IP Library Granted Patent US 11,804,190
Granted Patent B2
US 11,804,190 · App. 18/191,592 · Granted Oct 31, 2023

Method for driving electrophoretic display device

Inventors: Craig Lin (Fremont, CA); Xiaolong Zheng (Fremont, CA)
Assignee: E Ink California, LLC
G09G3/344G09G2310/0254
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,804,190
App. No.
18/191,592
Granted
Oct 31, 2023
Kind
B2
Abstract

An electrophoretic medium comprises a fluid and first (B), second (Y), third (R) and fourth (W) particles dispersed in the fluid and having differing colors. The first (B) and third (R) particles bear charges of one polarity and the second (Y) and fourth (W) particles bear charges of the opposite polarity, The first particles (B) have a greater zeta potential than the third particles (R), and the second particles (Y) have a greater zeta potential than the fourth particles (W). One of the particles (W) is white, one of the non-white particles (B) is partially light-transmissive, and the remaining two non-white particles are light-reflective. To display the color of a mixture of the first (B) and second (Y) particles at a viewing surface, the medium is driven to display the second particles (Y) at the viewing surface, then a first driving voltage is applied for a first period to drive the second (Y) and fourth (W) particles towards the viewing surface, then a second driving voltage, of opposite polarity to and lower magnitude than, the first voltage, is applied for a second period less than the first period, and finally the applications of the two driving voltages are repeated.

Claims (15)

1. A method for driving an electrophoretic display comprising a layer of an electrophoretic medium having a viewing surface on one side thereof, and a second surface on the opposed side thereof, the electrophoretic display further comprising voltage control means for applying an electric field through the layer of electrophoretic medium, the electrophoretic medium comprising a fluid and first, second, third and fourth types of particles dispersed in the fluid, the first, second, third and fourth types of particles being respectively partially light-transmissive blue, reflective yellow, reflective red, and white, the first and third types of particles having charges of one polarity and the second and fourth types of particles having charges of the opposite polarity, the first type of particles having a greater zeta potential or electrophoretic mobility than the third type of particles, and the second type of particles having a greater zeta potential or electrophoretic mobility than the fourth type of particles, the driving method comprising:

(i) providing a DC balancing pulse of a first driving voltage and a first polarity;

(ii) after step (i), applying a shaking pulse to achieve a mixed color state in which all four types of particles are randomly distributed in the fluid;

(iii) after step (ii), applying zero voltage for a first period of time;

(iv) after step (iii), applying a second driving voltage having a second period of time and having a same magnitude as the first driving voltage and an opposite polarity of the first polarity;

(v) after step (iv), applying zero voltage for a third period of time, the third period of time being longer than the second period of time; and

(vi) repeating steps (iv) and (v), thereby causing a process black color to be displayed at the viewing surface.

2. The driving method of claim 1 wherein steps (iv) and (v) are repeated at least 4 times.

3. A method for driving an electrophoretic display comprising a layer of an electrophoretic medium having a viewing surface on one side thereof, and a second surface on the opposed side thereof, the electrophoretic display further comprising voltage control means for applying an electric field through the layer of electrophoretic medium, the electrophoretic medium comprising a fluid and first, second, third and fourth types of particles dispersed in the fluid, the first, second, third and fourth types of particles being respectively partially light-transmissive blue, reflective yellow, reflective red, and white, the first and third types of particles having charges of one polarity and the second and fourth types of particles having charges of the opposite polarity, the first type of particles having a greater zeta potential or electrophoretic mobility than the third type of particles, and the second type of particles having a greater zeta potential or electrophoretic mobility than the fourth type of particles, the driving method comprising:

(i) driving the electrophoretic medium to display the fourth color at the viewing surface;

(ii) after step (i), applying a first driving voltage for a first period of time, the first driving voltage having a polarity driving the first and third particles towards the viewing surface;

(iii) after step (ii), applying zero voltage for a second period of time;

(iv) after step (iii), applying a second driving voltage for a third period of time, the second driving voltage having a polarity opposite to, and a magnitude less than, the first driving voltage, and the third period of time being longer than the first period of time; and

(v) repeating steps (ii)-(iv), thereby causing the color blue to be displayed at the viewing surface.

4. The driving method of claim 3 wherein steps (ii)-(iv) are repeated at least 4 times.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 4, 2023
From: E INK CALIFORNIA, LLC
To: E INK CORPORATION
Reel/Frame 065123/0578 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 21, 2023
From: LIN, CRAIG; ZHENG, XIAOLONG
To: E INK CALIFORNIA,LLC
Reel/Frame 063400/0156 →
Continuity (3)
Continuation 17819371 · Aug 12, 2022
Provisional Application 63241027 · Sep 6, 2021
Related Publication 20230230554A1 · Jul 20, 2023
Cited By (1)
US 12,462,767