IP Library Granted Patent US 8,513,895
Granted Patent B2
US 8,513,895 · App. 12/762,386 · Granted Aug 20, 2013

High efficiency LED driver with current source regulations

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Quick Facts
Patent No.
US 8,513,895
App. No.
12/762,386
Granted
Aug 20, 2013
Kind
B2
Abstract

The present invention provides a control circuit for LED driver. A voltage-feedback circuit is coupled to LEDs to sense a voltage-feedback signal for generating a voltage loop signal. Current sources are coupled to the LEDs to control LED currents. A detection circuit is connected to sense voltages of current sources for generating a current-source loop signal in response to a minimum voltage of the current sources. Furthermore, a buffer circuit generates a feedback signal in accordance with the voltage loop signal and the current-source loop signal. The feedback signal is coupled to limit a maximum voltage of the LEDs and regulate the minimum voltage across the current sources.

Claims (43)

1. A controller for LED driver comprising:

a voltage-feedback circuit coupled to LEDs to sense a voltage-feedback signal for generating a voltage loop signal;

current sources coupled to the LEDs to control LED currents;

a detection circuit coupled to sense voltages of the current sources for generating a current-source loop signal in response to a minimum voltage of the current sources, wherein the detection circuit comprises:

a sample-and-hold circuit coupled to sense the voltages of the current sources and generating current-source signals; and

amplifiers receiving the current-source signals to generate the current-source loop signal;

wherein the amplifiers are connected in parallel; the current-source loop signal is generated in response to the minimum voltage of the current-source signals; and

a buffer circuit generating a feedback signal in accordance with the voltage loop signal and the current-source loop signal;

wherein the voltage-feedback signal is correlated to a maximum supply voltage to the LEDs; the feedback signal is coupled to limit the maximum voltage of the LEDs and control the minimum voltage across the current sources.

2. The controller for LED driver as claimed in claim 1 , in which the feedback signal is coupled to a switching controller; the switching controller generates a supply voltage to the LEDs.

3. The controller for LED driver as claimed in claim 1 , in which the voltage-feedback circuit has a reference voltage compared with the voltage-feedback signal to generate the voltage loop signal; the detection circuit has a threshold compared with the voltages of the current sources to generate the current-source loop signal.

4. The controller for LED driver as claimed in claim 1 , further comprising:

a control terminal coupled to receive a control signal for controlling an intensity of the LEDs; wherein a control current is generated in response to the control signal.

5. The controller for LED driver as claimed in claim 1 , in which the voltage-feedback circuit comprising:

a first operational amplifier coupled to receive the voltage-feedback signal for generating the voltage loop signal; and

a first capacitor coupled from an output of the first operational amplifier to a ground for a frequency compensation.

6. The controller for LED driver as claimed in claim 1 , in which the buffer circuit comprising:

a first buffer amplifier coupled to receive the voltage loop signal; and

a second buffer amplifier coupled to receive the current-source loop signal;

wherein the first buffer amplifier and the second buffer amplifier are connected in parallel for generating the feedback signal.

7. The controller for LED driver as claimed in claim 1 , in which the sample-and-hold circuit comprising:

voltage-clamp transistors coupled to the current sources for clamping the voltage of current sources under a maximum value;

sample-switches connected with voltage-clamp transistors in series to sample the voltages of the current sources; and

hold-capacitors coupled to the sample-switches for generating current-source signals;

wherein a threshold voltage is connected to gates of the voltage-clamp transistors.

8. A LED driver comprising:

current sources coupled to LEDs to control LED currents;

a detection circuit coupled to sense voltages of the current sources for generating a current-source loop signal in response to a minimum voltage of the current sources, wherein the detection circuit comprises:

a sample-and-hold circuit coupled to sense the voltages of the current sources for generating current-source signals; and

amplifiers receiving the current-source signals to generate the current-source loop signal;

wherein the amplifiers are connected in parallel; the current-source loop signal is generated in response to the minimum voltage of the current-source signals; and

a buffer circuit generating a feedback signal in accordance with the current-source loop signal;

wherein the feedback signal is coupled to control the minimum voltage across the current sources.

9. The LED driver as claimed in claim 8 , in which the feedback signal is coupled to a switching controller; the switching controller generates the LED currents.

10. The LED driver as claimed in claim 8 , in which the detection circuit has a threshold compared with the voltages of current sources to generate the current-source loop signal.

11. The LED driver as claimed in claim 8 , in which the sample-and-hold circuit comprising:

voltage-clamp transistors coupled to the current sources for clamping the voltage of the current sources under a maximum value;

sample-switches connected with the voltage-clamp transistors in series to sample the voltage of the current sources; and

hold-capacitors coupled to the sample-switches for generating the current-source signals;

wherein a threshold voltage is connected to gates of voltage-clamp transistors.

12. The LED driver as claimed in claim 8 , further comprising:

a reference signal generation circuit generating a reference signal coupled to the current sources to determine the LED currents; a control signal is coupled to turn on or turn off the reference signal; wherein a rising time and a falling time of the reference signal is determined by a charge-and-discharge circuit.

13. The LED driver as claimed in claim 8 , further comprising: a protection circuit generating a fault signal to turn off the LED currents; wherein the fault signal will be generated once the current source voltage is higher than an over-voltage threshold.

Assignments (5)
RELEASE OF SECURITY INTEREST IN PATENTS RECORDED AT RECORDED AT REEL 046410, FRAME 0933 Recorded Jun 22, 2023
From: DEUTSCHE BANK AG NEW YORK BRANCH, AS COLLATERAL AGENT
To: SEMICONDUCTOR COMPONENTS INDUSTRIES, LLC; FAIRCHILD SEMICONDUCTOR CORPORATION
Reel/Frame 064072/0001 →
PATENT SECURITY AGREEMENT Recorded Jun 22, 2018
From: SEMICONDUCTOR COMPONENTS INDUSTRIES, LLC
To: DEUTSCHE BANK AG NEW YORK BRANCH, AS COLLATERAL AGENT
Reel/Frame 046410/0933 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 25, 2017
From: FAIRCHILD (TAIWAN) CORPORATION (FORMERLY SYSTEM GENERAL CORPORATION)
To: SEMICONDUCTOR COMPONENTS INDUSTRIES, LLC
Reel/Frame 042328/0318 →
CHANGE OF NAME Recorded May 2, 2016
From: SYSTEM GENERAL CORP.
To: FAIRCHILD (TAIWAN) CORPORATION
Reel/Frame 038594/0168 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 29, 2010
From: YANG, TA-YUNG; AHN, BYUNG-HAK; CHUNG, JIN-HWA; CHEN, CHUN-CHI
To: SYSTEM GENERAL CORP.
Reel/Frame 024306/0679 →