IP Library Granted Patent US 11,289,893
Granted Patent B2
US 11,289,893 · App. 16/718,484 · Granted Mar 29, 2022

Devices, systems and methods for avoiding fault propagation in safety systems

Inventor: Dieter Jozef Joos (Belgium, BE)
Assignee: SEMICONDUCTOR COMPONENTS INDUSTRIES, LLC
H02H3/08H01L27/0248H01L27/0255
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Quick Facts
Patent No.
US 11,289,893
App. No.
16/718,484
Granted
Mar 29, 2022
Kind
B2
Abstract

The various embodiments of the present disclosure are directed to devices, systems and methods for mitigating fault propagation between two or more safety components. A system, for avoiding propagation of a fault between two or more safety components may include a control unit outputting an input signal, a first safety component electrically coupled to receive the input signal from the control unit; a second safety component electrically coupled to receive the input signal from the control unit; and a first isolating component electrically disposed between and further coupling the control unit with the first safety component. Each of the first safety component and the second safety component are electrically coupled to the control unit by at least a common lead. The first isolating component prevents a first IC fault arising with respect to the first safety component from propagating, via the input signal, to the second safety component.

Claims (59)

1. A package, for use in avoiding fault propagation in a safety system, comprising:

a single socket configured to receive a die pin for a die;

wherein the die pin is coupled, directly via the socket, to a safety component comprising a safety function and a safety mechanism; and

wherein the die includes a control unit integrated circuit outputting a first control signal on the die pin;

the socket further comprising:

a first output pin first electrically, directly and separately coupling the die pin to the safety function;

wherein the safety function is configured to receive the control signal from the control unit via the die pin and the first output pin; and

a second output pin second electrically, directly and separately coupling the die pin to the safety mechanism;

wherein the safety mechanism is configured to receive the control signal from the control unit via the die pin and the second output pin; and

an isolating member electrically isolating, on the socket, the first output pin from the second output pin; and

wherein the isolating member prevents a fault arising with respect to one of the safety function and the safety mechanism from propagating, via the socket, to another of the safety function and the safety mechanism.

2. The package of claim 1 ,

wherein the isolating member is a current isolating member.

3. The package of claim 2 ,

wherein the isolating member is a single isolating member configured to provide an impedance of at least three times a common impedance that would arise between the die pin and each of the first output pin and the second output pin absent use of the single isolating member.

4. The package of claim 1 ,

wherein the socket is configured to split the control signal into a first control signal provided to the safety function via a first control signal connection coupled to the first output pin and a second control signal provided to the safety mechanism via a second control signal connection coupled to the second output pin.

5. The package of claim 4 ,

wherein the isolating member prevents a first IC fault arising relative to the first output pin from propagating to the safety mechanism; and

wherein the isolating member prevents a second IC fault arising relative to the second output pin from propagating to the safety function.

6. A system, comprising:

a control unit outputting an input signal to a safety component via a common lead;

wherein a common impedance arises between the control unit and the common lead;

wherein the safety component comprises:

a safety function;

a safety mechanism;

an isolating component; and

an isolating lead;

wherein and within the safety component, the common lead is split, in a parallel circuit configuration, into a first common lead and a second common lead;

wherein the control unit is coupled to the isolating component by the common impedance, the common lead and the first common lead;

wherein the control unit is coupled to the safety mechanism by the common impedance, the common lead and the second common lead;

wherein the isolating component is coupled to the safety function by the isolating lead; and

wherein the isolating component prevents a first fault arising with respect to the safety function from propagating, via the first common lead and the second common lead, to the safety mechanism.

7. The system of claim 6 ,

wherein the isolating component includes a current isolating component.

8. The system of claim 6 ,

wherein the isolating component includes a voltage isolating component.

9. The system of claim 6 , further comprising:

a second isolating component electrically disposed between and further coupling the control unit with the safety mechanism; and

wherein the second isolating component prevents a second fault arising with respect to the safety mechanism from propagating, via the common lead, to the safety function.

10. The system of claim 9 ,

wherein each of the isolating component and the second isolating component are current isolating components having substantially identical impedances.

11. The system of claim 9 ,

wherein a first fault results in an insubstantial change in the input signal as provided to the safety mechanism; and

wherein the second fault results in an insubstantial change in the input signal as provided to the safety function.

12. The system of claim 9 ,

wherein at least one of first fault and the second fault comprises one of a short-circuit fault and an open-circuit fault.

13. The system of claim 12 ,

wherein during the first fault, a voltage potential reduction of the input signal provided to the safety mechanism is between seventy-five percent (75%) and one-hundred percent (100%) of an output voltage potential for the input signal generated by the control unit during non-faulty operating conditions.

14. The system of claim 12 ,

wherein during the second fault, a voltage potential of the input signal provided to the safety function is between twenty-five percent (25%) and one-hundred percent (100%) of an output voltage potential for the input signal generated by the control unit during non-faulty operating conditions.

15. The system of claim 6 ,

wherein the system is for use with at least one of a motor vehicle safety system, a vehicle air bag system, a self-driving vehicle system, a vehicle lane keeping assist system, and a vehicle automated braking system.

16. The system of claim 6 ,

wherein prevention of a second IC fault arising with respect to the safety mechanism from propagating, via the input signal, to the safety function facilitates continued operation of a vehicle system in a fail functional mode of operation.

17. The system of claim 16 ,

wherein the vehicle system is at least one of a motor vehicle safety system, a vehicle air bag system, a self-driving vehicle system, a vehicle lane keeping assist system, and a vehicle automated braking system.

18. The system of claim 16 ,

wherein the vehicle system is an aircraft system.

Assignments (3)
RELEASE OF SECURITY INTEREST IN PATENTS RECORDED AT REEL 054090, FRAME 0617 Recorded Jun 23, 2023
From: DEUTSCHE BANK AG NEW YORK BRANCH, AS COLLATERAL AGENT
To: SEMICONDUCTOR COMPONENTS INDUSTRIES, LLC; FAIRCHILD SEMICONDUCTOR CORPORATION
Reel/Frame 064081/0167 →
SECURITY INTEREST Recorded Oct 16, 2020
From: SEMICONDUCTOR COMPONENTS INDUSTRIES, LLC; FAIRCHILD SEMICONDUCTOR CORPORATION; ON SEMICONDUCTOR CONNECTIVITY SOLUTIONS, INC.
To: DEUTSCHE BANK AG NEW YORK BRANCH, AS COLLATERAL AGENT
Reel/Frame 054090/0617 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 18, 2019
From: JOOS, DIETER JOZEF
To: SEMICONDUCTOR COMPONENTS INDUSTRIES, LLC
Reel/Frame 051316/0748 →