Nova Patents
EP0484159B1

Liquid crystal display driver circuitry.

Abstract

This record has no abstract on file.

EP0484159B1, drawing sheet 1
Sheet 1 of 86

Term

Term ended

Expired 31 October 2011, 14.9 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

14 claims: 6 independent, 8 dependent

  1. 1
    An apparatus for controlling the data voltage of a liquid crystal display unit having a liquid crystal display panel (19), a scan driver (7), and a data bus driver (8) to display successive single frame images, the apparatus comprising:a timing signal generating portion (6) for generating at least timing signals for the scan driver (7) and the data bus driver (8), and a further timing signal;and    the data bus driver (8) selectively applying a data voltage from among voltage levels output thereto to the liquid crystal display panel (19), thereby assigning a gray-scale level according to a mean effective voltage of the voltage levels applied to the successive single frames,    characterised by a data signal generating part (3) for dividing said single frame image into a plurality of fields and outputting the same to the data bus driver (8), wherein said further timing signal allows switching between the said fields, and    a voltage applying part (4) for generating voltage levels for each of the fields independently of each other and outputting the same to the data bus driver (8).
  2. 5
    An apparatus as set forth in any preceding claim, wherein the data signal generating part includes a data conversion table, whereby the voltage levels applied by the voltage applying part are converted into preset gray-scale levels with use of the conversion table in order not to generate deviations in the displayed gray-scale levels.
  3. 7
    An apparatus as set forth in any preceding claim, wherein the voltage applying part (4) generates a plurality of data voltage levels for each of the voltage ranges which are set by dividing the transmissivity-voltage characteristics of the liquid crystal pixels without overlapping;and    the data signal generating part (3) generates the data voltage selecting signal so as to select data voltage levels from each voltage range.
  4. 11
    An apparatus as set forth in any preceding claim, wherein the data signal generating part (3) generates the data voltage selecting signal from which a combination of the applied voltages is determined such that a difference between the voltages applied to the fields respectively is below a predetermined value at least on a white level side.
  5. 12
    An apparatus as set forth in any preceding claim, wherein the data signal generating part (3) generates the data voltage selecting signal in order that averages of groups of the voltage levels prepared for a plurality of the fields may substantially be equal to one another between the fields, hence the voltages applied to the liquid crystal pixels are set according to transmissivity-voltage characteristics of the liquid crystal pixels such that the transmissivity changes at substantially equal intervals.
  6. 13
    An apparatus as set forth in any preceding claim, wherein one frame is formed of two fields, and the same number of voltage levels V1m and V2m (m being 0, 1, ..., (n1/2-1)) are set for the fields, respectively, as follows:V1m= (Vmax+Vmin) / 2 - (Vmax-Vmin) /(n 1/2 + 1) + (Vmax - Vmin) x 2 m / (n - 1) V2m= (Vmax+Vmin) / 2 - (Vmax-Vmin) x n 1/2 /(n 1/2 +1) + (Vmax - Vmin) x 2 m x n 1/2 / (n - 1) where Vmax is a maximum voltage for a combination of the voltage levels, Vmin a minium voltage for the combination of the voltage levels, and n the number of combinations of the voltage levels.