As described above, a touch input will be made when the two transparent conductive layers contact. One of the two conductive layers constructs the X-coordinate circuit while the other layer constructs the Y-coordinate circuit.
As indicated below, the X-electrodes form the top layer while the Y-electrodes form the bottom layer.
(1) X(+) will be Vcc(5V) while X(-) will be Ground(0V).
(2) Voltage is applied between the X(+) and X(-) electrodes.
(3) When the touch screen is touched (pressed), the voltage of the X-coordinate on the top layer will be detected at the Y- electrode (A_in) on the bottom layer.
Example: If the point A is pressed, an X-coordinate voltage of 2.5V will be detected at A_in on the bottom layer.
Another example: If the point B is pressed, an X-coordinate voltage of 4V will be detected at A_in on the bottom layer.
(4) The detected voltage will be converted into digital data (A/D conversion), and the coordinate position of the X-direction will be recognized.
(5) When Voltage is applied between the electrodes Y(+) and Y(-). The touched point of the Y-direction will be recognized in the same manner as the X-direction; the voltage of Y-coordinate will be detected on the top layer.
(6) The detection processes of the X & Y-coordinates as described above is repeated alternately in order to detect the input point.
As described above, a touch input would be made when the two transparent conductive layers contact. One of the two conductive layers constructs the X and Y coordinate circuit while the other layer constructs the detection circuit.
As in the below figure, the electrodes A to D are formed on the corners of the bottom layer while the top layer works as detection circuit.
X-coordinate Detection
As indicated in the figure below, the voltage applied between the electrodes A and B is Vcc (5V) while between the electrodes C and D is Ground (0V).
As the touch screen is touched, the top and bottom layer will contact, then the voltage of the X-coordinate circuit at the touched point will be detected at the detection circuit A_in.
Example: If the top and bottom layers contact at the point "A", an X-coordinate voltage of 2.5V will be detected at A_in on the top layer.
Another example: If the top and bottom layers contact at the point "B", an X-coordinate voltage of 4V will be detected at A_in on the top layer.
The detected voltage will be converted into digital data (A/D conversion), then the coordinate point of the X-direction will be detected.
Y-coordinate Detection
As indicated in the figure below, the voltage applied between the electrodes B and C is Vcc (5V) while between the electrodes A and D is Ground (0V).
Just like the X-coordinate detection, voltage of the Y-direction will be detected at A_in on the top layer.
Example: If the top and bottom layers contact at the point "A", an Y-coordinate voltage of 2.5V will be detected at A_in on the top layer.
Another example: If the top and bottom layers contact at the point "B", an Y-coordinate voltage of 4V will be detected at A_in on the top layer.
The detected voltage will be converted into digital data (A/D conversion), then the coordinate point of the Y-direction will be detected.
4wire and 5wire resistive touch screen is a two-layer structure, two materials (film or glass) with ITO are attached with a gap between them so that the ITO layers are facing each other.
Touch input will be made as the top layer is pressed down and the two ITO layers contact.
There are insulators called spacing dots between the top and bottom ITO layers. These spacing dots prevent unintended contacts (inputs) of the ITO layers when not pressed.
Of course, a resistive single touch screen can be used with mitten.
12 million touches are guaranteed for a 4 wire touch screen.
37 million touches are guaranteed for a 5 wire touch screen.
Resistive Multi touch screen Type supprots dual touch.
Resistive single touch screen type such as 4wire and 5wire supports single-touch only. If two points are touched, the middle point will be detected.
We can provide a resistive single touch screen customized to your requested specifications.
Please contact us for more details.
for Siemens | for AB Allen-Bradley | for B&R PowerPanel | for Schneider |
for KUKA | for Proface | for ABB | for Beijer |
for Omron | for Mistubishi | for Beckhoff | for Advantech |
for Eaton | for Red Lion | for VIPA | for Panasonic |
for IDEC | for Parker | for Lenze | for ESA |
for PMU | for Keyence | for Dynapro | for KOYO |
for Mettler Toledo | for EZ automation | for Fuji | for Hakko |
for Parker | for Heidenbain | for Homeywell | for UniOp |
for Weintek | for KEBA | for Other | |
for Siemens | for ELO | for 3M Microtouch |
for AMT | for DMC | for Danielson |
for Fujistu | for Liyitech | for Higgstec |
for Gtouch | for Abontouch | for KDTouch |
for EELY | for Hantouch | for Inotouch |
for Versatouch | for GE FANUS | for Kienzle Systems |
for TouchTronic | for VersaTouch | for Panjit |
for TTI | for Other | |
for siemens | for AB Allen-Bradley |
for B&R Powerpanel | for KUKA |
for Beijer | for Schneider |
for Beckhof | for ESA |
for LAUER | for Proface |
for Omron | for Other |
Guangzhou VICPAS Touch Technology CO.,LTD
Guangzhou City, Guangdong Province, P.R.China
Tel : +86-158-7652-5394
Fax : 0086-020-38837509
Website : ..........com
Email : Jack..........com sales..........com
网络文化经营许可证:浙网文[2013]0268-027号|增值电信业务经营许可证:浙B2-20080224-1 2007-2024 Tradevv.com. All rights reserved.