IP Library Granted Patent US 10,921,761
Granted Patent B2
US 10,921,761 · App. 15/886,072 · Granted Feb 16, 2021

Power drop assembly with processor and memory

Inventors: David R. Hall (Provo, UT); Jerome Miles (Spanish Fork, UT); Christopher Jones (Spanish Fork, UT); Casey Webb (Spanish Fork, UT); Justin Robinson (Provo, UT)
Assignee: Hall Labs LLC
G05B15/02B65H75/446B65H75/4449B65H75/4484B65H75/4486F21V21/38F21V33/00G05F1/66H01B7/06H01B9/00H01H63/36H01R13/46H01R13/70H02G11/02B65H2701/34
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Quick Facts
Patent No.
US 10,921,761
App. No.
15/886,072
Granted
Feb 16, 2021
Kind
B2
Abstract

There is disclosed a power drop assembly which includes a housing and a reel positioned and rotatable within it. Preferably, the device determines, not only whether power is available, but how much power is available. Preferably, the power drop assembly also contains a processor and non-transitory storage medium, so that user settings and profiles as well as settings and profiles for the power drop assembly can be stored and run. Additionally, the power drop assembly preferably contains a wireless transceiver which connects to a home Wi-Fi network and then to a cloud account, user profiles and settings, and settings and profiles for the power drop assembly can be saved on the cloud account. In this way multiple users can use the power drop assembly without contradicting instructions or resetting the power drop assembly every time it is used.

Claims (65)

1. A power drop assembly comprising:

a housing;

a reel positioned and rotatable within the housing;

a power cord connected at one end to the reel;

at least one power outlet attached to the power cord;

an electrical input;

a switch between the electrical input and the power cord, wherein the switch is adapted to connect and disconnect the electrical input and the power cord; and

a controller in communication with the switch, wherein the switch receives instructions from the controller; and

power throttling circuitry for controlling the amount of current passing through the power cord;

non-transitory storage medium for storing multiple user profiles and multiple user preferences within each user profile;

a processor;

wherein the processor manages the user preferences of each user profile to coordinate the user preferences to overcome any contradiction or interference between the user preferences of the multiple user profiles for controlling the amount of current passing through the power cord;

wherein the electrical input includes a female power output which is separate from the switch between the electrical input and the power cord and is configured to allow multiple power drop assemblies to be electrically connected in a daisy chain.

2. The power drop assembly of claim 1 , further comprising a wireless transceiver connected to the controller.

3. The power drop assembly of claim 2 , wherein a smart device connects to the controller via the wireless transceiver.

4. A power drop assembly comprising:

a housing;

a reel positioned and rotatable within the housing;

a power cord connected at one end to the reel;

at least one power outlet attached to the power cord;

an electrical input;

a switch between the electrical input and the power cord, wherein the switch is adapted to connect and disconnect the electrical input and the power cord; and

a controller in communication with the switch, wherein the switch receives instructions from the controller;

power throttling circuitry for controlling the amount of current passing through the power cord;

a wireless transceiver connected to the controller;

a processor and non-transitory storage medium;

a smart device connected to the controller;

non-transitory storage medium for storing user profiles and user preferences within each user profile;

a processor;

wherein the processor manages the user preferences of each user profile to coordinate the user preferences to overcome any contradiction or interference between the user preferences of the multiple user profiles for controlling the amount of current passing through the power cord;

wherein the controller allows or disallows current flow through the power cord according to calendar instructions;

wherein the electrical input includes a female power output which is separate from the switch between the electrical input and the power cord and is configured to allow multiple power drop assemblies to be electrically connected in a daisy chain.

5. The power drop assembly of claim 4 , wherein the non-transitory storage medium stores a program for interaction with the power drop assembly.

6. The power drop assembly of claim 5 , wherein the processor activates and runs programs stored on the non-transitory storage medium.

7. The power drop assembly of claim 5 , wherein a user can schedule the power available to the at least one power outlet through the program stored on the non-transitory storage medium.

8. The power drop assembly of claim 5 , wherein a user can view on a smart device a maintenance schedule for the devices attached to the at least one power outlet through a program stored on the non-transitory storage medium.

9. The power drop assembly of claim 5 , wherein a user can select optimization criteria.

10. The power drop assembly of claim 5 , wherein a user can select options for optimizing the reducing of power consumption.

11. The power drop assembly of claim 10 , wherein the controller learns and anticipates the power needs of the at least one power outlet.

12. The power drop assembly of claim 5 , wherein a user can select increased battery life optimization for attached devices.

13. A power drop assembly comprising:

a housing;

a reel positioned and rotatable within the housing;

a power cord connected at one end to the reel;

at least one power outlet attached to the power cord;

an electrical input;

a switch between the electrical input and the power cord, wherein the switch is adapted to connect and disconnect the electrical input and the power cord; and

a controller in communication with the switch, wherein the switch receives instructions from the controller;

power throttling circuitry for controlling the amount of current passing through the power cord;

a wireless transceiver connected to the controller;

a processor and non-transitory storage medium;

a cloud account for storing user and power drop information and settings;

a smart device connected to the controller;

non-transitory storage medium for storing user profiles and user preferences within each user profile;

a processor;

wherein the processor manages the user preferences of each user profile to coordinate the user preferences to overcome any contradiction or interference between the user preferences of the multiple user profiles for controlling the amount of current passing through the power cord;

wherein the controller allows or disallows current flow through the power cord according to calendar instructions;

wherein the electrical input, includes a female power output which is separate from the switch between the electrical input and the power cord and is configured to allow multiple power drop assemblies to be electrically connected in a daisy chain.

14. The power drop assembly of claim 13 , wherein the processor activates and runs programs stored on the cloud account.

15. The power drop assembly of claim 14 , wherein a user can schedule the power available to the at least one power outlet through the program stored on the cloud account.

16. The power drop assembly of claim 14 , wherein a user can view on a smart device a maintenance schedule for the devices attached to the at least one power outlet through a program stored on the cloud account.

17. The power drop assembly of claim 14 , wherein a user can select optimization criteria.

18. The power drop assembly of claim 14 , wherein a user can select options for optimizing the reducing of power consumption.

19. The power drop assembly of claim 14 , wherein a user can select increased battery life optimization for attached devices.

20. The power drop assembly of claim 14 , wherein the program predicts the power needs of the at least one power outlet and schedules the power availability to the at least one power outlet.

Assignments (5)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 13, 2018
From: JONES, CHRISTOPHER
To: HALL LABS, LLC
Reel/Frame 047766/0150 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 27, 2018
From: MILES, JEROME
To: HALL LABS LLC
Reel/Frame 047157/0172 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 24, 2018
From: HALL, DAVID R.
To: HALL LABS LLC
Reel/Frame 047132/0022 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 12, 2018
From: HALL, DAVID R.
To: HALL LABS LLC
Reel/Frame 047058/0053 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 24, 2018
From: JONES, CHRISTOPHER
To: HALL LABS LLC
Reel/Frame 046434/0926 →
Continuity (2)
Provisional Application 62526523 · Jun 29, 2017
Related Publication 20190004486A1 · Jan 3, 2019