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    • 3. 发明授权
    • Electronic balance for use in potentially explosive areas
    • 用于潜在爆炸区域的电子天平
    • US4632199A
    • 1986-12-30
    • US721439
    • 1985-04-09
    • Jurgen OberFranz-Josef MelcherErich Knothe
    • Jurgen OberFranz-Josef MelcherErich Knothe
    • G01G19/00G01G21/28G01G21/30G01G23/00G01G23/36
    • G01G21/30G01G23/00
    • In an electronic balance for application in potentially explosive areas, the weighing system, the electronic evaluation unit and the digital display unit have an intrinsically safe design with regard to the possibility of explosions. All lead connections are supplied with low voltages and the power unit when present is located outside the electronic balance and connected to the electronic balance via an explosion-safe lead and plug connections with an intrinsically safe design with regard to an explosion. In an alternative the power unit can be encapsulated in a pressure-proof manner, powder-filled, force-ventilated or located outside the potentially combustible gaseous explosive area. It is also contemplated that a battery which is intrinsically safe with regard to explosions can also be used in the housing of the electronic balance instead of a separate power unit.
    • 在用于潜在爆炸区域的电子天平中,称重系统,电子评估单元和数字显示单元在爆炸的可能性方面具有本质安全的设计。 所有引线连接都提供低电压,并且当存在时的电源单元位于电子天平外部,并通过爆炸安全设计的爆炸安全的铅和插头连接连接到电子天平。 在替代方案中,动力单元可以以耐压的方式封装,粉末填充,强制通风或位于潜在可燃气体爆炸区域外部。 还可以设想,关于爆炸本身安全的电池也可以用于电子天平的壳体而不是单独的动力单元。
    • 5. 发明授权
    • Electromagnetic force compensation scale with temperature compensation
    • 具有温度补偿功能的电磁力补偿量程
    • US4300647A
    • 1981-11-17
    • US171292
    • 1980-07-23
    • Erich KnotheFranz-Josef MelcherJurgen OberLothar Behrend
    • Erich KnotheFranz-Josef MelcherJurgen OberLothar Behrend
    • G01G7/04G01G19/414G01G23/48G01G7/00G01G3/14
    • G01G7/04G01G19/414
    • A scale of the electromagnetic force compensation principle, having a stationary permanent magnet system with an air gap and at least one coil positioned in the air gap, the coil being acted upon via a position sensor and a variable-gain amplifier by a compensation direct current dependent on the load of the scale, wherein the compensation direct current flows through a measuring resistor from both ends of which a signal dependent on the load of the scale is tapped off and fed to an analog/digital converter, and further electric circuits are connected therewith which permit an alternating current to flow, in addition to the compensation direct current, through the coil and the measuring resistor and including a regulating or adjusting device which modifies the amplitude of the additional alternating current in such a manner that the joulean heat generated in the coil and in the measuring resistor by the compensation direct current and by the additional alternating current is at least approximately load-independent.
    • 一种电磁力补偿原理的尺度,具有具有气隙的固定永磁体系统和位于气隙中的至少一个线圈,线圈通过位置传感器和可变增益放大器通过补偿直流电作用 取决于刻度的负载,其中补偿直流从两端流过测量电阻器,其中取决于刻度的负载的信号被分接并馈送到模拟/数字转换器,并且还连接电路 由此允许交流电流除了补偿直流电流之外通过线圈和测量电阻器流动,并且包括调节或调节装置,其以这样的方式修改附加交流电流的振幅,使得在 线圈和测量电阻中的补偿直流电流和额外的交流电至少为一个 大约负载无关。
    • 6. 发明授权
    • Electronic weighing scale
    • 电子称重秤
    • US4450923A
    • 1984-05-29
    • US450676
    • 1982-12-17
    • Lothar BehrendErich KnotheFranz-Josef MelcherJurgen Ober
    • Lothar BehrendErich KnotheFranz-Josef MelcherJurgen Ober
    • G01G23/48G01G7/04G01G1/38G01G3/14G01R17/06
    • G01G7/04
    • It is known in high-resolution electronic weighing scales based on the principle of electromagnetic force compensation that the load-dependent development of heat in the coil and the precision resistor can be compensated by sending an additional alternating current through the coil and the precision resistor which is complementarily regulated in its amplitude. In order to make possible a precise regulation of the amplitude of the additional alternating current even in the case of a small carrying force of the electromagnetic force compensation and of a correspondingly small direct compensating current, the invention proposes connecting in a voltage divider in parallel to the coil and the precision resistor which has a highly temperature-dependent resistor. In this parallel branch direct and alternating current are higher by a constant proportionality factor than in the main branch formed by coil and precision resistor. The parallel branch is also part of a resistance measuring bridge which regulates the amplitude of the additional alternating current in such a manner that the highly temperature-dependent resistor retains its theoretical excess temperature and therewith its theoretical resistance value.
    • 在电磁力补偿原理的高分辨率电子称重秤中已知,线圈和精密电阻器的负载依赖性的发展可以通过发送额外的交流电流通过线圈和精密电阻来补偿, 在其幅度上互补调节。 为了使得即使在电磁力补偿的小承载力和相应较小的直接补偿电流的情况下,也可以精确地调整附加交流电流的幅度,本发明提出将分压器与 线圈和具有高度依赖电阻的精密电阻器。 在这种并联支路中,直流和交流电流比由线圈和精密电阻形成的主支路中的常数比例因子高。 并联支路也是电阻测量桥的一部分,该电阻测量桥以这样的方式调节附加交流电流的振幅,使得高度依赖于温度的电阻器保持其理论上的过剩温度及其理论电阻值。