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    • 2. 发明申请
    • Thermal analysis system and method of drying the same
    • 热分析系统及其干燥方法
    • US20080025364A1
    • 2008-01-31
    • US11879554
    • 2007-07-18
    • Rintaro NakataniRyoichi KinoshitaShinya Nishimura
    • Rintaro NakataniRyoichi KinoshitaShinya Nishimura
    • G01N25/20F26B3/04
    • G01N25/20
    • To enable the reduction in working efforts by hand by performing control a drying operation by appropriately selecting dry conditions depending on the connection mode of the cooling device, and removal of moisture and the like without fail. The thermal analysis system uses a heater and a cooling device to raise and decrease the temperature inside the purge box. In the drying method for the thermal analysis system, the drying operation is performed by: previously setting dry conditions depending on the connection mode of the cooling device; starting control of an opening time dry process upon activation of the thermal analysis system; supplying a predetermined amount of dry gas into the purge box in accordance with the dry conditions corresponding to the selected connection mode of the cooling device with the cooling device kept off; and making the temperature control module control the temperature of the dry gas.
    • 为了通过根据冷却装置的连接方式适当地选择干燥条件并且不会失去湿气等而进行干燥操作来实现手工减少工作。 热分析系统使用加热器和冷却装置来提高和降低清洗箱内的温度。 在热分析系统的干燥方法中,通过以下方式进行干燥操作:根据冷却装置的连接方式预先设定干燥条件; 在激活热分析系统时开始控制开放时间干燥过程; 根据与冷却装置的所选择的连接模式相对应的干燥条件将冷却装置保持关闭的预定量的干燥气体供应到净化箱中; 并使温度控制模块控制干燥气体的温度。
    • 3. 发明授权
    • Thermal analysis system and method of drying the same
    • 热分析系统及其干燥方法
    • US07641384B2
    • 2010-01-05
    • US11879554
    • 2007-07-18
    • Rintaro NakataniRyoichi KinoshitaShinya Nishimura
    • Rintaro NakataniRyoichi KinoshitaShinya Nishimura
    • G01K17/02
    • G01N25/20
    • To enable the reduction in working efforts by hand by performing control a drying operation by appropriately selecting dry conditions depending on the connection mode of the cooling device, and removal of moisture and the like without fail. The thermal analysis system uses a heater and a cooling device to raise and decrease the temperature inside the purge box. In the drying method for the thermal analysis system, the drying operation is performed by: previously setting dry conditions depending on the connection mode of the cooling device; starting control of an opening time dry process upon activation of the thermal analysis system; supplying a predetermined amount of dry gas into the purge box in accordance with the dry conditions corresponding to the selected connection mode of the cooling device with the cooling device kept off; and making the temperature control module control the temperature of the dry gas.
    • 为了通过根据冷却装置的连接方式适当地选择干燥条件并且不会失去湿气等而进行干燥操作来实现手工减少工作。 热分析系统使用加热器和冷却装置来提高和降低清洗箱内的温度。 在热分析系统的干燥方法中,通过以下方式进行干燥操作:根据冷却装置的连接方式预先设定干燥条件; 在激活热分析系统时开始控制开放时间干燥过程; 根据与冷却装置的所选择的连接模式相对应的干燥条件将冷却装置保持关闭的预定量的干燥气体供应到净化箱中; 并使温度控制模块控制干燥气体的温度。
    • 6. 发明授权
    • Thermogravimetry apparatus
    • 热重仪器
    • US06709153B2
    • 2004-03-23
    • US10267366
    • 2002-10-09
    • Rintaro NakataniKeiko OoshiroMasafumi TakeRyoichi Kinoshita
    • Rintaro NakataniKeiko OoshiroMasafumi TakeRyoichi Kinoshita
    • G01N2500
    • G01G23/06G01N5/04
    • In order to provide means for suppressing vibration of a balance arm of a thermogravity apparatus when changing a sample at low cost and with a minimal footprint, there is therefore provided a balance arm having a sample holder, a detector for detecting an amount of shift of the balance arm from an equilibrium position, a control circuit for carrying out feedback control towards the equilibrium position of the balance arm, a driver for driving the balance arm towards the equilibrium position, an exchange stage detector for detecting when a sample is being changed, and a fixed output holding circuit for maintaining the output of the driver at a fixed level while the exchange stage is indicated by the exchange stage detector, wherein output of the driver is fixed during the sample exchange stage.
    • 因此,为了提供一种在低成本且最小占地面积改变样品时抑制热重力装置的平衡臂的振动的装置,因此提供了一种平衡臂,该平衡臂具有一个样品架,一个检测器,用于检测 来自平衡位置的平衡臂,用于对平衡臂的平衡位置进行反馈控制的控制电路,用于向平衡位置驱动平衡臂的驱动器,用于检测样品何时被改变的交换级检测器, 以及固定输出保持电路,用于在交换级由交换级检测器指示时将驱动器的输出保持在固定电平,其中驱动器的输出在采样交换阶段期间被固定。
    • 7. 发明授权
    • Thermal analyser
    • 热分析仪
    • US5442949A
    • 1995-08-22
    • US201272
    • 1994-02-24
    • Ryoichi KinoshitaYoshiyuki TakeiYoshizumi TakigawaMasahiro Furuno
    • Ryoichi KinoshitaYoshiyuki TakeiYoshizumi TakigawaMasahiro Furuno
    • G01N1/22G01N25/00G01N30/02G01N30/06G01N30/12G01N31/22G01N25/22
    • G01N30/12G01N2030/025G01N2030/121G01N2030/125
    • In a gas scavenging unit for gas chromatography analysis of gas generated in a thermal analyzer, the thermal analyser is equipped with a gas scavenging unit for scavenging gas generated in the thermal analyzer without usage of a carrier gas and no influence of a switching valve exists in the case of multi-stage sampling. For scavenging, there can be provided multiple sampling flow paths each have an aperture placed between the sample and the carrier gas outlet of the thermal analyzer, a flow regulator, a flow path switching valve, and a suction unit which is connected to the switching valve. The gas generated in the thermal analyzer is suctioned by the suction unit through a sampling flow path which is changed with the flow path switching valve. The appropriate volume of gas is scavenged to the GC analysis without any influence of the flow (rate) of the carrier gas even when the scavenging is done through switching to multiple scavengers.
    • 在用于气体色谱分析的气体清除单元中,在热分析仪中产生的气体,热分析仪配备有气体清除单元,用于清除在热分析仪中产生的气体,而不使用载气,并且不存在切换阀的影响 多级采样的情况。 为了清理,可以提供多个采样流程路径,每个采样流程路径都放置在热分析仪的样品和载气出口之间,流量调节器,流路切换阀和连接到开关阀的抽吸单元 。 在热分析器中产生的气体由抽吸单元通过采用流路切换阀改变的取样流路吸引。 即使当通过切换到多个清除剂进行清除时,将适当体积的气体清除到GC分析,而不影响载气的流量(速率)。
    • 9. 发明授权
    • Method for automatic sample positioning
    • 自动样品定位方法
    • US5215923A
    • 1993-06-01
    • US792276
    • 1991-11-18
    • Ryoichi KinoshitaShoji Komaya
    • Ryoichi KinoshitaShoji Komaya
    • B25J15/08B25J9/16
    • B25J9/1612G05B2219/39479G05B2219/39487G05B2219/39537G05B2219/39541G05B2219/45063G05B2219/45092Y10T436/113332Y10T436/114165
    • A method for conveying a sample container from a sample tray which has a designated location for supporting the container. The container is placeable on the tray at a location separated from the designated location such that the container will have an orientation which differs from a desired orientation. The method includes the following steps executing sequentially disposing a robot mechanism having a plurality of grasping fingers above the tray so that the fingers surround the designated location; executing a first robot mechanism operation for moving the fingers horizontally toward the designated location so that the fingers grasp the container and locate the container at the designated location; executing a second robot mechanism operation for moving the fingers horizontally away from the container to leave the container on the tray at the desired location and with the desired orientation; and executing a third robot mechanism operation for moving the fingers horizontally toward the container so that the fingers grasp the container while the container has the desired orientation.
    • 一种从具有用于支撑容器的指定位置的样品托盘输送样品容器的方法。 容器可以在与指定位置分离的位置处放置在托盘上,使得容器具有不同于期望取向的取向。 该方法包括以下步骤:将具有多个抓握爪的机器人机构顺序地设置在托盘上方,使得手指围绕指定位置; 执行第一机器人机构操作以使手指水平地朝向指定位置移动,使得手指抓住容器并将容器定位在指定位置; 执行第二机器人机构操作以将手指水平地远离容器移动,以将容器放置在期望位置处并具有期望取向的托盘上; 并且执行第三机器人机构操作以使手指水平地朝向容器移动,使得手指在容器具有期望的取向时抓握容器。