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    • 3. 发明授权
    • Ultrasonic atomizing apparatus
    • 超声波雾化装置
    • US4799622A
    • 1989-01-24
    • US79742
    • 1987-07-30
    • Kiyoe IshikawaKakuro KokuboHitoshi KurokawaDaijiro HosogaiHirokazu Takenaka
    • Kiyoe IshikawaKakuro KokuboHitoshi KurokawaDaijiro HosogaiHirokazu Takenaka
    • B05B17/06F02B1/04F02M69/04F23D11/34B05B1/26B05B3/14
    • F02M69/041B05B17/0623F23D11/345F02B1/04Y10T74/10
    • An ultrasonic atomizing apparatus including an ultrasonic vibration generator and an ultrasonic vibrator horn having a cylindrical section connected at one end to the ultrasonic vibration generator and having a flared portion connected to the other end of the cylindrical section. The flared portion is flared and enlarged in diameter towards the tip end of the horn and is adapted to atomize liquid material on the flared portion as the liquid material is supplied from a liquid material supply nozzle to the flared portion. A hollow recess is formed in the flared portion opening toward the tip end of the horn. The geometry of the hollow recess is such that the cross-sectional area of the flared portion of the horn in any plane perpendicular to the longitudinal axis of the horn is the same as the cross-sectional area of the flared portion in all other planes perpendicular to the longitudinal axis of the horn. The horn also has a single nodal point positioned above a boundary between the cylindrical section and the flared portion when the horn is ultrasonically excited.
    • 一种超声波雾化装置,包括超声波振动发生器和超声波振子喇叭,所述超声波振子喇叭的一端具有与所述超声波振动发生器连接的圆筒部,并且具有与所述圆筒部的另一端连接的扩口部。 扩口部分朝向喇叭尖端扩张扩径,并且当液体材料从液体材料供应喷嘴供应到扩口部分时适于雾化扩张部分上的液体材料。 在朝向喇叭的前端开口的扩口部中形成有中空的凹部。 中空凹槽的几何形状使得喇叭的喇叭形部分的垂直于喇叭的纵向轴线的任何平面中的横截面面积与所有其它平面垂直的扩张部分的横截面面积相同 到喇叭的纵轴。 当喇叭被超声波激发时,喇叭还具有位于圆柱形部分和扩张部分之间的边界上方的单个节点。
    • 10. 发明授权
    • Color conversion apparatus, and color conversion method and computer program product
    • 颜色转换装置,颜色转换方法和计算机程序产品
    • US08446634B2
    • 2013-05-21
    • US12659368
    • 2010-03-05
    • Hirokazu Takenaka
    • Hirokazu Takenaka
    • H04N1/60H04N1/46G03F3/08G06K9/00
    • H04N1/6022H04N1/60H04N1/6058
    • A first color conversion unit converts RGB signals from a line input unit to L*a*b* signals. A lightness range compression unit matches the lightness range of the input color signals with that of an output gamut. If the maximum saturation point on an input line is outside the output gamut, an input line correction unit corrects the point in such a manner that it is mapped onto the surface of the output gamut. If a near-surface determination unit determines that the corrected line is not located on the surface of the output gamut, an out-of-gamut mapping unit maps it onto the surface of the output gamut, whereas if it determines that the corrected line is located near the surface of the output gamut, the surface mapping unit maps all points on the surface of the output gamut. A second color conversion unit converts the mapped L*a*b* signals to CMYK signals.
    • 第一颜色转换单元将来自行输入单元的RGB信号转换为L * a * b *信号。 亮度范围压缩单元将输入颜色信号的亮度范围与输出色域的亮度范围相匹配。 如果输入线上的最大饱和点在输出色域之外,则输入行校正单元以这样的方式校正该点,使其被映射到输出色域的表面上。 如果近表面确定单元确定校正的线不位于输出色域的表面上,则色域外映射单元将其映射到输出色域的表面上,而如果确定校正的行是 位于输出色域表面附近,表面映射单元映射输出色域表面上的所有点。 第二颜色转换单元将映射的L * a * b *信号转换为CMYK信号。