IP Library Granted Patent US 12,408,287
Granted Patent B2
US 12,408,287 · App. 18/659,869 · Granted Sep 2, 2025

Perceptible indicators of wires being attached correctly to controller

Inventors: Troy Aaron Harvey (Brighton, UT); Jeremy David Fillingim (Salt Lake City, UT)
Assignee: PassiveLogic, Inc.
H05K7/1465F24F11/32F24F11/49F24F11/63F24F11/88G01R31/55G05B13/0265G05B15/02G05B19/048G05B23/0216G05B23/0264G05B23/0272G06F1/3209G06F1/3246G06F3/04186G06F3/0482G06F3/04847G06F3/147G06F8/436G06F8/51G06F8/53G06F8/74G06F9/4418G06F30/12G06F30/13G06F30/18G06Q30/0283H02J3/00H04B3/46H04L43/50H04L67/12H04L67/125H04L67/75H04M3/305H04W4/80H04W84/00H05K7/1468H05K7/1477H05K7/1481G06F30/392G06F2111/04G06F2111/16G06F2113/04G06F2113/16G06F2115/12H02J2310/12
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Quick Facts
Patent No.
US 12,408,287
App. No.
18/659,869
Granted
Sep 2, 2025
Kind
B2
Abstract

A module is described which is slidably attachable to a controller. Resource wires are connected to the module through resource connectors. The module has a circuit board that can perform actions. The module can modify the function of its resource connectors. These modifications may be to meet the requirements of resources that are to be connected to the module. The module may be able to register, by means of a signal, when a correct resource wire is attached to the module. The results of such monitoring may be displayed on a screen associated with the controller.

Claims (42)

1. A controller module comprising:

a frame:

a circuit board; disposed on the frame;

a connection to a controller;

a plurality of device connectors mounted on the frame, the plurality of device connectors operably able to connect a device to the controller module through a device wire; and

the circuit board executing a process which includes:

detecting that the device wire has been coupled to one of the plurality of device connectors;

sending information to the controller received from the device through the device wire;

receiving information from the controller indicating device validity; and

reporting the device validity;

line testing technology; and

wherein the line testing technology comprises at least one of: a ground connection, a 24 VAC power connection, a DAC with 0-10V DC analog voltage, a FET with a 1-wire pullup, a high range voltage divider, a low range voltage divider, a 4-20 mA current shunt, a 24 VAC current shunt, a DC offset injector, an electromechanical relay, a 120 VAC output, a current-measuring chip, a control for high current motors, or a feature that can switch 250 volt AC up to 10 amps.

2. The controller module of claim 1 , wherein sending information to the controller comprises comprises sending at least one of: voltage on the device wire; current on the device wire; protocol on the device wire, signal received from the device wire in response to a signal sent by the controller, or fault on the device wire.

3. The controller module of claim 1 , further comprising operational ability to turn on the device associated with the device wire and operational ability to determine how much power is being drawn.

4. The controller module of claim 1 , further comprising operational ability to determine voltage on the device wire when the device associated with that device wire is turned off.

5. The controller module of claim 1 , further comprising operational ability to change characteristics of the device wire.

6. The controller module of claim 5 , wherein further comprising operational ability to change characteristics of the device wire comprises the controller module modifying hardware associated with the device wire.

7. The controller module of claim 6 , further comprising operational ability to determine a voltage, a current, a signal, or a fault.

8. The controller module of claim 1 , further comprising operational ability to report determined validity further comprises a light signaling when the information is valid.

9. A method performed by a controller module for line testing a device, the method comprising:

noticing a device has been operably attached to a wiring pin of a controller module;

sending a signal from the wiring pin to a controller attached to the controller module;

receiving a signal from the controller reporting on validity of the device with reference to the wiring pin;

reporting validity of the device using a reporting feature of the controller module, and

wherein the reporting feature comprises a light associated with the wiring pin.

10. The method of claim 9 , wherein sending a signal from the wiring pin further comprises sending current flowing through the wiring pin.

11. The method of claim 10 , further comprising changing a wiring feature of the wiring pin to match a wiring feature of the device.

12. The method of claim 11 , wherein the wiring feature comprises a wiring fault, a power, a voltage, a current, or a protocol.

13. The method of claim 9 , wherein reporting the validity using the reporting feature comprises turning on the light.

14. The method of claim 9 , further comprising line testing.

15. The method of claim 14 , wherein line testing comprises at least one of: testing for a ground connection, testing for a 24 VAC power connection, testing for a DAC with 0-10V DC analog voltage, testing for a FET with a 1-wire pullup, testing for a high range voltage divider, testing for a low range voltage divider, testing for a 4-20 mA current shunt, testing for a 24 VAC current shunt, testing for a DC offset injector, testing for an electromechanical relay, testing for a 120 VAC output, testing for a current-measuring chip, testing for a control for high current motors, or testing for a feature that can switch 250 volt AC up to 10 amps.

16. A non-transitory computer-readable storage medium configured with instructions for execution by a processor which upon execution performs a method of line testing a device, the method comprising:

instructions for noticing a device has been operably attached to a wiring pin of a controller module;

instructions for sending a signal from the wiring pin to a controller attached to the controller module;

instructions for receiving a signal from the controller reporting on validity of the device with reference to the wiring pin;

instructions for reporting validity of the device using a reporting feature of the controller module,

instructions for line testing, and

wherein line testing comprises at least one of: testing for a ground connection, testing for a 24 VAC power connection, testing for a DAC with 0-10V DC analog voltage, testing for a FET with a 1-wire pullup, testing for a high range voltage divider, testing for a low range voltage divider, testing for a 4-20 mA current shunt, testing for a 24 VAC current shunt, testing for a DC offset injector, testing for an electromechanical relay, testing for a 120 VAC output, testing for a current-measuring chip, testing for a control for high current motors, or testing for a feature that can switch 250 volt AC up to 10 amps.

17. The non-transitory computer-readable storage medium of claim 16 , further comprising instructions for changing characteristics of the wiring pin.

18. The non-transitory computer-readable storage medium of claim 16 , further comprising instructions for modifying hardware associated with the wiring pin.

19. The non-transitory computer-readable storage medium of claim 16 , further comprising instructions for modifying voltage expected for the wiring pin.

20. The non-transitory computer-readable storage medium of claim 16 , further comprising wherein instructions for reporting validity comprises reporting that a light associated with the wiring pin has changed state.

Assignments (2)
SECURITY INTEREST Recorded Nov 19, 2025
From: PASSIVELOGIC, INC.; QUANTUM ALLIANCE LLC
To: JPMORGAN CHASE BANK, N.A.
Reel/Frame 073605/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 9, 2024
From: HARVEY, TROY AARON; FILLINGIM, JEREMY DAVID
To: PASSIVELOGIC, INC.
Reel/Frame 067366/0261 →
Continuity (4)
Continuation 17990350 · Nov 18, 2022
Continuation 17151365 · Jan 18, 2021
Provisional Application 63070460 · Aug 26, 2020
Related Publication 20240349437A1 · Oct 17, 2024
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