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1, receiving external signals (LVDS / DP)
2, data, control signal output
3, data processing, image enhancement
4, BIST (do not understand)
LVDS signal works:
For high-speed circuits, especially high-speed data bus, commonly used devices
are: ECL, BTL, GTL and GTL + and so on. These devices are mature and widely used,
but there is a common weakness, power consumption, emerging CMOS technology
low-voltage differential signaling devices (Low Voltage Differencial Signal referred
to as LVDS), it can be said LVDS devices for high-speed low-power circuit design.
LVDS devices work as follows: where the transmitter is a 3.5mA current source,
resulting in 3.5mA current through the differential line which way to the receiving end.
As the receiver for the DC performance for the high resistance, the current through
the receiver 100 ohm matching resistor to produce 350mV voltage, while the current
through the differential line to flow back to the other side. When the transmitter
changes state, it changes the current through the 100 ohm resistor current direction to
produce effective '0' and '1' state. LVDS features a current-driven mode with a low
voltage swing of 350mV to provide higher signal transmission rates and differential
As shown, DC / DC CONVERTER & REFERENCE VOLTAGE can be divided into
the following types according to POWER:
1. FT-LCD turn on and off the power Vgh, Vgl (charge pump)
2. D / A conversion required reference voltage-Gamma voltage
3. Common voltage Vcom
1. Vgh, Vgl : Turn the power off and on
2. Gamma reference voltage
Gamma is simply to change the process from white to black into two N (6,8)
power equal parts.Gamma voltage is used to control the display of the Hui-order,
under normal circumstances G0 ~ G14, different Gamma voltage and Vcom voltage
difference between the liquid crystal rotation angle resulting in different brightness to
form the difference, Vcom voltage is the best situation is located G0 and G14 in the
middle, so that the LCD screen will be the best flashing conditions, the single is
basically very difficult to achieve. Liquid crystal requires dynamic voltage control,
otherwise easy to form inert. G0 ~ G14 Vcom voltage difference between just
constitute a similar sine wave voltage, to avoid the liquid crystal in the same
brightness of inert stagnation occurs.
3. Vcom voltage
Vcom voltage adjustment purposes, to eliminate gray-scale liquid crystal positive
and negative voltage asymmetry, thereby eliminating Flicker.
If the potential difference can not be eliminated, the screen afterimage may be one of
the causes other than the flicker described above.