IP Library › Granted Patent US 10,782,786
Granted Patent B2
US 10,782,786 · App. 16/654,106 · Granted Sep 22, 2020

Method for converting acoustic signal into haptic signal, and haptic device using same

Inventors: Hyeong Jun Kim (Seoul, KR); Ji Goo Kang (Seoul, KR); Jong Hun Lee (Seoul, KR); Jeong Beom Lee (Seoul, KR); Jong Hyung Jung (Seoul, KR)
Assignee: CK MATERIALS LAB CO., LTD.
G06F3/016A63F13/24A63F13/285A63F13/424G06F3/01G10H1/0008G10H2210/066G10H2210/071G10H2210/076
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Quick Facts
Patent No.
US 10,782,786
App. No.
16/654,106
Granted
Sep 22, 2020
Kind
B2
Abstract

A haptic device according to one embodiment can comprise: a database unit for storing acoustic information or receiving the acoustic information from an external device; a control unit for converting the acoustic information into an electrical signal according to a predetermined pattern; a driving unit for generating a motion signal on the basis of the electrical signal; and a transfer unit for transferring a patterned tactile signal to a user by means of the motion signal.

Claims (23)

1. A haptic device, comprising:

a database configured to store acoustic information or receive the acoustic information from an external device;

a controller configured to convert the acoustic information into an electrical signal corresponding to a predetermined pattern; and

a tactile actuator configured to provide a user with a patterned tactile signal,

wherein the tactile actuator comprises:

a driver configured to generate a motion signal based on the electrical signal; and

a transmitter configured to transmit the patterned tactile signal to the user using the motion signal,

wherein the controller is configured to determine one of a plurality of predetermined driving modes based on the acoustic information, and convert the acoustic information into the electrical signal having a frequency corresponding to the determined driving mode, and

wherein the controller is configured to:

determine a frequency of the electrical signal to be a first set frequency when the driving mode is a first set mode, and

determine the frequency of the electrical signal to be a second set frequency when the driving mode is a set mode other than the first set mode, the second set frequency being lower than the first set frequency.

2. The haptic device of claim 1 ,

wherein the controller is configured to:

determine a waveform of the electrical signal to be a square wave or a pulse wave when the driving mode is a second set mode, and

determine the waveform of the electrical signal to be a sine wave when the driving mode is a third set mode.

3. The haptic device of claim 1 , wherein the driving mode includes a general vibration mode, a tapping mode, and a rolling mode.

4. The haptic device of claim 3 ,

wherein the controller is configured to:

determine a frequency of the electrical signal to be a first set frequency when the driving mode is the general vibration mode,

determine the frequency of the electrical signal to be a second set frequency when the driving mode is the tapping mode, the second set frequency being lower than the first set frequency, and

determine the frequency of the electrical signal to be a third set frequency when the driving mode is the rolling mode, the third set frequency being higher than the second set frequency and lower than the first set frequency.

5. The haptic device of claim 1 , further comprising:

an information providing device configured to provide information collected by the controller, wherein the information providing device comprises at least one of a user interface configured to receive an instruction of a user, a sensor configured to sense an external environment, a memory configured to store data, and a communicator configured to receive information through communication with another communication device.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 30, 2020
From: KIM, HYEONG JUN; KANG, JI GOO; LEE, JONG HUN; LEE, JEONG BEOM; JUNG, JONG HYUNG
To: CK MATERIALS LAB CO., LTD.
Reel/Frame 053350/0852 →
Priority Claims (2)
KR 10-2016-0060432 · May 17, 2016 · national
KR 10-2016-0137735 · Oct 21, 2016 · national
Continuity (2)
Division 15763210
Related Publication 20200050279A1 · Feb 13, 2020
Cited By (1)
US 12,469,476