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CopyTele uses nanotubes in flat panel displays
Nanotechnology advances are gaining practical application. CopyTele announced the readiness of engineering samples of flat panel displays that use low-voltage phosphors and carbon nanotubes. The products are used to demonstrate the capabilities of the LVND (low voltage nanotube flat panel display) technology developed by CopyTele.
The novelty has a diagonal of 5.5 inches (14 cm) and a resolution of 960 x 234 pixels. Each pixel of a thin-film active matrix (AMTFT) has its own memory cell and is activated by electrons emitted from a network of nanotubes located at a distance of about 10 micrometers from the phosphor layer. This proximity leads to the fact that a voltage of only 40 V is sufficient to control the brightness of the glow. For comparison, other displays using phosphors have voltages in the thousands of volts. A composition of nanotubes and phosphor is formed using a special technology developed by CopyTele specialists. Some of the most important features of the new displays are:
- AMTFT is thinner than LCD and plasma panels. It is about 0.16 mm.
- Matrix, nanotubes, phosphor and power circuits are on the same substrate. The second layer is used only to seal the structure, which is necessary to create a vacuum.
- Individual pixel brightness control AMTFT requires 40V to vary the brightness from minimum to maximum.
- The panel has low power consumption, since the pixel only consumes power when it is glowing. Compared to LCD, where the backlight is constantly working, AMTFT power consumption is about five times less. Low power consumption well suited for battery powered devices.
- The same AMTFT technology can be applied to panels of different sizes – from handheld devices to TVs.
- For the manufacture of dies, existing technological processes can be used.
- The new screen retains the positive aspects of cathode-ray devices – a wide range of operating temperatures, large viewing angles (forming a hemisphere), high contrast and fast response time.
- Panel does not flicker as each cell has memory.
- No cross-talk between pixels.
The company continues to improve its LVND technology to improve reliability and reduce cost. The timing of the appearance of commercial products based on it has not yet been reported.