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
    • 6. 发明授权
    • Interactive whiteboards and programs
    • 交互式白板和程序
    • US09024901B2
    • 2015-05-05
    • US13818397
    • 2011-08-12
    • Hiroshi Miyazaki
    • Hiroshi Miyazaki
    • G06F3/041G06F3/033G06F3/0488G06F3/042H04N7/18
    • G06F3/0412G06F3/0418G06F3/0421G06F3/0488H04N7/183
    • Provided is a technique of correcting influences of optical environment to correctly recognize the color of an input object used for inputting of coordinates, and enabling automatic designation of a color to be used for drawing. A coordinate detection unit detects coordinates of an input object. Next, display light on the display plane in the vicinity of the coordinates is estimated from display data, and a correction value to remove influences of the display light is calculated. A captured image of an input object used for input operations on the display plane is extracted, and the color of the captured image is corrected with a display light correction value. Thereby, influences of the display light added to the input object are removed, enabling the original color of the input object to be identified.
    • 提供了校正光学环境的影响以正确识别用于输入坐标的输入对象的颜色的技术,并且能够自动指定要用于绘制的颜色。 坐标检测单元检测输入对象的坐标。 接下来,根据显示数据估计坐标附近的显示面上的显示光,并且计算用于去除显示光的影响的校正值。 提取用于显示平面上的输入操作的输入对象的拍摄图像,并用显示光校正值校正拍摄图像的颜色。 由此,去除了添加到输入对象的显示光的影响,能够识别输入对象的原色。
    • 8. 发明授权
    • Organic electroluminescent device
    • 有机电致发光器件
    • US08847367B2
    • 2014-09-30
    • US12922635
    • 2009-02-27
    • Takayuki FukumatsuIkumi IchihashiHiroshi MiyazakiAtsushi Oda
    • Takayuki FukumatsuIkumi IchihashiHiroshi MiyazakiAtsushi Oda
    • H01L23/58C07D493/14H01L51/00C07D487/04H01L51/50
    • H01L51/5088C07D487/04C07D493/14H01L51/005H01L51/0053H01L51/5048H01L2251/552
    • Provided are a hole-injecting material for an organic electroluminescent device (organic EL device) exhibiting high luminous efficiency at a low voltage and having greatly improved driving stability, and an organic EL device using the material. The hole-injecting material for an organic EL device is selected from benzenehexacarboxylic acid anhydrides, benzenehexacarboxylic acid imides, or N-substituted benzenehexacarboxylic acid imides. Further, the organic EL device has at least one light-emitting layer and at least one hole-injecting layer between an anode and a cathode arranged opposite to each other, and includes the above-mentioned hole-injecting material for an organic EL device in the hole-injecting layer. The organic EL device may contain a hole-transporting material having an ionization potential (IP) of 6.0 eV or less in the hole-injecting layer or a layer adjacent to the hole-injecting layer.
    • 提供一种用于低电压且显着提高驱动稳定性的高发光效率的有机电致发光器件(有机EL器件)的空穴注入材料和使用该材料的有机EL器件。 用于有机EL器件的空穴注入材料选自苯六羧酸酐,苯六羧酸酰亚胺或N-取代苯六羧酸酰亚胺。 此外,有机EL器件具有至少一个发光层和在彼此相对布置的阳极和阴极之间的至少一个空穴注入层,并且包括上述用于有机EL器件的空穴注入材料 空穴注入层。 有机EL器件可以在空穴注入层或与空穴注入层相邻的层中含有电离电位(IP)为6.0eV以下的空穴传输材料。
    • 9. 发明申请
    • INTERACTIVE WHITEBOARDS AND PROGRAMS
    • 互动白板和程序
    • US20130154985A1
    • 2013-06-20
    • US13818397
    • 2011-08-12
    • Hiroshi Miyazaki
    • Hiroshi Miyazaki
    • G06F3/041
    • G06F3/0412G06F3/0418G06F3/0421G06F3/0488H04N7/183
    • Provided is a technique of correcting influences of optical environment to correctly recognize the color of an input object used for inputting of coordinates, and enabling automatic designation of a color to be used for drawing. A coordinate detection unit detects coordinates of an input object. Next, display light on the display plane in the vicinity of the coordinates is estimated from display data, and a correction value to remove influences of the display light is calculated. A captured image of an input object used for input operations on the display plane is extracted, and the color of the captured image is corrected with a display light correction value. Thereby, influences of the display light added to the input object are removed, enabling the original color of the input object to be identified.
    • 提供了校正光学环境的影响以正确识别用于输入坐标的输入对象的颜色的技术,并且能够自动指定要用于绘制的颜色。 坐标检测单元检测输入对象的坐标。 接下来,根据显示数据估计坐标附近的显示面上的显示光,并且计算用于去除显示光的影响的校正值。 提取用于显示平面上的输入操作的输入对象的拍摄图像,并用显示光校正值校正拍摄图像的颜色。 由此,去除了添加到输入对象的显示光的影响,能够识别输入对象的原色。
    • 10. 发明申请
    • ELECTROMAGNETIC WAVE RESONATOR AND ITS FABRICATION PROCESS AS WELL AS ELECTROMAGNETIC WAVE GENERATOR
    • 电磁波谐振器及其制造工艺,如电磁波发生器
    • US20120326702A1
    • 2012-12-27
    • US13581579
    • 2011-03-02
    • Hideki MiyazakiHiroshi MiyazakiHiroki Ebe
    • Hideki MiyazakiHiroshi MiyazakiHiroki Ebe
    • H03H9/46G01R19/00H03H3/007H01J7/44
    • G02F1/21G02F2202/30G02F2203/10
    • The main object of the invention is to provide an electromagnetic wave resonator making use of surface waves: an electromagnetic wave resonator structure capable of being achieved with existing technologies yet without much difficulty and applying voltage to a positive dielectric area, thereby overcoming a variety of problems arising from the fact that only thermal excitation is available.The contact structure of negative dielectric/positive dielectric/negative dielectric necessary for this type of electromagnetic wave resonator is provided on the surface of the negative dielectric material 1 just as the coaxial structure of the positive dielectric thin film 3 extending in the Y-axis direction and the negative dielectric material 2 received therein is cut in the axial direction. This makes sure both negative dielectric materials 1 and 2 with the positive dielectric thin film 3 sandwiched between them are electrically insulated so that voltage can be applied to the positive dielectric thin film 3, and ensures that an area provided in the negative dielectric material 1 to receive the positive dielectric thin film 3 has an aspect ratio D/P1 of about 1.9, a figure well achievable in the state of the art.
    • 本发明的主要目的在于提供一种利用表面波的电磁波谐振器:能够利用现有技术实现的电磁波谐振器结构,而且难以实现,并向正电介质区域施加电压,从而克服各种问题 这是因为只有热激发才能使用。 负电介质材料1的表面上设置这种电磁波谐振器所需负电介质/正电介质/负电介质的接触结构,正如正电介质薄膜3在Y轴方向上延伸的同轴结构 并且容纳在其中的负电介质材料2在轴向上被切割。 这确保了夹在其间的正电介质薄膜3的负电介质材料1和2被电绝缘,使得可以将电压施加到正电介质薄膜3,并且确保设置在负电介质材料1至 接收正电介质薄膜3具有约1.9的纵横比D / P1,这在现有技术中可以实现。