The liquid crystal displays used in calculators and other devices with similarly simple displays have direct-driven image elements, and therefore a voltage can be easily applied across just one segment of these types of displays without interfering with the other segments. This would be impractical for a large display, because it would have a large number of (color) picture elements (pixels), and thus it would require millions of connections, both top and bottom for each one of the three colors (red, green and blue) of every pixel. To avoid this issue, the 128x64 lcd display pixels are addressed in rows and columns, reducing the connection count from millions down to thousands. The column and row wires attach to transistor switches, one for each pixel. The one-way current passing characteristic of the transistor prevents the charge that is being applied to each pixel from being drained between refreshes to a display's image. Each pixel is a small capacitor with a layer of insulating liquid crystal sandwiched between transparent conductive ITO layers.
The circuit layout process of a TFT Lcd Modules is very similar to that of semiconductor products. However, rather than fabricating the transistors from silicon, that is formed into a crystalline silicon wafer, they are made from a thin film of amorphous silicon that is deposited on a glass panel. The silicon layer for TFT-LCDs is typically deposited using the PECVD process.Transistors take up only a small fraction of the area of each pixel and the rest of the silicon film is etched away to allow light to easily pass through it.
Polycrystalline silicon is sometimes used in displays requiring higher TFT performance. Examples include small high-resolution displays such as those found in projectors or viewfinders. Amorphous silicon-based TFTs are by far the most common, due to their lower production cost, whereas polycrystalline silicon TFTs are more costly and much more difficult to produce.
Access to information mainly through display and interactive interface with the electronic technology and electronics integrated rapid development of LCD modules in the smart instrumentation to achieve a mix of graphics and text display, man-machine dialogue to achieve the on-screen menu operation thus graphic LCD module with its small size, low power consumption, the development cycle is short, safe, reliable, flexible, etc., in the smart meter has been more widely used.
2016年6月11日星期六
2016年6月7日星期二
Full Color OLED Display
OLEDs don't need backlights, so this vibrant full color OLED is a mere 0.12 mm thick and weighs only 1.4 grams. The low power consumption is an advantage for handheld devices. graphic oled with excellent readability for small print and graphics, the SPI interface (Serial Peripheral Interface) is popular for Arduino projects. The display's wide >160° viewing angle is a good choice for locations where different users look at the display from different angles.
2016年6月3日星期五
Tsingtek Graphic lcd modules with small size, high contrast and wide operating temperature
Tsingtek
Graphic lcd modules with small size, high contrast, wide operating
temperature, the white LED back light, the STN - blue LCD, FPC
connection, the optional ZIF connectors and LED backlight It6800 support
8, 80808 - bit parallel line and 4 line serial SPI interface. 160x128 lcd consists of MCU is easy to control, such as 8051, PIC, AVR, ARDUINO, ARM and raspberry Pi. 160x160 lcd can be used in any embedded systems, industrial equipment, security, health care and handheld devices.
订阅:
博文 (Atom)