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4-Wire resistive touch screen is the preferred solution for low cost applications. It consists of a conductive bottom layer (ITO Glass or Film) and a conductive top layer (ITO Film). The two layers are suspended by many very small spacer dots.
Detail8-Wire resistive touch screen is the preferred solution for applications requiring accuracy and no re-calibration over time. It is designed based on the 4-wire resistive technology with each edge providing one more sensing line as a stable voltage gradien
Detail4-Wire resistive touch screen is the preferred solution for low cost applications. It consists of a conductive bottom layer (ITO Glass or Film) and a conductive top layer (ITO Film). The two layers are suspended by many very small spacer dots.
Detail8-Wire resistive touch screen is the preferred solution for applications requiring accuracy and no re-calibration over time. It is designed based on the 4-wire resistive technology with each edge providing one more sensing line as a stable voltage gradien
Detail4-Wire resistive touch screen is the preferred solution for low cost applications. It consists of a conductive bottom layer (ITO Glass or Film) and a conductive top layer (ITO Film). The two layers are suspended by many very small spacer dots.
Detail5-Wire Resistive Touch Screen has the same structure as 4-Wire Resistive Touch Screen:top layer,ITO film and bottom layer ITO film/glass. The bottom layer measures both X and Y coordinates and the top layer applies only voltage. When screen is touched,bot
Detail4-Wire resistive touch screen is the preferred solution for low cost applications. It consists of a conductive bottom layer (ITO Glass or Film) and a conductive top layer (ITO Film). The two layers are suspended by many very small spacer dots.
DetailSurface Capacitive Touch Screen is an all-glass touch screen with double side transparent conductive coating.There is electrode pattern printed along the edges distributes a low voltage field over the conductive layer. When a finger touches the screen a
DetailWorking Principle
Once the panel is touched, there is capacitance generated between finger, touch panel surface & ITO coating. When the diamond pattern is scanned sequently, the capacitance of the diamond pattern underneath the finger is the highest, ot
Working Principle
Once the panel is touched, there is capacitance generated between finger, touch panel surface & ITO coating. When the diamond pattern is scanned sequently, the capacitance of the diamond pattern underneath the finger is the highest, ot
Working Principle
Once the panel is touched, there is capacitance generated between finger, touch panel surface & ITO coating. When the diamond pattern is scanned sequently, the capacitance of the diamond pattern underneath the finger is the highest, ot