LCD screen ST7282 TFT display 4.3 inch 480x272
LCD screen ST7282 TFT display 4.3 inch 480x272
LCD screen ST7282 TFT display 4.3 inch 480x272
LCD screen ST7282 TFT display 4.3 inch 480x272
LCD screen ST7282 TFT display 4.3 inch 480x272
LCD screen ST7282 TFT display 4.3 inch 480x272

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LCD screen ST7282 TFT display 4.3 inch 480x272

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Model No. : 4.3 inch 480x272
Brand Name : ESEN
Origin : China
Customized : Customized
Panel Type : TN
LCD Drive Mode : Multiplex Drive LCD Module
Interface : RGB
Transport Package : Carton
Type : Color
Production Capacity : 500000
LCD Size : 4.3 inch
Resolution : 480 x272
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3yrs

Shenzhen, Guangdong, China

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  • Platform Certification

Product description

Model Number: K430N40104

Brand Name: Newvison

Origin: China (mainland)

Small Orders: Accepted

Key Specifications/Special Features:

Display type: TFT
LCD size: 4.3 inch (Diagonal)
Number of pixels: 480(H) RGB x 272(V)
Module size: 105.50(W)x 67.20(H)x 2.9(T) mm
Active area: 95.04x 53.86 mm
Interface: RGB
Luminance (cd/m2): 500 (TYP), 12 LEDs
Viewing direction: 12:00
 

Shipping Information:

  • FOB Port: Shenzhen
  • Lead Time: 15 - 20 days
  • HTS Code: 9013.80.90 00
  • Dimensions per Unit: 10.55 × 6.72 × 0.29 Centimeters
  • Weight per Unit: 10.4 Kilograms
  • Units per Export Carton: 260
  • Export Carton Dimensions L/W/H: 38.5 × 31.5 × 22.7 Centimeters
  • Export Carton Weight: 1.86 Kilograms

Main Export Markets:

  • Asia
  • Australasia
  • Central/South America
  • Eastern Europe
  • Mid East/Africa
  • North America

Any third-party trademarks or images shown here are for reference purposes only Thin Film Transistor. We are not authorized to sell any items bearing such trademarks LCD Display Module.


Resistive touch screen
Resistive touch screens are divided into 4-wire system and 5-wire system or more. Now take the 4-wire resistive touch screen as an example to illustrate the structure and working principle of the resistive touch screen OLED Display Module. The resistive touch screen is composed of a glass coated with an ITO transparent conductive layer and a film coated with an ITO transparent conductive layer. The opposite electrodes are separated by insulating gaskets, and the periphery is sealed with glue.
Among them, the left and right ends of the conductive layer of the conductive glass are coated with a silver electrode, x +, x-electrode; the upper and lower ends of the thin film conductive layer are also coated with a silver electrode, Y +, Y-electrode. If a voltage is applied to the x or Y electrodes, a parallel and evenly distributed electric field will be generated between x + and x- electrodes and between Y + and Y- electrodes Passive matrix OLED    .
When working, the voltage is first applied to the X-axis and then to the Y-axis according to the time-sharing principle. When a voltage is applied to X+ and X-, a parallel and evenly distributed electric field will be formed between X+ and X- electrodes. At this time, the voltage on the Y electrode is 0. If you touch a point at this time and make the X electrode and Y electrode contact at that point, then the voltage on the Y electrode will be the divided voltage of the voltage on the X+ and X- at the contact. value. From this, the X coordinate of the touch point can be determined. Similarly, when a voltage is applied between Y+ and Y-, the Y coordinate can also be determined by the voltage on the X electrode Active Matrix OLED.



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