Continuous waveform driving in multi-color electrophoretic displays
Continuous waveforms for driving a four-particle electrophoretic medium including four different types of particles, for example a set of scattering particles and three sets of subtractive particles. Methods for identifying a preferred waveform for a target color state or a target transition when using a continuous or quasi-continuous voltage driver/controller.
1. A display system comprising:
a first light transmissive electrode;
an electrophoretic medium comprising at least four types of particles, wherein each of the at least four types of particles has a different optical property from each other, and each of the at least four types of particles has a different combination of charge polarity and charge magnitude from each other;
a second electrode, wherein the electrophoretic medium is disposed between the first light transmissive electrode and the second electrode;
a controller; and
a power supply operatively connected to the first light transmissive electrode and the second electrode and configured to provide at least 16 unique voltage levels, wherein the controller applies at least three of the unique voltage levels between the first light transmissive electrode and the second electrode when while the electrophoretic medium is being updated from a first display state to a second display state, wherein the controller is configured to determine a continuous driving waveform for driving the electrophoretic medium from a first optical state to a second optical state while minimizing a cost function based upon a differentiable surrogate model of the electrophoretic medium.
2. The display system of claim 1 , wherein the power supply is configured to provide at least 32 unique voltage levels.
3. The display system of claim 1 , wherein the power supply provides at least two voltage levels differing by more than 20 Volts.
4. The display system of claim 1 , wherein the at least four types of particles include two particles of a first polarity and two particles of a second polarity.
5. The display system of claim 1 , wherein the at least four types of particles include three particles of a first polarity and one particle of a second polarity.
6. The display system of claim 1 , wherein the optical property is color and the color is selected from the group consisting of white, red, magenta, orange, yellow, green, cyan, blue, violet, and black.