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    • 3. 发明申请
    • RESOURCE MANAGEMENT SYSTEM
    • 资源管理系统
    • US20130067478A1
    • 2013-03-14
    • US13698727
    • 2011-05-25
    • Hiroki KazunoTomoya SogoAkio NakanoMisayo Kobayashi
    • Hiroki KazunoTomoya SogoAkio NakanoMisayo Kobayashi
    • G06F9/50
    • G06Q10/0631Y02P90/82
    • Provided are: information acquisition unit that periodically acquires usage state information of resource by load; user terminal that creates permitted usage period data; period setting unit that sets each load's permitted usage period based on permitted usage period data; determination unit that determines whether each load's resource usage is within permitted usage period; and display unit that distinctively displays whether resource usage period is within permitted usage period based on determination result by determination unit. User terminal creates single batch permitted usage period data. Period setting unit includes batch setting unit that performs batch setting whereby batch permitted usage period is set as permitted usage periods of all loads.
    • 提供:周期性地获取资源的使用状态信息的信息获取单元; 创建允许的使用期数据的用户终端; 周期设定单元,其基于允许的使用期间数据设定每个负载的允许使用周期; 确定每个负载的资源使用是否在允许的使用期限内; 以及显示单元,其基于确定单元的确定结果来区别地显示资源使用期限是否在允许的使用期限内。 用户终端创建单批允许使用期数据。 期间设定单元包括批量设定单元,进行批量设定,批量允许使用期间设定为所有负载的允许使用期限。
    • 4. 发明申请
    • AIR-CONDITIONING CONTROL DEVICE, AIR-CONDITIONING SYSTEM, AND AIR-CONDITIONING CONTROL METHOD
    • 空调控制装置,空气调节系统和空调控制方法
    • US20120298348A1
    • 2012-11-29
    • US13574880
    • 2011-01-14
    • Atsushi MiseAkio NakanoTakashi NishiyamaShinpei Hibiya
    • Atsushi MiseAkio NakanoTakashi NishiyamaShinpei Hibiya
    • G05D23/00
    • F24F11/30F24F11/61F24F11/62F24F11/65F24F2110/10F24F2110/12F24F2120/20
    • The air-conditioning control device controls an air conditioner for changing an air temperature within an area, and includes a manipulation unit for inputting a required temperature; an adequate temperature setting unit for calculating an adequate temperature defined as a comfortable temperature for a user in the area using comfort evaluation; a control unit for performing selectively a first mode of controlling the conditioner to adjust the air temperature to the required temperature and a second mode of controlling the conditioner to adjust the air temperature to the adequate temperature; and a judging unit for judging whether or not a switching condition is fulfilled while the control unit performs the first mode. The control unit performs the first mode when the required temperature is inputted via the manipulation unit, and ends the first mode and starts the second mode when the judging unit judges that the switching condition is fulfilled
    • 空调控制装置控制用于改变区域内的空气温度的空调,并且包括用于输入所需温度的操作单元; 适当的温度设定单元,用于计算使用舒适性评价在该区域中为用户定义为舒适温度的适当温度; 控制单元,用于选择性地执行控制所述调节器以将空气温度调节到所需温度的第一模式,以及控制所述调节器以将空气温度调节到适当温度的第二模式; 以及判断单元,用于在控制单元执行第一模式时判断是否满足切换条件。 当所需温度经由操作单元输入时,控制单元执行第一模式,并且当判断单元判定开关条件满足时结束第一模式并开始第二模式
    • 5. 发明申请
    • ENERGY MANAGEMENT SYSTEM AND COMPUTER PROGRAM PRODUCT
    • 能源管理系统和计算机程序产品
    • US20110172792A1
    • 2011-07-14
    • US12997085
    • 2009-06-10
    • Kiyotoshi ShinoharaAkio NakanoMasaaki TeranoTooru ShimotsumaRyuichi MaedaTomoya Sogou
    • Kiyotoshi ShinoharaAkio NakanoMasaaki TeranoTooru ShimotsumaRyuichi MaedaTomoya Sogou
    • G06F19/00G06G7/62
    • G06Q50/06
    • The energy management system includes a judging means (103), a usage information means (105), a schedule input means (106), a simulating means (108), a prediction information indicating means (110). The judging means (103) judges whether or not the device was used for each unit time, on the basis of power consumption of the device in a predetermined time period (measurement value). The usage information indicating means (105) indicates whether or not the device was used for each unit time, on the basis of the judgment result of the judging means (103). The schedule input means (106) requires a user to input schedule information which defines operation of the device for each unit time in the predetermined time period. The simulating means (108) calculates power consumption (prediction value) used in the device which operates in accordance with the schedule information input via the schedule input means (106), on the basis of the measurement value. The prediction information indicating means (110) indicates the prediction value calculated by the simulating means (108).
    • 能量管理系统包括判断装置(103),使用信息装置(105),时间表输入装置(106),模拟装置(108),预测信息指示装置(110)。 判断装置(103)基于设备在预定时间段(测量值)中的功耗来判断每个单位时间内是否使用设备。 使用信息指示装置(105)根据判断装置(103)的判断结果,指示是否每单位时间使用装置。 时间表输入装置(106)要求用户在预定时间段内输入每个单位时间定义装置的操作的时间表信息。 模拟装置(108)基于测量值计算在根据调度输入装置输入的调度信息进行操作的装置中使用的功耗(预测值)。 预测信息指示装置(110)指示由模拟装置(108)计算出的预测值。
    • 6. 发明申请
    • Ultrasound sensor
    • 超声波传感器
    • US20070163350A1
    • 2007-07-19
    • US11605399
    • 2006-11-29
    • Akio NakanoMuneaki Matsumoto
    • Akio NakanoMuneaki Matsumoto
    • G01N29/04
    • G01S7/521G10K9/122
    • An ultrasound sensor has an ultrasound oscillator which is expandable and contractible in a thickness direction thereof, and a casing which houses therein the ultrasound oscillator. An outer surface of an end portion of the casing is fixed to a mounting member. The side surface of the ultrasound oscillator has at least one of a protrusion portion, a concave portion and an inclined portion, through which one of two end surfaces of the ultrasound oscillator fixedly contacts an inner surface of the end portion of the casing. The side surface of the ultrasound oscillator is substantially parallel with the thickness direction thereof.
    • 超声波传感器具有在其厚度方向上可膨胀和收缩的超声波振荡器,以及容纳超声波振荡器的壳体。 壳体的端部的外表面固定到安装构件。 超声波振荡器的侧面具有突起部,凹部和倾斜部中的至少一个,超声波振荡器的两个端面中的一个固定地与壳体的端部的内表面接触。 超声波振荡器的侧面与其厚度方向基本平行。
    • 7. 发明申请
    • Ultrasound sensor
    • 超声波传感器
    • US20070115102A1
    • 2007-05-24
    • US11602497
    • 2006-11-21
    • Akio NakanoTakeo TsuzukiYoshihisa SatoKiyonari Kojima
    • Akio NakanoTakeo TsuzukiYoshihisa SatoKiyonari Kojima
    • B60Q1/00
    • G01S7/521G01S15/931G01S2015/938G10K9/122
    • An ultrasound sensor for a vehicle has a housing which is fixedly arranged at a vehicle inner side of a periphery member of the vehicle, an ultrasound vibrator for sending and receiving ultrasound, and an ultrasound transferring member which is constructed of a different material from that of the housing to have an acoustic impedance with a medium value between an acoustic impedance of the ultrasound vibrator and that of the periphery member. The ultrasound vibrator is accommodated in the housing and fixed to an end portion of the housing, which faces the periphery member. The ultrasound transferring member is arranged at the end portion of the housing, and contacts both the ultrasound vibrator and the periphery member of the vehicle.
    • 一种用于车辆的超声波传感器具有固定地布置在车辆的周边部件的车辆内侧的壳体,用于发送和接收超声波的超声波振动器,以及超声波传递部件,其由与 所述壳体具有在所述超声波振动器的声阻抗和所述外围构件的声阻抗之间具有中等值的声阻抗。 超声波振动器容纳在壳体中并固定到壳体的面向周边构件的端部。 超声波传送构件布置在壳体的端部处,并且与超声波振动器和车辆的周边构件接触。
    • 8. 发明申请
    • Electrostatic chuck
    • 静电吸盘
    • US20060120011A1
    • 2006-06-08
    • US11293218
    • 2005-12-05
    • Ryuichi HandaAkio Nakano
    • Ryuichi HandaAkio Nakano
    • H01T23/00
    • H01L21/6831H01L21/67109H02N13/00
    • Provided is an electrostatic chuck, including: a first insulating layer including a heat conductive silicone rubber with a thermal conductivity of at least 0.2 W/mK, which is formed on top of a metal substrate, either directly or with an adhesive layer disposed therebetween; a conductive pattern, which is formed on top of the first insulating layer, either directly or with an adhesive layer disposed therebetween; a second insulating layer including an insulating polyimide film, which is formed on top of the conductive pattern, either directly or with an adhesive layer disposed therebetween; and a third insulating layer including a heat conductive silicone rubber with a thermal conductivity of at least 0.2 W/mK, a hardness of no more than 85, and a surface roughness of no more than 5 μm, which is formed on top of the second insulating layer, either directly or with an adhesive layer disposed therebetween. Also provided is a process for holding a substrate on the electrostatic chuck. The electrostatic chuck exhibits excellent cooling performance and insulation performance, and is ideal for holding a substrate during the production of a semiconductor integrated circuit.
    • 本发明提供一种静电卡盘,其特征在于,包括:第一绝缘层,其包含导热性为0.2W / m·K以上的导热性硅橡胶,其直接形成在金属基材的顶部,或者设置在其间的粘合剂层; 形成在第一绝缘层的顶部上的导电图案直接地或者设置在其间的粘合剂层; 形成在导电图案的顶部的绝缘聚酰亚胺膜的第二绝缘层直接地或者设置在它们之间的粘合剂层; 以及第三绝缘层,其包括热传导率为至少0.2W / mK,硬度不大于85的导热硅橡胶和不大于5um的表面粗糙度的第三绝缘层,其形成在第二 绝缘层,直接地或者设置在它们之间的粘合剂层。 还提供了用于将基板保持在静电卡盘上的过程。 静电卡盘具有优异的冷却性能和绝缘性能,并且是在半导体集成电路制造期间保持基板的理想选择。
    • 10. 发明授权
    • Keyless entry control and transmitter for the same
    • 无钥匙进入控制和发射机相同
    • US06396389B1
    • 2002-05-28
    • US09148418
    • 1998-09-04
    • Akio NakanoTooru HagiwaraHodaka Kamiya
    • Akio NakanoTooru HagiwaraHodaka Kamiya
    • G06F704
    • G07C9/00182G07C2009/00206G07C2009/00261G07C2009/00793
    • In the keyless entry control, if control switches are operated again while a transmission process specified by the control switch is being executed, function codes specified by states of operation of the control switch are stored by a transmitter. A remote control signal generated by converting the stored function code is transmitted after the completion of the preceding transmission process. If the control switch is operated twice to unlock all the doors of a vehicle, the doors other than that beside a driver's scat are unlocked by a transmission process corresponding to the second operation of the control switch after the door beside the driver's seat is unlocked in response to the first operation of the control switch.
    • 在无钥匙进入控制中,如果在执行由控制开关指定的发送处理时再次操作控制开关,则由发送器存储由控制开关的操作状态指定的功能代码。 通过转换所存储的功能代码产生的遥控信号在完成前面的传输处理之后发送。 如果控制开关被操作两次以解锁车辆的所有门,除驾驶员旁边的门以外的门通过与驾驶员座椅旁边的门被解锁的对应于控制开关的第二操作的传动过程来解锁 响应控制开关的第一次操作。