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    • 6. 发明申请
    • Examination Apparatus, Fluoroscopy Apparatus, Examination Method, And Experimental Method
    • 检查装置,荧光检查装置,检查方法和实验方法
    • US20070273877A1
    • 2007-11-29
    • US10594311
    • 2005-03-29
    • Yoshihiro KawanoKeiji ShimizuMinoru SukekawaTsuyoshi MochizukiSusumu HondaKazuhiro Hayashi
    • Yoshihiro KawanoKeiji ShimizuMinoru SukekawaTsuyoshi MochizukiSusumu HondaKazuhiro Hayashi
    • G01J3/30G02B21/36
    • G01N21/6458G02B21/248
    • Even when the magnifying power is reduced, an image can be obtained at high resolution without significantly reducing the numerical aperture, and examination accuracy is improved. There is provided a microscope examination apparatus including a light source for emitting excitation light or illumination light to a specimen placed on a stage; an objective lens opposing the stage and capable of focusing fluorescence or reflected light from the specimen; an image-forming lens for forming an image of the specimen obtained by the objective lens; and an image-capturing unit for capturing the image of the specimen forming by the image-forming lens, wherein a plurality of the objective lenses having different magnifying powers is provided, and an objective-lens switching mechanism for switching among the objective lenses is provided, and wherein a plurality of the image-forming lenses having different magnifying powers is provided, and an image-forming-lens switching mechanism for switching among the image-forming lenses 5a and 5b is provided.
    • 即使放大倍数减小,也能够以高分辨率获得图像,而不会显着降低数值孔径,提高了检查精度。 提供了一种显微镜检查装置,其包括用于向放置在台架上的样本发射激发光或照明光的光源; 与舞台相对并且能够聚焦来自样本的荧光或反射光的物镜; 用于形成由所述物镜获得的所述样本的图像的图像形成透镜; 以及图像捕获单元,用于捕获由图像形成透镜形成的样本的图像,其中提供具有不同放大倍率的多个物镜,并且提供用于在物镜之间切换的物镜切换机构 并且其中提供了具有不同放大倍率的多个图像形成透镜,并且提供了用于在成像透镜5a和5b之间切换的图像形成透镜切换机构。
    • 7. 发明申请
    • LOGIC CIRCUIT MODEL VERIFYING METHOD AND APPARATUS
    • 逻辑电路模型验证方法和装置
    • US20100175036A1
    • 2010-07-08
    • US12725709
    • 2010-03-17
    • Tsuyoshi Mochizuki
    • Tsuyoshi Mochizuki
    • G06F17/50
    • G06F17/5022G01R31/318502
    • To a logic circuit model, a test pattern by a combination of a first logical value A representing 0 or 1 and a second logical value B representing 1 or 0 as an inverse value corresponding to the first logical value A is given to calculate an output of the logic circuit model with a logical operation and, when the output is compared with an expected value for the test pattern and they are equal to each other, it is determined that the operation of the logic circuit model is correct. With the second logical value B representing 1 when the first logical value represents 0 and the second logical value B representing 0 when the first logical value A represents 1, a logical operation of the logic circuit model is performed.
    • 对于逻辑电路模型,给出通过组合表示0或1的第一逻辑值A和表示1或0的第二逻辑值B作为对应于第一逻辑值A的反向值的测试模式来计算输出 具有逻辑运算的逻辑电路模型,并且当将输出与测试模式的期望值进行比较并且它们彼此相等时,确定逻辑电路模型的操作是正确的。 当第一逻辑值表示0时第二逻辑值B表示1,当第一逻辑值A表示1时第二逻辑值B表示0,则执行逻辑电路模型的逻辑运算。
    • 8. 发明授权
    • Integrated circuit designing system, method and program
    • 集成电路设计系统,方法和程序
    • US07260791B2
    • 2007-08-21
    • US10972412
    • 2004-10-26
    • Tsuyoshi Mochizuki
    • Tsuyoshi Mochizuki
    • G06F17/50
    • G06F17/5022
    • When a simulation model generation unit converts logic on the gate level into a basic primitive which can be executed by a simulator to generate a simulation model, for the basic primitives a degeneracy processing unit determines and deletes a gate which can be deleted and which will not affect the delay stage count. The degeneracy processing unit is provided with a constant gate degeneracy unit which puts a plurality of constant gates together, a buffer degeneracy unit which deletes fan-out-free buffers and an identical fan-in gate degeneracy unit which puts identical fan-in gates together.
    • 当仿真模型生成单元将门级上的逻辑转换为可以由模拟器执行以生成模拟模型的基本原语时,对于基本原语,简并处理单元确定并删除可以被删除的门,哪些不会 影响延迟阶段计数。 简并处理单元设置有将多个恒定门放在一起的恒定栅极简并单元,一个删除无扇出缓冲器的缓冲器简并单元和将相同的扇入栅极放在一起的相同的扇入栅极简并单元 。
    • 9. 发明授权
    • Microscope with motion sensor for control of power supply and light source
    • 具有运动传感器的显微镜,用于控制电源和光源
    • US08369010B2
    • 2013-02-05
    • US12946067
    • 2010-11-15
    • Masayoshi KarasawaKeisuke TamuraHideaki EndoTetsuya ShirotaTsuyoshi Mochizuki
    • Masayoshi KarasawaKeisuke TamuraHideaki EndoTetsuya ShirotaTsuyoshi Mochizuki
    • G05F1/00G02B21/00
    • G02B21/06
    • A microscope includes a microscope main unit including a stage on which a specimen is to be placed; and a light source provided on the microscope main unit and emitting illumination light for illuminating the specimen. The microscope also includes a main power supply operable to be turned on and off; a sensor that senses the presence or absence of a subject in a front or side area of the microscope main unit; a determining unit that determines based on a result of the sensing whether the subject moves; and a control unit that turns on the light source when the main power supply is turned on, maintains the light source in an ON state when the determining unit determines that the subject moves, and turns off the light source when the determining unit determines that the subject does not move and a predetermined period of time passes.
    • 显微镜包括显微镜主单元,其包括待放置样本的载物台; 以及设置在显微镜主单元上并发射用于照射样本的照明光的光源。 显微镜还包括可操作以打开和关闭的主电源; 检测显微镜主单元的正面或侧面的被检体的存在或不存在的传感器; 确定单元,其基于所述感测的结果来确定所述被摄体是否移动; 以及控制单元,当所述主电源接通时接通所述光源,当所述确定单元确定所述被摄体移动时,将所述光源保持在ON状态,并且当所述确定单元确定所述光源 被摄体不移动并且经过预定的时间段。