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    • 1. 发明专利
    • Wooden clog
    • 木制家具
    • JP2008264023A
    • 2008-11-06
    • JP2007107091
    • 2007-04-16
    • Tomonori Kondo智紀 近藤
    • KONDO TOMONORI
    • A43B3/00
    • PROBLEM TO BE SOLVED: To provide a wooden clog capable of effectively performing a balance training and a muscle training.
      SOLUTION: The wooden clog has a wooden clog body 4 and teeth 8 for supporting the wooden clog body 4, a plurality of tooth attaching parts 18 are provided on the lower surface of the wooden clog body 4, the teeth 8 can be freely detachably mounted on the plurality of tooth attaching parts 18, and by changing the mounting position of the teeth to the plurality of tooth attaching parts 18, the arrangement of the teeth 8 to the wooden clog body 4 is changed. Thus, the body posture is made instable in various directions and a balance feeling in the various directions is trained. Thus, the balance training of rich variations can be performed and the balance training can be effectively performed.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供能够有效地进行平衡训练和肌肉训练的木制木榫。 解决方案:木制木log具有木制木log体4和用于支撑木log体4的齿8,在木log体4的下表面上设置有多个齿附着部18,齿8可以 可自由拆卸地安装在多个齿附接部18上,通过将齿的安装位置改变为多个齿附接部18,齿8与木质堵塞体4的配置发生变化。 因此,使身体姿势在各个方向上不稳定,并且训练各个方向上的平衡感。 因此,可以进行丰富变化的平衡训练,并且可以有效地执行平衡训练。 版权所有(C)2009,JPO&INPIT
    • 2. 发明授权
    • Image processing device and image forming device
    • 图像处理装置和图像形成装置
    • US08625150B2
    • 2014-01-07
    • US12842432
    • 2010-07-23
    • Tomonori Kondo
    • Tomonori Kondo
    • H04N1/46H04N1/40H04N1/393H04N1/04G06K9/00G06K9/34G06K9/36
    • H04N1/387H04N1/00002H04N1/00034H04N1/00082H04N1/00718H04N1/3878
    • An image processing device includes an image data acquiring part that acquires the first and second image data, an edge characteristic extraction part that extracts first edges and second edges forming the shapes of the rectangular regions contained in the first and second image data, a rectangular characteristic calculating part that extracts both a first calculated rectangular region formed by the first edges and a second calculated rectangular region formed by the second edges, a position adjustment parameter calculating part that calculates parameters indicating a separation distance and a separation angle between the first calculated rectangular region and the second calculated rectangular region when the first image data and the second image data are overlapped, and an image data correction part that corrects at least one of the first image data and the second image data by shifting and rotating based upon the parameters.
    • 图像处理装置包括获取第一和第二图像数据的图像数据获取部分,提取第一边缘的边缘特征提取部分和形成包含在第一和第二图像数据中的矩形区域的形状的第二边缘,矩形特征 计算部分,其提取由第一边缘形成的第一计算的矩形区域和由第二边缘形成的第二计算的矩形区域;位置调整参数计算部分,其计算指示间隔距离的参数和第一计算矩形区域 以及当第一图像数据和第二图像数据重叠时的第二计算的矩形区域,以及图像数据校正部分,其通过基于参数的移位和旋转来校正第一图像数据和第二图像数据中的至少一个。
    • 5. 发明授权
    • Hydrogen sensor
    • 氢传感器
    • US07189364B2
    • 2007-03-13
    • US10119901
    • 2002-04-11
    • Norihiko NadanamiTomonori KondoMasaya WatanabeRyuji InoueNoboru IshidaTakafumi Oshima
    • Norihiko NadanamiTomonori KondoMasaya WatanabeRyuji InoueNoboru IshidaTakafumi Oshima
    • B32B5/02B32B27/04B32B27/12G01N27/00G01N7/00
    • G01N33/005G01N27/4074Y10T436/11Y10T436/203332Y10T436/22Y10T436/25875
    • A hydrogen sensor includes a first electrode 3 and a second electrode 4 provided in contact with a proton conduction layer 2; a gas diffusion controlling portion 6 provided between a measurement gas atmosphere and the first electrode 3; and a support element (1a, 1b) for supporting the proton conduction layer 6, the first electrode 3, the second electrode 4, and the gas diffusion controlling portion 6. Hydrogen contained in a measurement gas introduced via the gas diffusion controlling portion 6 is dissociated, decomposed, or reacted by applying a voltage between the first electrode 3 and the second electrode 4 to thereby generate protons. Hydrogen concentration is obtained on the basis of a limiting current generated as a result of the generated protons being pumped out via the proton conduction layer 2 from the first electrode 3 side of the proton conduction layer to the second electrode 4 side of the proton conduction layer. Hydrogen concentration on the first electrode 2 is controlled to a partial pressure of not less than 10−12 atm, or more preferably, of not less than 3×10−12 atm and of less than 10−2 atm.
    • 氢传感器包括与质子传导层2接触而设置的第一电极3和第二电极4; 设置在测量气体气氛和第一电极3之间的气体扩散控制部分6; 以及用于支撑质子传导层6,第一电极3,第二电极4和气体扩散控制部分6的支撑元件(1a,1b)。 通过气体扩散控制部分6导入的测量气体中所含的氢离子,分解或反应,通过在第一电极3和第二电极4之间施加电压从而产生质子。 基于由生成的质子经由质子传导层2从质子传导层的第一电极3侧向质子传导层的第二电极4侧泵出的限制电流获得氢浓度 。 将第一电极2上的氢浓度控制在不低于大气压的分压,或者更优选不低于3×10 12大气压,以及 小于10-2大气压。
    • 7. 发明申请
    • Gas sensor
    • 气体传感器
    • US20060049048A1
    • 2006-03-09
    • US10540561
    • 2003-12-25
    • Tomonori KondoShoji KitanoyaNorihiko NadanamiNoboru IshidaTakafumi Oshima
    • Tomonori KondoShoji KitanoyaNorihiko NadanamiNoboru IshidaTakafumi Oshima
    • G01N27/26
    • G01N27/4074H01M8/04089H01M2008/1095
    • A gas sensor capable of reversibly and continuously measuring the concentration of a catalyst poison gas such as CO without specially needing recovering means such as a heater, and measuring the catalyst poison gas concentration without being affected by H2O concentration. The electrical circuit (15) of the gas sensor has an AC power supply (19) for applying an AC voltage between both electrodes (3), (5), an AC voltmeter (21) for measuring an AC voltage (AC effective voltage V) between the both electrodes (3), (5), and an AC ammeter (23) for measuring a current (AC effective current I) running between the both electrodes (3), (5). An impedance is determined from the AC effective voltage V and the AC effective current I generated when the AC voltage is applied to the both electrodes (3), (5). Since this impedance corresponds to the catalyst poison gas concentration, the catalyst poison gas concentration can be determined from the impedance by using a map showing the relation between the impedance and the catalyst poison gas concentration.
    • 一种气体传感器,其能够可靠地连续地测量催化剂毒气如CO的浓度,而不需要诸如加热器的回收装置,并且不受H 2 O 2的影响来测量催化剂毒气浓度 浓度。 气体传感器的电路(15)具有用于在两个电极(3),(5)之间施加交流电压的交流电源(19),用于测量交流电压的交流电压表(AC)(AC有效电压V (3),(5)和用于测量在两个电极(3),(5)之间运行的电流(AC有效电流I)的AC电流表(23)。 根据AC有效电压V和当向两个电极(3),(5)施加AC电压时产生的AC有效电流I)确定阻抗。 由于该阻抗对应于催化剂毒气浓度,所以可以通过使用示出阻抗与催化剂毒气浓度之间的关系的图来从阻抗确定催化剂毒气浓度。
    • 8. 发明授权
    • Glass run channel assembly and its manufacturing method
    • 玻璃运行通道组装及其制造方法
    • US08667738B2
    • 2014-03-11
    • US12699414
    • 2010-02-03
    • Tomonori KondoHiroyuki ItoTatsuya Tamura
    • Tomonori KondoHiroyuki ItoTatsuya Tamura
    • E06B7/16
    • B60J10/76B29C45/14467B29C2045/0093B60J10/36Y10T29/4998
    • A glass run channel assembly which is made of an elastic polymeric material and which is capable of being mounted to a vehicle, including: a first long glass run channel, a second long glass run channel and a connecting glass run channel which connects the first and second glass run channels, the connecting glass run channel comprising a base bottom portion. The base bottom portion is provided with a projection portion which projects from an outer circumferential side surface of the base bottom portion. The projection portion includes at least a portion of a reinforcing member. The reinforcing member is molded in advance from a material which is harder and more rigid than the elastic polymeric material of the connecting glass run channel, and the reinforcing member includes a base portion arranged at the base bottom portion and a trunk portion which projects towards an outer circumferential side.
    • 一种由弹性聚合物材料制成并且能够安装在车辆上的玻璃导槽组件,包括:第一长玻璃导槽,第二长玻璃导槽和连接玻璃导槽,其连接第一和第 第二玻璃运行通道,连接玻璃运行通道包括底部底部。 基部底部设置有从底部底部的外周侧表面突出的突出部。 突出部分包括加强构件的至少一部分。 加强构件预先从比连接玻璃导槽的弹性聚合物材料更硬且更刚性的材料成型,并且加强构件包括布置在底部底部的基部和向基部底部突出的主体部分 外周侧。
    • 9. 发明申请
    • IMAGE PROCESSING DEVICE AND IMAGE FORMING DEVICE
    • 图像处理装置和图像形成装置
    • US20110019246A1
    • 2011-01-27
    • US12842432
    • 2010-07-23
    • Tomonori Kondo
    • Tomonori Kondo
    • H04N1/40H04N1/04
    • H04N1/387H04N1/00002H04N1/00034H04N1/00082H04N1/00718H04N1/3878
    • An image processing device includes an image data acquiring part that acquires the first and second image data, an edge characteristic extraction part that extracts first edges and second edges forming the shapes of the rectangular regions contained in the first and second image data, a rectangular characteristic calculating part that extracts both a first calculated rectangular region formed by the first edges and a second calculated rectangular region formed by the second edges, a position adjustment parameter calculating part that calculates parameters indicating a separation distance and a separation angle between the first calculated rectangular region and the second calculated rectangular region when the first image data and the second image data are overlapped, and an image data correction part that corrects at least one of the first image data and the second image data by shifting and rotating based upon the parameters.
    • 图像处理装置包括获取第一和第二图像数据的图像数据获取部分,提取第一边缘的边缘特征提取部分和形成包含在第一和第二图像数据中的矩形区域的形状的第二边缘,矩形特征 计算部分,其提取由第一边缘形成的第一计算的矩形区域和由第二边缘形成的第二计算的矩形区域;位置调整参数计算部分,其计算指示分离距离的参数和第一计算矩形区域 以及当第一图像数据和第二图像数据重叠时的第二计算的矩形区域,以及图像数据校正部分,其通过基于参数的移位和旋转来校正第一图像数据和第二图像数据中的至少一个。
    • 10. 发明申请
    • GLASS RUN CHANNEL ASSEMBLY AND ITS MANUFACTURING METHOD
    • 玻璃运行通道组件及其制造方法
    • US20100199568A1
    • 2010-08-12
    • US12699414
    • 2010-02-03
    • Tomonori KONDOHiroyuki ITOTatsuya TAMURA
    • Tomonori KONDOHiroyuki ITOTatsuya TAMURA
    • B60J1/17E06B7/16B23P17/00
    • B60J10/76B29C45/14467B29C2045/0093B60J10/36Y10T29/4998
    • A glass run channel assembly which is made of an elastic polymeric material and which is capable of being mounted to a vehicle, including: a first long glass run channel, a second long glass run channel and a connecting glass run channel which connects the first and second glass run channels, the connecting glass run channel comprising a base bottom portion. The base bottom portion is provided with a projection portion which projects from an outer circumferential side surface of the base bottom portion. The projection portion includes at least a portion of a reinforcing member. The reinforcing member is molded in advance from a material which is harder and more rigid than the elastic polymeric material of the connecting glass run channel, and the reinforcing member includes a base portion arranged at the base bottom portion and a trunk portion which projects towards an outer circumferential side.
    • 一种由弹性聚合物材料制成并且能够安装在车辆上的玻璃导槽组件,包括:第一长玻璃导槽,第二长玻璃导槽和连接玻璃导槽,其连接第一和第 第二玻璃运行通道,连接玻璃运行通道包括底部底部。 基部底部设置有从底部底部的外周侧表面突出的突出部。 突出部分包括加强构件的至少一部分。 加强构件预先从比连接玻璃导槽的弹性聚合物材料更硬且更刚性的材料成型,并且加强构件包括布置在底部底部的基部和向基部底部突出的主体部分 外周侧。