IP Library Granted Patent US 11,229,138
Granted Patent B1
US 11,229,138 · App. 17/143,556 · Granted Jan 18, 2022

Controller modules

Inventors: Troy Aaron Harvey (Brighton, UT); Jeremy David Fillingim (Salt Lake City, UT)
Assignee: PassiveLogic, Inc.
H05K7/1465H05K7/1468H05K7/1477H05K7/1481
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,229,138
App. No.
17/143,556
Filed
Jan 7, 2021
Granted
Jan 18, 2022
Kind
B1
Art Unit
2841
USPC
361/679.21
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 monitor voltage, current, or power, or check for faults on the wire. The results of such monitoring may be displayed on a screen associated with the controller.

Claims (37)

1. A wiring module for a defined space controller, comprising:

a frame;

A circuit board disposed on the frame;

A plurality of resource connectors mounted on the frame, the plurality of resource connectors configured to attach a corresponding resource wire;

A plurality of module connectors mounted on the frame, the plurality of module connectors configured to operably connect the corresponding resource wire to the defined space controller;

a mounting system configured to slidably mount the wiring module to the defined space controller; and

a processor and memory disposed on the circuit board that is operationally able to provide a plurality of functions to the plurality of resource connectors.

2. The wiring module of claim 1 , wherein the processor and memory disposed on the circuit board is operationally able to modify information passed to a resource attached to a resource connection.

3. The wiring module of claim 1 , wherein the plurality of functions comprise ac motor control, dimmable lighting, real-time current monitoring, real-time voltage monitoring, overcurrent protection, torque protection, or tachometer feedback.

4. The wiring module of claim 1 wherein at least one resource connection comprises a dry contact switch.

5. The wiring module of claim 1 , wherein the plurality of functions comprises at least two of: thermistor, RTD, 1-Wire, 0-10 V Input/Output, 0-20 mA Input/Output, 0-480 VAC Input, 24 VAC Output, or Modbus/RS485 Interface.

6. The wiring module of claim 1 , wherein the plurality of functions comprises at least two of: 120/240 VAC output-2 Amps, or 24 VAC output-2 Amps.

7. The wiring module of claim 1 , wherein the plurality of functions comprises at least two of: claim DC Motor Control Blocks, or 2/24 VDC motor drivers.

8. The wiring module of claim 1 , wherein the plurality of functions comprises at least two of: SPDT relays (10A), or Up to 240 VDC/VAC.

9. The wiring module of claim 1 , wherein at least one of the plurality of connectors comprises being operationally able to provide to a resource associated with a corresponding resource wire one or more of a plurality of functions comprising: AC motor control, dimmable lighting, real-time current monitoring, real-time voltage monitoring, overcurrent protection, torque protection, or tachometer feedback.

10. The wiring module of claim 1 , wherein software associated with memory on the circuit board is operationally able to provide to a resource attached to a resource connection one or more of a plurality of functions comprising: AC motor control, dimmable lighting, real-time current monitoring, real-time voltage monitoring, overcurrent protection, torque protection, or tachometer feedback.

11. The wiring module of claim 1 , wherein the mounting system further comprises a cavity that is configured to catch a hook tab associated with the defined space controller.

12. The wiring module of claim 11 , wherein the mounting system further comprises a spring that is operationally able to be activated by the hook tab.

13. The wiring module of claim 12 , wherein the mounting system further comprises an ejector button configured to move the hook tab associated with the controller when activated, and when doing so activates the spring.

14. The wiring module of claim 1 , wherein the plurality of resource connectors comprise connectors that accept wire from 10 gauge to 26 gauge.

15. The wiring module of claim 1 , wherein the module is smaller than 3″×2″×1.25″.

16. The wiring module of claim 1 , wherein the plurality of resource connectors are operationally able to be configured by hardware on the circuit board to perform different functions.

17. A wiring module for a controller, comprising:

a frame;

A circuit board disposed on the frame;

A resource connector mounted on the frame, the resource connector configured to attach a resource wire;

A module connector mounted on the frame, the module connector configured to operably connect the resource wire to the controller, the resource operationally able to be controlled by the controller;

a mounting system configured to mount the wiring module to the controller; and

a processor and memory disposed on the circuit board that is operationally able to monitor resource wires for at least one of voltage, current, or power.

18. The wiring module of claim 17 wherein the wiring module is operationally coupled with the controller, the controller comprises a display apparatus, and wherein values derived from the monitoring of the resource wire is operationally able to be displayed on the display apparatus.

19. A wiring module for a designated space controller, comprising:

a frame;

A circuit board disposed on the frame;

A resource connector mounted on the frame, the resource connector configured to attach a resource wire;

A module connector mounted on the frame, the module connectors configured to operably connect the resource wire to the designated space controller, the resource operationally able to be controlled by the designated space controller; and

a mounting system configured to slidably mount the wiring module to the controller, the mounting system comprising a back spring, a front spring, and an ejector button, wherein the back spring and the front spring are loaded by the ejector button when the ejector button is pushed into place in the designated space controller.

20. The wiring module of claim 19 , wherein the resource connector is a tool-less lever lock dry contact connector.

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 Jan 7, 2021
From: HARVEY, TROY AARON; FILLINGIM, JEREMY DAVID
To: PASSIVELOGIC, INC.
Reel/Frame 054846/0667 →
Cited By (56)
US 50,632 US 12,196,437 US 12,197,299 US 12,197,508 US 12,210,324 US 12,229,156 US 12,231,255 US 12,231,496 US 12,235,617 US 12,270,560 US 12,271,163 US 12,273,215 US 12,292,720 US 12,333,657 US 12,339,825 US 12,341,624 US 12,346,381 US 12,349,027 US 12,367,443 US 12,372,955 US 12,379,718 US 12,386,827 US 12,393,611 US 12,395,818 US 12,399,467 US 12,399,475 US 12,400,035 US 12,405,581 US 12,406,193 US 12,408,287 US 12,412,003 US 12,432,277 US 12,474,679 US 12,481,259 US 12,523,975 US 12,523,999 US 12,529,491 US 12,541,182 US 12,542,830 US 12,554,687 US 12,556,893 US 12,572,267 US 12,578,696 US 12,579,874 US 12,597,772 US 12,598,207 US 12,628,305 US 12,664,444 US 12,669,790 US 12,687,827 US 12,687,831 US 12,688,437 US 12,699,367 US 12,699,732 US 12,711,287 US 12,711,288