IP Library Granted Patent US 10,832,537
Granted Patent B2
US 10,832,537 · App. 16/289,080 · Granted Nov 10, 2020

Methods and apparatus for outputting a haptic signal to a haptic transducer

Inventors: Anthony S. Doy (Los Gatos, CA); Nermin Osmanovic (Austin, TX); Carl L. Ståhl (Malmö, SE)
Assignee: Cirrus Logic, Inc.
G08B6/00H04R3/00H04R2400/03
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Quick Facts
Patent No.
US 10,832,537
App. No.
16/289,080
Granted
Nov 10, 2020
Kind
B2
Abstract

Embodiments described herein relate to methods and apparatus for outputting a haptic signal to a haptic transducer. A method for triggering a haptic signal being output to a haptic transducer comprises receiving an audio signal for output through an audio output transducer; determining whether the audio signal comprises a haptic trigger based on an indication of a rate of change of an amplitude of the audio signal, and responsive to determining that the audio signal comprises a haptic trigger, triggering the haptic signal to be output to the haptic transducer.

Claims (27)

1. A method for triggering a haptic signal being output to a haptic transducer comprising:

receiving, by a processor, an audio signal for output through an audio output transducer;

determining, by the processor, whether the audio signal comprises a haptic trigger based on an indication of a rate of change of an amplitude of the audio signal, wherein the step of determining comprises:

generating a first weighted sum representation of the audio signal utilizing a first number of samples of a rectified version of the audio signal;

generating a second weighted sum representation of the audio signal utilizing a second number of samples of the rectified version of the audio signal, wherein the second number of samples is more than the first number of samples; and

comparing the first weighted sum representation to the second weighted sum representation to determine the indication of the rate of change of the amplitude of the audio signal; and

responsive to determining that the audio signal comprises the haptic trigger, triggering, by the processor, the haptic signal to be output to the haptic transducer.

2. The method of claim 1 wherein the step of comparing comprises:

determining that the audio signal comprises the haptic trigger when the first weighted sum representation exceeds the second weighted sum representation.

3. The method of claim 1 wherein the step of comparing comprises:

determining that the audio signal comprises the haptic trigger when the first weighted sum representation exceeds the second weighted sum representation plus a predetermined offset.

4. The method of claim 1 further comprising one or more of the following steps:

adjusting, by the processor, a first set of weighting coefficients used to generate the first weighted sum representation, and

adjusting, by the processor, a second set of weighting coefficient used to generate the second weighted sum representation, based on a desired haptic trigger characteristic.

5. The method of claim 1 further comprising one or more of the following steps:

adjusting, by the processor, the first number of samples based on a desired haptic trigger characteristic; and adjusting, by the processor, the second number of samples based on the desired haptic trigger characteristic.

6. The method of claim 1 further comprising:

determining that the audio signal comprises the haptic trigger if the rate of change of the amplitude of the audio signal exceeds a threshold value.

7. A processor for triggering a haptic signal being output to a haptic transducer, comprising:

an input to receive an audio signal for output through an audio output transducer;

a haptic trigger detection block to determine whether the audio signal comprises a haptic trigger based on an indication of a rate of change of an amplitude of the audio signal, wherein the haptic trigger detection block determines whether the audio signal comprises the haptic trigger by:

generating a first weighted sum representation of the audio signal utilizing a first number of samples of a rectified version of the audio signal;

generating a second weighted sum representation of the audio signal utilizing a second number of samples of the rectified version of the audio signal, wherein the second number of samples is more than the first number of samples; and

comparing the first weighted sum representation to the second weighted sum representation to determine the indication of the rate of change of the amplitude of the audio signal; and

a haptic signal generator to trigger the haptic signal to be output to the haptic transducer, responsive to the determination that the audio signal comprises the haptic trigger.

8. The processor of claim 7 wherein the haptic trigger detection block determines that the audio signal comprises the haptic trigger when the first weighted sum representation exceeds the second weighted sum representation.

9. The processor of claim 7 wherein the haptic trigger detection block determines that the audio signal comprises the haptic trigger when the first weighted sum representation exceeds the second weighted sum representation plus a predetermined offset.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 24, 2020
From: CIRRUS LOGIC INTERNATIONAL SEMICONDUCTOR LTD.
To: CIRRUS LOGIC, INC.
Reel/Frame 053867/0199 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 23, 2019
From: DOY, ANTHONY S.; OSMANOVIC, NERMIN; STÅHL, CARL L.
To: CIRRUS LOGIC INTERNATIONAL SEMICONDUCTOR LTD.
Reel/Frame 048974/0688 →
Continuity (2)
Provisional Application 62652639 · Apr 4, 2018
Related Publication 20190311590A1 · Oct 10, 2019
Cited By (5)
US 12,190,716 US 12,244,253 US 12,276,687 US 12,314,558 US 12,501,212