IP Library Granted Patent US 10,234,233
Granted Patent B1
US 10,234,233 · App. 15/904,343 · Granted Mar 19, 2019

Toy water gun having illuminable water trajectory and associated use thereof

Inventors: Donna Alexandra Spikes (Jacksonville, FL); Charles Brian Spikes (Jacksonville, FL)
Assignee: PUMPONATOR FUN, INC.
F41B9/0006F21L4/04
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Quick Facts
Patent No.
US 10,234,233
App. No.
15/904,343
Granted
Mar 19, 2019
Kind
B1
Abstract

A toy water gun includes a hand-held body having a water reservoir capable of storing a predetermined quantity of water therein, and a guide rail engaged with the water reservoir. The toy water gun further includes a hand-operated pump mechanism is in fluid communication with the water reservoir and dynamically engaged with the guide rail, a discharge nozzle in fluid communication with the water reservoir and having an illuminable water trajectory selectively egressed distally away therefrom, and a light emitting mechanism attached to a dynamic portion of the pump mechanism. Advantageously, the dynamic portion of the pump mechanism and the light emitting source are contemporaneously reciprocated along a bi-directional travel path relative to a position of the discharge nozzle and thereby illuminate the illuminable water trajectory after being egressed from the discharge nozzle.

Claims (33)

1. A toy water gun comprising: a body including a water reservoir capable of storing a predetermined quantity of water therein, and a guide rail engaged with said water reservoir; a pump mechanism in fluid communication with said water reservoir and dynamically engaged with said guide rail; a discharge nozzle in fluid communication with said water reservoir and having an illuminable water trajectory selectively egressed distally away therefrom; and a light emitting source mechanism attached to a dynamic portion of said pump mechanism; wherein said illuminable light source is configured to remain at an off position until said pump mechanism reaches a fully extended position disposed at a maximum distance distally away from discharge nozzle; wherein, as said pump mechanism is configured to linearly retract back from said fully extended position and towards an initial retracted position, said light emitting mechanism is configured to automatically toggle to an on position and said illuminable water trajectory is configured to automatically egress from said discharge nozzle; wherein said dynamic portion of said pump mechanism and said light emitting source are contemporaneously reciprocated along a bi-directional travel path relative to a position of said discharge nozzle and thereby illuminate said illuminable water trajectory after being egressed from said discharge nozzle.

2. The toy water gun of claim 1 , wherein said bi-directional travel path comprises:

a first linear path extended distally away from said discharge nozzle; and

a second linear path extended proximally back towards said discharge nozzle;

wherein said illuminable water trajectory is illuminated after said dynamic portion of said pump mechanism and said light emitting mechanism are linearly displaced along said second linear path and proximally back towards said discharge nozzle.

3. The toy water gun of claim 2 , wherein said pump mechanism is located at an initial position of said first linear path, defined at an initial reference plane, before said illuminable water trajectory is egressed distally away from said discharge nozzle.

4. The toy water gun of claim 3 , wherein said pump mechanism is distally extended to a final position of said first linear path and an initial position of said second linear path, defined at a final reference plane, after being linearly displaced a maximum distance away from said initial reference plane.

5. The toy water gun of claim 4 , wherein said illuminable water trajectory is illuminated and egressed distally away from said discharge nozzle when said pump mechanism is retracted to an intermediate position after being distally extended said maximum distance.

6. The toy water gun of claim 5 , wherein said pump mechanism is returned back to said initial reference plane after being fully retracted along a proximal direction of said second linear path.

7. The toy water gun of claim 1 , wherein said light emitting mechanism comprises:

a power source housed within said dynamic portion of said pump mechanism;

a switch communicatively coupled to said power source;

an illuminable light source communicatively coupled to said switch; and

an actuator in selective communication with said switch, said actuator being linearly reciprocated along said bi-directional travel path as said pump mechanism is operated such that said actuator automatically toggles said switch between on and off positions when said illuminable water trajectory is initially and completely egressed out from said discharge nozzle, respectively.

8. The toy water gun of claim 1 , wherein said illuminable light source and said discharge nozzle are substantially coplanar when said pump mechanism is at a fully retracted position.

9. A toy water gun comprising: a hand-held body including a water reservoir capable of storing a predetermined quantity of water therein, and a guide rail engaged with said water reservoir; a hand-operated pump mechanism in fluid communication with said water reservoir and dynamically engaged with said guide rail; a discharge nozzle in fluid communication with said water reservoir and having an illuminable water trajectory selectively egressed distally away therefrom; and a light emitting source mechanism attached to a dynamic portion of said pump mechanism; wherein said illuminable light source is configured to remain at an off position until said pump mechanism reaches a fully extended position disposed at a maximum distance distally away from discharge nozzle; wherein, as said pump mechanism is configured to linearly retract back from said fully extended position and towards an initial retracted position, said light emitting mechanism is configured to automatically toggle to an on position and said illuminable water trajectory is configured to automatically egress from said discharge nozzle; wherein said dynamic portion of said pump mechanism and said light emitting source are contemporaneously reciprocated along a bi-directional travel path relative to a position of said discharge nozzle and thereby illuminate said illuminable water trajectory after being egressed from said discharge nozzle.

10. The toy water gun of claim 9 , wherein said bi-directional travel path comprises:

a first linear path extended distally away from said discharge nozzle; and

a second linear path extended proximally back towards said discharge nozzle;

wherein said illuminable water trajectory is illuminated after said dynamic portion of said pump mechanism and said light emitting mechanism are linearly displaced along said second linear path and proximally back towards said discharge nozzle.

11. The toy water gun of claim 10 , wherein said pump mechanism is located at an initial position of said first linear path, defined at an initial reference plane, before said illuminable water trajectory is egressed distally away from said discharge nozzle.

12. The toy water gun of claim 11 , wherein said pump mechanism is distally extended to a final position of said first linear path and an initial position of said second linear path, defined at a final reference plane, after being linearly displaced a maximum distance away from said initial reference plane.

13. The toy water gun of claim 12 , wherein said illuminable water trajectory is illuminated and egressed distally away from said discharge nozzle when said pump mechanism is retracted to an intermediate position after being distally extended said maximum distance.

14. The toy water gun of claim 13 , wherein said pump mechanism is returned back to said initial reference plane after being fully retracted along a proximal direction of said second linear path.

15. The toy water gun of claim 9 , wherein said light emitting mechanism comprises:

a power source housed within said dynamic portion of said pump mechanism;

a switch communicatively coupled to said power source;

an illuminable light source communicatively coupled to said switch; and

an actuator in selective communication with said switch, said actuator being linearly reciprocated along said bi-directional travel path as said pump mechanism is operated such that said actuator automatically toggles said switch between on and off positions when said illuminable water trajectory is initially and completely egressed out from said discharge nozzle, respectively.

16. The toy water gun of claim 9 , wherein said illuminable light source and said discharge nozzle are substantially coplanar when said pump mechanism is at a fully retracted position.

17. The toy water gun of claim 9 , wherein said illuminable light source remains at an off position until said pump mechanism reaches a fully extended position disposed at a maximum distance distally away from discharge nozzle;

wherein, as said pump mechanism is linearly retracted back from said fully extended position and towards an initial retracted position, said light emitting mechanism is automatically toggled to an on position and said illuminable water trajectory is automatically egressed from said discharge nozzle.

18. A method of utilizing toy water gun, comprising the steps of: providing a hand-held body including a water reservoir capable of storing a predetermined quantity of water therein, and a guide rail engaged with said water reservoir; providing and fluidly communicating a hand-operated pump mechanism with said water reservoir; dynamically engaging said pump mechanism with said guide rail; providing and fluidly communicating a discharge nozzle with said water reservoir; said discharge nozzle having an illuminable water trajectory selectively egressed distally away therefrom; providing and attaching a light emitting source mechanism to a dynamic portion of said pump mechanism; wherein said illuminable light source is configured to remain at an off position until said pump mechanism reaches a fully extended position disposed at a maximum distance distally away from discharge nozzle; wherein, as said pump mechanism is configured to linearly retract back from said fully extended position and towards an initial retracted position, said light emitting mechanism is configured to automatically toggle to an on position and said illuminable water trajectory is configured to automatically egress from said discharge nozzle; and contemporaneously reciprocating said dynamic portion of said pump mechanism and said light emitting source along a bi-directional travel path relative to a position of said discharge nozzle and thereby illuminating said illuminable water trajectory after being egressed from said discharge nozzle.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 8, 2018
From: SPIKES, DONNA; SPIKES, CHARLES BRIAN
To: PUMPONATOR FUN, INC.
Reel/Frame 045540/0724 →
Cited By (5)
US 1,098,150 US 1,098,190 US 1,098,191 US 12,498,196 US 12,593,823