IP Library › Granted Patent US 11,821,938
Granted Patent B2
US 11,821,938 · App. 17/540,416 · Granted Nov 21, 2023

Rigid-flex printed circuit board including built-in diagnostic

Inventor: Gomathi Ganesh Narayanan (Karnataka, IN)
Assignee: HAMILTON SUNDSTRAND CORPORATION
G01R31/2801G08B7/06G08B21/185H05K1/147
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Quick Facts
Patent No.
US 11,821,938
App. No.
17/540,416
Granted
Nov 21, 2023
Kind
B2
Abstract

A rigid-flex printed circuit board (PCB) includes at least one rigid PCB including at least one electrical component, a flex circuit, and a built-in diagnostic circuit. The flex circuit includes at least one end connected to the at least one rigid PCD. The flex circuit includes at least one signal trace configured to deliver an electrical signal to the at least one electrical component. The built-in diagnostic circuit is configured to detect a fault in the rigid-flex PCB.

Claims (42)

1. A rigid-flex printed circuit board (PCB) comprising:

at least one rigid PCB including at least one electrical component;

a flex circuit including at least one end connected to the at least one rigid PCB, the flex circuit including at least one signal trace configured to deliver an electrical signal to the at least one electrical component;

a built-in diagnostic circuit configured to detect a fault in the rigid-flex PCB, the built-in diagnostic circuit comprising:

a diagnostic device installed on the at least one rigid PCB; and

a diagnostic trace formed on the flex circuit,

wherein the diagnostic device detects the circuit fault in response to an open circuit occurring in the diagnostic trace,

wherein the diagnostic device generates an alert in response to detecting the fault, the fault including one or more of a light alert, a sound alert, a haptic alert, and an interrupt to system software to initiate a safe shutdown or a fail-safe procedure, and

wherein the diagnostic trace has a serpentine profile that meanders from a first edge trace portion formed on the first rigid PCB and extending through the first joint region to a second edge trace portion formed on the second rigid PCB and extending through the second joint region.

2. The rigid-flex PCB of claim 1 , wherein the at least one rigid PCB comprises:

a first rigid PCB including a first electrical component the first electrical component including at least one of a transistor, a capacitor, a resistor, a logic gate, and a processor, and the first rigid PCB including a first edge coupled to a first end of the flex circuit to establish a first joint region,

a second rigid PCB including a second electrical component, the second rigid PCB including a second edge coupled to a second end of the flex circuit opposite the first end to establish a second joint region,

wherein the first and second rigid PCBs are formed from a rigid material.

3. The rigid-flex PCB of claim 1 , wherein the diagnostic device is installed on the first rigid PCB, a signal source is installed on the second rigid PCB, and the diagnostic trace establishes signal communication between the diagnostic device and the signal source.

4. The rigid-flex PCB of claim 3 , wherein the first edge trace includes a first proximate end that is connected to the diagnostic trace formed on the flex circuit and a first distal end that is connected to the diagnostic device, and wherein the second edge trace includes a second proximate end that is connected to the signal source and a second distal end that is connected to the diagnostic trace formed on the flex circuit.

5. The rigid-flex PCB of claim 4 , wherein the diagnostic device is a light emitting diode (LED) configured to emit light in response to a closed circuit between the signal source and the diagnostic device, and configured to stop emitting light in response to an open circuit between the signal source and the diagnostic device.

6. The rigid-flex PCB of claim 4 , wherein the diagnostic device is a processor configured to execute at least one of a trace conductivity test and a Power on Built in Test (PBIT) in response to powering on the processor, the processor configured to generate the alert in response to an open circuit between the signal source and the diagnostic device.

7. The rigid-flex PCB of claim 4 , wherein the at least one signal trace has a first size and the diagnostic trace has a second size that is less than the first width.

8. The rigid-flex PCB of claim 4 , wherein the at least one signal trace is located between a first portion of the diagnostic trace formed on the flex circuit and a second portion of the diagnostic trace formed on the flex circuit.

9. The rigid-flex PCB of claim 1 , wherein the built-in diagnostic circuit comprises:

a first edge trace that includes a first proximate end that is connected to the diagnostic trace formed on the flex circuit and a first distal end that is connected to a first test pad; and

a second edge trace that includes a second proximate end that is connected to a second test pad and a second distal end that is connected to the diagnostic trace formed on the flex circuit.

10. The rigid-flex PCB of claim 9 , wherein the first test pad is configured to be connected to a first input of a diagnostic device and the second test pad is configured to be connected to a second input of the diagnostic device.

11. The rigid-flex PCB of claim 10 , wherein the diagnostic device measures one or more of resistance between the first test pad and the second test pad, current between the first test pad and the second test pad, and voltage between the first test pad and the second test pad.

12. The rigid-flex PCB of claim 1 , wherein the flex circuit includes a first end coupled to a first edge of the at least one rigid PCB to establish a first joint region and a second end coupled to a second edge of a PCB connector to establish a second joint region.

13. The rigid-flex PCB of claim 12 , wherein the PCB connected is configured to establish signal connection with the flex circuit and a second rigid PCB.

14. The rigid-flex PCB of claim 13 , wherein the diagnostic trace has a serpentine profile that meanders from a first edge trace portion formed on the at least one rigid PCB and extending through the first joint region to a second edge trace portion formed on the PCB connector and extending through the second joint region.

15. The rigid-flex PCB of claim 14 , wherein the diagnostic device is installed on the at least one rigid PCB, a signal source is installed on the second rigid PCB, and the diagnostic trace establishes signal communication between the diagnostic device and the signal source.

16. The rigid-flex PCB of claim 15 , wherein the first edge trace includes a first proximate end that is connected to the diagnostic trace formed on the flex circuit and a first distal end that is connected to the diagnostic device, wherein the second edge trace includes a second proximate end that is connected to a connection terminal installed on the PCB connector and a second distal end that is connected to the diagnostic trace formed on the flex circuit, and wherein the second rigid PCB includes a signal trace including a third proximate end connected to the signal source and a third distal end connected to a second connection terminal that is configured to establish signal communication with the first connection terminal.

17. The rigid-flex PCB of claim 16 , wherein the diagnostic device is a light emitting diode (LED) configured to emit light in response to a closed circuit between the signal source and the diagnostic device and configured to stop emitting light in response to an open circuit between the signal source and the diagnostic device.

18. A rigid-flex printed circuit board (PCB) comprising:

at least one rigid PCB including at least one electrical component;

a flex circuit including at least one end connected to the at least one rigid PCB, the flex circuit including at least one signal trace configured to deliver an electrical signal to the at least one electrical component;

a built-in diagnostic circuit configured to detect a fault in the rigid-flex PCB, the built-in diagnostic circuit comprising:

a diagnostic device installed on the at least one rigid PCB; and

a diagnostic trace formed on the flex circuit,

wherein the diagnostic device detects the circuit fault in response to an open circuit occurring in the diagnostic trace,

wherein the diagnostic device generates an alert in response to detecting the fault, the fault including one or more of a light alert, a sound alert, a haptic alert, and an interrupt to system software to initiate a safe shutdown or a fail-safe procedure,

wherein the built-in diagnostic circuit comprises:

a first edge trace that includes a first proximate end that is connected to the diagnostic trace formed on the flex circuit and a first distal end that is connected to a first test pad; and

a second edge trace that includes a second proximate end that is connected to a second test pad and a second distal end that is connected to the diagnostic trace formed on the flex circuit, and

wherein the first test pad is configured to be connected to a first input of a diagnostic device and the second test pad is configured to be connected to a second input of the diagnostic device.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 13, 2021
From: GOODRICH AEROSPACE SERVICES PRIVATE LIMITED
To: HAMILTON SUNDSTRAND CORPORATION
Reel/Frame 058963/0847 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 2, 2021
From: NARAYANAN, GOMATHI GANESH
To: GOODRICH AEROSPACE SERVICES PRIVATE LIMITED
Reel/Frame 058267/0679 →
Priority Claims (1)
IN 202111044400 · Sep 30, 2021 · national
Continuity (1)
Related Publication 20230101751A1 · Mar 30, 2023