IP Library › Granted Patent US 10,559,949
Granted Patent B2
US 10,559,949 · App. 16/419,613 · Granted Feb 11, 2020

Watertight electrical compartment for use in irrigation devices and methods of use

Inventor: Michael F. Paul (San Diego, CA)
Assignee: Hunter Industries, Inc.
H02G3/088A01G25/16G01F15/14G01F15/063
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Quick Facts
Patent No.
US 10,559,949
App. No.
16/419,613
Granted
Feb 11, 2020
Kind
B2
Abstract

A watertight electrical compartment for use in an irrigation device can include a compartment body having a chamber and a sealing section configured to mate with one or more sealing rings. A sealing cap can mate with the sealing section and/or the sealing rings to seal the chamber. A cap retainer can be advanced over at least a portion of the sealing cap. One of the compartment body and cap retainer can have internal threads to be screwed onto external threads of the other one of the compartment body and cap retainer. The cap retainer can also have a stopping feature to keep the sealing cap in its sealed position. The watertight electrical compartment can be used in a wireless flow sensor assembly, a battery operated irrigation controller, and/or a battery-operated central controller device, to provide irrigation control, and/or sensor information, without the need for AC power.

Claims (38)

1. A battery-operated irrigation controller comprising:

a body forming a chamber having an open end;

a sealing section disposed on the body;

at least one sealing ring configured to contact the sealing section;

a cap configured to cover the open end and having a surface for contacting the at least one sealing ring to create a compression force on the at least one sealing ring to create a watertight seal of the chamber;

a retainer configured to contact the cap and engage with the body to retain the cap to maintain the watertight seal of the chamber, the retainer being separate and removable from the body and the cap;

a battery holder supported by the body and configured to receive at least one battery; and

one or more electronic components configured to receive power from the at least one battery.

2. The battery-operated irrigation controller of claim 1 , wherein the body further comprises at least one thread configured to engage with the retainer.

3. The battery-operated irrigation controller of claim 1 , wherein the battery holder is disposed within the chamber.

4. The battery-operated irrigation controller of claim 1 , wherein the battery holder comprises a mounting ring, and wherein the body supports the mounting ring.

5. The battery-operated irrigation controller of claim 1 , wherein the battery holder provides an electrical connection to the at least one battery.

6. The battery-operated irrigation controller of claim 1 , further comprising an operator interface in electrical connection with the one or more electronic components.

7. The battery-operated irrigation controller of claim 6 , wherein the operator interface comprising at least one of a control button and a display.

8. The battery-operated irrigation controller of claim 1 , wherein the one or more electronic components are configured to store an irrigation program.

9. The battery-operated irrigation controller of claim 8 , wherein the one or more electronic components are configured to actuate at least one valve in accordance with the irrigation program.

10. The battery-operated irrigation controller of claim 1 , wherein the one or more electronic components comprises at least one of a transmitter, a transceiver, and a receiver configured for wireless communication.

11. The battery-operated irrigation controller of claim 1 , wherein the one or more electronic components are configured to wirelessly communicate with a central computer.

12. The battery-operated irrigation controller of claim 1 , wherein the one or more electronic components are configured to wirelessly communicate with at least one valve.

13. A battery-operated irrigation controller comprising:

a body forming a chamber having an open end;

at least one thread disposed on the body;

a sealing section disposed on the body;

at least one sealing ring configured to contact the sealing section;

a cap configured to cover the open end and contact the at least one sealing ring; and

a retainer configured to contact the cap and engage with the at least one thread, the retainer being rotatable about the cap to at least slightly compress the at least one sealing ring and maintain a watertight seal of the chamber, the retainer being separate and removable from the body and the cap.

14. The battery-operated irrigation controller of claim 13 , further comprising a holder supported by the body and configured to receive at least one battery.

15. The battery-operated irrigation controller of claim 14 , further comprising one or more electronic components configured to receive power from the at least one battery.

16. The battery-operated irrigation controller of claim 15 , wherein the one or more electronic components are embedded in the chamber.

17. A battery-operated irrigation controller comprising:

a body forming a chamber having an open end;

at least one thread disposed on the body;

a sealing section disposed on the body;

a cap configured to slide over the open end of the body between an unsealed position and a sealed position, the cap covering the open end and at least a portion of the sealing section when in the sealed position; and

a retainer configured to at least maintain the cap in the sealed position to achieve a watertight seal of the chamber, the retainer being separate and removable from the body and the cap.

18. The battery-operated irrigation controller of claim 17 , further comprising at least one sealing ring configured to contact the sealing section and the cap at least when the cap is in the sealed position.

19. The battery-operated irrigation controller of claim 17 , wherein the sealing section is disposed closer to the open end than to the at least one thread.

20. The battery-operated irrigation controller of claim 17 , further comprising at least one sensor electrically coupled to the chamber, wherein the at least sensor comprises at least one of a flow sensor, a soil moisture sensor, a temperature sensor, a solar radiation sensor, a light sensor, a humidity sensor, and a wind sensor.

Continuity (4)
Continuation 16254457 · Jan 22, 2019
Division 15845362 · Dec 18, 2017
Continuation In Part 15207323 · Jul 11, 2016
Related Publication 20190273371A1 · Sep 5, 2019
Cited By (1)
US 12,686,024