IP Library Granted Patent US 8,573,952
Granted Patent B2
US 8,573,952 · App. 13/220,537 · Granted Nov 5, 2013

Priming protection

Inventors: Robert W. Stiles, Jr. (Cary, NC); Lars Hoffmann Berthelsen (Kolding, DK); Gert Kjaer (Soenderborg, DK); Florin Lungeanu (Egernsund, DK)
Assignees: Pentair Water Pool and Spa, Inc.; Danfoss Low Power Drives
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 8,573,952
App. No.
13/220,537
Granted
Nov 5, 2013
Kind
B2
Abstract

Embodiments of the invention provide a pumping system for at least one aquatic application. The pumping system includes a pump, a motor coupled to the pump, and a controller in communication with the motor. The controller determines an actual power consumption of the motor and compares the actual power consumption to a reference power consumption. The controller also determines that the pump is in an unprimed condition if the actual power consumption is less than the reference power consumption and that the pump is in a primed condition if the actual power consumption is at least equal to the reference power consumption.

Claims (40)

1. A pumping system for at least one aquatic application, the pumping system comprising:

a pump;

a motor coupled to the pump; and

a controller in communication with the motor,

the controller determining an actual power consumption of the motor,

the controller comparing the actual power consumption to a reference power consumption,

the controller determining that the pump is in an unprimed condition if the actual power consumption is less than the reference power consumption,

the controller determining that the pump is in a primed condition if the actual power consumption is at least equal to the reference power consumption, and

the controller obtaining a timeout value used to limit the amount of time the pumping system can attempt to successfully prime.

2. A pumping system for at least one aquatic application, the pumping system comprising:

a pump;

a motor coupled to the pump; and

a controller in communication with the motor,

the controller determining an actual power consumption of the motor,

the controller determines a reference power consumption of the motor from pump curves including power versus speed for discrete flow rates,

the controller comparing the actual power consumption to the reference power consumption,

the controller determining that the pump is in an unprimed condition if the actual power consumption is less than the reference power consumption, and

the controller determining that the pump is in a primed condition if the actual power consumption is at least equal to the reference power consumption.

3. The pumping system of claim 2 , wherein the controller retrieves a reference flow rate for the pump curves from a program menu through a user interface.

4. The pumping system of claim 2 , wherein the controller determines a reference flow rate based upon at least one of a total size of the at least one aquatic application, a desired number of turnovers per day, and a time range that the pumping system is permitted to operate.

5. A pumping system for at least one aquatic application, the pumping system comprising:

a pump;

a motor coupled to the pump; and

a controller in communication with the motor,

the controller starting the motor at an initial speed and then pausing for a predetermined amount of time to permit the pumping system to stabilize,

the controller determining an actual power consumption of the motor after the controller has paused for the predetermined amount of time,

the controller comparing the actual power consumption to a reference power consumption,

the controller determining that the pump is in an unprimed condition if the actual power consumption is less than the reference power consumption, and

the controller determining that the pump is in a primed condition if the actual power consumption is at least equal to the reference power consumption.

6. The pumping system of claim 5 , wherein the controller pauses for about one second.

7. A pumping system for at least one aquatic application, the pumping system comprising:

a pump;

a motor coupled to the pump; and

a controller in communication with the motor,

the controller determining an actual power consumption of the motor,

the controller comparing the actual power consumption to a reference power consumption,

the controller incrementing a prime counter when the actual power consumption is less than the reference power consumption and decrementing the prime counter when the actual power consumption is greater than the reference power consumption,

the controller determining a priming status based on whether the prime counter exceeds a high threshold value in order to be considered in a first unprimed condition and increasing the speed of the motor,

if the controller determines a second unprimed condition, the controller increasing a speed of the motor to a maximum motor speed, and

if the actual power consumption exceeds a dry run power consumption threshold, the controller at least one of shutting down the pumping system, providing an indication of a dry run, and locking the pumping system.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 10, 2019
From: STILES, ROBERT W.; BERTHELSEN, LARS HOFFMANN; ROBOL, RONALD B.; YAHNKER, CHRISTOPHER; COX, EVERETT; STEEN, DONALD; MURPHY, KEVIN; WOODCOCK, WALTER J., JR.; HRUBY, DANIEL J.; WESTERMANN-RASMUSSEN, PETER; KJAER, GERT; RUNARSSON, EINAR KJARTAN; HANSEN, ARNE FINK; MORANDO, ALBERTO; LUNGEANU, FLORIN; HARVEST, NILS-OLE
To: PENTAIR WATER POOL AND SPA, INC.; DANFOSS DRIVES A/S
Reel/Frame 051240/0490 →
CHANGE OF NAME Recorded Dec 10, 2019
From: DANFOSS DRIVES A/S
To: DANFOSS POWER ELECTRONICS A/S
Reel/Frame 051240/0555 →
Continuity (4)
Continuation 11608001 · Dec 7, 2006
Continuation In Part 10926513 · Aug 26, 2004
Continuation In Part 11286888 · Nov 23, 2005
Related Publication 20120020810A1 · Jan 26, 2012