IP Library Granted Patent US 9,696,793
Granted Patent B2
US 9,696,793 · App. 14/271,055 · Granted Jul 4, 2017

Systems and methods for selectably suppressing computing input events triggered by variable pressure and variable displacement sensors

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Quick Facts
Patent No.
US 9,696,793
App. No.
14/271,055
Granted
Jul 4, 2017
Kind
B2
Abstract

Systems and methods are disclosed herein that may be implemented to selectably suppress computing input events that are generated for an information handling system based on output signals received from a variable pressure or displacement (VPD) sensor that correspond to one or more pressure or displacement zones defined for the VPD sensor. Using the disclosed systems and methods, computing input events based on sensor output signals from one or more given VPD sensing zones may be selectably suppressed and/or withheld during sensor pressure or displacement changes from further host system processing according to a time delay, e.g., as a function of the elapsed time taken for a user to depress or release a given VPD sensor.

Claims (36)

1. A variable pressure or displacement (VPD) sensor system, comprising:

at least one VPD sensor coupled to provide a VPD sensor output signal that includes raw sensor data that is representative of the real time pressure or displacement currently being applied to the VPD sensor; and

VPD circuitry coupled to receive the VPD sensor output signal from the at least one VPD sensor, the VPD circuitry comprising at least one first processing device configured to:

process the raw sensor data of the received VPD sensor output signal to determine whether the real time pressure or displacement currently being applied to the VPD sensor corresponds to one of a defined first zone of lower sensed pressure or displacement being currently applied to the VPD sensor or a defined second zone of higher sensed pressure or displacement being currently applied to the VPD sensor, each of the defined first and second VPD zones being associated with a particular computing input event,

select the computing input event associated with the particular defined VPD zone which corresponds to the real time pressure or displacement currently being applied to the VPD sensor, and

generate a VPD circuitry output signal including the selected computing input event to a second processing device only after a duration of a time delay period that begins when pressure or displacement is at least partially applied to the VPD sensor or when existing pressure or displacement is at least partially released from the VPD sensor;

where the first processing device of the VPD circuitry is further configured to generate a VPD circuitry output signal including the selected computing input event to a second processing device only after a duration of a sensor depression time delay period that begins when pressure or displacement is at least partially applied to the VPD sensor, and only after a duration of a sensor release time delay period that begins when existing pressure or displacement is at least partially released from the VPD sensor.

2. The system of claim 1 , where the sensor depression time delay period begins when pressure or displacement is first applied to the VPD sensor while it is in a non-depressed state.

3. The system of claim 1 , where the VPD system comprises at least one of a keyboard system having at least one VPD key sensor, a computer mouse system having at least one VPD mouse button sensor, a game controller having at least one VPD game controller button sensor, or a touchpad having at least one VPD sensor touchpad area.

4. The system of claim 1 , where each of the defined first and second VPD zones is associated with a different computing input event.

5. The system of claim 1 , where each of the computing events associated with each of the defined first and second VPD zones include one or more pressure or displacement-based key codes or an alternating high and low (high/low) digital output bit stream signal of a particular frequency.

6. The system of claim 1 , where the VPD circuitry further comprises user configuration information stored on at least one storage device that is accessible by the first processing device, the user configuration information including the duration of the time delay periods; where the storage device is accessible by a user to allow the user to change the duration of the time delay periods; and where the first processing device is configured to access the user configuration information to determine the duration of the time delay periods.

7. The system of claim 1 , where the VPD circuitry further comprises user configuration information stored on at least one storage device that is accessible by the first processing device, the user configuration information including information that defines the upper and lower boundaries of each of the VPD zones; where the storage device is accessible by a user to allow the user to change the upper and lower boundaries of each of the VPD zones; and where the first processing device is configured to access the user configuration information to determine the upper and lower boundaries of each of the VPD zones.

8. The system of claim 1 , where the VPD circuitry further comprises user configuration information stored on at least one storage device that is accessible by the first processing device, the user configuration information including information that associates each of the VPD zones with a corresponding computing input event; where the storage device is accessible by a user to allow a user to change computing input events associated with each of the VPD zones; and where the first processing device is configured to access the user configuration information to the computing input event associated with the particular defined VPD zone which corresponds to the real time pressure or displacement currently being applied to the VPD sensor.

9. The system of claim 1 , where the sensor depression time delay period begins when pressure or displacement applied to the VPD sensor enters the defined first zone of lower sensed pressure or displacement.

10. An information handling system comprising:

a variable pressure or displacement (VPD) sensor system comprising VPD circuitry that includes at least one first processing device; and

a second processing device that is configured as a host processing device to execute at least one application;

where the VPD sensor system is coupled to exchange information and data with the host processing device; and where the VPD sensor system further comprises at least one VPD sensor coupled to provide a VPD sensor output signal to the VPD circuitry, the VPD sensor output signal including raw sensor data that is representative of the real time pressure or displacement currently being applied to the VPD sensor; and

where the first processing device of the VPD circuitry is configured to:

process the raw sensor data of the received VPD sensor output signal to determine whether the real time pressure or displacement currently being applied to the VPD sensor corresponds to one of a defined first zone of lower sensed pressure or displacement being currently applied to the VPD sensor or a defined second zone of higher sensed pressure or displacement being currently applied to the VPD sensor, each of the defined first and second VPD zones being associated with a particular computing input event,

select the computing input event associated with the particular defined VPD zone which corresponds to the real time pressure or displacement currently being applied to the VPD sensor, and

generate a VPD circuitry output signal including the selected computing input event to a second processing device only after a duration of a time delay period that begins when pressure or displacement is at least partially applied to the VPD sensor or when existing pressure or displacement is at least partially released from the VPD sensor;

where the first processing device of the VPD circuitry is further configured to generate a VPD circuitry output signal including the selected computing input event to a second processing device only after a duration of a sensor depression time delay period that begins when pressure or displacement is at least partially applied to the VPD sensor, and only after a duration of a sensor release time delay period that begins when existing pressure or displacement is at least partially released from the VPD sensor.

11. The information handling system of claim 10 , the VPD circuitry further comprises user configuration information stored on at least one storage device that is accessible by the first processing device, the user configuration information including the duration of the time delay periods; where the storage device is accessible by a user through host processing device to allow the user to change the duration of the time delay periods; and where the first processing device is configured to access the user configuration information to determine the duration of the time delay periods.

12. The information handling system of claim 11 , further comprising a display device coupled to the host processing device configured to display information to a user; and where the host processing device is configured to execute at least one application to display information resulting from the VPD sensor output signals on the display device as the user varies the duration of the time delay periods.

13. A method of processing variable pressure or displacement (VPD) sensor output signals, comprising:

receiving a VPD sensor output signal in VPD circuitry that includes at least one first processing device, the VPD sensor output signal including raw sensor data that is representative of the real time pressure or displacement currently being applied to the VPD sensor; and

causing the at least one first processing device of the VPD circuitry to:

process the raw sensor data of the received VPD sensor output signal to determine whether the real time pressure or displacement currently being applied to the VPD sensor corresponds to one of a defined first zone of lower sensed pressure or displacement being currently applied to the VPD sensor or a defined second zone of higher sensed pressure or displacement being currently applied to the VPD sensor, each of the defined first and second VPD zones being associated with a particular computing input event,

select the computing input event associated with the particular defined VPD zone which corresponds to the real time pressure or displacement currently being applied to the VPD sensor, and

generate a VPD circuitry output signal including the selected computing input event to a second processing device only after a duration of a time delay period that begins when pressure or displacement is at least partially applied to the VPD sensor or when existing pressure or displacement is at least partially released from the VPD sensor;

where the method further comprises causing the at least one first processing device of the VPD circuitry to generate a VPD circuitry output signal including the selected computing input event to a second processing device only after a duration of a sensor depression time delay period that begins when pressure or displacement is at least partially applied to the VPD sensor, and only after a duration of a sensor release time delay period that begins when existing pressure or displacement is at least partially released from the VPD sensor.

14. The method of claim 13 , where each of the defined first and second VPD zones is associated with a different computing input event; and where each of the computing events associated with each of the defined first and second VPD zones include one or more pressure or displacement-based key codes or an alternating high and low (high/low) digital output bit stream signal of a particular frequency.

15. The method of claim 13 , further comprising using the first processing device to access user configuration information stored on at least one storage device, the user configuration information including the duration of the time delay periods; allowing a user to access the storage device to change the duration of the time delay periods of the user configuration information; and using the first processing device to access the user configuration information to determine the duration of the time delay periods.

16. The method of claim 13 , where the sensor depression time delay period begins when pressure or displacement applied to the VPD sensor enters the defined first zone of lower sensed pressure or displacement.

Assignments (15)
RELEASE OF SECURITY INTEREST IN PATENTS PREVIOUSLY RECORDED AT REEL/FRAME (053546/0001) Recorded Jun 23, 2022
From: THE BANK OF NEW YORK MELLON TRUST COMPANY, N.A., AS NOTES COLLATERAL AGENT
To: DELL MARKETING L.P. (ON BEHALF OF ITSELF AND AS SUCCESSOR-IN-INTEREST TO CREDANT TECHNOLOGIES, INC.); DELL INTERNATIONAL L.L.C.; DELL PRODUCTS L.P.; DELL USA L.P.; EMC CORPORATION; DELL MARKETING CORPORATION (SUCCESSOR-IN-INTEREST TO FORCE10 NETWORKS, INC. AND WYSE TECHNOLOGY L.L.C.); EMC IP HOLDING COMPANY LLC
Reel/Frame 071642/0001 →
RELEASE OF SECURITY INTEREST IN PATENTS PREVIOUSLY RECORDED AT REEL/FRAME (045455/0001) Recorded May 20, 2022
From: THE BANK OF NEW YORK MELLON TRUST COMPANY, N.A., AS NOTES COLLATERAL AGENT
To: DELL MARKETING CORPORATION (SUCCESSOR-IN-INTEREST TO ASAP SOFTWARE EXPRESS, INC.); DELL MARKETING L.P. (ON BEHALF OF ITSELF AND AS SUCCESSOR-IN-INTEREST TO CREDANT TECHNOLOGIES, INC.); DELL USA L.P.; DELL INTERNATIONAL L.L.C.; DELL PRODUCTS L.P.; DELL MARKETING CORPORATION (SUCCESSOR-IN-INTEREST TO FORCE10 NETWORKS, INC. AND WYSE TECHNOLOGY L.L.C.); EMC CORPORATION (ON BEHALF OF ITSELF AND AS SUCCESSOR-IN-INTEREST TO MAGINATICS LLC); EMC IP HOLDING COMPANY LLC (ON BEHALF OF ITSELF AND AS SUCCESSOR-IN-INTEREST TO MOZY, INC.); SCALEIO LLC
Reel/Frame 061753/0001 →
RELEASE OF SECURITY INTEREST IN PATENTS PREVIOUSLY RECORDED AT REEL/FRAME (040136/0001) Recorded Apr 26, 2022
From: THE BANK OF NEW YORK MELLON TRUST COMPANY, N.A., AS NOTES COLLATERAL AGENT
To: DELL MARKETING CORPORATION (SUCCESSOR-IN-INTEREST TO ASAP SOFTWARE EXPRESS, INC.); DELL MARKETING L.P. (ON BEHALF OF ITSELF AND AS SUCCESSOR-IN-INTEREST TO CREDANT TECHNOLOGIES, INC.); DELL USA L.P.; DELL INTERNATIONAL L.L.C.; DELL PRODUCTS L.P.; DELL MARKETING CORPORATION (SUCCESSOR-IN-INTEREST TO FORCE10 NETWORKS, INC. AND WYSE TECHNOLOGY L.L.C.); EMC CORPORATION (ON BEHALF OF ITSELF AND AS SUCCESSOR-IN-INTEREST TO MAGINATICS LLC); EMC IP HOLDING COMPANY LLC (ON BEHALF OF ITSELF AND AS SUCCESSOR-IN-INTEREST TO MOZY, INC.); SCALEIO LLC
Reel/Frame 061324/0001 →
RELEASE OF SECURITY INTEREST Recorded Nov 3, 2021
From: CREDIT SUISSE AG, CAYMAN ISLANDS BRANCH
To: ASAP SOFTWARE EXPRESS, INC.; AVENTAIL LLC; CREDANT TECHNOLOGIES, INC.; DELL USA L.P.; DELL INTERNATIONAL, L.L.C.; DELL MARKETING L.P.; DELL PRODUCTS L.P.; DELL SOFTWARE INC.; DELL SYSTEMS CORPORATION; EMC CORPORATION; EMC IP HOLDING COMPANY LLC; FORCE10 NETWORKS, INC.; MAGINATICS LLC; MOZY, INC.; SCALEIO LLC; WYSE TECHNOLOGY L.L.C.
Reel/Frame 058216/0001 →
SECURITY AGREEMENT Recorded Apr 22, 2020
From: CREDANT TECHNOLOGIES INC.; DELL INTERNATIONAL L.L.C.; DELL MARKETING L.P.; DELL PRODUCTS L.P.; DELL USA L.P.; EMC CORPORATION; FORCE10 NETWORKS, INC.; WYSE TECHNOLOGY L.L.C.; EMC IP HOLDING COMPANY LLC
To: THE BANK OF NEW YORK MELLON TRUST COMPANY, N.A.
Reel/Frame 053546/0001 →
SECURITY AGREEMENT Recorded Mar 21, 2019
From: CREDANT TECHNOLOGIES, INC.; DELL INTERNATIONAL L.L.C.; DELL MARKETING L.P.; DELL PRODUCTS L.P.; DELL USA L.P.; EMC CORPORATION; FORCE10 NETWORKS, INC.; WYSE TECHNOLOGY L.L.C.; EMC IP HOLDING COMPANY LLC
To: THE BANK OF NEW YORK MELLON TRUST COMPANY, N.A.
Reel/Frame 049452/0223 →
SECURITY AGREEMENT Recorded Sep 21, 2016
From: ASAP SOFTWARE EXPRESS, INC.; AVENTAIL LLC; CREDANT TECHNOLOGIES, INC.; DELL USA L.P.; DELL INTERNATIONAL L.L.C.; DELL MARKETING L.P.; DELL PRODUCTS L.P.; DELL SOFTWARE INC.; DELL SYSTEMS CORPORATION; EMC CORPORATION; EMC IP HOLDING COMPANY LLC; FORCE10 NETWORKS, INC.; MAGINATICS LLC; MOZY, INC.; SCALEIO LLC; SPANNING CLOUD APPS LLC; WYSE TECHNOLOGY L.L.C.
To: CREDIT SUISSE AG, CAYMAN ISLANDS BRANCH, AS COLLATERAL AGENT
Reel/Frame 040134/0001 →
SECURITY AGREEMENT Recorded Sep 21, 2016
From: ASAP SOFTWARE EXPRESS, INC.; AVENTAIL LLC; CREDANT TECHNOLOGIES, INC.; DELL USA L.P.; DELL INTERNATIONAL L.L.C.; DELL MARKETING L.P.; DELL PRODUCTS L.P.; DELL SOFTWARE INC.; DELL SYSTEMS CORPORATION; EMC CORPORATION; EMC IP HOLDING COMPANY LLC; FORCE10 NETWORKS, INC.; MAGINATICS LLC; MOZY, INC.; SCALEIO LLC; SPANNING CLOUD APPS LLC; WYSE TECHNOLOGY L.L.C.
To: THE BANK OF NEW YORK MELLON TRUST COMPANY, N.A., AS NOTES COLLATERAL AGENT
Reel/Frame 040136/0001 →
RELEASE OF REEL 033625 FRAME 0748 (NOTE) Recorded Sep 14, 2016
From: BANK OF NEW YORK MELLON TRUST COMPANY, N.A., AS COLLATERAL AGENT
To: DELL SOFTWARE INC.; DELL PRODUCTS L.P.; COMPELLENT TECHNOLOGIES, INC.; SECUREWORKS, INC.
Reel/Frame 040027/0050 →
RELEASE OF REEL 033625 FRAME 0688 (TL) Recorded Sep 14, 2016
From: BANK OF AMERICA, N.A., AS COLLATERAL AGENT
To: DELL SOFTWARE INC.; DELL PRODUCTS L.P.; COMPELLENT TECHNOLOGIES, INC.; SECUREWORKS, INC.
Reel/Frame 040027/0757 →
RELEASE OF REEL 033625 FRAME 0711 (ABL) Recorded Sep 13, 2016
From: BANK OF AMERICA, N.A., AS ADMINISTRATIVE AGENT
To: DELL SOFTWARE INC.; DELL PRODUCTS L.P.; COMPELLENT TECHNOLOGIES, INC.; SECUREWORKS, INC.
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SUPPLEMENT TO PATENT SECURITY AGREEMENT (TERM LOAN) Recorded Aug 27, 2014
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SUPPLEMENT TO PATENT SECURITY AGREEMENT (NOTES) Recorded Aug 27, 2014
From: COMPELLENT TECHNOLOGIES, INC.; DELL PRODUCTS L.P.; DELL SOFTWARE INC.; SECUREWORKS, INC.
To: THE BANK OF NEW YORK MELLON TRUST COMPANY, N.A., AS NOTES COLLATERAL AGENT
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SUPPLEMENT TO PATENT SECURITY AGREEMENT (ABL) Recorded Aug 27, 2014
From: COMPELLENT TECHNOLOGIES, INC.; DELL PRODUCTS L.P.; DELL SOFTWARE INC.; SECUREWORKS, INC.
To: BANK OF AMERICA, N.A., AS ADMINISTRATIVE AGENT
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ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 6, 2014
From: ROSS, CARLOS L.; SIERRA, DANAE; MEDINA, EYZEN; SEAY, ALONZO F.
To: DELL PRODUCTS L.P.
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