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    • 4. 发明申请
    • Storage device and control method of storage device
    • 存储设备的存储设备和控制方法
    • US20070047342A1
    • 2007-03-01
    • US11510077
    • 2006-08-25
    • Kenji Nagai
    • Kenji Nagai
    • G11C8/00
    • G11C8/12
    • In a storage device having a redundancy remedy function in a block unit having a memory cells array divided in plural blocks, prior to the access operation to individual memory cells in the block, the block address BA for specifying a block is entered, and block redundancy is determined in the entered block address BA, and hence it is not necessary to determine input or redundancy of the block address BA on every occasion of the access operation. As a result, the time to the access operation start to the memory cell can be shortened, and the access speed is enhanced.
    • 在具有在多个块中划分的存储单元阵列的块单元中具有冗余补救功能的存储设备中,在对块内的各个存储单元的访问操作之前,输入用于指定块的块地址BA,并且块冗余 在输入的块地址BA中确定,因此不需要在访问操作的每个场合确定块地址BA的输入或冗余。 结果,可以缩短开始到存储单元的访问操作的时间,并且提高访问速度。
    • 8. 发明授权
    • Temperature measuring system, substrate processing apparatus and temperature measuring method
    • 温度测量系统,基板加工设备和温度测量方法
    • US09046417B2
    • 2015-06-02
    • US13529391
    • 2012-06-21
    • Tatsuo MatsudoKenji Nagai
    • Tatsuo MatsudoKenji Nagai
    • G01J3/45G01J5/08G01J5/00
    • G01J5/0896G01J5/0007
    • The temperature measuring system using optical interference includes a light source which generates measuring light; a spectroscope which measures an interference intensity distribution that is an intensity distribution of reflected light; optical transfer mechanisms which emit light reflected from a surface and a rear surface of the object to be measured to the spectroscope; an optical path length calculation unit which calculates an optical path length by performing Fourier transformation; and a temperature calculation unit which calculates a temperature of the object to be measured on the basis of a relation between optical path lengths and temperatures. The light source has a half-width at half-maximum of a light source spectrum that satisfies conditions based on a wavelength span of the spectroscope. The spectroscope measures the intensity distribution by using the number of samplings that satisfies conditions based on the wavelength span and a maximum measurable thickness.
    • 使用光学干涉的温度测量系统包括产生测量光的光源; 测量作为反射光的强度分布的干涉强度分布的分光镜; 将从测量对象的表面和后表面反射的光发射到分光器的光学传递机构; 光路长度计算单元,其通过执行傅立叶变换来计算光程长度; 以及温度计算单元,其基于光程长度和温度之间的关系来计算被测量物体的温度。 光源具有满足基于分光器的波长跨度的条件的光源光谱的半值的半宽度。 分光镜通过使用满足基于波长跨度和最大可测量厚度的条件的采样数来测量强度分布。
    • 10. 发明授权
    • Transformerless charger with terminal safety features
    • 无变压器充电器带终端安全功能
    • US07023176B2
    • 2006-04-04
    • US10465788
    • 2003-06-20
    • Hiroshi MaebashiKenji NagaiSatoru Yamamoto
    • Hiroshi MaebashiKenji NagaiSatoru Yamamoto
    • H01M10/46
    • H02J7/0029H02J7/0042
    • It is an object of the present invention to provide a transformerless charger capable of preventing a human body from receiving an electric shock from a charging terminal, and of making it easy to clean the charging terminal. In order to achieve this object, the transformerless charger of the present invention comprises: a charging terminal for supplying charging voltage to rechargeable electronic equipment; a transformerless power supply circuit for supplying charging voltage to the charging terminal; a flip cover that covers the charging terminal to prevent the charging terminal from being exposed; and a switch that allows or blocks the passage of a current between the charging terminal and the transformerless power supply circuit in synchronization with an opening or closing motion of the flip cover. This configuration makes it possible to control the passage or blocking of a current at the charging terminal in response to the open or closed state of the flip cover, and therefore, it is possible to secure safety to prevent a human body from receiving an electric shock via the charging terminal and it is also possible to easily clean the charging terminal.
    • 本发明的目的是提供一种无变压器充电器,其能够防止人体从充电端子接收到电击,并且使得容易清洁充电端子。 为了实现该目的,本发明的无变压器充电器包括:充电端子,用于向可充电电子设备提供充电电压; 用于向充电端子提供充电电压的无变压器电源电路; 覆盖充电端子以防止充电端子被暴露的翻盖; 以及开关,其允许或阻止与所述翻盖的打开或关闭运动同步的所述充电端子和所述无变压器电源电路之间的电流通过。 这种构造使得可以响应于翻盖的打开或关闭状态来控制充电端子处的电流的通过或阻塞,因此,可以确保安全以防止人体受到电击 通过充电端子,也可以容易地清洁充电端子。