会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 2. 发明授权
    • Anti-counterfeit method and system by using a nano metal grating
    • 使用纳米金属光栅的防伪方法和系统
    • US07113690B2
    • 2006-09-26
    • US10839322
    • 2004-05-04
    • Pong LaiYing-Tsung LuChing-Chin Wu
    • Pong LaiYing-Tsung LuChing-Chin Wu
    • G02B6/00
    • G06K19/16
    • An anti-counterfeit method and system by using a nano metal grating, wherein an object to be recognized is formed with the nano metal grating. During the recognition process, an incidental light is applied on the metal grating. In response to the incidental light, the metal grating has its specific optical incidence and reflection characteristics. The object is then identified whether it is genuine or fake by observing the refraction light passing through and reflection light reflected from the metal grating. Further, the incident light beam can be polarized to generate polarized light beams and then irradiated on the metal grating, whereafter the recognition of the object is performed by observing the reflection and refraction lights of the irradiated polarized light beam. The recognition further can be accomplished by rotating the metal grating, thus the intensity of the refraction and reflection lights will accordingly be changed, thereby identifying the object.
    • 通过使用纳米金属光栅的防伪方法和系统,其中要被识别的对象由纳米金属光栅形成。 在识别过程中,偶然的光被施加在金属光栅上。 响应于附带的光,金属光栅具有其特定的光入射和反射特性。 然后通过观察通过的折射光和从金属光栅反射的反射光来识别物体是真实的还是假的。 此外,入射光束可以被极化以产生偏振光束,然后照射在金属光栅上,然后通过观察照射的偏振光束的反射和折射光来进行对象的识别。 还可以通过旋转金属光栅来实现识别,从而相应地改变折射和反射光的强度,从而识别物体。
    • 3. 发明申请
    • Anti-counterfeit method and system by using a nano metal grating
    • 使用纳米金属光栅的防伪方法和系统
    • US20050141846A1
    • 2005-06-30
    • US10839322
    • 2004-05-04
    • Pong LaiYing-Tsung LuChing-Chin Wu
    • Pong LaiYing-Tsung LuChing-Chin Wu
    • B44F1/12G01J9/00G02B5/18G02B6/00G06K19/16
    • G06K19/16
    • An anti-counterfeit method and system by using a nano metal grating, wherein an object to be recognized is formed with the nano metal grating. During the recognition process, an incidental light is applied on the metal grating. In response to the incidental light, the metal grating has its specific optical incidence and reflection characteristics. The object is then identified whether it is genuine or fake by observing the refraction light passing through and reflection light reflected from the metal grating. Further, the incident light beam can be polarized to generate polarized light beams and then irradiated on the metal grating, whereafter the recognition of the object is performed by observing the reflection and refraction lights of the irradiated polarized light beam. The recognition further can be accomplished by rotating the metal grating, thus the intensity of the refraction and reflection lights will accordingly be changed, thereby identifying the object.
    • 通过使用纳米金属光栅的防伪方法和系统,其中要被识别的对象由纳米金属光栅形成。 在识别过程中,偶然的光被施加在金属光栅上。 响应于附带的光,金属光栅具有其特定的光入射和反射特性。 然后通过观察通过的折射光和从金属光栅反射的反射光来识别物体是真实的还是假的。 此外,入射光束可以被极化以产生偏振光束,然后照射在金属光栅上,然后通过观察照射的偏振光束的反射和折射光来进行对象的识别。 还可以通过旋转金属光栅来实现识别,从而相应地改变折射和反射光的强度,从而识别物体。
    • 8. 发明授权
    • Apparatus for forming nano-grating device
    • 用于形成纳米光栅装置的装置
    • US07023593B2
    • 2006-04-04
    • US10801526
    • 2004-03-17
    • Yung-Hsin ChenWann-Ding TyanPong LaiYing-Tsung Lu
    • Yung-Hsin ChenWann-Ding TyanPong LaiYing-Tsung Lu
    • G03H1/04
    • B01D39/1692B01D39/12G02B5/1809G03F7/70408G03H2001/0497
    • An apparatus for forming a nano grating device to film nano-scale interference fringes by holography in order to makes a nano-scale meshed structure is disclosed. A beam emitted form a light source passes subsequently through a beam splitter and two reflectors to reach at symmetrically mounted light emitting modules. The light emitting modules generate two beams passing along the same optical paths and then projecting on a photosensitive substrate that is attached on a hemi-sphere lens. Thus, a first set of interference fringes are formed. Then, the substrate rotates with an angle and then is subjected to exposure to form a second set of interference fringes crossing the first set of interference fringes. Thereby, a nano-scale meshed structure is obtained.
    • 公开了一种用于形成纳米光栅装置以通过全息术来纳米尺度干涉条纹以形成纳米级网状结构的装置。 从光源发射的光束随后通过分束器和两个反射器,以到达对称安装的发光模块。 发光模块产生沿着相同光路通过的两束,然后在附着在半球透镜上的感光基底上投影。 因此,形成第一组干涉条纹。 然后,基板以一定角度旋转,然后进行曝光以形成与第一组干涉条纹交叉的第二组干涉条纹。 由此,得到纳米级网状结构体。