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    • 3. 发明授权
    • Local exposure apparatus, local exposure method and storage medium
    • 本地曝光装置,局部曝光方法和存储介质
    • US09146481B2
    • 2015-09-29
    • US13171972
    • 2011-06-29
    • Yoshiharu OtaShigeru MoriyamaYuki MatsumuraShigeki Tanaka
    • Yoshiharu OtaShigeru MoriyamaYuki MatsumuraShigeki Tanaka
    • G03B27/42G03F7/20H01L27/12
    • G03F7/70791G03F7/70291H01L27/1288
    • A local exposure apparatus for performing exposure processing on a specific area of a photosensitive film formed on a substrate includes a substrate conveyor configured to define a substrate conveying path and to horizontally convey the substrate along the substrate conveying path, a chamber configured to define an exposure processing space, a light source including a plurality of light-emitting elements linearly arranged above the substrate conveying path, a light emission drive unit configured to selectively drive one or more of the light-emitting elements of the light source, a substrate detector configured to detect the substrate conveyed by the substrate conveyor, and a control unit configured to control the light emission drive unit such that, when the specific area of the photosensitive film moves below the light source, only the light-emitting elements capable of irradiating the given area are driven to emit the light.
    • 用于对形成在基板上的感光膜的特定区域进行曝光处理的局部曝光装置包括:基板传送器,被配置为限定基板输送路径,并且沿着基板输送路径水平地输送基板;被配置为限定曝光 处理空间,包括线性排列在基板输送路径上方的多个发光元件的光源,被配置为选择性地驱动光源的一个或多个发光元件的发光驱动单元,被配置为 检测由基板输送机输送的基板,以及控制单元,其配置为控制发光驱动单元,使得当感光膜的比表面积在光源下方移动时,仅能够照射给定区域的发光元件 被驱动以发光。
    • 6. 发明授权
    • Battery charging apparatus with error detection
    • 带错误检测的电池充电装置
    • US6114839A
    • 2000-09-05
    • US190268
    • 1998-11-13
    • Nobuhiro TakanoKenrou IshimaruToshio MizoguchiShigeru MoriyamaShigeru Shinohara
    • Nobuhiro TakanoKenrou IshimaruToshio MizoguchiShigeru MoriyamaShigeru Shinohara
    • H01M10/42H02J7/00H02J7/10
    • H01M10/4257H02J7/0031H02J7/0091H01M10/4228
    • A charging circuit generates a charging current from an ac supply which is supplied to a secondary battery in a battery package through first terminals. A second terminal receives a temperature detection signal from a thermistor on the secondary battery. A value of the temperature detection signal is sampled every predetermined interval. A memory stores the sampled value. A difference between the sampled value and the value from the memory is obtained, as well as the temperature decrease value between the sampled value and the value stored, when it applies. An error signal is generated when the difference is higher than a predetermined value and the operator is alarmed and informed of the error. The difference may be obtained between the sampled value and the value one-cycle-previously-sampled value from the memory, between the sampled value and a minimum of the sampled values, or between the sampled value and a charging start value of the sampled value. The thermistor is supplied with a supply voltage through a switch and an error condition caused by leakage of the electrolyte from the battery is detected when the voltage at the second terminal is higher than the predetermined value, the charging current generation circuit is controlled to stop generating the charging current.
    • 充电电路从通过第一端子提供给电池组中的二次电池的交流电源产生充电电流。 第二端子从二次电池上的热敏电阻接收温度检测信号。 温度检测信号的值以预定间隔进行采样。 存储器存储采样值。 获取采样值和存储器的值之间的差异,以及采样值与存储的值之间的温度降低值。 当差高于预定值并且操作者被警告并通知错误时,产生错误信号。 可以在采样值和采样值与采样值的最小值之间,或采样值与采样值的充电开始值之间,从采样值和来自存储器的一次周期值取样值之间获得差值 。 热敏电阻通过开关供给电源电压,当第二端子的电压高于预定值时,检测到来自电池的电解液泄漏引起的误差状况,充电电流产生电路被控制以停止产生 充电电流。