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    • 21. 发明授权
    • System for heating food stuffs
    • 食品加热系统
    • US5653160A
    • 1997-08-05
    • US662009
    • 1996-06-12
    • Hiroshi Hoshino
    • Hiroshi Hoshino
    • A23L3/00A23L3/02A23L3/18A23L5/10A23L17/00A47J37/04A23L1/325A23L1/01A23P1/00
    • A23L3/003A23L17/70A23L3/02A23L3/185A23L5/15A47J37/044Y10S99/14
    • There is disclosed a heating system for producing food stuffs such as a paste food stuff having minced flesh of fish meat as a raw material. The heating system comprises: an electrode row or rows, in which a plurality of roller electrodes are disposed in parallel to one another; and a water permeable film or films trained across the roller electrodes making up the electrode row or rows. The food stuffs are conveyed by the movement of the water permeable film or films and electrical power is supplied to the roller electrodes in such way that electric current flows between pairs of the roller electrodes along current paths extending through the water permeable film or films and the food stuffs to make the food stuffs generate Joule heat. With this arrangement, the food stuffs are quickly heated. The food stuffs are also guided by the water permeable film or films.
    • 公开了一种用于生产食品的加热系统,例如具有切碎的肉肉肉作为原料的糊状食品。 加热系统包括:电极列或多列,多个辊电极彼此平行地设置; 以及通过组成电极行或列的辊电极训练的透水膜或膜。 食物通过水渗透膜或薄膜的运动传送,并且以这样一种方式将电力提供给辊电极,使得电流在成对的辊电极之间沿着延伸通过透水膜或薄膜的电流路径流动, 食物使食物产生焦耳热。 通过这种安排,食物迅速加热。 食物也由透水膜或薄膜引导。
    • 24. 发明授权
    • LiTaO.sub.3 Piezoelectric resonator
    • LiTaO3压电谐振器
    • US4454444A
    • 1984-06-12
    • US467810
    • 1983-02-18
    • Yoshiro FujiwaraSumio YamadaHiroshi HoshinoNoboru Wakatsuki
    • Yoshiro FujiwaraSumio YamadaHiroshi HoshinoNoboru Wakatsuki
    • H03H9/02H03H9/05H03H9/17H01L41/08
    • H03H9/02031H03H9/02157H03H9/177
    • A piezoelectric resonator which resonates in thickness shear mode. The piezoelectric resonator includes a strip shaped resonance chip made of an X-cut plate of lithium tantalate crystal and having a rectangular cross-section. Electrodes are formed at the center portion with respect to the longitudinal direction of the resonance chip on each of two X-plane surfaces. The width of the electrodes is equal to the width of the resonance chip. The longitudinal direction of the resonance chip inclines with respect to the Y-axis by an angle of 50.degree..+-.2' in the clockwise direction in the X-plane so as to make the longitudinal direction of the resonance chip coincide with the displacement direction of primary oscillation of the crystal. Optimal ratios of the dimensions of the resonance chip and terminal connectors at the ends of the resonance chip are given to reduce spurious response. The temperature characteristic is optimized by selecting rotation angles about the Y-and Z-axes in relation to the amount of trapped energy.
    • 一种在厚度剪切模式下谐振的压电谐振器。 压电谐振器包括由钽酸锂晶体的X切割板制成并具有矩形横截面的带状共振芯片。 在两个X平面中的每一个上,相对于谐振芯片的纵向的中心部形成电极。 电极的宽度等于谐振芯片的宽度。 谐振芯片的纵向方向在X平面中沿着顺时针方向相对于Y轴倾斜50度+/- 2'的角度,以使谐振芯片的纵向方向与位移一致 晶体主振荡方向。 谐振芯片端部的谐振芯片和端子连接器的尺寸的最佳比例被给出以减少杂散响应。 通过相对于被捕获能量的量选择关于Y轴和Z轴的旋转角来优化温度特性。