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Investigation of a Capacitor Array of a Composite Capacitive Touch Panel

机译:复合电容式触控面板电容器阵列的研究

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The work is devoted to studying a capacitor array of sensor and contactless identifier entry devices of the capacitive type on the example of sensory devices made from composite silver-containing materials on a ceramic substrate. The theoretical investigations involve calculations of the topology of the capacitor arrays, in particular, improved dimensions of the segments (3.5 × 3.5 mm) and the arrangement of array layers with the aim of more exactly recognizing input objects, reducing the malfunction of the controller, and increasing the electromagnetic pickup tolerance. In addition to searching for the dimensional parameters, the electrophysical parameters of the capacitive panel under study, namely, voltage, capacitance of 1.8 nF in the case of a matrix with square segments and 2.3 nF in the case of a matrix with round segments, and the charge before and after approaching the input objects (6 and 7 nC, respectively), are measured and calculated. Experimental investigations of the capacitor arrays are carried out, according to which it is determined that a round shape of the segments is preferable in order to increase the linearity of the dependence of the distance of the input objects from the centers of the sensor segments. It is also more effective to locate the integrated plate of a capacitor array from the bottom rather than the top. In this case, the set of holes in the array layers becomes unnecessary. The results of the calculations of the dimensional and electrophysical parameters and their experimental measurements help in the design of topologies of the arrays of the sensor elements of capacitive touch panels from materials which are an alternative to indium and tin oxides (ITOs) (silver nanowires, graphene, polymers, foil, silver-containing organic composites, etc.), as well as in the design of ADT diagrams and controllers for them.
机译:该工作致力于在陶瓷基材上的复合银材料制成的感觉装置的示例上研究电容类型的传感器和非接触式标识符进入装置的电容器阵列。理论研究涉及电容器阵列的拓扑结构,特别是段的改进的尺寸(3.5×3.5mm)和阵列层的排列,目的是更准确地识别输入对象,减少了控制器的故障,并增加电磁拾取容差。除了搜索尺寸参数之外,在具有圆形段的矩阵的矩阵的矩阵的矩阵的情况下,在研究的电容面板的电容参数,即1.8nf的电容为1.8nf的电容。测量并计算接近输入对象(分别)前后的电荷(分别为6和7 NC)。执行电容器阵列的实验研究,根据该实验研究,根据该实验阵列是根据该阵列的圆形形状是优选的,以便增加输入对象与传感器段的中心的距离的依赖性的线性。从底部而不是顶部定位电容器阵列的集成板也更有效。在这种情况下,阵列层中的一组孔变得不必要。尺寸和电神科参数的计算结果及其实验测量有助于设计电容式触摸板的传感器元件阵列的拓扑结构,这些材料是铟和氧化锡(ITOS)(银纳米线)替代物的材料(银纳米线)的材料石墨烯,聚合物,箔,含银有机复合材料等),以及适用于它们的ADT图和控制器。

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