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    • 1. 发明专利
    • Recording method for contactless rewriteable thermal label
    • 无缝可靠热标签记录方法
    • JP2006306063A
    • 2006-11-09
    • JP2006088790
    • 2006-03-28
    • Lintec CorpSunx Ltdサンクス株式会社リンテック株式会社
    • UTAGAWA TETSUYUKIIWABUCHI HIROAKINISHIKAWA TAKEHIKOIINO CHISATONODA NAOJIMIZUTANI KAORU
    • B41J2/32
    • B41J2/4753B41J2/471
    • PROBLEM TO BE SOLVED: To provide a recording method for contactless rewriteable thermal labels which prevents the recording surface of a recording material from getting damaged even if the recording and erasure of information is contactlessly repeated and permits repeated use 1,000 or more times. SOLUTION: The contactless recording method for rewriteable thermal labels continuously drives an optical scanner without emitting laser light in performing prescribed drawing by irradiating the contactless rewriteable thermal labels with a converged laser beam and draws an image by performing scanning with a laser light by emitting laser light only when the track of a laser beam (virtual laser beam) is supposed, at the time when laser light is emitted, to be moving at a practically equal speed. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种用于非接触式可重写热敏标签的记录方法,即使记录和擦除信息被无接触地重复并且允许重复使用1000次或更多次,防止记录材料的记录表面损坏。 解决方案:用于可重写热敏标签的非接触式记录方法在通过用会聚的激光束照射非接触式可重写热标签来连续地驱动光学扫描器而不发射激光来执行规定的绘图,并且通过用激光执行扫描来绘制图像 只有在发射激光时假设激光束(虚拟激光束)的轨迹以实际上相等的速度移动时才发射激光。 版权所有(C)2007,JPO&INPIT
    • 2. 发明专利
    • Marking method in laser marking apparatus, and laser marking apparatus
    • 激光标记设备中的标记方法和激光标记设备
    • JP2005046865A
    • 2005-02-24
    • JP2003205034
    • 2003-07-31
    • Sunx Ltdサンクス株式会社
    • NODA NAOJI
    • B23K26/00C03C23/00
    • PROBLEM TO BE SOLVED: To provide a laser marking method by which the generation of cracks is reduced or prevented, and marking excellent in printing quality can efficiently be performed in a laser marking apparatus where marking information such as characters/symbols/patterns can be marked on an object to be marked, and to provide the apparatus.
      SOLUTION: The laser marking apparat 1 is provided with a spot size adjustable means 700 making the spot size of a laser spot adjustable in a laser light path from a laser light source 210. In the marking method, the spot size of a laser applied to the surface of a work 300 is set to the one for preliminary heating larger than a spot size for marking on marking operation and with which marking is impossible, and laser light is applied to the surface of the work 300, so that the part requiring marking and the periphery thereof are preliminarily heated, and, thereafter, the spot size is set to the one for marking by the spot size adjustable means 700, and marking operation is performed.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:为了提供减少或防止裂纹产生的激光打标方法,并且可以在标记诸如字符/符号/图案的信息的激光打标设备中有效地执行打印质量优异的标记 可以标记在要标记的物体上,并提供设备。

      解决方案:激光打标装置1设置有光斑尺寸可调装置700,其使激光光斑的光斑尺寸可在激光光源210的激光光路中可调。在标记方法中, 施加到工件300的表面的激光设定为用于预备加热的激光,其大于用于标记操作时的标记的光斑尺寸,并且不能进行标记,并且激光被施加到工件300的表面,使得 预先加热需要标记的部分及其周围,然后将光点尺寸设定为由光斑尺寸可调整部件700进行标记的光斑尺寸,进行标记动作。 版权所有(C)2005,JPO&NCIPI

    • 6. 发明专利
    • MEASUREMENT REGION DISPLAY DEVICE OF IMAGE SENSOR
    • JPH0914923A
    • 1997-01-17
    • JP18831795
    • 1995-06-30
    • SUNX LTD
    • NODA NAOJIMIURA TAKAOTSUDA HIROAKI
    • G01B11/02G01B11/00G01J1/02
    • PURPOSE: To easily adjust the measurement region of an image sensor. CONSTITUTION: Seven light emitting elements 7 are arranged along the longitudinal direction of a case 6 in a light emitting device 5 connected to a control device 3. Also, a shift register and a light emitting element drive circuit for successively lighting each light emitting element 7 are provided inside. Then, the light emitting device 5 is placed at a position which is considered to be a measurement line L and each light emitting element 7 is successively turned on. On the other hand, a light source position detecting means judges the presence or absence of a reception light signal from the image sensor 1 for each lighting and the quantity of received light to specify the light emitting element 7 located on the measurement line L. As a result of that, since the light emitting element 7 specified by a measurement region display means is lighted, a worker can recognize the position of the measurement line L and to easily align the measurement line L to a specific position.