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    • 38. 发明授权
    • Antifouling coating composition
    • 防污涂料组合物
    • US6123755A
    • 2000-09-26
    • US990190
    • 1997-12-12
    • Naoki YamamoriAkio Harada
    • Naoki YamamoriAkio Harada
    • C09D5/16C09D133/00C09D155/00C09D183/07C08F30/08C08L83/04
    • C09D5/1637C09D5/1675
    • An antifouling coating composition which comprises at least two kinds of mutually incompatible resin compositions and which is capable of forming a microheterogenous coating film having a multiplicity of spherical or disk-like minute protrusions comprising at least one of the resin compositions,at least one of the resin compositions to yield the spherical or disk-like minute protrusions being produced from an antifouling monomer and an ethylenically unsaturated monomer copolymerizable therewith.Since the antifouling coating composition of the present invention contains a resin composition adapted to impart an antifouling effect to the coating film, it displays a long-term antifouling performance beyond the antifouling effect attributable to only said microheterogenous structure.
    • 一种防污涂料组合物,其包含至少两种相互不相容的树脂组合物,并且能够形成具有多个球形或圆盘状微小突起的微观异质涂膜,所述微小突起包含至少一种树脂组合物,至少一种 产生由防污单体和可与其共聚的烯键式不饱和单体产生球形或盘状微小突起的树脂组合物。 由于本发明的防污涂料组合物含有适于对涂膜赋予防污效果的树脂组合物,所以其显示出超出仅归于所述微相互结构的防污效果的长期防污性能。
    • 39. 发明申请
    • Power supply circuit for plasma generation, plasma generating apparatus, plasma processing apparatus and plasma processed object
    • 等离子体发生电源电路,等离子体发生装置,等离子体处理装置和等离子体处理物体
    • US20070176562A1
    • 2007-08-02
    • US10594980
    • 2005-02-17
    • Hirofumi TakikawaYoshimi NishimuraAkio Harada
    • Hirofumi TakikawaYoshimi NishimuraAkio Harada
    • H01J7/24
    • H05H1/36H05H1/48
    • A power supply circuit for plasma generation by which a large quantity of generated plasma can be smoothly obtained without increasing the sizes of an apparatus, a plasma generating apparatus, a plasma processing apparatus which can process a large quantity of objects to be processed at a low cost by using the plasma generating apparatus, and plasma processed objects having target quantities are realized. An electric discharge generating electrode is composed of two or more first electrodes and one or more second electrodes. An LC series circuit is provided by connecting a capacitor C and a coil L in series between one of outputs of an alternating high voltage generating circuit which generates an alternating high voltage to be applied between the electrodes of electric discharge generating electrode, and the first electrode. When electricity is discharged in one of the electrode pair, voltage drop is suppressed by the coil even when the electric discharge of capacitor progresses, and since electric discharge from the other electrode pair is induced without being disturbed, a large quantity of plasma can be smoothly generated by common use of the alternating high voltage generating circuit.
    • 一种用于等离子体产生的电源电路,通过该电源电路可以平稳地获得大量的等离子体,而不增加装置的尺寸,等离子体产生装置,等离子体处理装置,其可以以低的速度处理大量待处理物体 实现了使用等离子体发生装置的成本以及具有目标量的等离子体处理物体。 放电产生电极由两个或更多个第一电极和一个或多个第二电极组成。 通过将电容器C和线圈L串联连接在产生施加在放电产生电极的电极之间的交流高电压的交流高压发生电路的输出之一和第一电极之间来提供LC串联电路 。 当在一对电极对中放电时,即使当电容器的放电进行时,电压也被电压抑制,并且由于从另一个电极对的放电被感应而不会受到干扰,因此能够平稳地产生大量的等离子体 由通常使用的交流高压发生电路产生。
    • 40. 发明授权
    • Method for forming image on object surface including circuit substrate
    • 在包括电路基板的物体表面上形成图像的方法
    • US07008754B2
    • 2006-03-07
    • US10489389
    • 2002-07-18
    • Masatoshi KatoAkio Harada
    • Masatoshi KatoAkio Harada
    • G03F7/00
    • H05K3/02H05K1/092H05K3/4611H05K2203/0514H05K2203/107Y10S430/146
    • By using a novel method, the exposure time of the photosensitive paste layer is reduced and the exposure fineness of the layer is improved, thereby developing a highly fine circuit substrate of high density having a thermal resistance at a reasonable cost. A circuit substrate is manufactured as follows. A photosensitive paste containing photoresist and a circuit material is applied onto a substrate surface so as to form a photosensitive paste layer (4). This photosensitive paste layer (4) is plotted by a laser beam (8) so as to form a plotted area (7). The photosensitive paste layer (4) is developed and an exposed area (4a) or an unexposed area (4b) is removed so as to form a circuit pattern (17). This circuit pattern (17) is sintered to form a circuit pattern (20) composed of the circuit material. It is possible to form a highly fine circuit pattern of high density by laser beam plotting. Moreover, when a greensheet (2) is used as the substrate, it is possible to form a ceramic substrate (18) having a thermal resistance by sintering. Furthermore, by using this method, it is possible to form an arbitrary image on an arbitrary object.
    • 通过使用新颖的方法,降低了感光性浆料层的曝光时间,提高了层的曝光细度,从而以合理的成本开发了具有耐热性的高密度高精度电路基板。 电路基板如下制造。 将含有光致抗蚀剂和电路材料的感光性浆料涂布在基材表面上,形成感光性浆料层(4)。 通过激光束(8)绘制感光性浆料层(4),形成绘图面积(7)。 显影感光性浆料层(4),除去曝光区域(4a)或未曝光区域(4b),形成电路图案(17)。 该电路图案(17)被烧结以形成由电路材料构成的电路图案(20)。 可以通过激光束绘图形成高密度的高精度电路图案。 此外,当使用毛坯(2)作为基板时,可以通过烧结形成具有耐热性的陶瓷基板(18)。 此外,通过使用该方法,可以在任意对象上形成任意图像。