IP Library Granted Patent US 11,789,474
Granted Patent B2
US 11,789,474 · App. 17/542,601 · Granted Oct 17, 2023

Pressure gauge with automatic bleed valve

Inventor: John Charles Casebeer, II (Murrieta, CA)
Assignee: Motool LLC
G05D16/2013G05D16/202G05D16/2024Y10T137/264Y10T137/2605Y10T137/2622
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 11,789,474
App. No.
17/542,601
Granted
Oct 17, 2023
Kind
B2
Abstract

A pressure gauge includes a housing defining a fluid path and a bleed path. An inlet is mounted on the housing and a pressure sensor is disposed within the housing. A bleed valve is disposed along the fluid path and selectively opens or closes the bleed path. An actuator moves the bleed valve between a closed position and an open position. A control module is coupled to the pressure sensor and the actuator and includes a memory and a processor. A target fluid pressure is stored in the memory and the processor receives pressure data from the pressure sensor. When the pressure data is greater than the target fluid pressure, the processor controls the actuator to place the bleed valve in the open position. When the pressure data is equal to the target fluid pressure, the processor controls the actuator to place the bleed valve in the closed position.

Claims (38)

1. A pressure gauge configured for setting a target fluid pressure within a vessel, the pressure gauge comprising:

a) a housing defining a fluid path and a bleed path, wherein the fluid path includes a first end and a second end;

b) an inlet mounted on the housing and configured to be releasably coupled to a fluid port on the vessel, wherein the inlet is in communication with the first end of the fluid path;

c) a pressure sensor disposed within the housing and configured to measure a pressure of a fluid within the fluid path, wherein the pressure includes a first fluid pressure and a second fluid pressure, wherein the first measured fluid pressure within the fluid path equals the target fluid pressure and the second measured fluid pressure within the fluid path is greater than the first measured fluid pressure;

d) an inlet valve mounted on the housing, wherein the second end of the fluid path terminates in the inlet valve, and wherein the inlet valve is configured to be coupled with a high pressure fluid source to deliver a high pressure fluid to the vessel through the fluid path;

e) a bleed valve disposed along the fluid path and configured to selectively move between a first position and a second position, wherein when the bleed valve is in the first position the fluid path is in fluid communication with the bleed path, and wherein when the bleed valve is in the second position the fluid path is not in fluid communication with the bleed path;

f) an actuator coupled to the bleed valve and operable to move the bleed valve between the first position and the second position; and

g) a control module disposed within the housing and communicatively coupled to the pressure sensor and the actuator, wherein the control module includes a memory and a processor, wherein the target fluid pressure is stored in the memory, and wherein the processor is configured to receive pressure data from the pressure sensor,

wherein, when the pressure data is at the second measured fluid pressure, the processor controls the actuator to place the bleed valve in the first position to reduce the second measured fluid pressure, and

wherein, when the reduced second measured fluid pressure equals the first measured fluid pressure, the processor controls the actuator to place the bleed valve in the second position.

2. The pressure gauge in accordance with claim 1 wherein the control module further includes a display in communication with the processor, and wherein the display is configured to show the pressure of the fluid in the fluid path and the target fluid pressure.

3. The pressure gauge in accordance with claim 1 wherein the control module further includes a first user input, and wherein a user manually selects the target fluid pressure using the first user input.

4. The pressure gauge in accordance with claim 1 wherein the control module further includes a second user input, wherein a user manually controls the actuator to place the bleed valve in the first position when the pressure data is above the target fluid pressure.

5. The pressure gauge in accordance with claim 1 wherein the control module further includes a communication module configured for wireless connectivity to a network.

6. The pressure gauge in accordance with claim 1 wherein the actuator is a servomotor.

7. The pressure gauge in accordance with claim 1 wherein the inlet includes a fitting configured to releasably couple to a tire tube valve.

8. A method for adjusting suspension sag of a vehicle equipped with one or more shocks, the method comprising:

a) releasably coupling a pressure gauge to a fluid port of at least one shock, wherein the pressure gauge comprises:

i) a housing defining a fluid path and a bleed path, wherein the fluid path includes a first end and a second end;

ii) an inlet mounted on the housing in communication with the first end of the fluid path;

iii) a pressure sensor disposed within the housing and configured to measure a pressure of a fluid within the fluid path, wherein the pressure includes a first fluid pressure and a second fluid pressure, and wherein the first measured fluid pressure within the fluid path equals a target fluid pressure and the second measured fluid pressure within the fluid path is greater than the first measured fluid pressure;

iv) an inlet valve mounted on the housing, wherein the second end of the fluid path terminates in the inlet valve, and wherein the inlet valve is configured to be coupled with a high pressure fluid source and deliver a high pressure fluid to the shock through the fluid path;

v) a bleed valve disposed along the fluid path and configured to selectively move between a first position and a second position, wherein when the bleed valve is in the first position the fluid path is in fluid communication with the bleed path, and wherein when the bleed valve is in the second position the fluid path is not in fluid communication with the bleed path;

vi) an actuator coupled to the bleed valve and operable to move the bleed valve between the first position and the second position; and

vii) a control module disposed within the housing and communicatively coupled to the pressure sensor and the actuator, wherein the control module includes a memory and a processor, wherein the target fluid pressure is stored in the memory, and wherein the processor is configured to receive pressure data from the pressure sensor;

b) inputting the target fluid pressure in the memory of the control module;

c) delivering the high pressure fluid to the shock via the inlet valve to over-pressurize the at least one shock until the pressure of the fluid in the fluid path equals the second measured fluid pressure;

d) placing a load on the vehicle;

e) controlling the actuator, via the processer, to place the bleed valve in the second position when the pressure data is above the target fluid pressure; and

f) controlling the actuator, via the processer, to place the bleed valve in the first position when the pressure data reaches the target fluid pressure.

9. The method in accordance with claim 8 wherein the target fluid pressure is selected using a look-up table.

10. The method in accordance with claim 8 wherein the pressure gauge further includes a thermocouple configured to measure ambient temperature, wherein the target fluid pressure is selected using a look-up table as a function of the ambient temperature.

11. The method in accordance with claim 8 wherein the control module further includes a display in communication with the processor, wherein the display is configured to show the pressure of the fluid in the fluid path and the target fluid pressure.

12. The method in accordance with claim 8 wherein the control module further includes a first user input, wherein a user manually selects the target fluid pressure using the first user input.

13. The method in accordance with claim 8 wherein the control module further includes a second user input, wherein a user manually controls the actuator to place the bleed valve in the first position when the pressure data is above the target fluid pressure.

14. The method in accordance with claim 8 wherein the control module further includes a communication module configured for wireless connectivity to a network.

15. The method in accordance with claim 8 wherein the actuator is a servomotor.

16. The method in accordance with claim 8 wherein the inlet includes a fitting configured to releasably couple to a tire tube valve.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 16, 2024
From: MOTOOL LLC
To: SLACKER LLC
Reel/Frame 067430/0516 →
CORRECTIVE ASSIGNMENT TO CORRECT THE THE EXECUTION DATE OF THE CONVEYING PARTY PREVIOUSLY RECORDED AT REEL: 63665 FRAME: 875. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Apr 30, 2024
From: MOTOOL INC.
To: MOTOOL LLC
Reel/Frame 067274/0068 →
CHANGE OF NAME Recorded May 17, 2023
From: MOTOOL INC.
To: MOTOOL LLC
Reel/Frame 063665/0875 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 6, 2021
From: CASEBEER, JOHN CHARLES, II
To: MOTOOL INC.
Reel/Frame 058304/0391 →
Continuity (1)
Related Publication 20230176597A1 · Jun 8, 2023