IP Library Granted Patent US 7,977,887
Granted Patent B2
US 7,977,887 · App. 12/283,076 · Granted Jul 12, 2011

Low leakage current LED drive apparatus with fault protection and diagnostics

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Quick Facts
Patent No.
US 7,977,887
App. No.
12/283,076
Granted
Jul 12, 2011
Kind
B2
Abstract

An LED drive apparatus includes a microprocessor having a configurable input/output port, a FET current control transistor, and a diagnostic interface circuit. The diagnostic interface circuit includes a transistor having an input coupled to a junction between the FET and the LED, and an output coupled to an input of the FET. The microprocessor input/output port is coupled to the input of the FET for turning the LED ON and OFF and performing fault protection and diagnostics. At each desired transition of the LED, the microprocessor configures its input/output port as an output and momentarily sets the output state to achieve the desired transition, then re-configures the input/output port to determine the conduction state of the diagnostic interface circuit transistor, and determines an output fault status of the drive apparatus based on the determined conduction state.

Claims (19)

1. Drive apparatus for an LED, comprising:

a controller having an I/O port selectively configurable as an output or an input, said I/O port being coupled to a control terminal of the drive apparatus;

a FET having an input coupled to said control terminal, and an output coupled to the LED via an output terminal of the drive apparatus for selectively completing a current path through the LED to selectively turn the LED ON and OFF;

a diagnostic interface circuit including a transistor having an input coupled to the output terminal of said drive apparatus and a output coupled to the control terminal of said drive apparatus, said transistor having a conduction state that is diagnostic of an output fault condition; and

control means effective at a desired ON-to-OFF or OFF-to-ON transition of said LED to first configure said I/O port as an output for a predetermined interval to initiate the desired transition of said LED, and then re-configure said I/O port as an input for sampling a voltage at said control terminal to determine the conduction state of said transistor and diagnose said output fault condition.

2. The drive apparatus of claim 1 , where:

the desired transition of said LED is an OFF-to-ON transition, and the transistor of said diagnostic interface circuit has an OFF-conduction state if there is a short-to-battery output fault condition, but otherwise has an ON-conduction state.

3. The drive apparatus of claim 2 , where:

the ON-conduction state of the diagnostic interface transistor latches the FET on to complete the OFF-to-ON transition of said LED.

4. The drive apparatus of claim 2 , where:

said control means is effective when the sampled voltage is indicative of the short-to-battery output fault condition to re-configure said I/O port as an output for turning OFF said FET and producing an output fault condition indication.

5. The drive apparatus of claim 1 , where:

the desired transition of said LED is an ON-to-OFF transition, and the transistor of said diagnostic interface circuit has an ON-conduction state if there is a short-to-ground or open-circuit output fault condition, but otherwise has an OFF-conduction state.

6. The drive apparatus of claim 5 , where:

the OFF-conduction state of the diagnostic interface circuit transistor latches the FET OFF to complete the ON-to-OFF transition of said LED.

7. The drive apparatus of claim 5 , where:

said control means is effective when the sampled voltage is indicative of the short-to-ground output fault condition to re-configure said I/O port as an output for holding said FET OFF and producing an output fault condition indication.

8. The drive apparatus of claim 5 , where:

said diagnostic interface circuit includes a capacitor coupled to said output terminal that charges through the diagnostic interface circuit transistor at a first charging rate if there is an open-circuit output fault condition, and that charges through said LED at a second rate that is faster than said first rate if there is no output fault condition to terminate the ON-conduction state of said diagnostic interface circuit transistor before said control means re-configures said I/O port as an input for sampling the voltage at said control terminal.

Assignments (2)
CHANGE OF NAME Recorded Sep 18, 2024
From: DELPHI TECHNOLOGIES IP LIMITED
To: BORGWARNER US TECHNOLOGIES LLC
Reel/Frame 068985/0968 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 23, 2018
From: DELPHI TECHNOLOGIES, INC
To: DELPHI TECHNOLOGIES IP LIMITED
Reel/Frame 045113/0958 →