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    • 6. 发明公开
    • PRÄZISIONWAAGE ODER MASSEKOMPARATOR MIT MODUL ZUR MESSUNSICHERHEITSBESTIMMUNG
    • 精油ER ER OR OR OR OR UNG UNG UNG UNG UNG UNG UNG UNG UNG UNG UNG UNG UNG UNG UNG UNG UNG
    • EP3066433A1
    • 2016-09-14
    • EP14792741.2
    • 2014-10-22
    • Sartorius Lab Instruments GmbH & Co. KG
    • RINDERMANN, RainerPERTSCH, ThomasMÜHLICH, SigoFEHLING, ThomasOSANG, SteffenGATZEMEIER, Benno
    • G01G21/28G01G23/48G01G17/04
    • G01G23/01B01L3/021G01G17/04G01G19/303G01G21/22G01G21/286G01G23/48G01N9/26G05D11/00
    • The invention relates to a precision scale with a scale chamber (16), a windshield (18, 20, 22) which surrounds the scale chamber (16), an air conditioning module (34) which is removably arranged in the scale chamber (16), a processor (32) which is arranged in the precision scale, a data input unit which is arranged on the precision scale, and a data transmission path with which data can be exchanged between the air conditioning module (34) and the processor (32), said processor (32) containing a measurement uncertainty detection module (33) with which the measurement uncertainty of the scale can be ascertained. The invention also relates to an air conditioning module for electrically coupling to a precision scale in a removable manner, said air conditioning module (34) forming a sealed unit and having an air pressure sensor (62), a humidity sensor (54), an air temperature sensor (52), and a part of a data transmission path via which data can be transmitted to a processor outside of the air conditioning module. The invention finally relates to a method for determining the measurement uncertainty of a precision scale comprising a scale chamber (16) which is separated from the surroundings by a windshield and in which an air pressure sensor (62), a humidity sensor (54), and an air temperature sensor (52) are arranged, said sensors (52, 54, 62) being coupled to a processor (32). Goods to be weighed, in the form of a test object, are weighed, and the following steps are carried out: - ascertaining the air pressure, the humidity, and the air temperature in the scale chamber (16) using the sensors (52, 54, 62); - weighing the test object; - determining the standard uncertainty of the weighing method; - determining the standard uncertainty of the mass of the test object; and - ascertaining a total uncertainty of the scale result.
    • 一种质量比较器,包括称重室(16); 围绕称重室的防风罩(18,20,22); 气候模块(34),其可拆卸地设置在所述称重室中; 处理器(32),数据输入单元和数据传输路径,在气候模块和处理器之间交换数据。 处理器被编程为使用称重室中的空气压力,空气湿度和空气温度来确定基于被测量物质的密度,至少一个测试样品和/或浮力校正的空气浮力 因子。 还公开了一种气候模块,其被配置为电可拆卸地耦合到质量比较器,以及用于操作质量比较器的方法,包括确定空气浮力和/或浮力校正因子。
    • 7. 发明公开
    • KOMPARATORWAAGE MIT ABNEHMBAREM KLIMAMODUL
    • EP3066432A1
    • 2016-09-14
    • EP14789528.8
    • 2014-10-22
    • Sartorius Lab Instruments GmbH & Co. KG
    • ESSER, RichardHOLST, HeykoMÜHLICH, SigoHILBRUNNER, FalkoFEHLING, ThomasGATZEMEIER, BennoGUNKEL, Rainer
    • G01G21/28G01G23/48
    • G01G23/01B01L3/021G01G17/04G01G19/303G01G21/22G01G21/286G01G23/48G01N9/26G05D11/00
    • The invention relates to a mass comparator comprising: a weighing chamber (16); a draught shield (18, 20, 22) surrounding the weighing chamber (16); a climate module (34) removably arranged in the weighing chamber (16); a processor (32) arranged in the mass comparator; a data input unit arranged on the mass comparator; and a data transmission path via which data can be exchanged between the climate module (34) and the processor (32), said processor (32) being designed in such a way that, based on the density of the item to be weighed, the processor can identify the air buoyancy of at least the test item and/or the buoyancy correction factor from the air pressure, the air humidity, and the air temperature in the weighing chamber (16). The invention also relates to a climate module for electrically coupling to a mass comparator in a detachable manner, said climate module (34) forming a complete sub-assembly and comprising an air pressure sensor (62), an air humidity sensor (54), and an air temperature sensor (52), as well as a portion of a data transmission path via which data can be sent to a processor external to the climate module. The invention further relates to a method for operating a mass comparator having a weighing chamber (16) separated from the surrounding area by a draught shield, and in which chamber an air pressure sensor (62), an air humidity sensor (54), and an air temperature sensor (52) are arranged, wherein said sensors (52, 54, 62) are coupled to a processor (32), and wherein an item to be weighed, in the form of a test item (B), and at least one reference weight (A) are weighed, said method being characterised by the following steps: identifying the air pressure, the air humidity and the air temperature in the weighing chamber (16), using the sensors (52, 54, 62); inputting the density of the item to be weighed into the mass comparator, the mass of which item is to be determined; identifying the air buoyancy of at least the test item (B) and/or the buoyancy correction factor from the air pressure, the air humidity, the air temperature and the density of the item to be weighed; and determining the corrected, conventional weight value of the test item (B).
    • 一种质量比较器,包括称重室(16); 围绕称重室的防风罩(18,20,22); 气候模块(34),其可拆卸地设置在所述称重室中; 处理器(32),数据输入单元和数据传输路径,在气候模块和处理器之间交换数据。 处理器被编程为使用称重室中的空气压力,空气湿度和空气温度来确定基于被测量物质的密度,至少一个测试样品和/或浮力校正的空气浮力 因子。 还公开了一种气候模块,其被配置为电可拆卸地耦合到质量比较器,以及用于操作质量比较器的方法,包括确定空气浮力和/或浮力校正因子。
    • 9. 发明公开
    • Roboterbetätigte Türöffnungsvorrichtung für ein Windschutzgehäuse einer Analysenwaage
    • RoboterbetätigteTüröffnungsvorrichtungfüreinWindschutzgehäuseeiner Analysenwaage
    • EP2924401A1
    • 2015-09-30
    • EP14162219.1
    • 2014-03-28
    • Mettler-Toledo AG
    • Weber, René
    • G01G21/28
    • G01G21/286B25J9/023B25J19/06B25J21/00
    • Eine Türöffnungsvorrichtung (14) für ein Waagenwindschutzgehäuse (12) mit vertikaler Beschickungsöffnung und mit einer vertikal verschiebbaren, die Beschickungsöffnung in der angehobenen Türposition freigebenden und in der abgesenkten Türposition verschliessenden Windschutztüre (13) ist durch mechanische Einwirkung einer Aufnahmegabel (5) eines Roboters (4) betätigbar. Mit der Türe (13) verbunden ist ein Türheberorgan mit einem Kraftangriffselement (41) für eine vertikal aufwärts gerichtete, das Öffnen der Türe (13) bewirkende Betätigungskraft. Ein von der Waage (11) freistehender Übertragungsmechanismus (15) umfasst ein durch Einwirkung der Aufnahmegabel (5) vertikal zwischen einer oberen und einer unteren Endposition bewegliches Krafteinleitungselement (20, 21, 26, 27), mindestens ein an das Krafteinleitungselement gekoppeltes und mit dem Kraftangriffselement koppelbares Richtungswandlerelement (22, 23, 24, 25, 29), eine das Krafteinleitungselement in die obere Endposition ziehende Rückstellfeder (28), und eine das Krafteinleitungselement in der unteren Endposition arretierende Einrastfederklinke (30).
    • 装置(14)允许平衡防风罩(12)的门由机器人(5)的承载叉(4)启动。 垂直移动的防风罩门(13)将升降位置的进入开口设置成打开位置,并将开口关闭。 具有施力元件(41)的升降器连接到防风罩门,以施加向上的垂直力。 远离平衡部分(11)的传动机构(15)包括在上端位置和下端位置之间由承载叉垂直移动的受力元件(20,21,26,27)。 它还包括耦合到受力元件的至少一个方向反转元件(22,23,24,25,29),用于联接到施力元件,复位弹簧(28)和弹簧偏置 锁定闩锁(30)。