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    • 9. 发明申请
    • Coating Material
    • 涂料
    • US20090162679A1
    • 2009-06-25
    • US12087157
    • 2006-12-26
    • Keiichi AsamiMasako Yoshida
    • Keiichi AsamiMasako Yoshida
    • B32B27/08C08L23/06B32B15/085
    • C08J7/047B05D1/02B05D7/02B05D7/14C08G18/0823C08G18/34C08G18/4854C08G18/6666C08J2323/00C09D5/002C09D5/02C09D123/00C09D123/10C09D175/04Y10T428/31692Y10T428/31913C08L2666/02
    • There is provided a coating material comprising a mixture of a water-based resin composition of a thermoplastic elastomer (A) and/or a thermoplastic elastomer (B) in which at least one moiety is modified with a functional group; one of a water-based resin composition of a resin (G) formed from a copolymerizable monomer (G-1) which includes a monomer having an α,β-monoethylenic unsaturated group and other copolymerizable monomer, and a water-based resin composition of an urethane resin (U); and a water-based resin composition of a petroleum-based hydrocarbon resin (D) and/or a rosin-based resin (E) and/or a terpene-based resin (F). The coating material causing no separation phenomenon provides a coating composition or a primer with which spray coating is possible, and is a completely water-based coating material exhibiting an excellent adhesivity to a molded article of various resins such as polyolefin and a synthetic rubber or to metals such as a steel plate and aluminum.
    • 提供了包含热塑性弹性体(A)和/或热塑性弹性体(B)的水性树脂组合物与至少一个部分被官能团改性的混合物的涂料, 由包含具有α,β-单烯不饱和基团的单体和其它可共聚单体的可共聚单体(G-1)形成的树脂(G)的水性树脂组合物之一和水性树脂组合物 聚氨酯树脂(U); 和石油类烃树脂(D)和/或松香类树脂(E)和/或萜烯类树脂(F)的水性树脂组合物。 不引起分离现象的涂料提供了可以进行喷涂的涂料组合物或底漆,并且是对各种树脂如聚烯烃和合成橡胶的模塑制品具有优异的粘合性的完全水性涂料,或者 金属如钢板和铝。
    • 10. 发明授权
    • Level converter circuit
    • 电平转换电路
    • US06466054B2
    • 2002-10-15
    • US09811699
    • 2001-03-20
    • Atsushi KameyamaTsuneaki FuseKazunori OhuchiMasako Yoshida
    • Atsushi KameyamaTsuneaki FuseKazunori OhuchiMasako Yoshida
    • H03K190175
    • H03K19/018521
    • A level converter circuit includes two p-channel MOSFETs and two n-channel MOSFETs of gate-grounded type which receive complementary signals from a logic circuit, p-channel cross-coupled FETs, and n-channel cross-coupled FETs. The two FETs constructing each cross-coupled FETs can be driven by complementary inputs by supplying an output of the logic circuit operated on a low voltage and a logically inverted output thereof to each cross-coupled FETs via the gate-grounded FETs, and as a result, the gain characteristic of the cross-coupled FETs can be enhanced. The level converter circuit with low power consumption which has large tolerance for the element characteristic and converts a logic level which is as low as approximately 0.5V to approximately 1V to 3V which is a normal logic level.
    • 电平转换器电路包括两个p沟道MOSFET和栅极接地型的两个n沟道MOSFET,其接收来自逻辑电路,p沟道交叉耦合FET和n沟道交叉耦合FET的互补信号。 构成每个交叉耦合FET的两个FET可以通过互补输入来驱动,该逻辑电路通过栅极接地的FET将低电压和逻辑反相输出的输出提供给每个交叉耦合的FET,并且作为 结果,可以提高交叉耦合FET的增益特性。 具有低功耗的电平转换器电路,其具有对元件特性的较大容差,并将低至约0.5V至大约1V至3V的逻辑电平转换为大约1V至3V,这是正常逻辑电平。