IP Library › Granted Patent US 11,870,338
Granted Patent B1
US 11,870,338 · App. 17/876,170 · Granted Jan 9, 2024

Dead time adjusted pulse width modulator

Inventor: Navaneeth Kumar Narayanasamy (Sugarland, TX)
Assignee: TEXAS INSTRUMENTS INCORPORATED
H02M1/38H02M1/0009H02M1/08H02M7/5395
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,870,338
App. No.
17/876,170
Filed
Jul 28, 2022
Granted
Jan 9, 2024
Kind
B1
Art Unit
2842
USPC
327/41
Abstract

A pulse width modulator circuit with circuitry for providing a first and second pulse width modulation signal with dead time periods between the first and second pulse width modulation signals, an input for receiving a signal representative of a current in a load adapted to be driven in response to the first and second pulse width modulation signals, and circuitry coupled to the input for adjusting the dead time periods in response to the signal representative of a current.

Claims (46)

1. A pulse width modulator circuit comprising:

circuitry for providing first and second pulse width modulation signals with dead time periods between the first and second pulse width modulation signals;

an input for receiving a signal representative of a current in a load adapted to be driven in response to the first and second pulse width modulation signals; and

circuitry coupled to the input for adjusting the dead time periods in response to the signal representative of a current.

2. The pulse width modulator circuit of claim 1 wherein the circuitry for providing a pulse width modulation signal and the circuitry for adjusting the dead time periods include a controller.

3. The pulse width modulator circuit of claim 1 wherein the circuitry for adjusting the dead time periods include an analog-to-digital converter.

4. The pulse width modulator circuit of claim 3 wherein the circuitry for adjusting the dead time periods further include a central processing unit.

5. The pulse width modulator circuit of claim 1 wherein the circuitry for adjusting the dead time periods include a central processing unit.

6. The pulse width modulator circuit of claim 1 wherein the circuitry for adjusting the dead time periods include circuitry for detecting a change in trajectory of the signal representative of a current.

7. The pulse width modulator circuit of claim 6 wherein the circuitry for detecting a change in trajectory include an analog to digital converter.

8. The pulse width modulator circuit of claim 6 wherein the circuitry for detecting a change in trajectory includes a slope detector integrated into a controller.

9. The pulse width modulator circuit of claim 6 wherein the circuitry for detecting a change in trajectory includes:

circuitry for detecting a change from a decrease in the signal representative of a current during a first half-cycle of a full cycle of the current in the load; and

circuitry for detecting a change from an increase in the signal representative of a current during a second half-cycle of the full cycle of the current in the load.

10. The pulse width modulator circuit of claim 1 wherein the circuitry for adjusting the dead time periods include:

a pulse width modulator peripheral for generating a pulse width modulation control signal, in response to which the first and second pulse width modulation signals are generated;

a counter; and

circuitry coupled to the counter for starting the counter in response to a transition of the pulse width modulation control signal and stopping the counter in response to a change in trajectory of the signal representative of a current.

11. The pulse width modulator circuit of claim 10 wherein the transition is a low-to-high transition during a positive half-cycle of the current in a load.

12. The pulse width modulator circuit of claim 10 wherein the transition is a high-to-low transition during a negative half-cycle of the current in a load.

13. The pulse width modulator circuit of claim 1 and further including:

an output for coupling an output voltage to the load, the current in the load responsive to the output voltage;

a pulse width modulator peripheral for generating a pulse width modulation control signal, in response to which the first and second pulse width modulation signals are generated; and

circuitry for measuring actual dead time between a transition of the pulse width modulation control signal and a transition of the output voltage.

14. The pulse width modulator circuit of claim 13 and further including circuitry for detecting the transition of the output voltage in response to a change in trajectory of the signal representative of the current.

15. The pulse width modulator circuit of claim 13 wherein the circuitry for providing a first and second pulse width modulation signal adjusts at least a first dead time period, in the dead time periods, in response to a measure of the actual dead time.

16. A pulse width modulator system comprising:

circuitry for providing first and second pulse width modulation signals with dead time periods between the first and second pulse width modulation signals;

an input for receiving a signal representative of a current in a load adapted to be driven in response to the first and second pulse width modulation signals;

circuitry coupled to the input for adjusting the dead time periods in response to the signal representative of a current;

a first switch driver adapted to receive the first pulse width modulation signal;

a second switch driver adapted to receive the second pulse width modulation signal;

a first switching circuit coupled to an output of the first switch driver; and

a second switching circuit coupled to an output of the second switch driver.

17. The pulse width modulator system of claim 16 and further including:

an output for coupling an output voltage to the load, the current in the load responsive to the output voltage; and

a current sensor coupled to the output and operable to provide the signal representative of a current.

18. The pulse width modulator system of claim 16 and further including:

an output for coupling an output voltage to the load, the current in the load responsive to the output voltage;

a pulse width modulator peripheral for generating a pulse width modulation control signal, in response to which the first and second pulse width modulation signals are generated; and

circuitry for measuring actual dead time between a transition of the pulse width modulation control signal and a change in trajectory of the signal representative of the current.

19. A method of operating a pulse width pulse width modulator circuit comprising:

providing first and second pulse width modulation signals with dead time periods between the first and second pulse width modulation signals;

receiving a signal representative of a current in a load adapted to be driven in response to the first and second pulse width modulation signals; and

adjusting the dead time periods in response to the signal representative of a current.

20. The method of claim 19 wherein the adjusting step includes adjusting the dead time periods in response to a change in trajectory of the signal representative of a current.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 28, 2022
From: NARAYANASAMY, NAVANEETH KUMAR
To: TEXAS INSTRUMENTS INCORPORATED
Reel/Frame 060660/0756 →
Cited By (39)
US 12,194,870 US 12,214,677 US 12,220,992 US 12,225,696 US 12,261,558 US 12,279,402 US 12,284,791 US 12,316,257 US 12,323,080 US 12,328,083 US 12,334,852 US 12,341,454 US 12,348,157 US 12,368,391 US 12,401,293 US 12,401,294 US 12,401,295 US 12,413,158 US 12,457,717 US 12,457,718 US 12,457,719 US 12,457,720 US 12,457,721 US 12,457,722 US 12,464,690 US 12,484,202 US 12,484,203 US 12,525,871 US 12,531,475 US 12,537,442 US 12,562,638 US 12,580,477 US 12,620,891 US 12,627,218 US 12,640,643 US 12,647,020 US 12,652,781 US 12,745,368 US 12,745,369