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    • 1. 发明申请
    • MICROETCHING SOLUTION FOR COPPER, REPLENISHMENT SOLUTION THEREFOR AND METHOD FOR PRODUCTION OF WIRING BOARD
    • 铜微晶解决方案及其补偿方法及其制造方法
    • US20140326696A1
    • 2014-11-06
    • US14360783
    • 2013-06-25
    • MEC COMPANY LTD.
    • Masayo KuriiKiyoto TaiMami NakamuraYuki Ogino
    • C23F1/18H05K3/06
    • C23F1/18H05K3/067H05K3/383H05K2203/0307H05K2203/0789
    • Disclosed is a microetching solution, a replenishment solution added to said microetching solution and a method for production of a wiring board using said microetching solution. The microetching solution for copper consists of an aqueous solution containing a cupric ion, an organic acid, a halide ion, a polymer and a nonionic surfactant. The polymer is a water-soluble polymer including a polyamine chain and/or a cationic group and having a weight average molecular weight of 1000 or more. In the microetching solution of the present invention, a value of AB is 2000 to 9000 and a value of A/D is 500 to 9000, where a concentration of the halide ion is A % by weight, a concentration of the polymer is B % by weight and a concentration of the nonionic surfactant is D % by weight. Using this microetching solution, adhesion to a resin or the like can be uniformly maintained even with a low etching amount.
    • 公开了一种微蚀刻溶液,添加到所述微蚀刻溶液中的补充溶液和使用所述微蚀刻溶液生产布线板的方法。 用于铜的微蚀刻溶液由含有铜离子,有机酸,卤离子,聚合物和非离子表面活性剂的水溶液组成。 聚合物是包含多胺链和/或阳离子基团并且重均分子量为1000以上的水溶性聚合物。 在本发明的微蚀刻溶液中,AB的值为2000〜9000,A / D的值为500〜9000,卤化物离子的浓度为A%(重量),聚合物的浓度为B% ,非离子表面活性剂的浓度为D重量%。 使用该微蚀刻溶液,即使在低蚀刻量下也能均匀地保持对树脂等的粘附。
    • 2. 发明授权
    • Microetching solution for copper, replenishment solution therefor and method for production of wiring board
    • 铜的微蚀刻解决方案及其配线方法
    • US09011712B2
    • 2015-04-21
    • US14360783
    • 2013-06-25
    • Mec Company Ltd.
    • Masayo KuriiKiyoto TaiMami NakamuraYuki Ogino
    • C09K13/00C23F1/18H05K3/38H05K3/06
    • C23F1/18H05K3/067H05K3/383H05K2203/0307H05K2203/0789
    • Disclosed is a microetching solution, a replenishment solution added to said microetching solution and a method for production of a wiring board using said microetching solution. The microetching solution for copper consists of an aqueous solution containing a cupric ion, an organic acid, a halide ion, a polymer and a nonionic surfactant. The polymer is a water-soluble polymer including a polyamine chain and/or a cationic group and having a weight average molecular weight of 1000 or more. In the microetching solution of the present invention, a value of A/B is 2000 to 9000 and a value of A/D is 500 to 9000, where a concentration of the halide ion is A % by weight, a concentration of the polymer is B % by weight and a concentration of the nonionic surfactant is D % by weight. Using this microetching solution, adhesion to a resin or the like can be uniformly maintained even with a low etching amount.
    • 公开了一种微蚀刻溶液,添加到所述微蚀刻溶液中的补充溶液和使用所述微蚀刻溶液生产布线板的方法。 用于铜的微蚀刻溶液由含有铜离子,有机酸,卤离子,聚合物和非离子表面活性剂的水溶液组成。 聚合物是包含多胺链和/或阳离子基团并且重均分子量为1000以上的水溶性聚合物。 在本发明的微蚀刻溶液中,A / B的值为2000〜9000,A / D的值为500〜9000,卤化物离子的浓度为A%(重量),聚合物的浓度为 B重量%,非离子表面活性剂的浓度为D重量%。 使用该微蚀刻溶液,即使在低蚀刻量下也能均匀地保持对树脂等的粘附。
    • 4. 发明申请
    • MUSIC PROVIDING SYSTEM FOR NON-HUMAN ANIMAL
    • US20210267168A1
    • 2021-09-02
    • US17260510
    • 2019-06-27
    • MEC COMPANY LTD.
    • Kiyoto TaiYuji AdachiHideshi Hamaguchi
    • A01K15/00G06F3/16H04R3/00G06K9/00G06T7/20A01K29/00
    • In order to achieve a music providing system capable of controlling the behavioral state of a non-human animal using music, this music providing system for a non-human animal is provided with: a state information acquisition unit for acquiring state information relating to the motion state of an animal of interest; a state estimation processing unit for estimating the current behavioral state of the animal of interest from the state information; a target state storage unit for storing information relating to a target behavioral state for the animal of interest; a sound source storage unit for storing multiple music information pieces; a music information selection unit for detecting the degree of divergence of the current behavioral state from the target behavioral state and selecting one specific music information piece on the basis of the multiple music information pieces stored in the sound source storage unit; and a music information output unit for outputting the specific music information by wireless communication or wired communication to a speaker provided within a region in which the animal of interest is present. The music information selection unit performs the processing for selecting a different specific music information piece until the degree of divergence becomes a first threshold value or less.