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    • 3. 发明授权
    • Reversible heat sensitive recording material
    • 可逆热敏记录材料
    • US5817599A
    • 1998-10-06
    • US716290
    • 1996-09-18
    • Kazuyuki IidaHidekazu SanoJun MaruyamaMasahiro HiguchiYukiko Shibuya
    • Kazuyuki IidaHidekazu SanoJun MaruyamaMasahiro HiguchiYukiko Shibuya
    • B41M5/333B41M5/337B41M5/30
    • B41M5/3375B41M5/305B41M5/333
    • The object of the present invention is to provide a reversible heat sensitive recording material capable of formation and erasion of images with a clear contrast and capable of retaining stable images with time under the conditions of daily living. A reversible heat sensitive recording material comprising a support and, provided thereon, a normally colorless or light colored dye precursor and a reversible color developer which causes reversible change of color tone in the dye precursor due to the difference in cooling rate after heating, characterized in that said reversible heat sensitive recording material contains at least one specific color erasion accelerator containing a long chain alkyl group. Furthermore, a reversible heat sensitive recording material in which the recorded images can be erased by simple methods, such as leaving it in natural environment or at relatively low temperatures or heating it by a drier, characterized in that a specific compound having a long chain alkyl group and an imide group as the reversible color developer and a specific amine compound having a long chain alkyl group or an imide-containing compound as the color erasion accelerator are used in combination.
    • PCT No.PCT / JP96 / 00104 Sec。 371日期1996年9月18日 102(e)1996年9月18日PCT PCT 1996年1月22日PCT公布。 公开号WO96 / 22885 PCT 日本1996年1月8日本发明的目的是提供能够形成和擦除具有清晰对比度的图像的可逆热敏记录材料,并能够在日常生活条件下随时间保持稳定的图像。 一种可逆热敏记录材料,其包括载体,并且在其上提供常规无色或浅色的染料前体和可逆显色剂,其由于加热后的冷却速率的差异而导致染料前体中色调的可逆变化,其特征在于 所述可逆热敏记录材料含有至少一种含有长链烷基的特定颜色侵蚀促进剂。 此外,可逆的热敏记录材料,其中记录的图像可以通过简单的方法被擦除,例如在自然环境中或在相对低的温度下离开或通过干燥器加热记录的图像,其特征在于具有长链烷基 和作为可逆显色剂的酰亚胺基和具有长链烷基或含酰亚胺化合物的特定胺化合物作为颜色侵蚀促进剂组合使用。
    • 4. 发明授权
    • Reversible two-color heat-sensitive recording material and recording method
    • 可逆双色热敏记录材料和记录方法
    • US06596669B1
    • 2003-07-22
    • US09700593
    • 2000-11-15
    • Jun MaruyamaHidekazu Sano
    • Jun MaruyamaHidekazu Sano
    • B41M530
    • B41M5/34B41M5/305B41M5/3335B41M5/3375B41M5/41B41M5/42
    • The present invention is to provide a reversible two-color heat-sensitive recording material which uses an electron-donative dye precursor which is usually colorless or a pale color and an electron-accepting compound, and a reversible heat-sensitive color-forming composition which is capable of forming a color-formation state and decolorization state relatively due to difference in heating temperature and/or cooling rate after heating is formed on a support, wherein the reversible heat-sensitive color-forming composition comprises at least two kinds of compositions having different color tones to be formed and the compositions are each present separately and in an independent state, and crystallization rates of the electron-donative compounds at the time of changing from the color-formation state to the decolorization state are different from each other.
    • 本发明提供一种可逆双色热敏记录材料,其使用通常为无色或浅色的供电子染料前体和电子接受性化合物,以及可逆热敏成色组合物, 能够由于加热温度的差异和/或在载体上形成加热后的冷却速度而形成着色状态和脱色状态,其中可逆热敏成色组合物包含至少两种具有 要形成不同的色调,并且组合物各自单独存在并处于独立状态,并且在从成色状态变为脱色状态时,供电子化合物的结晶速率彼此不同。
    • 5. 发明授权
    • Reversible heat-sensitive recording material
    • 可逆热敏记录材料
    • US06184180B2
    • 2001-02-06
    • US09285782
    • 1999-04-05
    • Jun MaruyamaHidekazu Sano
    • Jun MaruyamaHidekazu Sano
    • B41M530
    • B41M5/3375B41M5/305B41M5/3335B41M5/3336
    • Disclosed is a reversible heat-sensitive recording material comprising a support and a reversible heat-sensitive recording layer containing a dye precursor which is usually colorless or a pale color and a reversible color developing agent capable of causing a reversible change in color density of the dye precursor due to the difference in cooling rate after heating, and the reversible color developing agent is a compound represented by the following formula (I): wherein R1 and R2 may be the same or different from each other and each represent a C1-18 divalent hydrocarbon group; R3 represents a C1-24 hydrocarbon group; X1 represents a divalent connecting group having at least one —CONH— bonding; X2 represents an oxygen atom or a sulfur atom; n is an integer of 1 to 3; and m is 0 or 1.
    • 公开了一种可逆热敏记录材料,其包括载体和可逆热敏记录层,其包含通常为无色或浅色的染料前体和能够引起染料着色密度的可逆变化的可逆显色剂 由于加热后的冷却速度的差异,可逆的显色剂是由下式(I)表示的化合物:其中R1和R2可以相同或不同,并且各自表示C1-18二价 烃基; R3代表C1-24烃基; X1表示具有至少一个-CONH-键的二价连接基团; X2表示氧原子或硫原子; n为1〜3的整数。 m为0或1。
    • 6. 发明申请
    • OPTICAL APPARATUS
    • 光学装置
    • US20100315731A1
    • 2010-12-16
    • US12793953
    • 2010-06-04
    • Hidekazu Sano
    • Hidekazu Sano
    • G02B7/02
    • G02B7/023G02B21/02
    • An optical apparatus includes a lens barrel, an optical apparatus body, a body-side mounting unit, a lens-side mounting unit arid a position determination mechanism. A plurality of projection pins protrude from an outer circumferential surface of a cylindrical part of the body-side mounting unit. A groove is formed in an inner circumferential surface of the lens-side mounting unit. Cutout regions that are in communication with the groove are formed in a surface of the lens-side mounting unit that faces toward a flange part of the body-side mounting unit at positions that respectively correspond to positions of the projection pins. The position determination mechanism determines a position of the lens-side mounting unit around the optical axis of the optical apparatus body.
    • 光学装置包括镜筒,光学装置本体,体侧安装单元,透镜侧安装单元和位置确定机构。 多个凸起销从主体侧安装单元的圆筒部的外周面突出。 在透镜侧安装单元的内周面形成有槽。 在透镜侧安装单元的面对分别对应于突起销的位置的位置处,形成与槽相通的切口区域,该表面面向主体侧安装单元的凸缘部。 位置确定机构确定透镜侧安装单元围绕光学设备主体的光轴的位置。
    • 7. 发明授权
    • Optical apparatus
    • 光学仪器
    • US08228625B2
    • 2012-07-24
    • US12793953
    • 2010-06-04
    • Hidekazu Sano
    • Hidekazu Sano
    • G02B7/02
    • G02B7/023G02B21/02
    • An optical apparatus includes a lens barrel, an optical apparatus body, a body-side mounting unit, a lens-side mounting unit and a position determination mechanism. A plurality of projection pins protrude from an outer circumferential surface of a cylindrical part of the body-side mounting unit. A groove is formed in an inner circumferential surface of the lens-side mounting unit. Cutout regions that are in communication with the groove are formed in a surface of the lens-side mounting unit that faces toward a flange part of the body-side mounting unit at positions that respectively correspond to positions of the projection pins. The position determination mechanism determines a position of the lens-side mounting unit around the optical axis of the optical apparatus body.
    • 光学装置包括镜筒,光学装置主体,主体侧安装单元,透镜侧安装单元和位置确定机构。 多个凸起销从主体侧安装单元的圆筒部的外周面突出。 在透镜侧安装单元的内周面形成有槽。 在透镜侧安装单元的面对分别对应于突出销的位置的位置处,形成与槽相通的切口区域,该表面朝向主体侧安装单元的凸缘部。 位置确定机构确定透镜侧安装单元围绕光学设备主体的光轴的位置。
    • 8. 发明授权
    • Bright and dark field switching device and microscope
    • 明暗现场切换装置及显微镜
    • US06373626B1
    • 2002-04-16
    • US09708626
    • 2000-11-09
    • Shoichi TanakaHidekazu SanoHitoshi Isobe
    • Shoichi TanakaHidekazu SanoHitoshi Isobe
    • G02B2106
    • G02B21/125
    • A bright and dark field switching device, according to the present invention, comprises a glare-proof filter 31 and a condenser lens 32 for a dark field, a guide mechanism 40, and a switching mechanism 60. The glare-proof filter 31 and the condenser lens 32 for a dark field are arranged on both sides with an optical path L of an illuminating optical system interposed therebetween. The guide mechanism 40 holds the glare-proof filter 31 and the condenser lens 32 for a dark field such that they can be moved to the optical path L and can be returned from the optical path L. The switching mechanism 60 moves the glare-proof filter 31 and the condenser lens 32 for a dark field to the optical path L and returns them from the optical path L. Further, the switching mechanism 60 moves the glare-proof filter 31 together so as to position the same on the optical path L only when returning the condenser lens 32 for a dark field from the optical path L.
    • 根据本发明的明暗场切换装置包括防眩光滤光器31和用于暗场的聚光透镜32,引导机构40和切换机构60.防眩光滤光器31和 用于暗场的聚光透镜32布置在其两侧的照射光学系统的光路L的两侧。 引导机构40保持用于暗场的防眩光滤光器31和聚光透镜32,使得它们能够移动到光路L并且可以从光路L返回。切换机构60移动防眩光 滤光器31和用于暗场的聚光透镜32到光路L,并从光路L返回。此外,切换机构60将防眩光滤光器31一起移动,以将其定位在光路L上 仅当从光路L返回用于暗场的聚光透镜32时。
    • 9. 发明授权
    • Positioning stage
    • 定位阶段
    • US06341037B1
    • 2002-01-22
    • US09641920
    • 2000-08-21
    • Shoichi TanakaHidekazu Sano
    • Shoichi TanakaHidekazu Sano
    • G02B2126
    • G02B21/26G01B5/0002
    • A feeding mechanism for moving a table relative to a base has a pair of pulley (301, 302, 401, 402) supported by either one of the table (21) and the base (22), a loop-shaped belt (303, 403) stretched between the pulleys and having a part thereof extending in a movement direction of the relative movement, a joint (304, 404) for connecting the other one of the table and the base with the belt, and a pinch mechanism (310, 410) provided to the either one of the table and the base to hold a part of the belt.
    • 用于相对于基座移动工作台的进给机构具有由工作台(21)和基座(22)中的任一个支撑的一对滑轮(301,302,401,402),环形带(303, 403),其在所述滑轮之间延伸并且具有沿所述相对运动的移动方向延伸的一部分,用于将所述工作台和所述基座中的另一个与所述带连接的接头(304,404)以及夹紧机构 410),其设置在桌子和底座中的任一个上,以保持皮带的一部分。