Brian W Guest, Age 66267 E Oak Ln #E, Farmington, UT 84025

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267 E Oak Ln #E, Farmington, UT 84025 (801) 451-7054

267 Oak Ln, Farmington, UT 84025 (801) 451-7054

287 Oak Ln, Farmington, UT 84025 (801) 451-2484 (801) 451-7054

107 E 1470 S #E, Farmington, UT 84025

Salt Lake City, UT

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Brian Guest is a Canadian political advisor associated with the Liberal Party of Canada. Guest was born in Ottawa. He began working in Politics in 1994 when he

Us Patents

Hydraulically And Volumetrically Dispensing A Target Fluid

US Patent:
6662969, Dec 16, 2003
Filed:
Dec 14, 2001
Appl. No.:
10/016970
Inventors:
Scott C. Peeler - Sandy UT
Brian W. Guest - Farmington UT
Assignee:
ZAxis, Inc. - Salt Lake City UT
International Classification:
G01F 1100
US Classification:
222 1, 222 61, 222 63, 222137, 2221455, 222334, 222389, 222390
Abstract:
Systems and methods for hydraulically and volumetrically dispensing target fluid. A hydraulic system includes an actuator, a hydraulic coupler that includes substantially incompressible hydraulic liquid, and a container. The container may include a slidable or movable plunger or wall that when moved forces the target fluid out of the container. The actuator includes a motor or driver, such as a step motor, linear actuator, servomotor, pneumatic motor, or other similar device, to drive a plunger or piston of the hydraulic coupler. The coupler includes a conduit, column, shaft or other leak proof assembly that acts as a conduit for the substantially incompressible hydraulic liquid and includes a plunger or piston that is selectively pushed by the incompressible hydraulic liquid, thereby driving a head of the plunger or piston to press against the wall or plunger of the container or syringe that contains the target fluid or against the target fluid, causing the target fluid to be dispensed therefrom. Furthermore, the system may include a controller that is configured to control the target fluid dispensed and to receive input from a user.

Hydraulically And Volumetrically Dispensing Fluid

US Patent:
6957747, Oct 25, 2005
Filed:
Nov 17, 2003
Appl. No.:
10/715201
Inventors:
Scott C. Peeler - Sandy UT, US
Brian W. Guest - Farmington UT, US
Assignee:
Nordson Corporation - Westlake OH
International Classification:
G01F011/00
US Classification:
222 1, 222 61, 222 63, 222137, 2221455, 222334, 222389, 222390
Abstract:
Systems and methods for hydraulically and volumetrically dispensing target fluid. A hydraulic system includes an actuator, a hydraulic coupler that includes substantially incompressible hydraulic liquid, and a container. The container may include a slidable or movable plunger or wall that when moved forces the target fluid out of the container. The actuator includes a motor or driver, such as a step motor, linear actuator, servomotor, pneumatic motor, or other similar device, to drive a plunger or piston of the hydraulic coupler. The coupler includes a conduit, column, shaft or other leak proof assembly that acts as a conduit for the substantially incompressible hydraulic liquid and includes a plunger or piston that is selectively pushed by the incompressible hydraulic liquid, thereby driving a head of the plunger or piston to press against the wall or plunger of the container or syringe that contains the target fluid or against the target fluid, causing the target fluid to be dispensed therefrom. Furthermore, the system may include a controller that is configured to control the target fluid dispensed and to receive input from a user.

Systems And Methods For Providing A Dynamically Adjustable Reciprocating Fluid Dispenser

US Patent:
7708535, May 4, 2010
Filed:
May 19, 2004
Appl. No.:
10/850321
Inventors:
Scott C. Peeler - Sandy UT, US
Brian W. Guest - Farmington UT, US
Assignee:
ZAxis, Inc. - Salt Lake City UT
International Classification:
F04B 7/06
F16H 53/06
US Classification:
417500, 74569
Abstract:
Systems and methods for providing a dynamically adjustable, synchronously and/or asynchronously reciprocating fluid dispenser. A pump drive motor is coupled to the reciprocating fluid pump to actuate a pump shaft within a pump cylinder, wherein the pump shaft includes a duct that allows fluid to selectively pass thereby within the pump cylinder. As the pump shaft rotates within the pump cylinder, fluid is allowed to enter into a pump bore defined by a portion of the pump cylinder through a pump ingress port. As the pump shaft rotates, it blocks the pump ingress port. Further rotation allows the duct to allow the fluid in the pump bore to be dispensed through a pump egress port. An adjustment motor is coupled to an adjustment mechanism, which selectively adjusts the volume of the pump bore. A controller is coupled to the adjustment motor to dynamically control the adjustment motor, to cause the adjustment mechanism to be precisely and repeatably modified, and/or to control the particular waveform. As such, the volume of fluid dispensed is extremely accurate, repeatable, and dynamic.

Hydraulically And Volumetrically Dispensing And Filling Fluid

US Patent:
2003011, Jun 19, 2003
Filed:
Mar 12, 2002
Appl. No.:
10/096706
Inventors:
Scott Peeler - Sandy UT, US
Brian Guest - Farmington UT, US
International Classification:
G01F011/00
US Classification:
222/001000, 222/333000, 222/386000
Abstract:
Systems and methods for hydraulically and volumetrically filling and dispensing target fluid. A hydraulic system comprises an actuator, a hydraulic coupler that includes substantially incompressible hydraulic liquid, and a target fluid container. The actuator includes a motor or driver, such as a step motor, linear actuator, servomotor, pneumatic motor, or other similar device, to selectively drive a piston of the hydraulic coupler. The coupler includes a conduit, column, shaft or other leak proof assembly that acts as a conduit for the substantially incompressible hydraulic liquid and includes a cord and a piston, which is selectively pushed by the incompressible hydraulic liquid, thereby driving a plunger to selectively press against a slidable wall of the target fluid container, causing the target fluid to be dispensed therefrom, or retract the plunger from the container, pulling the slidable wall therewith through the use of a vacuum selectively created between the plunger and the wall. Furthermore, the system may include a controller that is configured to control the target fluid dispensed and to receive input from a user.

Integrated Safety And Motion Control Testing Device

US Patent:
2014003, Feb 6, 2014
Filed:
Jul 26, 2013
Appl. No.:
13/951741
Inventors:
Scott C. Peeler - Sandy UT, US
Brian W. Guest - Farmington UT, US
Christopher H. Jensen - Stansbury Park UT, US
International Classification:
G01M 3/02
US Classification:
73 37
Abstract:
In accordance with some implementations of the described invention, a testing device is provided which includes a safety shield having one or more motion control cam tracks, wherein the cam tracks are configured to receive a cam follower that is connected to a mounting member onto which is mounted one or more testing modules. The testing modules perform specific functions for testing a sample product. The mounting member is moved within the safety shield as the cam follower tracks within the motion control cam tracks. In such implementations, the mounting member is further connected to two or more hydraulic cylinders or other actuators which are configured to move the mounting member to various positions within an x-axis and a y-axis. The integrated safety and motion control features of the safety shield provide precise, repeatable movement of the mounting member while preventing injuring to a user. Other implementations are also described.

Integrated Safety And Motion Control Testing Device

US Patent:
2016023, Aug 18, 2016
Filed:
Apr 25, 2016
Appl. No.:
15/138012
Inventors:
- Salt Lake City UT, US
Brian W. Guest - Farmington UT, US
Christopher H. Jensen - Stansbury Park UT, US
International Classification:
G01M 3/02
Abstract:
In accordance with some implementations of the described invention, a testing device is provided which includes a safety shield having one or more motion control cam tracks, wherein the cam tracks are configured to receive a cam follower that is connected to a mounting member onto which is mounted one or more testing modules. The testing modules perform specific functions for testing a sample product. The mounting member is moved within the safety shield as the cam follower tracks within the motion control cam tracks. In such implementations, the mounting member is further connected to two or more hydraulic cylinders or other actuators which are configured to move the mounting member to various positions within an x-axis and a y-axis. The integrated safety and motion control features of the safety shield provide precise, repeatable movement of the mounting member while preventing injuring to a user. Other implementations are also described.

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