IP Library Granted Patent US 11,757,665
Granted Patent B2
US 11,757,665 · App. 17/172,079 · Granted Sep 12, 2023

Method and system for managing power delivery and device operation for Power over Ethernet systems

Inventor: Jesus Rodriguez (Brick Township, NJ)
H04L12/10G06F1/266H04L12/40045H05B47/18
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Quick Facts
Patent No.
US 11,757,665
App. No.
17/172,079
Granted
Sep 12, 2023
Kind
B2
Abstract

The present invention is a system for providing power and controlling a plurality of ethernet devices, comprising: a driver, wherein the driver provides for the control of the system; a plurality of sensors, wherein the plurality of sensors collect sensor specific data and are in communication with the driver; a Power over Ethernet (POE) switch, wherein the POE switch is in communication with the plurality of sensors; a plurality of fixtures in communication with the driver and the POE switch, wherein the plurality of fixtures are light sources; and a local power source, wherein the local power source is in communication with the POE switch.

Claims (37)

1. A system for providing power and controlling a plurality of ethernet devices, comprising:

a driver, wherein the driver provides for the control of the system;

a plurality of sensors, wherein the plurality of sensors collect sensor specific data and are in communication with the driver;

a Power over Ethernet (POE) switch, wherein the POE switch is in communication with the plurality of sensors;

a plurality of devices in communication with the driver and the POE switch; and

a local power source, wherein the local power source is in communication with the POE switch;

wherein the driver has a capacitor to allow for the driver to maintain a charge, eliminating activation delay of the plurality of devices.

2. The system for providing power and controlling a plurality of ethernet devices of claim 1 , further comprising,

a relay, wherein the relay is in communication with the POE switch, and

an existing building system, in communication with the relay, wherein the relay controls the activation of the existing building system based on commands sent from a control module to the driver, plurality of sensors, or a plurality of switches.

3. The system for providing power and controlling a plurality of ethernet devices of claim 2 , further comprising, a local area network, wherein the local area network is in communication with the driver, POE switch, relay, and the plurality of sensors.

4. The system for providing power and controlling a plurality of ethernet devices of claim 3 , further comprising, at least one switch, wherein the switch is connected to the local area network and the driver controls the at least one switch.

5. The system for providing power and controlling a plurality of ethernet devices of claim 1 , wherein the local power source is able to activate a series of power modes based on received commands.

6. The system for providing power and controlling a plurality of ethernet devices of claim 1 , wherein the driver allows for a constant-current delivery of power via a wired system and control via a wireless system.

7. The system for providing power and controlling a plurality of ethernet devices of claim 1 , wherein the plurality of sensors further includes fire and burglary systems.

8. The system for providing power and controlling a plurality of ethernet devices of claim 4 , further comprising a plurality of control modules integrated into the driver, plurality of sensors, POE switch, relay, and the local power source, and communicate via the local area network.

9. A Power over Ethernet (POE) system, the system comprising:

a driver, wherein the driver has a control module and the control module is able to send and receive commands;

a POE switch in communication with the driver, wherein the POE switch sends and receives information from the driver;

a plurality of sensors in communication with the POE switch, wherein the plurality of sensors send information to the POE switch;

a plurality of devices in communication with the driver and the POE switch, wherein the plurality of devices are able to be controlled independently by the POE switch and the driver;

a power source in wired communication with the POE switch, and

wherein the control module processes a first set of data received by the plurality of sensors, and generates a set of actions which are sent from the driver to the POE switch to control the plurality of devices;

wherein in response to a loss of power, the driver initiating a protocol to send a power and control signal to a group of the plurality of devices.

10. The Power over Ethernet (POE) system of claim 9 , further comprising, the addition of a new device, wherein the driver connects with the new device and the control module associates the new device with a set of the plurality of devices and associates with new device with a set of the plurality of sensors.

11. The Power over Ethernet (POE) system of claim 9 , further comprising.

12. The Power over Ethernet (POE) system of claim 9 , further comprising, in response to a signal sent from at least one of the sensors, the POE switch activates a set number of the devices.

13. A Power over Ethernet (POE) system, the system comprising:

a driver, wherein the driver has a control module and the control module is able to send and receive commands;

a POE switch in communication with the driver, wherein the POE switch sends and receives information from the driver;

a plurality of sensors in communication with the POE switch, wherein the plurality of sensors send information to the POE switch;

a plurality of devices in communication with the driver and the POE switch, wherein the plurality of devices are able to be controlled independently by the POE switch and the driver;

a power source in wired communication with the POE switch, and

wherein the control module processes a first set of data received by the plurality of sensors, and generates a set of actions which are sent from the driver to the POE switch to control the plurality of devices;

wherein the driver has a capacitor to allow for the driver to maintain a charge, eliminating activation delay of the plurality of devices;

wherein in response to a loss of power, the driver initiating a protocol to send a power and control signal to a group of the plurality of devices.

14. The Power over Ethernet (POE) system of claim 13 , wherein at least one group is created, wherein the group comprises at least two of the plurality of devices, and the driver is able to communicate with each of the groups.

Continuity (3)
Continuation 16892768 · Jun 4, 2020
Provisional Application 62912695 · Oct 9, 2019
Related Publication 20210167975A1 · Jun 3, 2021