IP Library Granted Patent US 10,114,484
Granted Patent B2
US 10,114,484 · App. 15/462,959 · Granted Oct 30, 2018

Adaptive transmit voltage in active stylus

Inventors: Eivind Holsen (Trondheim, NO); Shahrooz Shahparnia (Monte Sereno, CA); Kishore Sundara-Rajan (San Jose, CA); Trond Jarle Pedersen (Trondheim, NO); Vemund Kval Bakken (Nordheim, NO); James D. Lyle (Santa Clara, CA)
Assignee: Atmel Corporation
G06F3/03545G06F1/3259G06F3/0383G06F3/041G06F3/044G06F2203/04105Y02D10/155
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Quick Facts
Patent No.
US 10,114,484
App. No.
15/462,959
Granted
Oct 30, 2018
Kind
B2
Abstract

In one embodiment, an active stylus includes a transmitter configured to transmit electrical signals to a device through a touch sensor of the device. The active stylus also includes a receiver configured to receive electrical signals from the device through the touch sensor of the device. Furthermore, the active stylus includes a controller configured to determine a strength of an electrical signal received by the receiver from the touch sensor of the device and instruct the transmitter to transmit electrical signals to the device at a voltage based at least on the determined strength of the electrical signal received by the receiver.

Claims (47)

1. An active stylus comprising:

a transmitter configured to transmit electrical signals to a device through a touch sensor of the device;

a receiver configured to receive electrical signals from the device through the touch sensor of the device; and

a controller configured to:

determine a strength of an electrical signal received by the receiver from the touch sensor of the device; and

instruct the transmitter to transmit electrical signals to the device at a voltage based at least on the determined strength of the electrical signal received by the receiver.

2. The active stylus of claim 1 , wherein the controller is further configured to:

determine whether a tip of the active stylus is pressed against the touch sensor of the device;

in response to a first determination reflecting that the tip is pressed against the touch sensor, instruct the transmitter to transmit electrical signals to the device at a first voltage; and

in response to a second determination reflecting that the tip is not pressed against the touch sensor, instruct the transmitter to transmit electrical signals to the device at a second voltage that is higher than the first voltage.

3. The active stylus of claim 2 , wherein the tip is integrated with or comprises a pressure sensor.

4. The active stylus of claim 1 , wherein the voltage of the transmitted electrical signals is determined based at least in part on a signal-to-noise ratio (SNR) of the transmitted electrical signals.

5. The active stylus of claim 1 , wherein the strength of the electrical signal received by the receiver comprises a peak-to-peak voltage amplitude of the electrical signal received by the receiver.

6. The active stylus of claim 1 , wherein:

the voltage of the transmitted electrical signals determines a maximum hover distance of the active stylus from a surface of the touch sensor of the device; and

the maximum hover distance increases as the voltage of the transmitted electrical signals increases.

7. The active stylus of claim 1 , wherein the electrical signal received by the receiver synchronizes communication between the active stylus and a controller of the touch sensor of the device.

8. The active stylus of claim 7 , wherein the transmitter is enabled to transmit electrical signals to the device in response to the communication being synchronized between the active stylus and the controller of the touch sensor.

9. The active stylus of claim 1 , wherein the voltage is programmable.

10. The active stylus of claim 1 , further comprising a boost voltage controller configured to generate the voltage at which the transmitter is instructed to transmit electrical signals to the device, the boost voltage controller comprising:

a bleeder circuit configured to regulate down the voltage; and

a comparator configured to determine whether the voltage meets a threshold, the boost voltage controller determining whether to enable or shut off a boost of the voltage based on an output of the comparator.

11. A computer-readable non-transitory storage medium of an active stylus embodying logic that is configured when executed to:

determine a strength of an electrical signal received by a receiver of the active stylus from a touch sensor of a device, wherein the receiver is configured to receive electrical signals from the device through the touch sensor of the device; and

instruct a transmitter of the active stylus to transmit electrical signals to the device at a voltage based at least on the determined strength of the electrical signal received by the receiver, wherein the transmitter is configured to transmit electrical signals to the device through the touch sensor of the device.

12. The medium of claim 11 , wherein the logic is further configured when executed to:

determine whether a tip of the active stylus is pressed against the touch sensor of the device;

in response to a first determination reflecting that the tip is pressed against the touch sensor, instruct the transmitter of the active stylus to transmit electrical signals to the device at a first voltage; and

in response to a second determination reflecting that the tip is not pressed against the touch sensor, instruct the transmitter to transmit electrical signals to the device at a second voltage that is higher than the first voltage.

13. The medium of claim 12 , wherein the tip of the active stylus is integrated with or comprises a pressure sensor.

14. The medium of claim 11 , wherein the voltage of the transmitted electrical signals is determined based at least in part on a signal-to-noise ratio (SNR) of the transmitted electrical signals.

15. The medium of claim 11 , wherein the strength of the electrical signal received by the receiver comprises a peak-to-peak voltage amplitude of the electrical signal received by the receiver.

16. The medium of claim 11 , wherein:

the voltage of the transmitted electrical signals determines a maximum hover distance of the active stylus from a surface of the touch sensor of the device; and

the maximum hover distance increases as the voltage of the transmitted electrical signals increases.

17. The medium of claim 11 , wherein the electrical signal received by the receiver synchronizes communication between the active stylus and a controller of the touch sensor of the device.

18. The medium of claim 17 , wherein the transmitter is enabled to transmit electrical signals to the device in response to the communication being synchronized between the active stylus and the controller of the touch sensor.

19. The medium of claim 11 , wherein the voltage is programmable.

20. An active stylus comprising:

a transmitter operable to transmit electrical signals to a device through a touch sensor of the device;

a receiver operable to receive electrical signals from the device through the touch sensor of the device; and

a controller configured to:

determine whether a tip of the active stylus is pressed against the touch sensor of the device;

in response to a first determination reflecting that the tip is pressed against the touch sensor, instruct the transmitter to transmit electrical signals to the device at a first voltage; and

in response to a second determination reflecting that the tip is not pressed against the touch sensor:

determine a strength of an electrical signal received by the receiver from the touch sensor of the device; and

instruct the transmitter to transmit electrical signals to the device at a second voltage based at least on the determined strength of the electrical signal received by the receiver, wherein the second voltage is higher than the first voltage.

Assignments (5)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 1, 2018
From: ATMEL CORPORATION
To: WACOM CO., LTD.
Reel/Frame 047640/0227 →
RELEASE OF SECURITY INTEREST IN CERTAIN PATENT RIGHTS Recorded Sep 27, 2018
From: JPMORGAN CHASE BANK, N.A., AS ADMINISTRATIVE AGENT
To: MICROCHIP TECHNOLOGY INCORPORATED; SILICON STORAGE TECHNOLOGY, INC.; ATMEL CORPORATION; MICROSEMI CORPORATION; MICROSEMI STORAGE SOLUTIONS, INC.
Reel/Frame 047158/0958 →
RELEASE OF SECURITY INTEREST IN CERTAIN PATENT RIGHTS Recorded Sep 27, 2018
From: WELLS FARGO BANK, NATIONAL ASSOCIATION, AS NOTES COLLATERAL AGENT
To: MICROCHIP TECHNOLOGY INCORPORATED; SILICON STORAGE TECHNOLOGY, INC.; ATMEL CORPORATION; MICROSEMI CORPORATION; MICROSEMI STORAGE SOLUTIONS, INC.
Reel/Frame 047159/0792 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 1, 2017
From: SHAHPARNIA, SHAHROOZ; SUNDARA-RAJAN, KISHORE; PEDERSEN, TROND JARLE; BAKKEN, VEMUND KVAL; LYLE, JAMES D.
To: ATMEL CORPORATION
Reel/Frame 044346/0651 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 1, 2017
From: HOLSEN, EIVIND
To: ATMEL CORPORATION
Reel/Frame 044346/0659 →
Continuity (6)
Continuation In Part 15008835 · Jan 28, 2016
Continuation 14642128 · Mar 9, 2015
Continuation 15008835
Continuation 13329274 · Dec 17, 2011
Provisional Application 61553114 · Oct 28, 2011
Related Publication 20170192540A1 · Jul 6, 2017
Cited By (1)
US 12,216,840