IP Library Granted Patent US 12681582
Granted Patent B2
US 12681582 · App. 18/994,133 · Granted Jul 14, 2026

Haptic feedback substrate and driving method therefor, and touch device

Inventors: Yuju Chen (Beijing, CN); Hui Hua (Beijing, CN); Yongchun Tao (Beijing, CN); Dexing Qi (Beijing, CN)
Assignees: Beijing BOE Technology Development Co., Ltd.; BOE Technology Grouup Co., Ltd.
G06F3/016B06B1/0276B06B2201/55
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Quick Facts
Patent No.
US 12681582
App. No.
18/994,133
Granted
Jul 14, 2026
Kind
B2
Abstract

A driving method for a haptic feedback substrate includes obtaining a haptic feedback signal required by a user; and driving the haptic feedback substrate to vibrate according to the haptic feedback signal. A first AC signal is loaded to a piezoelectric vibration unit of the haptic feedback substrate. A frequency of the first AC signal is greater than a frequency of the haptic feedback signal. The haptic feedback substrate is configured to resonate under an action of the first AC signal. At a stable vibration stage, the haptic feedback signal is loaded to the piezoelectric vibration unit. At a terminal vibration stage, a second AC signal is loaded to the piezoelectric vibration unit. A frequency of the second AC signal is a non-resonant frequency of the haptic feedback substrate. The frequency of the second AC signal is greater than the frequency of the haptic feedback signal.

Claims (27)

1 . A driving method for a haptic feedback substrate, comprising:

obtaining a haptic feedback signal required by a user; and

driving the haptic feedback substrate to vibrate according to the haptic feedback signal;

wherein said driving the haptic feedback substrate to vibrate comprises:

at an initial vibration stage, loading a first AC signal to a piezoelectric vibration unit of the haptic feedback substrate; a frequency of the first AC signal being greater than a frequency of the haptic feedback signal, and the haptic feedback substrate being configured to resonate under an action of the first AC signal;

at a stable vibration stage, loading the haptic feedback signal to the piezoelectric vibration unit of the haptic feedback substrate;

at a terminal vibration stage, loading a second AC signal to the piezoelectric vibration unit of the haptic feedback substrate; a frequency of the second AC signal being a non-resonant frequency of the haptic feedback substrate, and the frequency of the second AC signal being greater than the frequency of the haptic feedback signal.

2 . The driving method according to claim 1 , wherein the frequency of the first AC signal is a resonant frequency of the haptic feedback substrate.

3 . The driving method according to claim 2 , wherein the frequency of the first AC signal is greater than 20 KHz.

4 . The driving method according to claim 3 , wherein a time period of the initial vibration stage is less than 20 ms.

5 . The driving method according to claim 1 , wherein the frequency of the haptic feedback signal ranges from 100 Hz to 3000 Hz.

6 . The driving method according to claim 1 , wherein the frequency of the second AC signal is greater than 20 KHz.

7 . The driving method according to claim 6 , wherein a time period of the terminal vibration stage is less than 20 ms.

8 . The driving method according to claim 1 , wherein a waveform of the haptic feedback signal is the same as a waveform of the first AC signal.

9 . The driving method according to claim 8 , wherein a waveform transmission direction of the haptic feedback signal is the same as a waveform transmission direction of the first AC signal.

10 . The driving method according to claim 9 , wherein peaks in the waveform of the haptic feedback signal are in the same direction as peaks in the waveform of the first AC signal, and valleys in the waveform of the haptic feedback signal are in the same direction as valleys in the waveform of the first AC signal.

11 . A haptic feedback substrate driven by the driving method according to claim 1 , wherein the haptic feedback substrate comprises:

a base substrate, and

a piezoelectric vibration unit on the base substrate.

12 . The haptic feedback substrate according to claim 11 , wherein the piezoelectric vibration unit is a PZT piezoelectric film structure or a piezoelectric ceramic block structure.

13 . A touch device, comprising:

a touch layer, and

the haptic feedback substrate according to claim 11 ,

wherein the touch layer is located on a side of the base substrate away from the piezoelectric vibration unit.

14 . The touch device according to claim 13 , further comprising:

a display structure,

wherein the display structure is disposed between the touch layer and the base substrate.