IP Library Granted Patent US 12,532,820
Granted Patent B2
US 12,532,820 · App. 17/675,626 · Granted Jan 27, 2026

Sprinkler apparatus and system for irrigation

Inventor: Cameron Cote (Cochrane, CA)
Assignee: Kristy Cote
A01G25/16A01G25/02B05B1/02B05B1/04B05B1/3026B05B1/323B05B3/021B05B12/12B05B15/18B05B15/72B05B1/14B05B12/00
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Quick Facts
Patent No.
US 12,532,820
App. No.
17/675,626
Granted
Jan 27, 2026
Kind
B2
Abstract

A sprinkler apparatus, a flow rate control valve assembly, and a sprinkler irrigation system for providing an even distribution of water across an asymmetrically shaped water receiving area. The sprinkler apparatus comprises a pop-up sprinkler head with a base housing for confiningly receiving a pressurized water flow that actuates a nozzle housing slidingly and rotationally cooperating with the base housing to pop-up into an operating position for discharge of water through at least one pair of nozzle assemblies. The pair of nozzle assemblies comprise an upper nozzle assembly and a lower nozzle assembly near the top end of the nozzle housing. The upper nozzle assembly controllably projects the pressurized water flow for a precisely set distance, while the lower nozzle assembly comprises a vertical slit-shaped aperture through which water is discharged in a curtain effect. Together, the pair of nozzle assemblies achieve a substantially uniform elliptical linear spray pattern with a bias to outermost end. A flow rate control valve assembly is further described and comprises a flow control valve assembly that can be fluidly coupled to a pop-up sprinkler head to controllably supply the pressurized water flow, the flow control valve assembly comprising a water inlet fluidly coupled to a water supply and a water outlet fluidly coupled to the pop-up sprinkler head, the water outlet cooperatively engaging with a rotary disc valve having a tapered passage wherein sliding rotation of the rotary disc valve incrementally adjusts the valve between an opened position and a closed position to control the pressurized water flow through the water outlet.

Claims (27)

1 . A sprinkler apparatus comprising:

(a) a pop-up sprinkler head comprising a base housing configured to confiningly receive a pressurized water flow, the pressurized water flow actuating a nozzle housing coupled to the base housing to pop-up into an operating position for discharge of water through at least one nozzle assembly disposed at a top end of the nozzle housing, the at least one nozzle assembly achieving a spray pattern applied to a water receiving area external of said sprinkler apparatus; and

(b) a flow control valve assembly fluidly coupled to the pop-up sprinkler head to controllably supply the pressurized water flow, the flow control valve assembly comprising:

a valve housing defining an inner chamber;

a water inlet formed in the valve housing, the water inlet fluidly coupled to a water supply;

a water outlet formed in the val dive housing, the water outlet fluidly coupled to the base housing of the pop-up sprinkler head; and

a circular disc mounted on a substantially centralized and motor-controlled drive shaft in the inner chamber, wherein the water inlet and the water outlet are on opposite sides of the circular disc, and the circular disc has a single tapered passage wherein rotation of the circular disc within the inner chamber driven by the motor-controlled drive shaft incrementally adjusts the flow control valve between an opened position wherein a widest portion of the tapered passage is axially aligned with the water outlet and a closed position wherein there is no axial alignment of any portion of the tapered passage with the water outlet, thereby controlling the pressurized water flow through the water outlet to the base housing.

2 . The sprinkler apparatus according to claim 1 , wherein the motor is configured to rotate the drive shaft in steps.

3 . The sprinkler apparatus according to claim 2 , wherein the motor-controlled drive shaft is operatively coupled to a programmable controller.

4 . The sprinkler apparatus according to claim 1 , wherein the nozzle housing is sized to slidingly couple with the base housing to pop-up into the operating position or retract into a nested position, the nozzle housing having a bottom end comprising a plurality of orifices to allow passage of the pressurized water flow through the nozzle housing to discharge from the nozzle assemblies at the top end of the nozzle housing, wherein the pressurized water flow received into the base housing is greater than the pressurized water flow through the nozzle housing to create a pressure differential that actuates the nozzle housing to slidingly pop-up into the operating position.

5 . The sprinkler apparatus according to claim 4 , wherein the nozzle housing is biased in a downward position to maintain the nested position when inoperative.

6 . The sprinkler apparatus according to claim 1 , further comprising a drive mechanism coupled to the nozzle housing, the drive mechanism comprising a motor driven transmission and a drive train adapted for operatively rotating the nozzle housing within the base housing.

7 . The sprinkler apparatus according to claim 6 , wherein the drive mechanism is operatively coupled to a programmable controller.

8 . The sprinkler apparatus according to claim 1 , further comprising an in-ground housing configured to receive and house the pop-up sprinkler head, the in-ground housing comprising a tubular body having a water inlet disposed along the body for connection to the pop-up sprinkler head housed within, a removable lid with an opening sized to allow the pop-up sprinkler head to pop-up therethrough when in an operating position.

9 . The sprinkler apparatus according to claim 8 , wherein the in-ground housing further comprises a self-draining valve to allow water contained within the housing to be drained.

10 . A sprinkler apparatus comprising:

(a) a base housing configured to confiningly receive a pressurized water flow;

(b) a nozzle housing coupled to the base housing, the nozzle housing sized to slidingly couple with the base housing to pop-up into an operating position or retract into a nested position;

(c) an upper nozzle assembly positioned at a top end of the nozzle housing, the upper nozzle assembly comprising a rigid outer frame and a resilient inner nozzle positioned therein, the diameter of the inner nozzle being smaller than the rigid outer frame to provide space for the inner nozzle to distend to a maximum orifice size determined by the circumference of the outer frame, the resilient inner nozzle responsive to the rate of pressurized water flow to distend up to the maximum orifice size to vary the wetted radius of discharged water from the upper nozzle assembly;

(d) a lower nozzle assembly positioned below the upper nozzle assembly at the top end of the nozzle housing, the lower nozzle assembly comprising a vertical slit-shaped aperture through which water is discharged in a curtain effect; and

(e) a flow control valve assembly fluidly coupled to the base housing to controllably supply the pressurized water flow; wherein the upper and lower nozzle assemblies together achieve a substantially uniform elliptical spray pattern,

wherein the low control valve assembly comprises:

a valve housing defining an inner chamber;

a water inlet in the valve housing, the water inlet fluidly coupled to water supply,

a water outlet in the valve housing, the water outlet fluidly coupled to the base housing of the pop-up sprinkler head

a circular disc in the inner chamber, the circular disc having a single tapered passage wherein rotation of the circular disc within the inner chamber incrementally adjusts the flow control valve between an opened position and a closed position to control the pressurized water flow through the water outlet to the base housing,

wherein the water inlet and the water outlet are located opposite sides of the circular disc.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 22, 2025
From: COTE, CAM
To: COTE, KRISTY
Reel/Frame 073290/0751 →
Continuity (4)
Division 16431226 · Jun 4, 2019
Division 15303706
Provisional Application 61979355 · Apr 14, 2014
Related Publication 20220167573A1 · Jun 2, 2022
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