IP Library Patent Application 16292876
Patent Application
App. No. 16/292,876

RIDE THROUGH MODE IN LED BACKLIGHT DRIVER FOR AUTOMOTIVE IDLE STOP AND COLD CRANK OPERATION

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Quick Facts
Patent No.
US None
App. No.
16/292,876
Abstract

A circuit comprising a first regulator coupled to a voltage input, a second regulator coupled to a voltage output and a switch coupled to the first regulator and the second regulator, wherein the switch is configured to provide voltage to a load from the voltage input when the voltage input is greater than a first predetermined voltage, and to provide voltage to the load from the voltage output when the voltage input is lower than a second predetermined voltage.

Claims (29)

1 . A circuit comprising:

a first regulator coupled to a voltage input;

a second regulator coupled to a voltage output; and

a switch coupled to the first regulator and the second regulator, wherein the switch is configured to provide voltage to a load from the voltage input when the voltage input is greater than a first predetermined voltage, and to provide voltage to the load from the voltage output when the voltage input is lower than a second predetermined voltage.

2 . The circuit of claim 1 wherein the first regulator comprises a control input that disables the first regulator when the voltage input is lower than the first predetermined voltage.

3 . The circuit of claim 1 wherein the first predetermined voltage is equal to the second predetermined voltage.

4 . The circuit of claim 1 wherein the first regulator comprises a control input that enables the first regulator when the voltage input is higher than the first predetermined voltage.

5 . The circuit of claim 1 wherein the second regulator comprises a control input that enables the second regulator when the voltage input is lower than the first predetermined voltage.

6 . The circuit of claim 1 wherein the second regulator comprises a control input that disables the second regulator when the voltage input is higher than the first predetermined voltage.

7 . The circuit of claim 1 wherein the first regulator comprises a transistor.

8 . The circuit of claim 7 wherein the second regulator comprises a transistor.

9 . The circuit of claim 1 wherein the switch comprises an operational amplifier.

10 . The circuit of claim 1 wherein the switch comprises a NAND gate.

11 . The circuit of claim 1 wherein the switch comprises an inverter.

12 . The circuit of claim 1 wherein the switch comprises a transistor.

13 . The circuit of claim 1 wherein the switch comprises a plurality of transistors.

14 . The circuit of claim 1 wherein the switch comprises a predetermined voltage input.

15 . The circuit of claim 1 wherein the switch comprises a zener diode.

16 . A method for providing a voltage comprising:

detecting a voltage at an input;

providing current from the input to a circuit if the voltage is greater than a predetermined voltage; and

providing current from an output to the circuit if the voltage is less than the predetermined voltage.

17 . The method of claim 16 wherein detecting the voltage at the input comprises comparing the voltage to a reference voltage.

18 . The method of claim 16 wherein providing the current from the input to the circuit if the voltage is greater than the predetermined voltage comprises providing the current from the input to the circuit through a first diode if the voltage is greater than the predetermined voltage.

19 . The method of claim 18 wherein providing the current from the output to the circuit if the voltage is less than the predetermined voltage comprises providing the current from the output to the circuit through a second diode if the voltage is less than the predetermined voltage.

20 . In a circuit comprising a first regulator coupled to a voltage input, wherein the first regulator comprises a transistor and a control input that disables the first regulator when the voltage input is lower than a first predetermined voltage and that enables the first regulator when the voltage input is higher than the first predetermined voltage, a second regulator coupled to a voltage output, wherein the second regulator comprises a transistor and a control input that enables the second regulator when the voltage input is lower than the first predetermined voltage and that disables the second regulator when the voltage input is higher than the first predetermined voltage and a switch coupled to the first regulator and the second regulator, wherein the switch is configured to provide voltage to a load from the voltage input when the voltage input is greater than the first predetermined voltage, and to provide voltage to the load from the voltage output when the voltage input is lower than a second predetermined voltage, wherein the first predetermined voltage is equal to the second predetermined voltage, wherein the switch comprises an operational amplifier, a NAND gate, an inverter, a plurality of transistors, a predetermined voltage input and a zener diode, a method comprising:

detecting a voltage at an input by comparing the voltage to a reference voltage;

providing current from the input to a circuit if the voltage is greater than a predetermined voltage by providing the current from the input to the circuit through a first diode if the voltage is greater than the predetermined voltage; and

providing current from an output to the circuit if the voltage is less than the predetermined voltage by providing the current from the output to the circuit through a second diode if the voltage is less than the predetermined voltage.

Assignments (2)
ASSIGNMENT OF PATENT SECURITY INTEREST PREVIOUSLY RECORDED AT REEL/FRAME (049894/0523) Recorded Feb 17, 2023
From: HSBC BANK USA, NATIONAL ASSOCIATION, AS RESIGNING AGENT
To: JPMORGAN CHASE BANK, N.A., AS SUCCESSOR AGENT
Reel/Frame 062784/0040 →
SECURITY INTEREST Recorded Jul 29, 2019
From: SEMTECH CORPORATION; SEMTECH NEW YORK CORPORATION; SIERRA MONOLITHICS, INC.; SEMTECH EV, INC.; TRIUNE SYSTEMS, L.L.C.; TRIUNE IP, LLC
To: HSBC BANK USA, NATIONAL ASSOCIATION, AS ADMINISTRATIVE AGENT
Reel/Frame 049894/0523 →