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    • 2. 发明授权
    • Camera shake alarming apparatus
    • 相机震动报警器
    • US5402197A
    • 1995-03-28
    • US109905
    • 1993-08-23
    • Hiroshi OkanoTadao KaiKazuharu ImafujiAkira Katayama
    • Hiroshi OkanoTadao KaiKazuharu ImafujiAkira Katayama
    • G02B7/28G03B5/00G03B13/36G03B17/00G03B17/18
    • G03B17/18G03B2205/0015G03B2217/005G03B2217/185
    • A camera shake alarming apparatus comprises a storage portion for storing specification information of a camera; a subject distance detecting portion for detecting a subject distance for photographing a subject; a calculating portion for calculating an allowable camera shake quantity on the basis of a shutter speed set in the camera when photographing the subject, the camera specification information stored in the storage portion and the subject distance detected by the subject distance detecting portion; a camera shake detecting portion for detecting a camera shake quantity of the camera; a comparing portion for comparing the allowable camera shake quantity calculated by the calculating portion with the camera shake quantity detected by the camera shake detecting portion; and an alarming portion for giving an alarm for the camera shake according to a compared result of the comparison portion.
    • 相机震动报警装置包括用于存储相机的指定信息的存储部分; 被摄体距离检测部,用于检测拍摄对象的被摄体距离; 计算部分,用于基于在拍摄对象时在相机中设置的快门速度,存储在存储部分中的相机指定信息和由被摄体距离检测部分检测到的被摄体距离来计算允许的相机抖动量; 用于检测相机的相机抖动量的相机抖动检测部分; 比较部分,用于将由计算部分计算的容许相机抖动量与由相机抖动检测部分检测到的相机抖动量进行比较; 以及用于根据比较部分的比较结果给出相机抖动报警的报警部分。
    • 4. 发明授权
    • Semiconductor integrated circuit
    • 半导体集成电路
    • US08063692B2
    • 2011-11-22
    • US12813360
    • 2010-06-10
    • Hiroshi Okano
    • Hiroshi Okano
    • G05F1/10
    • H03K19/0016
    • A semiconductor integrated circuit includes: an internal circuit; a detecting circuit which detects an element characteristic of the internal circuit; a calculating circuit which calculates a first consumption energy consumed when a power gating operation is performed on a task processed by the internal circuit and a second consumption energy consumed when an operation of reducing a voltage and a frequency is performed in accordance with the element characteristic; and a switching circuit which performs the power gating operation on the internal circuit when the first consumption energy is smaller than the second consumption energy and performs the operation of reducing a voltage and a frequency when the second consumption energy is smaller than the first consumption energy.
    • 一种半导体集成电路包括:内部电路; 检测所述内部电路的元件特性的检测电路; 计算电路,其计算当对由所述内部电路处理的任务执行电力门控操作时消耗的第一消耗能量和根据所述元件特性执行降低电压和频率的操作时消耗的第二消耗能量; 以及切换电路,当所述第一消耗能量小于所述第二消耗能量时,对所述内部电路进行电力门控操作,并且当所述第二消耗能量小于所述第一消耗能量时执行降低电压和频率的操作。
    • 5. 发明申请
    • Gas concentrator
    • 气体浓缩器
    • US20090145301A1
    • 2009-06-11
    • US12000339
    • 2007-12-11
    • Hiroshi OkanoKen-ichiro Yamada
    • Hiroshi OkanoKen-ichiro Yamada
    • B01D63/16
    • B01D63/16B01D53/06B01D53/72B01D69/10B01D71/028B01D2253/108B01D2253/3425B01D2257/708B01D2259/4009Y10S277/918
    • A revolving gas adsorption concentrator uses about 300 degree centigrade of hot desorption air. The revolving gas adsorption concentrator prevents leakage of such hot desorption air. An elastic seal which has elasticity divides a honeycomb shape rotor into a desorption zone and an adsorption zone and touches the honeycomb shape rotor. A heat-resistant seal comprises of material whose heat resistance is higher than elastic seal. The heat-resistant seal has two plates which has a mutually opened spacing to prevent hot gas from going to the elastic seal based on the labyrinth effectiveness. The elastic seal is formed in the outside of desorption zone from heat-resistant seal. The seal of the hot desorption air is almost blocked by heat-resistant seal and the desorption air which leaked slightly can be thoroughly blocked completely by elastic seal.
    • 旋转气体吸收浓缩器使用约300摄氏度的热解吸空气。 旋转气体吸附浓缩器防止这种热解吸空气的泄漏。 具有弹性的弹性密封将蜂窝状转子分割成解吸区和吸附区,并与蜂窝状转子接触。 耐热密封包括耐热性高于弹性密封的材料。 耐热密封件具有相互间隔开的两个板,以防止热气体基于迷宫效果而进入弹性密封件。 弹性密封由耐热密封件形成在解吸区外部。 热解吸空气的密封几乎被耐热密封堵塞,轻微泄漏的解吸空气可以通过弹性密封完全堵塞。
    • 8. 发明授权
    • Method of dehumidifying and dehumidifier with heat exchanger having first and second passages and moisture cooling in the second passages
    • 具有第一通道和第二通道的热交换器的除湿和除湿器的方法以及第二通道中的水分冷却
    • US06478855B1
    • 2002-11-12
    • US09650863
    • 2000-08-29
    • Hiroshi Okano
    • Hiroshi Okano
    • B01D5306
    • F24F3/1423F24F3/1411F24F2203/1036F24F2203/1048F24F2203/1052F24F2203/1068
    • A heat exchanger, perhaps a cross flow heat exchanger, has first and second passages. During dehumidification (adsorption of moisture) in the first passages, water is evaporated from the second passages. This water can be introduced to the second passages during reactivation (desorption of moisture) in the first passages or at another time. If the water is introduced to the second passages during reactivation, the first and second passages have therein first and second moisture adsorbents. During a first time period, air to be dehumidified is passed through the first passages of the heat exchanger and cooling air is passed through the second passages of the heat exchanger to remove heat generated in the first passages and to desorb moisture adsorbed by the second moisture adsorbent. During a second time period, a heating fluid is passed through the second passages of the heat exchanger to heat the first passages and supply moisture for adsorption to the second moisture adsorbent. Also during the second time period, removal air is passed through the first passages of the heat exchanger to eliminate water adsorbed by the first moisture adsorbent during the first time period. If water is introduced to the second passages at a time other than during reactivation, it is not necessary for the second passages to have a moisture adsorbent therein. The water could be introduced to the second passages as a spray during the first time period (during dehumidification).
    • 热交换器,也许是横流式热交换器,具有第一和第二通道。 在第一次通道中的除湿(吸湿)期间,水从第二通道蒸发。 在第一次通过或另一次的再次活化(水分解除)期间,该水可以被引入第二通道。 如果在再活化期间水被引入第二通道,则第一和第二通道中具有第一和第二湿度吸附剂。 在第一时间段内,通过热交换器的第一通道通过除湿空气,使冷却空气通过热交换器的第二通道,以除去第一通道中产生的热量并解吸第二湿气吸附的水分 吸附剂。 在第二时间段期间,加热流体通过热交换器的第二通道,以加热第一通道并提供水分以吸附到第二湿度吸附剂。 此外,在第二时间段期间,去除空气通过热交换器的第一通道,以消除在第一时间段期间由第一湿度吸附剂吸附的水。 如果在再次激活之外的时间将水引入第二通道,则第二通道不必在其中具有水分吸收剂。 在第一时间期间(在除湿期间),水可以作为喷雾引入第二通道。
    • 9. 发明授权
    • Information transmission/reception system
    • 信息发送/接收系统
    • US6052388A
    • 2000-04-18
    • US894199
    • 1997-08-14
    • Yoichiro TajimaHiroshi OkanoNaruhiko Nihira
    • Yoichiro TajimaHiroshi OkanoNaruhiko Nihira
    • H04B1/16H04H20/00H04H20/76H04H60/33H04H60/37H04H60/94H04L12/50
    • H04H20/76H04H60/33H04H60/37H04H60/94H04N7/17309
    • An FM radio receiver receives and displays program data which is affixed with a return destination box number and return form type data and has been transmitted from an FM broadcasting station 1 in the multiplexed form on FM broadcast radio waves. In responding to a displayed program through the FM radio receiver, first, the FM radio receiver 2 reads a return form corresponding to the return form type data from a ROM card 24 and displays the form. A user inputs return message data according to the displayed return form. FM radio receiver 2 transmits the return destination box number data in addition to the return message data to a service center 5. The service center 5 stores the received return message data in a box corresponding to the return destination box number data affixed to the received return message data. The return message data is edited and collected box by box. The edited and/or collected results are sent to the FM broadcasting station 1 as needed.
    • PCT No.PCT / JP96 / 03681 Sec。 371日期1997年8月14日 102(e)日期1997年8月14日PCT 1996年12月18日PCT公布。 出版物WO97 / 23998 日期1997年7月3日FM收音机接收并显示附加有返回目的地箱号码和返回表格类型数据的节目数据,并且已经从FM广播电台1以FM多播形式发送到FM广播无线电波。 在通过FM无线电接收机响应所显示的节目时,首先,FM无线电接收机2从ROM卡24读取与返回表格类型数据对应的返回表格并显示该表单。 用户根据显示的返回形式输入返回消息数据。 FM无线电接收机2除了返回消息数据之外还将返回目的地箱号码数据发送到服务中心5.服务中心5将接收到的返回消息数据存储在对应于附加到接收到的返回的返回目的地箱号码数据的框中 消息数据。 返回消息数据逐个编辑和收集。 编辑和/或收集的结果根据需要发送到FM广播电台1。