IP Library › Granted Patent US 11,972,075
Granted Patent B2
US 11,972,075 · App. 17/448,100 · Granted Apr 30, 2024

Tilt orientation data of an electronic pen based on capacitance difference detection

Inventors: Patrick Troy Gray (Cedar Park, TX); Daniel Keith Van Ostrand (Leander, TX)
Assignee: SigmaSense, LLC.
G06F3/04162G06F3/03545G06F3/0441G06F3/0442
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Quick Facts
Patent No.
US 11,972,075
App. No.
17/448,100
Granted
Apr 30, 2024
Kind
B2
Abstract

An electronic pen includes a primary conductor, a secondary conductor, and shielding between the primary and secondary conductor. The electronic pen further includes two or more orientation capacitors and a raw data circuit. The raw data circuit includes two or more drive-sense circuits coupled to the two or more orientation capacitors, where a first drive-sense circuit is operable to produce a first error signal corresponding to an electrical characteristic of a first orientation capacitor, where a second drive-sense circuit of the two or more drive-sense circuits is operable to produce a second error signal corresponding to an electrical characteristic of the second orientation capacitor, and one or more subtraction modules. A first subtraction module is operable to subtract the first and second error signal to produce a first difference error signal. The first different error signal is representative of tilt orientation data of the electronic pen.

Claims (85)

1. An electronic pen comprises:

a primary conductor;

a secondary conductor;

shielding between the primary conductor and the secondary conductor;

two or more orientation capacitors, wherein a first orientation capacitor of the two or more orientation capacitors is substantially parallel to a second orientation capacitor of the two or more orientation capacitors; and

a raw data circuit operable to generate raw data regarding the electronic pen, wherein the raw data circuit includes:

two or more drive-sense circuits coupled to the two or more orientation capacitors, wherein a first drive-sense circuit of the two or more drive-sense circuits is operable to produce a first error signal corresponding to an electrical characteristic of the first orientation capacitor, and wherein a second drive-sense circuit of the two or more drive-sense circuits is operable to produce a second error signal corresponding to an electrical characteristic of the second orientation capacitor; and

one or more subtraction modules, wherein a first subtraction module is operable to subtract the first and second error signal to produce a first difference error signal, wherein the first different error signal is representative of tilt orientation data of the electronic pen with respect to a touch screen.

2. The electronic pen of claim 1 , wherein a third orientation capacitor of the two or more orientation capacitors is substantially parallel to a fourth orientation capacitor of the two or more orientation capacitors, wherein the third and fourth capacitors are substantially perpendicular to the first and second capacitors.

3. The electronic pen of claim 2 , wherein the tilt orientation data obtained from the first and second orientation capacitors is with respect to an x-plane direction, and wherein tilt orientation data obtained from the third and fourth orientation capacitors is with respect to a y-plane direction.

4. The electronic pen of claim 1 , wherein the first drive-sense circuit is operable to:

generate a drive signal in accordance with a regulation signal;

supply the drive signal to the first orientation capacitor;

detect an effect on the drive signal based on the electrical characteristic of the first orientation capacitor;

generate the first error signal based on the effect on the drive signal and a reference signal;

generate the regulation signal based on the first error signal; and

output the first error signal to the first subtraction module.

5. The electronic pen of claim 4 , wherein the raw data circuit further comprises:

a reference circuit operable to produce the reference signal.

6. The electronic pen of claim 1 , wherein the raw data circuit further comprises:

a clock adjust circuit operable to generate a packeting clock signal and an analog to digital converter (ADC) clock signal;

two or more analog to digital converters (ADCs), wherein a first ADC of the two or more ADCs is operable to convert the first different error signal to a digital first different error signal in accordance with the ADC clock signal; and

a packet processing module operable to insert the digital first different error signal into the raw data in accordance with the packeting clock signal.

7. The electronic pen of claim 1 further comprises:

one or more secondary circuits operably coupled to the secondary conductor, wherein a first secondary circuit of the one or more secondary circuits is operable to:

receive the first difference error signal from the raw data circuit;

up-convert the first difference error signal into a data transmit signal; and

transmit the data transmit signal via the secondary conductor to the touch screen.

8. The electronic pen of claim 7 , wherein the first secondary circuit comprises:

an operational amplifier circuit, wherein an input of the operational amplifier circuit receives the first difference error signal;

a feedback circuit coupled to a second input and an output of the operational amplifier, wherein the feedback circuit is operable to provide a gain for the operational amplifier circuit; and

a power output circuit operable to up-convert the first difference error signal outputted by the operational amplifier to produce the data transmit signal.

9. The electronic pen of claim 1 further comprises:

a transmit/receive circuit operably coupled to the primary conductor, wherein the transmit/receive circuit is operable to:

receive a signal from the touch screen via the primary conductor;

generate a ring-back signal based on the signal; and

transmit the ring-back signal via the primary conductor to the touch screen.

10. The electronic pen of claim 9 , wherein the transmit/receive circuit comprises:

an amplifier circuit;

a feedback circuit operably coupled to the amplifier circuit;

a dependent supply circuit operably coupled to the amplifier circuit and to the feedback circuit; and

a reference circuit operable to produce a reference signal, wherein:

the amplifier circuit generates a comparison signal based on the signal from the touch screen and the reference signal;

the feedback circuit generates a regulation signal based on the comparison signal; and

the dependent supply source generates an adjustment signal based on the regulation signal, wherein the adjustment signal adjusts the signal to produce the ring-back signal.

11. An electronic pen comprises:

a primary conductor;

a secondary conductor;

shielding between the primary conductor and the secondary conductor;

two or more orientation capacitors, wherein a first orientation capacitor of the two or more orientation capacitors is substantially parallel to a second orientation capacitor of the two or more orientation capacitors;

an orientation circuit operably coupled to the two or more orientation capacitors, wherein the orientation circuit includes:

two or more drive-sense circuits coupled to the two or more orientation capacitors, wherein a first drive-sense circuit of the two or more drive-sense circuits is operable to produce a first error signal corresponding to an electrical characteristic of the first orientation capacitor, and wherein a second drive-sense circuit of the two or more drive-sense circuits is operable to produce a second error signal corresponding to an electrical characteristic of the second orientation capacitor; and

one or more subtraction modules, wherein a first subtraction module is operable to subtract the first and second error signal to produce a first difference error signal, wherein the first different error signal is representative of tilt orientation data of the electronic pen with respect to a touch screen; and

one or more secondary circuits operably coupled to the secondary conductor, wherein a first secondary circuit of the one or more secondary circuits is operable to:

receive the first difference error signal;

up-convert the first difference error signal into a data transmit signal; and

transmit the data transmit signal via the secondary conductor.

12. The electronic pen of claim 11 , wherein a third orientation capacitor of the two or more orientation capacitors is substantially parallel to a fourth orientation capacitor of the two or more orientation capacitors, wherein the third and fourth capacitors are substantially perpendicular to the first and second capacitors.

13. The electronic pen of claim 12 , wherein the tilt orientation data obtained from the first and second orientation capacitors is with respect to an x-plane direction, and wherein tilt orientation data obtained from the third and fourth orientation capacitors is with respect to a y-plane direction.

14. The electronic pen of claim 11 , wherein the first drive-sense circuit is operable to:

generate a drive signal in accordance with a regulation signal;

supply the drive signal to the first orientation capacitor;

detect an effect on the drive signal based on the electrical characteristic of the first orientation capacitor;

generate the first error signal based on the effect on the drive signal and a reference signal;

generate the regulation signal based on the first error signal; and

output the first error signal to the first subtraction module.

15. The electronic pen of claim 14 , wherein the orientation circuit further comprises:

a reference circuit operable to produce the reference signal.

16. The electronic pen of claim 11 , wherein the first secondary circuit comprises:

an operational amplifier circuit, wherein an input of the operational amplifier circuit receives the first difference error signal;

a feedback circuit coupled to a second input and an output of the operational amplifier, wherein the feedback circuit is operable to provide a gain for the operational amplifier circuit; and

a power output circuit operable to up-convert the first difference error signal outputted by the operational amplifier to produce the data transmit signal.

17. The electronic pen of claim 1 further comprises:

a transmit/receive circuit operably coupled to the primary conductor, wherein the transmit/receive circuit is operable to:

receive a signal from the touch screen via the primary conductor;

generate a ring-back signal based on the signal; and

transmit the ring-back signal via the primary conductor.

18. The electronic pen of claim 17 , wherein the transmit/receive circuit comprises:

an amplifier circuit;

a feedback circuit operably coupled to the amplifier circuit;

a dependent supply circuit operably coupled to the amplifier circuit and to the feedback circuit; and

a reference circuit operable to produce a reference signal, wherein:

the amplifier circuit generates a comparison signal based on the signal from the touch screen and the reference signal;

the feedback circuit generates a regulation signal based on the comparison signal; and

the dependent supply source generates an adjustment signal based on the regulation signal, wherein the adjustment signal adjusts the signal to produce the ring-back signal.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 21, 2021
From: GRAY, PATRICK TROY; VAN OSTRAND, DANIEL KEITH
To: SIGMASENSE, LLC.
Reel/Frame 057539/0235 →
Continuity (5)
Continuation 17062043 · Oct 2, 2020
Continuation In Part 16445420 · Jun 19, 2019
Continuation In Part 16436698 · Jun 10, 2019
Provisional Application 62910182 · Oct 3, 2019
Related Publication 20220004300A1 · Jan 6, 2022