Apparatus and method for characterizing electrophoretic display mediums
View Patent ↗A method and an apparatus for measuring reflectivity, charge and/or particle mobility of electrophoretic display mediums and particles are described. The apparatus for evaluating characteristics of an electrophoretic display medium, comprising a cell for containing the electrophoretic display medium, located between conductive substrates, a voltage application unit associated with the cell, an electrometer to measure transient current, and a densitometer to measure reflectance.
1. A method of determining characteristics of an electrophoretic display medium, comprising:
arranging the electrophoretic display medium in a cell located between conductive substrates,
changing between a rectangular or triangular waveform to apply switching voltage to the electrophoretic display medium in the cell, and
measuring at least reflectance of the electrophoretic display medium and transient current of the electrophoretic display medium,
when selecting the rectangular waveform to apply switching voltage, characteristics of the electrophoretic display medium determined consist of white reflectance, black reflectance, contrast ratio, switching voltage, switching time, switching voltage threshold, mobility of particles, and charge of particles, and
when selecting the triangular waveform to apply switching voltage, characteristics of the electrophoretic display medium determined consist of white reflectance, black reflectance, contrast ratio, mobility of particles, charge of particles, and charge distribution.
2. The method according to claim 1 , wherein the method further comprises measuring the charge of particles or the mass of particles of the electrophoretic display medium.
3. The method according to claim 1 , wherein the reflectance transitions between a higher reflectance state of a first color of particles in the electrophoretic display medium and a lower reflectance state of a second color of particles in the electrophoretic display medium as the switching voltage switches between a positive polarity and a negative polarity.
4. The method according to claim 1 , wherein the transient current exhibits a single spike when particles of the electrophoretic display medium translate from a first side of the cell to an opposite side of the cell under influence of the switching voltage.
5. A method of making electrophoretic display devices, comprising:
preparing a first electrophoretic display medium comprising at least one set of colored particles dispersed in a dielectric liquid substantially free of charge control additives,
arranging the first electrophoretic display medium in a cell located between conductive substrates,
changing between a rectangular or triangular waveform to apply switching voltage to the first electrophoretic display medium in the cell,
measuring at least reflectance of the first electrophoretic display medium and transient current of the first electrophoretic display medium, and
preparing a second electrophoretic display medium to have substantially the same reflectance and transient current, wherein
when selecting the rectangular waveform to apply switching voltage, characteristics of the electrophoretic display medium determined consist of white reflectance, black reflectance, contrast ratio, switching voltage, switching time, switching voltage threshold, mobility of particles, and charge of the particles and
when selecting the triangular waveform to apply switching voltage, characteristics of the electrophoretic display medium determined consist of white reflectance, black reflectance, contrast ratio, mobility of particles, charge of particles, and charge distribution.
6. The method according to claim 5 , wherein the transient current exhibits a single spike when particles of the electrophoretic display medium translate from a first side of the cell to an opposite side of the cell under influence of the switching voltage.
7. The method according to claim 5 , wherein the reflectance changes in a time of less than about 0.10 seconds under influence of the switching voltage.
8. The method according to claim 7 , wherein the transient current exhibits a single spike when the reflectance changes.
9. The method according to claim 5 , wherein the reflectance changes in a time of about 0.01 to about 0.05 seconds under the influence of the switching voltage.