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    • 44. 发明授权
    • Electrostatic capacity type touch sensor
    • 静电容量型触摸传感器
    • US08618818B2
    • 2013-12-31
    • US13029701
    • 2011-02-17
    • Takayasu OtagakiAtsuhiro IchikawaHiroya ItoKazuhiro Hasegawa
    • Takayasu OtagakiAtsuhiro IchikawaHiroya ItoKazuhiro Hasegawa
    • G01R27/26
    • G06F3/044G06F3/0418
    • This invention offers an electrostatic capacity type touch sensor that can be calibrated in a short period of time at a moment when a finger of operator or the like does not touch a touch pad. An absolute value of a difference (AD0−AD2) between a first output voltage AD0 and a third output voltage AD2 is compared with a first threshold value Vtr1 in step S10. When the difference (AD0−AD2) between the output voltages is smaller than the first threshold value Vtr1, it is judged that the finger of operator or the like does not touch the touch pad, and it is judged which of an offset in a second output voltage AD1 and an offset in the third output voltage AD2 is smaller than the other. When the offset in the second output voltage AD1 is smaller than the offset in the third output voltage AD2, the modification to the second calibration data X1 is permitted.
    • 本发明提供了一种静电容量型触摸传感器,其可以在操作者的手指等触摸不触摸触摸板的时刻在短时间内进行校准。 在步骤S10中将第一输出电压AD0和第三输出电压AD2之间的差(AD0-AD2)的绝对值与第一阈值Vtr1进行比较。 当输出电压之间的差(AD0-AD2)小于第一阈值Vtr1时,判断操作者的手指等不接触触摸板,并且判断在第二阈值中哪一个偏移 输出电压AD1和第三输出电压AD2中的偏移小于另一个。 当第二输出电压AD1中的偏移小于第三输出电压AD2中的偏移时,允许对第二校准数据X1的修改。
    • 48. 发明授权
    • Observation apparatus and observation method
    • 观察仪器和观察方法
    • US07822257B2
    • 2010-10-26
    • US11517874
    • 2006-09-08
    • Hideaki EndoAkitsugu KagayamaAtsuhiro TsuchiyaKazuhiro Hasegawa
    • Hideaki EndoAkitsugu KagayamaAtsuhiro TsuchiyaKazuhiro Hasegawa
    • G06K9/00
    • G02B21/367
    • An observation apparatus includes an incident-light illumination optical system, a transmitting illumination optical system, an imaging unit, an input device, a storage unit, an imaging controller, a microscope controller, an imaging information management unit. The imaging information management unit compares an area position, of an imaging area of the imaging unit, indicated by position information input from the input device with an area position stored in the storage unit to determine whether the area position indicated by the position information is stored in the storage unit. When the area position is not stored in the storage unit, the imaging controller controls the imaging unit to image the specimen and to generate an observation image, and stores the observation image in the storage unit. The microscope controller controls one of the optical systems to illuminate the specimen only during an imaging period, when the imaging unit images the specimen.
    • 观察装置包括入射光照明光学系统,发射照明光学系统,成像单元,输入装置,存储单元,成像控制器,显微镜控制器,成像信息管理单元。 成像信息管理单元将从输入设备输入的由位置信息指示的摄像单元的成像区域的区域位置与存储在存储单元中的区域位置进行比较,以确定是否存储由位置信息指示的区域位置 在存储单元中。 当区域位置不存储在存储单元中时,成像控制器控制成像单元对样本进行成像并生成观察图像,并将观察图像存储在存储单元中。 显微镜控制器控制其中一个光学系统仅在成像周期期间,当成像单元对样本进行成像时照亮样本。