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    • 1. 发明申请
    • POSITIONER
    • US20120253534A1
    • 2012-10-04
    • US13418627
    • 2012-03-13
    • Kouichirou MurataKouji OkudaHiroaki Nagoya
    • Kouichirou MurataKouji OkudaHiroaki Nagoya
    • G05F5/00
    • G05B15/02
    • The range of electric currents that can be assumed by a supply electric current is categorized into a plurality of electric current ranges, where, for each electric current range category, there are combinations of functions, wherein the total value for the electric current required is less than the upper limit value, and no less than the lower limit value, for the electric current range established, and a table wherein these combinations are established is stored in memory. An actual value is detected for a supply current I to ascertain the category of electric current to which the supply electric current I applies, the combination of functions established for the applicable category of electric currents is read out from the table, and operation of the function circuit portions for the functions of the combination that has been read out is enabled, and operation of the other function circuit portions is disabled.
    • 由供电电流可以假设的电流范围分为多个电流范围,其中对于每个电流范围类别,存在功能组合,其中所需电流的总值较小 对于建立的电流范围的上限值和不低于下限值,并且将其中建立这些组合的表存储在存储器中。 检测到电源电流I的实际值,以确定施加电源电流I的电流的类别,从表中读出适用于电流类别的功能组合,并且功能的操作 已经读出的组合的功能的电路部分被启用,并且其他功能电路部分的操作被禁用。
    • 2. 发明申请
    • FIELD DEVICE
    • 现场设备
    • US20120248896A1
    • 2012-10-04
    • US13418823
    • 2012-03-13
    • Kouji Okuda
    • Kouji Okuda
    • H01H47/00
    • G05B19/4185G05B2219/31121G05B2219/33197G05B2219/34312Y02P90/18Y10T307/865
    • A switch is provided in a supply line for an operating power supply from an operating power supply generating circuit to a main circuit, An electric current detecting circuit and a comparison evaluating circuit are provided as a controlling circuit portion for controlling the ON/OFF state of the switch. The electric current detecting circuit inputs a voltage in accordance with the value of an electric current supplied from an higher-level system, and inverts and amplifies the voltage to produce an output voltage. The comparison evaluating circuit inputs the output voltage from the electric current detecting circuit, compares the output voltage to a reference voltage, and turns the switch ON if the output voltage is higher than the reference voltage. The reference voltage is set in advance in accordance with a lower limit electric current value for the electric current that must be supplied for the main circuit to operate properly.
    • 在从工作电源发生电路到主电路的工作电源的供给线路上设置有开关,设置有电流检测电路和比较评价电路作为控制电路部分,用于控制ON / OFF状态 开关。 电流检测电路根据从上位系统供给的电流的值输入电压,并且反相和放大电压以产生输出电压。 比较评估电路输入来自电流检测电路的输出电压,将输出电压与参考电压进行比较,如果输出电压高于参考电压,则将开关导通。 根据用于主电路正常工作的电流的下限电流值,预先设定基准电压。
    • 3. 发明授权
    • Fluorescent light temperature sensor
    • 荧光灯温度传感器
    • US08193726B2
    • 2012-06-05
    • US12424703
    • 2009-04-16
    • Seiichiro KinugasaAtsushi KatoShunji Ichida
    • Seiichiro KinugasaAtsushi KatoShunji Ichida
    • H05B41/292
    • G01K11/3213
    • A fluorescent light temperature sensor for producing a temperature signal from a fluorescent light of an optically stimulated fluorescent material is provided with: an LED for projecting light onto the fluorescent material; a driving circuit for driving the light projecting element; a photo diode for receiving the fluorescent light that is emitted from the fluorescent material; a signal processing circuit for producing the temperature signal from the output signal from the photo diode; and an APC circuit for controlling the driving of the driving circuit so as to maintain a uniform light projecting intensity from the LED based on the output signal of the photo diode.
    • 用于从光学刺激的荧光材料的荧光产生温度信号的荧光灯温度传感器设置有:用于将光投射到荧光材料上的LED; 用于驱动所述光投射元件的驱动电路; 用于接收从荧光材料发射的荧光的光电二极管; 信号处理电路,用于根据来自光电二极管的输出信号产生温度信号; 以及用于控制驱动电路的驱动以便基于光电二极管的输出信号保持来自LED的均匀的光投射强度的APC电路。
    • 4. 发明授权
    • Iris authentication apparatus
    • 虹膜认证设备
    • US08155395B2
    • 2012-04-10
    • US11495326
    • 2006-07-28
    • Koji KobayashiAtsushi KatsumataHiroshi NakajimaKazuyuki MiyazawaKoichi ItoTakafumi Aoki
    • Koji KobayashiAtsushi KatsumataHiroshi NakajimaKazuyuki MiyazawaKoichi ItoTakafumi Aoki
    • G06K9/00
    • G06K9/0061G06K9/522
    • An iris authentication apparatus includes an iris area extraction unit, registration pattern generating unit, collation pattern generating unit, and collation unit. The iris area extraction unit extracts iris areas from a sensed registration eyeball image and a sensed collation eyeball image. When the iris area extraction unit extracts an iris area from the registration eyeball image, the registration pattern generating unit generates a registration iris pattern image by performing polar coordinate transformation of an image in the extracted iris area. When the iris area extraction unit extracts an iris area from the collation eyeball image, the collation pattern generating unit generates a collation iris pattern image by performing polar coordinate transformation of an image in the extracted iris area. The collation unit collates the registration iris pattern image output from the registration pattern generating unit and the collation iris pattern image output from the collation pattern generating unit on the basis of a correlation therebetween.
    • 虹膜认证装置包括光圈区域提取单元,注册图案生成单元,对比图案生成单元和对照单元。 虹膜区域提取单元从感测到的注册眼球图像和感测的对照眼球图像中提取虹膜区域。 当虹膜区域提取单元从登记眼球图像中提取虹膜区域时,登记图案生成单元通过对提取的虹膜区域中的图像进行极坐标变换来生成登记虹膜图案图像。 当虹膜区域提取单元从排序规则眼球图像中提取虹膜区域时,核对图案生成单元通过对提取的虹膜区域中的图像进行极坐标变换来生成排序规则虹膜图案图像。 对照单元根据它们之间的相关性对照从注册图案生成单元输出的登记虹膜图案图像和从核对图案生成单元输出的对照光圈图案图像。
    • 6. 发明申请
    • ENTRY/EXIT CONTROLLING SYSTEM AND METHOD
    • 进入/退出控制系统和方法
    • US20120075058A1
    • 2012-03-29
    • US13237091
    • 2011-09-20
    • Kazuaki TakenakaTakahiko Ohta
    • Kazuaki TakenakaTakahiko Ohta
    • G08B29/00
    • G07C9/00166
    • Comparison data required when a visitor enters/exits a region for which entry/exit is controlled, including one shared code that is shared between visitors and personal information of the visitor, is generated by a comparison data generating portion, where an entry/exit authorization evaluation for the visitor of a region is performed by an entry/exit evaluating portion through comparing, to entry/exit evaluation information, a shared code that is included in the comparison data that is obtained from a reader that is provided at the region, from a recording medium whereon the comparison data of the visitor is recorded, where the entry/exit of the visitor at the region is controlled based on the evaluation result by the entry/exit authorization evaluation, and where processing details of the entry/exit authorization evaluation and personal information included in the comparison data are recorded into a storing portion as historical information pertaining to the entry/exit authorization evaluations.
    • 访问者进入/退出控制进入/退出的区域所需的比较数据,包括访问者和访问者的个人信息之间共享的一个共享代码,由比较数据生成部分生成,其中进/出授权 通过进入/退出评估部分对入口/出口评估部分进行评估,对入口/出口评估信息进行比较,包括在从在该区域提供的读取器获得的比较数据中的共享代码,从 记录访问者的比较数据的记录介质,其中基于进/出授权评估的评估结果来控制该区域的访问者的进入/退出,以及进/出授权评估的处理细节 并且将包括在比较数据中的个人信息作为与进/出授权有关的历史信息被记录在存储部分中 评估。
    • 8. 发明申请
    • AIRFLOW CONTROLLING DEVICE AND METHOD
    • 气流控制装置及方法
    • US20120020831A1
    • 2012-01-26
    • US13176971
    • 2011-07-06
    • Masato TanakaMayumi MiuraKenji AkaiShuji SawadaYasuko Horiguchi
    • Masato TanakaMayumi MiuraKenji AkaiShuji SawadaYasuko Horiguchi
    • A61L9/00G01N33/00
    • F24F3/1603F24F11/74
    • The airflow controlling device includes a bacteria counting portion counting bacteria of a controlled space; a first smoothing processing portion performing a first smoothing process on the bacteria count; a second smoothing processing portion performing a second smoothing process on the bacteria count; a bacteria reducing capability storing portion storing a bacteria reducing capability relative to each flow rate; a first flow rate evaluating portion selecting a flow rate matching a bacteria reducing capability compatible with an increase in a bacteria count forecasted from the processing result of the first smoothing processing portion; a second flow rate evaluating portion selecting a flow rate matching a bacteria reducing capability compatible with an increase in a bacteria count forecasted from the processing result of the second smoothing processing portion; and a flow rate determining portion selecting a flow rate into the controlled space based on the flow rates selected by the first and second flow rate evaluating portions.
    • 气流控制装置包括计数受控空间的细菌的细菌计数部分; 对细菌计数进行第一平滑处理的第一平滑化处理部; 对细菌计数进行第二平滑处理的第二平滑处理部; 细菌减少能力存储部分,其相对于每个流速存储细菌减少能力; 第一流量评价部,选择与从第一平滑化处理部的处理结果预测的细菌计数的增加相适应的细菌减少能力相匹配的流量; 第二流量评价部,选择与从所述第二平滑处理部的处理结果预测的细菌计数的增加相适应的细菌减少能力相匹配的流量; 以及流量决定部,基于由第一流量评价部和第二流量评价部选择的流量,选择进入受控空间的流量。
    • 9. 发明申请
    • PROCESS CONTROL SYSTEM HAVING EQUIPMENT MONITORING FUNCTION
    • 具有设备监控功能的过程控制系统
    • US20120004741A1
    • 2012-01-05
    • US13171763
    • 2011-06-29
    • Shin Suzuki
    • Shin Suzuki
    • G05B11/01
    • G05B19/042G05B2219/25451
    • HART-I/O units for sending and receiving input/output signals of HART communications-compatible devices that have HART communications functions, and for sending and receiving, on mutually differing lines, 4-20 mA DC signals, which include the input/output signals, and digital signals that are superimposed on the DC signals. A controller for receiving a DC current that is outputted from the HART-I/O units and for controlling processes based on the DC signals; and a device monitoring portion for receiving digital signals sent and received by the HART-I/O units, and for monitoring the status of the HART communications-compatible devices based on the digital signals.
    • HART-I / O单元用于发送和接收具有HART通信功能的HART通信兼容设备的输入/输出信号,以及在不同线路上发送和接收4-20 mA直流信号,包括输入/​​输出 信号和叠加在直流信号上的数字信号。 一种控制器,用于接收从HART-I / O单元输出并用于基于DC信号进行控制的直流电流; 以及设备监视部分,用于接收由HART-I / O单元发送和接收的数字信号,并且用于基于数字信号监视HART通信兼容设备的状态。
    • 10. 发明申请
    • PHYSICAL QUANTITY SENSOR
    • 物理量传感器
    • US20110313704A1
    • 2011-12-22
    • US13159947
    • 2011-06-14
    • Tomohisa Sasaki
    • Tomohisa Sasaki
    • G06F19/00G01L27/00
    • G01L9/025G01F1/363G01F1/50
    • A pressure detector detecting a pressure of cold or hot water; a temperature detector detecting a temperature of a pressure sensor; correcting equation storage storing, cold water correcting equation information applied when the temperature detected by the temperature detector is included in a cold water temperature range, and hot water correcting equation information applied when the temperature detected by the temperature detector is included in a hot water temperature range; a temperature range determiner determining the temperature range that includes the temperature detected by the temperature detector as either a cold water temperature range or a hot water temperature range; and a correction calculating portion using the correcting equation corresponding to the temperature range determined by the temperature range determiner correcting the detection signal by the pressure detector, and outputting the post-correction signal as a measurement signal.
    • 检测冷或热水压力的压力检测器; 检测压力传感器的温度的温度检测器; 当温度检测器检测到的温度被包括在冷水温度范围内时应用的冷水校正方程信息以及当由温度检测器检测到的温度被包括在热水温度中时所应用的热水校正方程信息 范围; 温度范围确定器确定包括由温度检测器检测的温度作为冷水温度范围或热水温度范围的温度范围; 以及校正计算部分,使用与由温度范围确定器确定的温度范围对应的校正方程,校正方法由压力检测器校正检测信号,并输出校正后信号作为测量信号。