanol, 7.7% 2-methyl-cardol glycidyl ether, 5.9% cardol-diglycidyl ether, and 1.68% dimer.Next, the obtained solution was filtered to remove a sodium chloride salt. The resultant filtrate was injected into a separatory funnel, followed by allowing layer separation to occur for 1 hour. A separated lower layer was removed, and a separated upper layer was fed into a reactor, followed by vacuum-evaporating at 120° C. to remove water and unreacted epicholorhydrin. The resultant concentrate was filtered to remove a sodium chloride salt, thereby obtaining an epoxy reactive diluent.Cardanol (720 g, 1.0 eq), acetone (576 g, 0.8 part by weight based on 1 part by weight of cardanol), and NaOH (96.5 g, 1.0 eq) were fed into a reactor, and epicholorhydrin (401.7 g, 1.8 eq) was added thereto for 90 minutes until a reaction temperature increased from 50° C. to 70° C. After completing the addition of epicholorhydrin, the reactants were further reacted for 2 hours while maintaining a reaction temperature of the reactants at 60 to 65° C., thereby obtaining a solution including epoxidized cardanol. The solution was analyzed by gas chromatography (GC). As a result, the solution was analyzed to be constituted of 3.3% unreacted cardanol, 78.6% epoxidized cardanol, 2.9% 2-methyl-cardol glycidyl ether, 4.1% cardol-diglycidyl ether, and 11.1% dimer.Next, the solution was vacuum-evaporated at 120° C. to remove acetone and unreacted epicholorhydrin. The resultant concentrate was filtered to remove a sodium chloride salt, thereby obtaining an epoxy reactive diluent.Cardanol (720 g, 1.0 eq) and epicholorhydrin (670 g, 3.0 eq) were fed into a reactor, and 50% potassium hydroxide (487.2 g, 1.2 eq) was added thereto dropwise for 90 minutes until a reaction temperature increased from 50° C. to 90° C. After completing the addition of potassium hydroxide, the reactants were further reacted for 2 hours while maintaining a reaction temperature of the reactants at 60 to 65° C., thereby obtaining a solution including epoxidized cardanol. The solution was analyzed by gas chromatography (GC). As a result, the solution was analyzed to be constituted of 4.8% unreacted cardanol, 76.5% epoxidized cardanol, 9.8% 2- methyl-cardol glycidyl ether, 6.0% cardol-diglycidyl ether, and 3.6% dimer.Next, the obtained solution was filtered to remove a sodium chloride salt. The resultant filtrate was injected into a separatory funnel, followed by allowing layer separation to occur for 1 hour. A separated lower layer was removed, and a separated upper layer was fed into a reactor, followed by vacuum-evaporating at 120° C. to remove water and unreacted epicholorhydrin. The resultant concentrate was filtered to remove a sodium chloride salt, thereby obtaining an epoxy reactive diluent.Next, the obtained solution was filtered to remove a potassium chloride salt. The resultant filtrate was injected into a separatory funnel, followed by allowing layer separation to occur for 1 hour. A separated lower layer was removed, and a separated upper layer was fed into a reactor, followed by vacuum-evaporating at 120° C. to remove water and unreacted epicholorhydrin. The resultant concentrate was filtered to remove a potassium chloride salt, thereby obtaining an epoxy reactive diluent.The epoxy reactive diluent prepared according to the example and a conventional epoxy reactive diluent product (NC-513, Cardolite) were subjected to GC measurement and compared to each other. Results are shown in .Referring to , it was confirmed that the diluent prepared according to the example exhibited high purity due to a high product content and low contents of unreacted cardanol and by-products, compared to the conventional product.The aforementioned description of the present invention is provided by way of example and those skilled in the art will understand that the present invention can be easily changed or modified into other specified forms without change or modification of the technical spirit or essential characteristics of the present invention. Therefore, it should be understood that the aforementioned examples are only provided by way of example and not provided to limit the present invention. For example, each of constituents described as a single form may be separately implemented and, similarly, constituents described as being separated may be implemented in a combined form.It should be understood that the scope of the present invention is defined by the following claims and the invention is to cover all modifications, equivalents, and alternatives falling within the spirit and scope of the invention as defined by the claims.

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Circuit system and manufacturing and operating method therefor

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Steel sheet having high strength and high toughness, and manufacturing method therefor

Номер патента: EP4386102A1. Автор: Young-Jae Park,Je-Wook JANG,Sun-Woo Lim,Seong-Ju Hong. Владелец: Posco Co Ltd. Дата публикации: 2024-06-19.

Calcium-containing graphite steel having excellent machinability, and manufacturing method therefor

Номер патента: EP4421201A1. Автор: Sangwoo CHOI,Namsuk LIM. Владелец: Posco Co Ltd. Дата публикации: 2024-08-28.

Plated steel sheet having excellent strength, formability and surface quality, and manufacturing method therefor

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Composition for tissue repair and manufacturing method therefor

Номер патента: CA3100186C. Автор: Jun Bae Kim,Jae Won Yu,Myung Seob Shim. Владелец: Dexlevo Inc. Дата публикации: 2024-01-02.

Highly thick steel material having excellent low-temperature impact toughness and manufacturing method therefor

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Austenitic stainless steel and manufacturing method therefor

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Wire rod for concrete reinforced steel fiber, steel fiber, and manufacturing method therefor

Номер патента: EP4265769A1. Автор: Jaeseung LEE,Yo-Sep Yang,Manjae LEE,Je-Wook JANG. Владелец: Posco Co Ltd. Дата публикации: 2023-10-25.

Highly thick steel material having excellent low-temperature impact toughness and manufacturing method therefor

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Steel sheet and manufacturing method therefor

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Highly thick steel material having excellent low-temperature impact toughness and manufacturing method therefor

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Recycled asphalt concrete with minimized amount of flat and elongated particles, and manufacturing method therefor

Номер патента: US09884786B2. Автор: Hee Jung PARK. Владелец: JUNGANG ASCON Co Ltd. Дата публикации: 2018-02-06.

High-strength anti-collapse oil casing and manufacturing method therefor

Номер патента: EP4130327A1. Автор: Zhonghua Zhang,Jiaming LIU,Weiguo Yang,Xiaoming Dong. Владелец: Baoshan Iron and Steel Co Ltd. Дата публикации: 2023-02-08.

Wire rod having excellent drawability, and manufacturing method therefor

Номер патента: US20240254588A1. Автор: Dae-Hwan Kim,Jae-Seung Lee,In-Gyu Park,Byoung-Gab LEE,Se-hee Kim. Владелец: Posco Co Ltd. Дата публикации: 2024-08-01.

Strip steel and manufacturing method therefor

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Tin plate and manufacturing method therefore

Номер патента: EP4459001A1. Автор: Yifeng Song,Chongxiang YUE,Xiaohan XU,Haotian Lan. Владелец: Zhangjiagang Yangtze River Cold Rolled Plate Co Ltd. Дата публикации: 2024-11-06.

Metal matrix self-lubricating composite and manufacturing method therefor

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Porous aluminum body and manufacturing method therefor

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Ceramic microfluidic reactor and manufacturing method therefor

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Display panel and manufacturing method therefor

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Display panel and manufacturing method therefor

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Aramid dope-dyed yarn and manufacturing method therefor

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Contact lens and manufacturing method therefor

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Electrostatic chuck heater and manufacturing method therefor

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High strength hot-rolled steel sheet having excellent formability, and manufacturing method therefor

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Wire rod for concrete reinforcing steel fiber, steel fiber, and manufacturing method therefor

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Easy-print packaging sheet and manufacturing method therefor

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Steel wire with improved drawability, and manufacturing method therefor

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Nickel-free lpg marine steel plate and manufacturing method therefor

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Steel wire with improved drawability, and manufacturing method therefor

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Nitride semiconductor substrate and manufacturing method therefor

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Hot-rolled steel for hyper tube and manufacturing method therefor

Номер патента: CA3241605A1. Автор: Hong-Seok Yang,Seok-Jong SEO,Nam-Il Jo,Jin-Joo CHOI,Seung-Gohn KIM. Владелец: Posco Co Ltd. Дата публикации: 2023-06-29.

Grain-oriented electrical steel sheet and manufacturing method therefor

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Galvanized steel sheet and manufacturing method therefor

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High strength hot-rolled steel sheet having excellent formability, and manufacturing method therefor

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Ferritic stainless steel and manufacturing method therefor

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Environmentally-friendly quartz composite board and manufacturing method therefor

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Highly anticorrosive martensitic stainless steel, and manufacturing method therefor

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Polyurethane foam and manufacturing method therefor

Номер патента: US20240279380A1. Автор: Jung Ho Ryu,Jeong Min HONG,Ho Seok HAN. Владелец: Sk Pucore Co Ltd. Дата публикации: 2024-08-22.

Non-slip cold-resistant loop mat and manufacturing method therefor

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Easy-print packaging sheet and manufacturing method therefor

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Steel and steel wire, which are for spring, and manufacturing methods therefor

Номер патента: US20240344185A1. Автор: Youngsoo CHUN,Myungsoo CHOI,Kwanho KIM,Seokhawan CHOI. Владелец: Posco Co Ltd. Дата публикации: 2024-10-17.

Ultrahigh-strength hot-rolled steel sheet having excellent formability and manufacturing method therefor

Номер патента: EP4438762A1. Автор: Joo-Hyun Ryu,Je-Woong LEE,Tae-Jin Song. Владелец: Posco Co Ltd. Дата публикации: 2024-10-02.

Polymer solid electrolyte and manufacturing method therefor

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Ultra-high strength steel sheet having excellent bendability, and manufacturing method therefor

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Foamed fabric structure and manufacturing method therefor

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Grain-oriented electrical steel sheet and manufacturing method therefor

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Guide pin and manufacturing method therefor

Номер патента: US20200183096A1. Автор: Xueyun HUANG. Владелец: Chaozhou Three Circle Group Co Ltd. Дата публикации: 2020-06-11.

Ferritic stainless steel having improved magnetic properties and manufacturing method therefor

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Grain-oriented electrical steel sheet and manufacturing method therefor

Номер патента: US12084736B2. Автор: Dae-Uk KIM,Jong-Tae Park,Oh-Yeoul Kwon,Woo-Sin KIM. Владелец: Posco Co Ltd. Дата публикации: 2024-09-10.

Heating cooker using ceramic heating element and manufacturing method therefor

Номер патента: US20190133370A1. Автор: Jong Hyun Kim. Владелец: Pellytech Co ltd. Дата публикации: 2019-05-09.

Hot-dip galvanized steel plate and manufacturing method therefor

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Номер патента: US20230120353A1. Автор: Dong Gun Lee. Владелец: Esol Inc. Дата публикации: 2023-04-20.

Steel plate having excellent resistance to fatigue crack growth and its manufacturing method

Номер патента: CA2971490C. Автор: Qing Shi,Zicheng Liu. Владелец: Baoshan Iron and Steel Co Ltd. Дата публикации: 2023-08-29.

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Номер патента: US12109776B2. Автор: Bo Yan,Sihai JIAO. Владелец: Baoshan Iron and Steel Co Ltd. Дата публикации: 2024-10-08.

Cold forged gear steel and manufacturing method therefor

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Fine grained pure titanium and manufacturing method therefor

Номер патента: US20240076768A1. Автор: Chan-Hee Park,Jong-taek YEOM,Jae-keun HONG. Владелец: Korea Institute of Materials Science KIMS. Дата публикации: 2024-03-07.

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Номер патента: WO2005068667A1. Автор: Hidekuni Murakami,Shigeru Hirano,Akihiro Enomoto. Владелец: NIPPON STEEL CORPORATION. Дата публикации: 2005-07-28.

Non-oriented electrical steel sheet and manufacturing method therefor

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Cold forged gear steel and manufacturing method therefor

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Shell assembly and preparation method therefor, and electronic device

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Номер патента: EP4245876A1. Автор: Sung-il Kim,Hyun-taek NA. Владелец: Posco Co Ltd. Дата публикации: 2023-09-20.

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Номер патента: US20240035107A1. Автор: Dae-woo Kim. Владелец: Posco Co Ltd. Дата публикации: 2024-02-01.

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Номер патента: EP4265797A1. Автор: Dae-woo Kim. Владелец: Posco Co Ltd. Дата публикации: 2023-10-25.

High-entropy alloy and manufacturing method therefor

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Номер патента: US20240110263A1. Автор: Young-Mok Kim,Joungwook KIM,Eunsoo Yang,Dogyun BYEON,Seok-Su SOHN,Tae-Jin Jang. Владелец: LG ELECTRONICS INC. Дата публикации: 2024-04-04.

Hot dipped high manganese steel and manufacturing method therefor

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(meth)acrylate compounds as reactive diluents for polyaddition systems

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Номер патента: US20220168732A1. Автор: Do Hyun Kim,Hyung Il Choi,Jin Ho Oh. Владелец: MOP Co Ltd. Дата публикации: 2022-06-02.

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Номер патента: US20220402829A1. Автор: Hideki Yamamoto,Kouhei Suzuki,Mikio Ishihara. Владелец: Denso Corp. Дата публикации: 2022-12-22.

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Номер патента: EP4451314A1. Автор: Shinsuke Sakai,Tetsuya Chiba. Владелец: Success Co Ltd. Дата публикации: 2024-10-23.

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Номер патента: US09425345B2. Автор: Masahiro Sakurada,Izumi Fusegawa,Ryoji Hoshi. Владелец: Shin Etsu Handotai Co Ltd. Дата публикации: 2016-08-23.

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Flame-retardant polyester fiber with excellent dyeability and manufacturing method therefor

Номер патента: US20230313418A1. Автор: Seong Su Lim. Владелец: Toray Advanced Materials Korea Inc. Дата публикации: 2023-10-05.

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Wire rod having excellent drawability, and manufacturing method therefor

Номер патента: EP4357477A1. Автор: Dae-Hwan Kim,Jae-Seung Lee,In-Gyu Park,Byoung-Gab LEE,Se-hee Kim. Владелец: Posco Co Ltd. Дата публикации: 2024-04-24.

Electrode for biosensor for nadh measurement and manufacturing method therefor

Номер патента: EP3736565A1. Автор: Kyuhong LEE. Владелец: Korea Research Institute of Chemical Technology KRICT. Дата публикации: 2020-11-11.

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Номер патента: US20230264284A1. Автор: Jihyung LEE. Владелец: Amosense Co Ltd. Дата публикации: 2023-08-24.

Active carbon and manufacturing method therefor

Номер патента: EP4140949A1. Автор: Changhoon Lee,Yochan JEONG. Владелец: LG Energy Solution Ltd. Дата публикации: 2023-03-01.

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Номер патента: AU2022209558A9. Автор: ZAENAL Awaludin,Yoshinori Nishiki. Владелец: DE NORA PERMELEC LTD. Дата публикации: 2024-07-11.

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Номер патента: EP4066956A1. Автор: Ken Miura,Yusuke Nojima,Satoshi Ueoka,Yuta Tamura,Takahiro Hirano,Ori Kumano. Владелец: JFE Steel Corp. Дата публикации: 2022-10-05.

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Номер патента: AU2023203287A1. Автор: Han-Wei Hsieh,Ding-De He. Владелец: Advanced Lithium Electrochemistry Co Ltd. Дата публикации: 2024-08-29.

High-voltage composite positive electrode material and manufacturing method thereof

Номер патента: AU2023203287B2. Автор: Han-Wei Hsieh,Ding-De He. Владелец: Advanced Lithium Electrochemistry Co Ltd. Дата публикации: 2024-09-19.

Microcapsule imaging system including non-photopolymerizable reactive diluent

Номер патента: US20230393459A1. Автор: Wei You,Rong-Chang Liang,Chun-Jen Chen. Владелец: Polaroid Ip BV. Дата публикации: 2023-12-07.

Polymeric glycidyl ethers reactive diluents

Номер патента: EP2435494A1. Автор: Marcus Hummel,Ludwig Huelskaemper,Markus Schrotz. Владелец: Dow Global Technologies LLC. Дата публикации: 2012-04-04.

Microcapsule imaging system including non-photopolymerizable reactive diluent

Номер патента: WO2023237992A1. Автор: Wei You,Rong-Chang Liang,Chun-Jen Chen. Владелец: Polaroid Ip B.V.. Дата публикации: 2023-12-14.

Wire mesh products and manufacturing systems and methods therefore

Номер патента: GB2626415A. Автор: M Knott James. Владелец: Riverdale Mills Corp. Дата публикации: 2024-07-24.

Physical-health tuning means, and manufacturing and use methods therefor

Номер патента: US20020041185A1. Автор: Masakazu Karita. Владелец: Individual. Дата публикации: 2002-04-11.

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Номер патента: US20240165692A1. Автор: James M. Knott, JR.. Владелец: Riverdale Mills Corp. Дата публикации: 2024-05-23.

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Номер патента: US7104946B2. Автор: Masakazu Karita. Владелец: Individual. Дата публикации: 2006-09-12.

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Номер патента: US20040161663A1. Автор: Yukimasa Nishide. Владелец: Toyota Motor Corp. Дата публикации: 2004-08-19.

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Номер патента: KR101964371B1. Автор: 박용호,이진주,진창성. Владелец: 한화디펜스 주식회사. Дата публикации: 2019-04-01.

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Номер патента: US09925421B2. Автор: Young Jun Kim. Владелец: ACEGOLF Co Ltd. Дата публикации: 2018-03-27.

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Номер патента: US09589837B2. Автор: Ying Li,GuanPing WU. Владелец: Semiconductor Manufacturing International Shanghai Corp. Дата публикации: 2017-03-07.

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Номер патента: EP4043191A1. Автор: Eui Bae Moon. Владелец: GET2GET COM. Дата публикации: 2022-08-17.

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Номер патента: AU2023349665A1. Автор: Jianbin Fan,Xiajie Meng. Владелец: Tongwei Solar Chengdu Co Ltd. Дата публикации: 2024-10-17.

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Номер патента: US09838816B2. Автор: XIN Wang,Yitao Liu. Владелец: Goertek Inc. Дата публикации: 2017-12-05.

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Номер патента: US8008100B2. Автор: Ming-Kuei Lin,Cheng-Yi Chang,Chih-Chia Tsai. Владелец: Everylight Electronics Co Ltd. Дата публикации: 2011-08-30.

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Номер патента: US20200006372A1. Автор: Feng Ji,Haoyu Chen,Qiwei Wang,Jinshuang Zhang. Владелец: Shanghai Huali Microelectronics Corp. Дата публикации: 2020-01-02.

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Номер патента: US6259189B1. Автор: Min Soo Kim,Jeong Ho Cho,Nak Cheol Sung. Владелец: Samsung Electro Mechanics Co Ltd. Дата публикации: 2001-07-10.

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Номер патента: US20180138103A1. Автор: Tsung-Yi Lu. Владелец: Primax Electronics Ltd. Дата публикации: 2018-05-17.

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Номер патента: US09876274B2. Автор: Jae Beom Kim,Sung Woo BANG. Владелец: Individual. Дата публикации: 2018-01-23.

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Номер патента: US09484485B2. Автор: Daisuke Adachi,Hisashi Uzu. Владелец: Kaneka Corp. Дата публикации: 2016-11-01.

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Номер патента: US20020003912A1. Автор: Junya Ooitsu. Владелец: Koyo Seiko Co Ltd. Дата публикации: 2002-01-10.

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Номер патента: US09935262B2. Автор: Jinpyo Hong,Jabin LEE,Gwangguk AN. Владелец: Industry University Cooperation Foundation IUCF HYU. Дата публикации: 2018-04-03.

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Номер патента: US20140284859A1. Автор: Tatsuo Yamada,Kenji Nobusue. Владелец: Fukoku Co Ltd. Дата публикации: 2014-09-25.

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Номер патента: US20200020806A1. Автор: Fei Zhou. Владелец: Semiconductor Manufacturing International Shanghai Corp. Дата публикации: 2020-01-16.

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Номер патента: US09906848B2. Автор: Hsinmin Huang. Владелец: Tang Band Industries Co Ltd. Дата публикации: 2018-02-27.

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Номер патента: US20180097082A1. Автор: Ming Zhou. Владелец: Semiconductor Manufacturing International Shanghai Corp. Дата публикации: 2018-04-05.

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Номер патента: US20240258028A1. Автор: Xiaobing Zhou,Pan Liu,Haibo LIU. Владелец: Mazo Tech Co Ltd. Дата публикации: 2024-08-01.

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Номер патента: US20240251684A1. Автор: Shujun YE,Yeliang Wang. Владелец: Yangtze Delta Graduate School Of Bit Jiaxing. Дата публикации: 2024-07-25.

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Номер патента: US09728670B2. Автор: Shaohua Huang,Jyh-Chiarng Wu. Владелец: Xiamen Sanan Optoelectronics Technology Co Ltd. Дата публикации: 2017-08-08.

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Номер патента: US20170186651A1. Автор: Longqiang Shi. Владелец: Shenzhen China Star Optoelectronics Technology Co Ltd. Дата публикации: 2017-06-29.

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Номер патента: AU2024204909A1. Автор: HONG Chen,Yifeng Chen,Daming Chen,Chengfa Liu. Владелец: Trina Solar Co Ltd. Дата публикации: 2024-08-08.

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Номер патента: US20070224805A1. Автор: Mitsuru Oota. Владелец: NEC Electronics Corp. Дата публикации: 2007-09-27.

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Номер патента: GB2627622A. Автор: Wang Ke,CAO Zhanfeng,Zhang JiaXiang. Владелец: BOE Technology Group Co Ltd. Дата публикации: 2024-08-28.

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Номер патента: US12103606B2. Автор: Jong Han Kim. Владелец: HL Mando Corp. Дата публикации: 2024-10-01.

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Номер патента: US12068409B2. Автор: Kai Cheng,Yu Zhu. Владелец: Enkris Semiconductor Inc. Дата публикации: 2024-08-20.

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Номер патента: US09954074B2. Автор: Shengrong Zhong,Dongfei Zhou,Xiaoshe Deng,Genyi Wang. Владелец: CSMC Technologies Fab1 Co Ltd. Дата публикации: 2018-04-24.

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Номер патента: US09553060B2. Автор: Kazuyuki Omori. Владелец: Renesas Electronics Corp. Дата публикации: 2017-01-24.

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Номер патента: US20190214477A1. Автор: Hsin-Hui Hsu,Chih-Ming Sun,Ming-Han Tsai. Владелец: PixArt Imaging Inc. Дата публикации: 2019-07-11.

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Номер патента: US20160365423A1. Автор: Hsin-Hui Hsu,Chih-Ming Sun,Ming-Han Tsai. Владелец: PixArt Imaging Inc. Дата публикации: 2016-12-15.

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Номер патента: US9941379B2. Автор: Hsin-Hui Hsu,Chih-Ming Sun,Ming-Han Tsai. Владелец: PixArt Imaging Inc. Дата публикации: 2018-04-10.

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Номер патента: US20180190786A1. Автор: Hsin-Hui Hsu,Chih-Ming Sun,Ming-Han Tsai. Владелец: PixArt Imaging Inc. Дата публикации: 2018-07-05.

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Номер патента: EP4035570A1. Автор: JI Tong,Jinmeng LI,Zhijia Liu. Владелец: Be Green Packaging Co Ltd. Дата публикации: 2022-08-03.

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Номер патента: EP3683839A1. Автор: Weiyun HUANG,Tianyi CHENG. Владелец: Chengdu BOE Optoelectronics Technology Co Ltd. Дата публикации: 2020-07-22.

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Номер патента: US12032187B2. Автор: Tsutomu Imamura,Yasutaka Tanabe,Masaaki Imura,Keiichi Sahara. Владелец: Nippon Electric Glass Co Ltd. Дата публикации: 2024-07-09.

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Номер патента: AU2022267431A1. Автор: Xiaobing Zhu,Jianquan Chen,Yanbin WAN. Владелец: Qingdao Haier Refrigerator Co Ltd. Дата публикации: 2023-11-09.

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Номер патента: US20230089435A1. Автор: Yong Woon Lim. Владелец: Samsung Display Co Ltd. Дата публикации: 2023-03-23.

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Номер патента: US20150293521A1. Автор: Fatih Mert OZKESKIN. Владелец: Applied Materials Inc. Дата публикации: 2015-10-15.

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Номер патента: US20060220231A1. Автор: Mitsuru Oota. Владелец: NEC Electronics Corp. Дата публикации: 2006-10-05.

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Номер патента: US20240274501A1. Автор: Weiyuan Yang. Владелец: SIPLP Microelectronics Chongqing Ltd. Дата публикации: 2024-08-15.

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Номер патента: US20240318920A1. Автор: Kaijian WANG. Владелец: Zhejiang Ascenrise Heat Pump Co Ltd. Дата публикации: 2024-09-26.

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Номер патента: US20240357864A1. Автор: Xin Mou,Yongfu DIAO. Владелец: Chengdu BOE Optoelectronics Technology Co Ltd. Дата публикации: 2024-10-24.

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Номер патента: US12125830B2. Автор: Soohyun KIM,Wonseok Choi,Sungmin Park. Владелец: LG ELECTRONICS INC. Дата публикации: 2024-10-22.

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Номер патента: US12112882B2. Автор: Kil Jae Jang. Владелец: Amosense Co Ltd. Дата публикации: 2024-10-08.

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Номер патента: US09958855B2. Автор: Fatih Mert OZKESKIN. Владелец: Applied Materials Inc. Дата публикации: 2018-05-01.

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Номер патента: US09893233B2. Автор: Chang Mo KANG,Jun Youb LEE,Dong Seon LEE,Duk Jo KONG. Владелец: GWANGJU INSTITUTE OF SCIENCE AND TECHNOLOGY. Дата публикации: 2018-02-13.

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Номер патента: US12095114B2. Автор: Hee Min Cho,Byung Hyun Kim,Pyung Yong PARK. Владелец: W Scope Korea Co Ltd. Дата публикации: 2024-09-17.

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Номер патента: US20210198818A1. Автор: Jang Whan Kim. Владелец: Lsk Finetex Co ltd. Дата публикации: 2021-07-01.

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Номер патента: AU2022454569A1. Автор: Jianbin Fan,Guoqiang Xing,Xiajie Meng. Владелец: Tongwei Solar Chengdu Co Ltd. Дата публикации: 2024-07-18.

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Номер патента: US20230010940A1. Автор: YI WU,Mingzhe RONG,Chunping NIU,Hailong He,Hongrui REN. Владелец: Xian Jiaotong University. Дата публикации: 2023-01-12.

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Номер патента: US11980101B2. Автор: YI WU,Mingzhe RONG,Chunping NIU,Hailong He,Hongrui REN. Владелец: Xian Jiaotong University. Дата публикации: 2024-05-07.

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Номер патента: US20180178271A1. Автор: Ji-Yong Lee,Cheol-Ung Lee. Владелец: Hyundai Motor Co. Дата публикации: 2018-06-28.

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Номер патента: US20230358921A1. Автор: PENG Wang,Chuanqing Yu. Владелец: YANTAI RAYTRON TECHNOLOGY Co Ltd. Дата публикации: 2023-11-09.

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Номер патента: US20120113368A1. Автор: Peilin Zhang. Владелец: Beijing BOE Optoelectronics Technology Co Ltd. Дата публикации: 2012-05-10.

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Номер патента: EP4224221A1. Автор: PENG Wang,Chuanqing Yu. Владелец: YANTAI RAYTRON TECHNOLOGY Co Ltd. Дата публикации: 2023-08-09.

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Номер патента: EP4447622A1. Автор: Zhongjian CHEN,Shaofei ZHOU,Wanglin LU,Xuanling LIANG. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-10-16.

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Номер патента: US09431290B2. Автор: Yasushi Niimura. Владелец: Fuji Electric Co Ltd. Дата публикации: 2016-08-30.

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Номер патента: EP4415032A1. Автор: Bochang CHEN. Владелец: Hygon Information Technology Co Ltd. Дата публикации: 2024-08-14.

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Номер патента: US20060012639A1. Автор: Hirokazu Komuro. Владелец: Canon Inc. Дата публикации: 2006-01-19.

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Номер патента: EP4451455A1. Автор: Tao Li. Владелец: Zhuhai Cosmx Battery Co Ltd. Дата публикации: 2024-10-23.

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Номер патента: US09902193B2. Автор: Tae Eun Kim. Владелец: Individual. Дата публикации: 2018-02-27.

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Номер патента: US09643824B2. Автор: Zhaoyin Xiao. Владелец: Zhejiang Topsun Logistic Control Co Ltd. Дата публикации: 2017-05-09.

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Номер патента: EP4386825A1. Автор: LI YANG,Liang Shi. Владелец: Chongqing Alpha And Omega Semiconductor Ltd. Дата публикации: 2024-06-19.

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Номер патента: EP4404281A1. Автор: Yaolun HUANG. Владелец: Cando Solarphotoelectric Technology Changzhou Co Ltd. Дата публикации: 2024-07-24.

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Номер патента: EP3813127A1. Автор: Song BAI,Tongtong YANG. Владелец: CETC 55 Research Institute. Дата публикации: 2021-04-28.

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Номер патента: US20220344315A1. Автор: YuJu CHEN. Владелец: BOE Technology Group Co Ltd. Дата публикации: 2022-10-27.

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Номер патента: EP4177948A1. Автор: Fan Zhang,Yongsheng Wu,Tingfang ZHANG,Jiapeng Qi. Владелец: Fujian Prima Optoelectronics Co Ltd. Дата публикации: 2023-05-10.

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Номер патента: US20240128339A1. Автор: Le Li,Jun Zhou,Guangjie XUE. Владелец: Wuhan Xinxin Semiconductor Manufacturing Co Ltd. Дата публикации: 2024-04-18.

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Номер патента: EP4401078A1. Автор: Peng Liu,Baohua Zhang. Владелец: Yangtze Memory Technologies Co Ltd. Дата публикации: 2024-07-17.

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Номер патента: US20210181799A1. Автор: Ju Ho Kim,Jae Ho Shin. Владелец: Samsung Electro Mechanics Co Ltd. Дата публикации: 2021-06-17.

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Номер патента: US20230008993A1. Автор: Xiaoping Zhang. Владелец: Xiamen Silan Advanced Compound Semiconductor Co Ltd. Дата публикации: 2023-01-12.

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Номер патента: US20120251055A1. Автор: Masami Inoue,Masayuki Hodono,Yuichi Tsujita,Akiko Nagafuji. Владелец: Nitto Denko Corp. Дата публикации: 2012-10-04.

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Номер патента: US20200294953A1. Автор: Takafumi Yamada,Hiromichi Gohara. Владелец: Fuji Electric Co Ltd. Дата публикации: 2020-09-17.

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Номер патента: US20160240528A1. Автор: Shuo Zhang,Xiaoshe Deng,Genyi Wang,Qiang RUI. Владелец: CSMC Technologies Fab1 Co Ltd. Дата публикации: 2016-08-18.

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Номер патента: EP4210180A1. Автор: Wang Xiong,Zhigang Zhao,Beijun LI. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2023-07-12.

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Номер патента: US20020158277A1. Автор: Jun Osanai,Hirofumi Harada. Владелец: Individual. Дата публикации: 2002-10-31.

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Номер патента: EP4228007A1. Автор: Tao Liu,Wei Lu,Haijun Li,Juncai Ma,Zhili Zhang,Cen TANG,Jin Rao,Lingcong LE. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2023-08-16.

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Номер патента: EP4145515A1. Автор: Jian Ye. Владелец: Wuhan China Star Optoelectronics Semiconductor Display Technology Co Ltd. Дата публикации: 2023-03-08.

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Номер патента: US20040057154A1. Автор: Hideo Itakura,Katsuya Kikuiri. Владелец: Alps Electric Co Ltd. Дата публикации: 2004-03-25.

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Номер патента: US20030197233A1. Автор: Takashi Shiotani,Yasuki Sakurai,Michiharu Itou. Владелец: Fujitsu Ltd. Дата публикации: 2003-10-23.

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Номер патента: US20240282621A1. Автор: Wenwen Zhang,Renrui HUANG,Yongzhi FANG. Владелец: CSMC Technologies Fab2 Co Ltd. Дата публикации: 2024-08-22.

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Номер патента: US20240280427A1. Автор: Tadao Matsunaga,Tsuyoshi Nakayama,Yoichi Haga,Kenta Nakamura,Kenta Katou. Владелец: Asahi Intecc Co Ltd. Дата публикации: 2024-08-22.

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Номер патента: US12100890B2. Автор: Yi Wang,GANG Qi,ZHENYU Jia,Feng Qin,Baiquan LIN,Kerui XI. Владелец: Shanghai AVIC Optoelectronics Co Ltd. Дата публикации: 2024-09-24.

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Номер патента: US20240322066A1. Автор: Zhijie Ma. Владелец: Xian Longi Solar Technology Co Ltd. Дата публикации: 2024-09-26.

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Номер патента: US12107191B2. Автор: Je Won YOO,Hyun Min Cho,Tae Jin Kong,Hee Keun Lee. Владелец: Samsung Display Co Ltd. Дата публикации: 2024-10-01.

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Номер патента: EP4443519A1. Автор: Xi Liu,John Ye,Jun Lin,Kehao Zhang. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-10-09.

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Номер патента: US20240344563A1. Автор: Daisuke Kobayashi,Hiroki Komata,Kentaro SUGANUMA,Haruna KODAMA,Hiroki Shoda. Владелец: Nsk L Ltd. Дата публикации: 2024-10-17.

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Номер патента: US11949397B2. Автор: Chen Sun,Wei Pang,Menglun ZHANG. Владелец: ROFS Microsystem Tianjin Co Ltd. Дата публикации: 2024-04-02.

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Номер патента: US09960313B2. Автор: Masanori Maeda. Владелец: Panasonic Intellectual Property Management Co Ltd. Дата публикации: 2018-05-01.

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Номер патента: US09947785B2. Автор: Guipeng Sun,Guangtao Han. Владелец: CSMC Technologies Fab1 Co Ltd. Дата публикации: 2018-04-17.

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Номер патента: US09864247B1. Автор: Dongzi Gao. Владелец: Shenzhen China Star Optoelectronics Technology Co Ltd. Дата публикации: 2018-01-09.

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Номер патента: US09768292B2. Автор: Shu Zhang,Guipeng Sun,Guangtao Han. Владелец: CSMC Technologies Fab1 Co Ltd. Дата публикации: 2017-09-19.

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Номер патента: US09698298B2. Автор: Masanori Maeda. Владелец: Panasonic Intellectual Property Management Co Ltd. Дата публикации: 2017-07-04.

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Номер патента: US09508774B2. Автор: Koji Iizuka. Владелец: Renesas Electronics Corp. Дата публикации: 2016-11-29.

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Номер патента: US12041803B2. Автор: Gang Yu. Владелец: Beijing BOE Technology Development Co Ltd. Дата публикации: 2024-07-16.

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Номер патента: EP4012758A1. Автор: Xiao Zhu. Владелец: Changxin Memory Technologies Inc. Дата публикации: 2022-06-15.

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Номер патента: US8614469B2. Автор: Yoshihiko Kusakabe,Toshifumi Iwasaki. Владелец: Renesas Electronics Corp. Дата публикации: 2013-12-24.

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Номер патента: EP4155813A1. Автор: Honghao DIAO,Lingxi HUANG. Владелец: Visiotech Ventures Pte Ltd. Дата публикации: 2023-03-29.

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Номер патента: US20120292699A1. Автор: XINPENG WANG. Владелец: Semiconductor Manufacturing International Shanghai Corp. Дата публикации: 2012-11-22.

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Номер патента: EP4095907A1. Автор: Jiwei Liu,Hongli SHI,Baoqing Pi. Владелец: Zhongshan Mulinsen Electronics Co Ltd. Дата публикации: 2022-11-30.

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Номер патента: US20210165152A1. Автор: Tao Wang. Владелец: BOE Optical Science and Technology Co Ltd. Дата публикации: 2021-06-03.

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Номер патента: US20210288082A1. Автор: Tingting Zhou,Bin Zhang,Xiaolong He,Yu Cheng Chan. Владелец: BOE Technology Group Co Ltd. Дата публикации: 2021-09-16.

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Номер патента: US12101891B2. Автор: Chih-Hung Chen,Chao Peng,Ke He. Владелец: Qing Ding Precision Electronics Huaian Co Ltd. Дата публикации: 2024-09-24.

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Номер патента: EP4123836A1. Автор: Hai Yu,Yafei Zhang,Dongdong Zhang,Feng Qu,Qianhong WU. Владелец: BOE Technology Group Co Ltd. Дата публикации: 2023-01-25.

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Номер патента: US20240341085A1. Автор: Zhi Zhang,Wenyu HUA. Владелец: ICLeague Technology Co Ltd. Дата публикации: 2024-10-10.

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Номер патента: EP4418844A1. Автор: XUE Zhou,Xiaojie Wang,Qing QIN,Huifang JIAO,Xixia LIU. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2024-08-21.

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Номер патента: US09640691B2. Автор: Yukihiro Yoshimine,Tsukasa Kawakami,Tasuku Ishiguro. Владелец: Panasonic Intellectual Property Management Co Ltd. Дата публикации: 2017-05-02.

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Номер патента: US09595520B2. Автор: Shuo Zhang,Xiaoshe Deng,Genyi Wang,Qiang RUI. Владелец: CSMC Technologies Fab1 Co Ltd. Дата публикации: 2017-03-14.

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Номер патента: US09580301B2. Автор: Changfeng Xia,Xinwei Zhang,Dan DAI,Guoping ZHOU. Владелец: CSMC Technologies Fab1 Co Ltd. Дата публикации: 2017-02-28.

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Номер патента: RU2435701C1. Автор: Лоран ГОТИ,Филипп БЕРНАДЕТ. Владелец: Эрбюс Операсьон (С.А.С). Дата публикации: 2011-12-10.

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Номер патента: US11781266B2. Автор: Gu Hwan KIM. Владелец: Jeongsan International Co ltd. Дата публикации: 2023-10-10.

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Номер патента: RU2651859C1. Автор: Вадим Евгеньевич Казанцев. Владелец: Вадим Евгеньевич Казанцев. Дата публикации: 2018-04-24.

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Номер патента: US10741661B2. Автор: Haixu Li. Владелец: BOE Technology Group Co Ltd. Дата публикации: 2020-08-11.

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Номер патента: US20180212032A1. Автор: Haixu Li. Владелец: BOE Technology Group Co Ltd. Дата публикации: 2018-07-26.

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Номер патента: US12076459B2. Автор: JungBok Park. Владелец: Medpark Co Ltd. Дата публикации: 2024-09-03.

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Номер патента: RU2559214C2. Автор: БОРК Феликс ФОН,Бьерн ЭБЕРЛЕ. Владелец: Акасол Гмбх. Дата публикации: 2015-08-10.

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Номер патента: EP4175059A1. Автор: Bo Young LEE,Ok Chul JUNG,Myeong Shin Lee. Владелец: Korea Aerospace Research Institute KARI. Дата публикации: 2023-05-03.

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Номер патента: WO2023112060A1. Автор: Swati Mayur DESHPANDE. Владелец: Deshpande Swati Mayur. Дата публикации: 2023-06-22.

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Номер патента: US20200075654A1. Автор: Yan Li,Wuzhi Zhang. Владелец: Shanghai Huali Integrated Circuit Manufacturing Co Ltd. Дата публикации: 2020-03-05.

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Номер патента: AU2023343924A1. Автор: Guoqiang Xing,Yongjie Wang,Tanghui YANG. Владелец: Tongwei Solar Meishan Co Ltd. Дата публикации: 2024-05-16.

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Номер патента: US20140077279A1. Автор: Ajin TU. Владелец: Semiconductor Manufacturing International Shanghai Corp. Дата публикации: 2014-03-20.

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Номер патента: AU2019433661A1. Автор: Pik Ho Liza Cheng. Владелец: Embry China Garments Ltd. Дата публикации: 2021-07-08.

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Номер патента: WO2013119009A1. Автор: Jong Won Lee,Chang Ho Cho,Sung Ki Min,Dong Hee Shim,Sang Yoong Lee. Владелец: SAMSUNG ELECTRONICS CO., LTD.. Дата публикации: 2013-08-15.

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Номер патента: US09543415B2. Автор: Chien Hung Liu,Zuqiang Wang. Владелец: BOE Technology Group Co Ltd. Дата публикации: 2017-01-10.

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Номер патента: RU2601692C2. Автор: Асаки СУДЗАКИ. Владелец: Кова Компани, Лтд.. Дата публикации: 2016-11-10.

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Номер патента: AU2013393218B2. Автор: Junying MA,Changgan JI,Ruiwen YIN. Владелец: ZHENGZHOU ZHONGYUAN DEFENSE MATERIAL Co Ltd. Дата публикации: 2017-04-06.

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Номер патента: AU2022355671A1. Автор: Hua Li,Weiming Lu,Yupeng JIN,Zhonglan LI. Владелец: Taizhou Longi Solar Technology Co Ltd. Дата публикации: 2024-04-04.

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Номер патента: AU2022352530A1. Автор: Hua Li,Weiming Lu,Yupeng JIN,Zhonglan LI. Владелец: Taizhou Longi Solar Technology Co Ltd. Дата публикации: 2024-04-04.

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Номер патента: EP4326026A1. Автор: Deyuan Xiao,Weiping BAI,Xingsong SU. Владелец: Changxin Memory Technologies Inc. Дата публикации: 2024-02-21.

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Номер патента: US20020108704A1. Автор: Kunihiko Ogawa,Akira Hiruma,Sadao Umezawa,Kihachiro Ishiguro,Yoshikane Takagi. Владелец: Shoritsu Plastics Ind Co Ltd. Дата публикации: 2002-08-15.

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Номер патента: US20240227248A1. Автор: Ping Yan,Long Liu,Yuan Huang,Binwen CHEN,Qiuyu QU. Владелец: Suzhou Reveda Medical Biotech Co Ltd. Дата публикации: 2024-07-11.

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Номер патента: US20180111310A1. Автор: Yao-Sheng Liu. Владелец: Ampacs Corp. Дата публикации: 2018-04-26.

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Номер патента: US20060081453A1. Автор: Hiromichi Koyama,Hideki Mitsuoka. Владелец: Individual. Дата публикации: 2006-04-20.

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Номер патента: US20170012060A1. Автор: Yue Li,Qingnan AI,Hepan ZHANG. Владелец: Beijing BOE Optoelectronics Technology Co Ltd. Дата публикации: 2017-01-12.

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Номер патента: US20190326328A1. Автор: Yue Li,Qingnan AI,Hepan ZHANG. Владелец: Beijing BOE Optoelectronics Technology Co Ltd. Дата публикации: 2019-10-24.

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Номер патента: US09996634B2. Автор: Gregory Maclean. Владелец: Autodesk Inc. Дата публикации: 2018-06-12.

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Номер патента: US09817264B2. Автор: Dongze Li. Владелец: Shenzhen China Star Optoelectronics Technology Co Ltd. Дата публикации: 2017-11-14.

Array substrate and manufacture method thereof

Номер патента: US09804459B2. Автор: Liwang Song. Владелец: Shenzhen China Star Optoelectronics Technology Co Ltd. Дата публикации: 2017-10-31.

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Номер патента: US09501978B2. Автор: Dong-Wook Park. Владелец: Samsung Display Co Ltd. Дата публикации: 2016-11-22.

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Номер патента: US09496404B2. Автор: Shunpei Yamazaki,Hideyuki Kishida. Владелец: Semiconductor Energy Laboratory Co Ltd. Дата публикации: 2016-11-15.

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Номер патента: US09484486B2. Автор: Sung Jin Choi. Владелец: Hydis Technologies Co Ltd. Дата публикации: 2016-11-01.

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Номер патента: US09470973B2. Автор: Yanfeng Fu. Владелец: Shenzhen China Star Optoelectronics Technology Co Ltd. Дата публикации: 2016-10-18.

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Номер патента: EP1976081A2. Автор: Toru Nakamura,Tomoaki Kato. Владелец: NGK Spark Plug Co Ltd. Дата публикации: 2008-10-01.

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Номер патента: US20200105920A1. Автор: YONG Li. Владелец: Semiconductor Manufacturing International Shanghai Corp. Дата публикации: 2020-04-02.

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Номер патента: EP4129614A1. Автор: Peng Li,Zhanzhan LIU,Yuanfeng Gao. Владелец: Qingdao Haier Refrigerator Co Ltd. Дата публикации: 2023-02-08.

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Номер патента: US20230163477A1. Автор: Yong Won Seo,Seong Man Kang,Oh Seog Choi,Hyoung Seok Yang,Sung Hwan So. Владелец: KMW Inc. Дата публикации: 2023-05-25.

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Номер патента: EP4276882A1. Автор: Deyuan Xiao,Weiping BAI,Xingsong SU. Владелец: Changxin Memory Technologies Inc. Дата публикации: 2023-11-15.

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Номер патента: EP4113626A1. Автор: Xiangyu Liu,Yongsheng Sun,Changze Liu. Владелец: Huawei Technologies Co Ltd. Дата публикации: 2023-01-04.

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Номер патента: US20170254933A1. Автор: Dongze Li. Владелец: Shenzhen China Star Optoelectronics Technology Co Ltd. Дата публикации: 2017-09-07.

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Номер патента: US20220115557A1. Автор: Seunghyun Oh,Sungsik JO,Pyoynggug KIM. Владелец: Lumens Co Ltd. Дата публикации: 2022-04-14.

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Номер патента: EP1642171B1. Автор: Takako Yamaguchi,Yasuhisa Inao. Владелец: Canon Inc. Дата публикации: 2011-06-15.

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Номер патента: WO2009119956A1. Автор: Chan Oh PARK. Владелец: Chan Oh PARK. Дата публикации: 2009-10-01.

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Номер патента: US12044868B2. Автор: Chi-Tang Hsieh,I-Hua Chen. Владелец: Coretronic Corp. Дата публикации: 2024-07-23.

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Номер патента: US12059107B2. Автор: Shu-Han Chen. Владелец: Individual. Дата публикации: 2024-08-13.

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Номер патента: US10153379B2. Автор: Zhe Chen. Владелец: Wuhan China Star Optoelectronics Technology Co Ltd. Дата публикации: 2018-12-11.

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Номер патента: US12015101B2. Автор: Seunghyun Oh,Sungsik JO,Pyoynggug KIM. Владелец: Lumens Co Ltd. Дата публикации: 2024-06-18.

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Номер патента: US20060180456A1. Автор: Hiromichi Koyama,Hideki Mitsuoka. Владелец: Individual. Дата публикации: 2006-08-17.

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Номер патента: US9881931B2. Автор: Nam Jae LEE. Владелец: SK hynix Inc. Дата публикации: 2018-01-30.

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Номер патента: US20240304750A1. Автор: Seunghyun Oh,Sungsik JO,Pyoynggug KIM. Владелец: Lumens Co Ltd. Дата публикации: 2024-09-12.

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Номер патента: WO1995011332A1. Автор: In Hee Kim,Youn Heum Park. Владелец: Sung Won Ind. Co., Ltd.. Дата публикации: 1995-04-27.

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Номер патента: US09971221B2. Автор: Sikun HAO. Владелец: Shenzhen China Star Optoelectronics Technology Co Ltd. Дата публикации: 2018-05-15.

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Номер патента: US09966450B2. Автор: Shimin Ge. Владелец: Shenzhen China Star Optoelectronics Technology Co Ltd. Дата публикации: 2018-05-08.

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Номер патента: US09881931B2. Автор: Nam Jae LEE. Владелец: SK hynix Inc. Дата публикации: 2018-01-30.

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Номер патента: US09728647B2. Автор: Yue Wu. Владелец: Shenzhen China Star Optoelectronics Technology Co Ltd. Дата публикации: 2017-08-08.

Array substrate and manufacturing method thereof

Номер патента: US09728403B2. Автор: YUAN Guo,Chao He,Juan Li,Guoqiang Tang,Yuxia Chen. Владелец: Wuhan China Star Optoelectronics Technology Co Ltd. Дата публикации: 2017-08-08.

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Номер патента: US09431260B2. Автор: Nariaki Tanaka,Tohru Oka. Владелец: Toyoda Gosei Co Ltd. Дата публикации: 2016-08-30.

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Номер патента: CA2969404C. Автор: Hideaki Arisawa. Владелец: Mitsubishi Heavy Industries Machine Tool Co Ltd. Дата публикации: 2019-06-25.

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Номер патента: EP3301722A1. Автор: Ming Zhou. Владелец: Semiconductor Manufacturing International Shanghai Corp. Дата публикации: 2018-04-04.

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Номер патента: US20230282775A1. Автор: Hyun Kim. Владелец: Samsung Display Co Ltd. Дата публикации: 2023-09-07.

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Номер патента: EP4287256A1. Автор: Jia Fang,Zhongming Liu,Longyang Chen,Yexiao Yu. Владелец: Changxin Memory Technologies Inc. Дата публикации: 2023-12-06.

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Номер патента: CA3221338A1. Автор: Ju Hyun Lee,Jeong Sam Kim. Владелец: Individual. Дата публикации: 2022-12-15.

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Номер патента: EP4195252A1. Автор: Shuangshuang WU. Владелец: Changxin Memory Technologies Inc. Дата публикации: 2023-06-14.

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Номер патента: WO2019043512A1. Автор: Holger Metzmeier,Jiguang FAN. Владелец: BSH HAUSGERÄTE GMBH. Дата публикации: 2019-03-07.

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Номер патента: US20240026810A1. Автор: Tsuyoshi Kumashiro. Владелец: Nippon Thermostat Co Ltd. Дата публикации: 2024-01-25.

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Номер патента: US20240014255A1. Автор: Hojung Lee,Seung Yup Jang,Jaemoo KIM. Владелец: LG ELECTRONICS INC. Дата публикации: 2024-01-11.

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Номер патента: EP4230901A1. Автор: Tsuyoshi Kumashiro. Владелец: Nippon Thermostat Co Ltd. Дата публикации: 2023-08-23.

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Номер патента: EP1976009A3. Автор: Hisao Kawasaki. Владелец: Toshiba Corp. Дата публикации: 2008-12-17.

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Номер патента: EP3754237A1. Автор: Sijie TANG. Владелец: Zhejiang Sanhua Climate and Appliance Controls Group Co Ltd. Дата публикации: 2020-12-23.

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Номер патента: US20240058511A1. Автор: Sung Il Kim. Владелец: Fiber&tech Co ltd. Дата публикации: 2024-02-22.

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Номер патента: EP3919970A1. Автор: Tsung-Ming Lin,Yu-Tsai Teng,Ji-pu WU,Ho-Chia Tseng. Владелец: Xiamen Sanan Optoelectronics Technology Co Ltd. Дата публикации: 2021-12-08.

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Номер патента: AU2023361984A1. Автор: Guoqiang Xing,Wenzhou XU. Владелец: Tongwei Solar Meishan Co Ltd. Дата публикации: 2024-05-23.

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Номер патента: US20190006509A1. Автор: YONG Li. Владелец: Semiconductor Manufacturing International Shanghai Corp. Дата публикации: 2019-01-03.

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Номер патента: US20240162379A1. Автор: Kai Cheng,Weihua Liu. Владелец: Enkris Semiconductor Wuxi Ltd. Дата публикации: 2024-05-16.

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Номер патента: EP3676536A1. Автор: Holger Metzmeier,Jiguang FAN. Владелец: BSH HAUSGERAETE GMBH. Дата публикации: 2020-07-08.

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Номер патента: EP3972002A1. Автор: Dengbao HAN. Владелец: BOE Technology Group Co Ltd. Дата публикации: 2022-03-23.

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Номер патента: US20220399551A1. Автор: Kenichi Oba,Sohei Shirakawa. Владелец: Nok Corp. Дата публикации: 2022-12-15.

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Номер патента: US11966067B2. Автор: Huailiang He. Владелец: HKC Co Ltd. Дата публикации: 2024-04-23.

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Номер патента: US20230145140A1. Автор: Kidong KIM,Byoungyoung JUNG. Владелец: Individual. Дата публикации: 2023-05-11.

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Номер патента: EP3822182A1. Автор: Francesco Milandri,Luca Lanzarini,Daniele GROSSO,Mirco Legnani. Владелец: GD SpA. Дата публикации: 2021-05-19.

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Номер патента: US20200066477A1. Автор: Tsutomu Karimata,Keisuke Matsushima. Владелец: Ebara Corp. Дата публикации: 2020-02-27.

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Номер патента: US20240204374A1. Автор: Yongtae Kim. Владелец: LG Energy Solution Ltd. Дата публикации: 2024-06-20.

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Номер патента: US10121888B2. Автор: Tetsuji Togami. Владелец: Renesas Electronics Corp. Дата публикации: 2018-11-06.

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Номер патента: US20190285499A1. Автор: Hiroki IKESHO. Владелец: Fuji Electric Co Ltd. Дата публикации: 2019-09-19.

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Номер патента: US20150349253A1. Автор: Yimao Cai,Ru Huang,Yinglong Huang,Muxi Yu,Wenliang Bai. Владелец: PEKING UNIVERSITY. Дата публикации: 2015-12-03.

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Номер патента: US20180367716A1. Автор: Eiichiro Dobashi,Shuichi Mochinaga. Владелец: Sony Corp. Дата публикации: 2018-12-20.

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Номер патента: US10356295B2. Автор: Eiichiro Dobashi,Shuichi Mochinaga. Владелец: Sony Corp. Дата публикации: 2019-07-16.

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Номер патента: US20170016378A9. Автор: Chul Jun Youm,Jae Kwon Lee,Jong Hyuck Kim,Soon Hyon HWANG. Владелец: Hyundai Motor Co. Дата публикации: 2017-01-19.

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Номер патента: EP4333082A1. Автор: Chaohui LIN,Kairui LIN. Владелец: Gold Stone Fujian Energy Co Ltd. Дата публикации: 2024-03-06.

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Номер патента: EP4333083A1. Автор: Chaohui LIN,Kairui LIN. Владелец: Gold Stone Fujian Energy Co Ltd. Дата публикации: 2024-03-06.

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Номер патента: US7091054B2. Автор: Dong-Wook Kim,In-kyeong Yoo,Chang-wook Moon,Soo-Hwan Jeong. Владелец: SAMSUNG ELECTRONICS CO LTD. Дата публикации: 2006-08-15.

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Номер патента: US20160010285A1. Автор: Chien-Kuan Kuo,Chun-Huang Huang. Владелец: Golden Arrow Printing Co Ltd. Дата публикации: 2016-01-14.

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Номер патента: US20200401005A1. Автор: Xinjie Zhang,Chengwei Liu. Владелец: Hefei Xinsheng Optoelectronics Technology Co Ltd. Дата публикации: 2020-12-24.

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Номер патента: WO2006126786A1. Автор: Seung Hee Shin. Владелец: Seung Hee Shin. Дата публикации: 2006-11-30.

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Номер патента: US20180226507A1. Автор: Zhe Chen. Владелец: Wuhan China Star Optoelectronics Technology Co Ltd. Дата публикации: 2018-08-09.

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Номер патента: US20240320397A1. Автор: Nicolas Schneider,Elie GIBEAU,Alexandre BLAISE. Владелец: ArcelorMittal SA. Дата публикации: 2024-09-26.

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Номер патента: US20240305260A1. Автор: Hao-Min Huang. Владелец: Richwave Technology Corp. Дата публикации: 2024-09-12.

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Номер патента: US20240312848A1. Автор: Eiji Hayashishita. Владелец: Mitsui Chemicals Tohcello Inc. Дата публикации: 2024-09-19.

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Номер патента: US12109774B2. Автор: Heng-Tai Chang,Yu-Che SHEN,Thi Bich Van CHUNG. Владелец: DAH SHENG CHEMICAL INDUSTRY Co Ltd. Дата публикации: 2024-10-08.

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Номер патента: NL2030672B1. Автор: Liu Di,ZHANG Baoying. Владелец: Xian Gaoqiang Insulation Electric Co Ltd. Дата публикации: 2023-08-04.

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Номер патента: US20240372059A1. Автор: Juntai Lu,Jianliang Wei,Xintian ZHANG. Владелец: Jiangsu Zenergy Battery Technologies Co ltd. Дата публикации: 2024-11-07.

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Номер патента: US09904271B2. Автор: Satoru Takizawa,Junji Hayata. Владелец: Nissan Motor Co Ltd. Дата публикации: 2018-02-27.

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Номер патента: US09902097B2. Автор: Hiroyuki Onimatsu. Владелец: Sumitomo Rubber Industries Ltd. Дата публикации: 2018-02-27.

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Номер патента: US09893165B2. Автор: Yucheng CHAN,Chienhung Liu,Jianbang Huang. Владелец: BOE Technology Group Co Ltd. Дата публикации: 2018-02-13.

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Номер патента: US09887021B2. Автор: Zhao-Yuan LI,Ben-Yi YAO. Владелец: Dongguan City Huayang Lighting Co ltd. Дата публикации: 2018-02-06.

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Номер патента: US09849547B2. Автор: Satoru Kawai,Kazuya Ohta. Владелец: FANUC Corp. Дата публикации: 2017-12-26.

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Номер патента: US09820375B2. Автор: Tuomas Waris,Antti Iihola. Владелец: GE EMBEDDED ELECTRONICS OY. Дата публикации: 2017-11-14.

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Номер патента: US09741828B2. Автор: Rui Xu. Владелец: Beijing BOE Optoelectronics Technology Co Ltd. Дата публикации: 2017-08-22.

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Номер патента: US09666838B2. Автор: Shinsuke Iguchi. Владелец: BOE Technology Group Co Ltd. Дата публикации: 2017-05-30.

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Номер патента: US09651839B2. Автор: Xiaojing QI,Like HU. Владелец: Chengdu BOE Optoelectronics Technology Co Ltd. Дата публикации: 2017-05-16.

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Номер патента: US09638968B2. Автор: Xinhui Zhong,Kuancheng Lee. Владелец: Shenzhen China Star Optoelectronics Technology Co Ltd. Дата публикации: 2017-05-02.

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Номер патента: US09619093B2. Автор: Kwan-Sin Ho,Yanjun Xie. Владелец: TPK Touch Solutions Xiamen Inc. Дата публикации: 2017-04-11.

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Номер патента: US09520400B2. Автор: Hao Fang,Yong Gu,Shizhen Sun. Владелец: CSMC Technologies Fab1 Co Ltd. Дата публикации: 2016-12-13.

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Номер патента: US09490476B2. Автор: Koji Takahata,Akihiro Ochiai,Toshihiko Mitsuhashi. Владелец: Toyota Motor Corp. Дата публикации: 2016-11-08.

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Номер патента: US09379322B2. Автор: Yimao Cai,Ru Huang,Yinglong Huang,Muxi Yu,Wenliang Bai. Владелец: PEKING UNIVERSITY. Дата публикации: 2016-06-28.

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Номер патента: US20220367771A1. Автор: Hwanjoon Choi,Kyoungtae WI. Владелец: LG ELECTRONICS INC. Дата публикации: 2022-11-17.

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Номер патента: EP3340302A1. Автор: Chong Wang,Tzu Yin Chiu,Haifang Zhang,Xuanjie Liu. Владелец: Semiconductor Manufacturing International Shanghai Corp. Дата публикации: 2018-06-27.

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Номер патента: US5148079A. Автор: Masanori Watanabe,Hiroyuki Kado. Владелец: Matsushita Electric Industrial Co Ltd. Дата публикации: 1992-09-15.

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Номер патента: US20240066179A1. Автор: Hyang Mae UM,Ja Young Seol. Владелец: Youreh Co ltd. Дата публикации: 2024-02-29.

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