IP Library Patent Application 12037500
Patent Application
App. No. 12/037,500

LOAD SHED TRANSFER MECHANISM AND METHOD

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Quick Facts
Patent No.
US None
App. No.
12/037,500
Abstract

A transfer mechanism and method are provided for transferring the supply of electrical power on a load between a utility source and a stand-by electrical generator wherein load includes an essential load and a secondary load. The transfer mechanism includes a transfer switch that transfers the supply of electrical power to the output between the utility source and the generator. A load shed controller is operatively connected to the output of the transfer switch for monitoring the electrical power supplied to the secondary load. The load shed controller terminates the electrical power supplied to the secondary load in response to the generator being overloaded.

Claims (32)

1 . A transfer mechanism for transferring the supply of electrical power on a load between a utility source and a stand-by electrical generator, the load including an essential load and a secondary load, the transfer mechanism comprising:

a transfer switch having a utility input connectable to the utility source, a generator input connectable to the generator, and an output connectable to the essential load, the transfer switch transferring the supply of electrical power to the output between the utility source and the generator;

a load shed switch having an input connectable to the output of the transfer switch and an output operatively connected to the secondary load, the load shed switch movable between a closed position wherein the secondary load is connected to the output of the transfer switch and an open position were the secondary load is isolated from the output of the transfer switch; and

a load shed controller operatively connected to the load shed switch, the load shed controller monitoring the electrical power supplied to the secondary load and moving the load shed switch from the closed and the open positions in response to a predetermined property of the electrical power supplied to the secondary load varying from a predetermined level.

2 . The transfer mechanism of claim 1 wherein the electrical power has a frequency and wherein the predetermined property is the frequency of the electrical power supplied to the secondary load.

3 . The transfer mechanism of claim 1 wherein the load shed controller moves the load shed switch to a closed position at a first predetermined time period after the load shed switch is moved to open position.

4 . The transfer mechanism of claim 1 further comprising a retry switch operatively connected to the load shed controller, the retry switch movable between a non-actuated position and an actuated position wherein the load shed controller moves the load shed switch from the open position to the closed position.

5 . The transfer mechanism of claim 1 wherein the load shed controller includes a visual display, the visual display providing a visually observable signal in response to the load shed switch being in the open position.

6 . The transfer mechanism of claim 1 wherein the load shed controller includes a power source operatively connected to the output of the transfer switch, the power source supplying power to the load shed controller.

7 . A transfer mechanism for transferring the supply of electrical power on a load between a utility source and a stand-by electrical generator, the load including an essential load and a secondary load, the transfer mechanism comprising:

a transfer switch having a utility input connectable to the utility source, generator input connectable to the generator, an output connectable to the essential and the secondary loads, the transfer switch transferring the supply of electrical power to the output between the utility source and the generator; and

a load shed controller operatively connected to the output of the transfer switch for monitoring the electrical power supplied to the secondary load, the load shed controller terminating the electrical power supplied to the secondary load in response to a predetermined property of the electrical power supplied to the secondary load varying from a predetermined level.

8 . The transfer mechanism of claim 7 wherein the electrical power has a frequency and wherein the predetermined property is the frequency of the electrical power supplied to the secondary load.

9 . The transfer mechanism of claim 7 further comprising a load shed switch having an input connectable to the output of the transfer switch, an output operatively connected to the secondary load and being connectable to the load shed controller, the load shed controller moving the load shed switch between a closed position wherein the secondary load is connected to the output of the transfer switch and an open position were the secondary load is isolated from the output of the transfer switch.

10 . The transfer mechanism of claim 9 wherein the load shed controller moves the load shed switch from the closed position to the open position in response to the predetermined property of the electrical power supplied to the secondary load varying from the predetermined level.

11 . The transfer mechanism of claim 9 wherein the load shed controller moves the load shed switch to a closed position at a first predetermined time period after the load shed switch is moved to the open position.

12 . The transfer mechanism of claim 9 further comprising a retry switch operatively connected to load shed controller, the retry switch movable between a non-actuated position and an actuated position wherein the load shed controller moves the load shed switch from the open position to the closed position.

13 . The transfer mechanism of claim 9 wherein the load shed controller includes a visual display, the visual display providing a visually observable signal in response to the load shed switch being in the open position.

14 . The transfer mechanism of claim 7 wherein the load shed controller includes a power source operatively connected to the output of the transfer switch, the power source supplying power to the load shed controller.

15 . A method of supplying electrical power to a load, the load including an essential load and a secondary load, comprising the steps of:

supplying electrical power to the essential load and the secondary load;

monitoring the electrical power supplied to the secondary load; and

terminating the electrical power supplied to the secondary load in response a predetermined property of the electrical power supplied to the secondary load varying from a predetermined value.

16 . The method of claim 15 wherein the step of supplying electrical power includes the additional steps:

transferring the supply of electrical power from a utility source to a generator in response to a power outage by the utility source; and

interconnecting the generator to the essential load and to the secondary load.

17 . The method of claim 16 wherein the step of interconnecting the generator to the essential load and to the secondary load includes the additional steps of:

providing a transfer switch having a utility input connectable to the utility source, a generator input connectable to the generator, and an output connectable to the essential load, the transfer switch transferring the supply of electrical power to the output between the utility source and the generator; and

connecting the output of the transfer switch to the secondary load with a load shed switch, the load shed switch movable between a closed position wherein the secondary load is connected to the output of the transfer switch and an open position were the secondary load is isolated from the output of the transfer switch.

18 . The method of claim 17 comprising the additional step of providing a visually observable signal in response to the load shed switch being in the open position.

19 . The method of claim 15 wherein the electrical power has a frequency and wherein the predetermined property is the frequency of the electrical power supplied to the secondary load.

20 . The method of claim 15 comprising the additional step of reconnecting the electrical power supplied to the secondary load at predetermined time period after termination.

Assignments (2)
SECURITY AGREEMENT Recorded Apr 19, 2010
From: GENERAC POWER SYSTEMS, INC., SUCCESSOR BY MERGER TO GPS CCMP MERGER CORP.
To: GOLDMAN SACHS CREDIT PARTNERS L.P., AS ADMINISTRATIVE AGENT
Reel/Frame 024244/0751 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 26, 2008
From: WEDEL, FRANCIS X.
To: GENERAC POWER SYSTEMS, INC.
Reel/Frame 020562/0040 →