Research on Hydrodynamic Characteristics of Electronic Paper Pixels Based on Electrowetting

Micromachines (Basel). 2023 Oct 10;14(10):1918. doi: 10.3390/mi14101918.

Abstract

In this paper, we propose a driving waveform with a complex ramp pulse for an electrowetting display system. The relationship between the contact angle and viscosity of inks was calculated based on the fluid-motion characteristics of different viscosities. We obtained the suitable range of viscosity and voltage in the liquid-oil-solid three-phase contact display system. We carried out model simulation and driving waveform design. The result shows that the driving waveform improves the response speed and aperture ratio of electrowetting. The aperture ratio of electrowetting pixels is increased to 68.69%. This research is of great significance to optimizing the structure of fluid material and the design of driving waveforms in electrowetting displays.

Keywords: driving waveform; electronic paper; electrowetting on dielectric (EWOD); fluid viscosity; micro-hydrodynamics; photoelectric characteristics; photoelectric response.