IP Library › Granted Patent US 12,737,048
Granted Patent B2
US 12,737,048 · App. 19/213,524 · Granted Sep 15, 2026

Display terminal, virtual tactile device, and virtual tactile system including thereof

Inventors: Kang-Ho Park (Daejeon, KR); Yousung Kang (Daejeon, KR); Hyung-Kun Lee (Daejeon, KR)
Assignee: ELECTRONICS AND TELECOMMUNICATIONS RESEARCH INSTITUTE
G06F3/016G06F3/033G06F2203/0331
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Quick Facts
Patent No.
US 12,737,048
App. No.
19/213,524
Granted
Sep 15, 2026
Kind
B2
Abstract

A virtual tactile device is provided, which includes a display terminal and a wearable device that receives information about a position, a shape, and a physical property of an object displayed on the display screen, and the user's finger position. In one example, the wearable device includes a micro-displacement stimulation element that is in close contact with the user's finger skin. When the finger wearing the wearable device contacts an object displayed on the display screen or moves on the screen of the display terminal, the micro-displacement stimulation element applies a micro-displacement stimulus to the finger skin, selectively triggering action potentials of multiple tactile receptors in the skin. In coordination with the display terminal's screen, the system can provide tactile feedback, including protruding pressure sensations, curvature, and friction textures.

Claims (50)

1 . A virtual tactile system, comprising:

a display terminal; and

a wearable device that is capable of being worn on a finger, which receives information on the position, shape, and physical properties of an object displayed on the screen of the display terminal, as well as information regarding the position of the user's finger;

wherein the wearable device includes a micro-displacement stimulation element that is closely attached to the finger skin,

wherein when the finger wearing the wearable device contacts the object displayed on the screen of the display terminal or moves on the screen of the display terminal, the micro-displacement stimulation element applies a micro-displacement stimulus to the finger skin,

wherein the micro-displacement stimulus is a pulse signal having a waveform of a sine wave, a triangular wave, or a square wave, and

wherein the micro-displacement stimulation element varies a pulse width and an amplitude of the micro-displacement stimulus over time to selectively trigger action potentials of multiple tactile receptors in the finger skin, and controls a time interval between pulses of the micro-displacement stimulus to control a time interval at which each of the action potentials is triggered, thereby providing tactile feedback including protruding pressure sensation, curvature, and friction texture in coordination with the screen of the display terminal.

2 . The virtual tactile system of claim 1 , wherein:

the micro-displacement stimulus is less than 100 micrometers (um) in size; and

the micro-displacement stimulus is applied in sequence by combining signals with a pulse waveform having a duration of less than 100 milliseconds (msec).

3 . The virtual tactile system of claim 1 , wherein:

the display terminal is a 2-dimensional display terminal selected from one of a smartphone, tablet computer, touchscreen desktop computer, touchscreen laptop computer, touchscreen TV, touchscreen CCTV, touchscreen vehicle display, touchscreen navigation device, touchscreen digital signage, or a remotely controlled drone, robot, or surgical medical device monitor; and

the information regarding the finger position is the position information where the finger contacts the screen of the display terminal.

4 . The virtual tactile system of claim 1 , wherein:

the display terminal is a 3-dimensional spatial display terminal selected from one of a head-mounted display, glasses-type display, or artificial retina display;

the 3-dimensional spatial display terminal includes a camera; and

the information regarding the finger position is the position information of the finger obtained by the camera recognizing the finger.

5 . The virtual tactile system of claim 1 , wherein:

the micro-displacement stimulus element is mounted in an array of two or more on the wearable device, applying individual micro-displacement pulse signals to two areas of the finger skin.

6 . The virtual tactile system of claim 1 , wherein:

the shape of the object includes shape and height information in a 2-dimensional plane, and

the stimulation applied by the micro-displacement stimulus element provides tactile feedback of friction texture corresponding to the shape of the object.

7 . The virtual tactile system of claim 1 , wherein:

for the object, physical property information including the size of protruding pressure or the elasticity coefficient is assigned based on the position of the display terminal; and

the stimulation applied by the micro-displacement stimulus element provides tactile feedback of protruding pressure, curvature, and friction texture in coordination with the physical property information.

8 . The virtual tactile system of claim 1 , wherein:

the object comprises a surface structure formed of one or more of a protruding or concave structure, or a figure having an area.

9 . The virtual tactile system of claim 1 , wherein:

the wearable device is one of a ring, thimble, or glove.

10 . The virtual tactile system of claim 1 , wherein:

the micro-displacement stimulus element includes a piezoelectric actuator.

11 . A virtual tactile device operable in coordination with a display terminal, comprising:

a wearable device that receives information on the position, shape, and physical properties of an object displayed on the screen of the display terminal, as well as information regarding the position of the user's finger, and

a micro-displacement stimulus element attached to the finger skin;

wherein when the finger wearing the wearable device contacts the object displayed on the screen of the display terminal or moves on the screen, the micro-displacement stimulus element applies a micro-displacement stimulus to the finger skin,

wherein the micro-displacement stimulus is a pulse signal having a waveform of a sine wave, a triangular wave, or a square wave, and

wherein the micro-displacement stimulus element varies a pulse width and an amplitude of the micro-displacement stimulus over time to selectively trigger action potentials of multiple tactile receptors in the finger skin, and controls a time interval between pulses of the micro-displacement stimulus to control a time interval at which each of the action potentials is triggered, thereby providing tactile feedback including protruding pressure, curvature, and friction texture in coordination with the screen of the display terminal.

12 . The virtual tactile device of claim 11 , wherein:

the micro-displacement stimulus is less than 100 micrometers (um) in size, and

the micro-displacement stimulus is applied in sequence by combining signals with a pulse waveform having a duration of less than 100 milliseconds (msec).

13 . The virtual tactile device of claim 11 , wherein:

the micro-displacement stimulus element is mounted in an array of two or more on the wearable device, applying individual micro-displacement pulse signals to two areas of the finger skin.

14 . The virtual tactile device of claim 11 , wherein:

the shape of the object includes shape and height information in a 2-dimensional plane, and

the stimulation applied by the micro-displacement stimulus element provides tactile feedback of friction texture corresponding to the shape of the object.

15 . The virtual tactile device of claim 11 , wherein:

for the object, physical property information including the size of protruding pressure or the elasticity coefficient is assigned based on the position of the display terminal, and

the stimulation applied by the micro-displacement stimulus element provides tactile feedback of protruding pressure, curvature, and friction texture in coordination with the physical property information.

16 . The virtual tactile device of claim 11 , wherein:

the micro-displacement stimulus element includes a piezoelectric actuator.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 20, 2025
From: PARK, KANG-HO; KANG, YOUSUNG; LEE, HYUNG-KUN
To: ELECTRONICS AND TELECOMMUNICATIONS RESEARCH INSTITUTE
Reel/Frame 071171/0199 →
Priority Claims (2)
KR 10-2024-0092632 · Jul 12, 2024 · national
KR 10-2024-0186241 · Dec 13, 2024 · national
Continuity (1)
Related Publication 20260016899A1 · Jan 15, 2026
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