IP Library Granted Patent US 11,408,450
Granted Patent B2
US 11,408,450 · App. 16/468,898 · Granted Aug 9, 2022

Device and method for monitoring response time in a valve manifold assembly

Inventors: Enrico De Carolis (Oakland Township, MI); Gregory A. Wells, Sr. (Glendale, AZ); Mitch Frazier (Chandler, AZ)
Assignee: ASCO, L.P.
F15B19/005
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Quick Facts
Patent No.
US 11,408,450
App. No.
16/468,898
Granted
Aug 9, 2022
Kind
B2
Abstract

A field bus solenoid valve assembly has a sensor for detecting the commencement of an actuation cycle for moving a piston in a cylinder and piston assembly. A position sensor detects an end position of a piston in a cylinder and piston assembly at the end of the actuation cycle. A timer times the elapsed time between the initiation of the actuation cycle of the piston and when the position sensor for detecting an end position detects the piston in its end position at the end of the actuation cycle. A comparator operably connected to a storage device and the sensors for comparing elapsed time from the sensors to a normalized time or profile and a predetermined tolerance boundary in the storage device. An alarm device is actuated if the elapsed time is outside of the set tolerance boundary.

Claims (29)

1. A fluid control system comprising:

a controller;

a fieldbus communication module controlled by the controller and connected to the controller via a fieldbus network;

at least one manifold unit connected to the fieldbus communication module, the manifold unit including at least one solenoid control valve for controlling flow of a fluid;

at least one fieldbus I/O module connected to the fieldbus communication module; and

a field device pneumatically connected to the manifold unit, the field device including a piston and sensors for determining when the piston is in its extended or retracted position, the sensors electrically connected to the fieldbus I/O module;

the fieldbus communication module configured to process signals received from the controller and, in response, send signals to the solenoid control valve to control flow of the fluid to the field device;

wherein the fieldbus communication module is further configured to process the signals received from the controller and signals received from the field device sensors via the fieldbus I/O module to determine the elapsed time between an initiation and completion of an actuation cycle of the piston and to actuate an alarm if the elapsed time is outside of a predetermined tolerance boundary.

2. The system of claim 1 wherein the fieldbus communication module includes a display for displaying the alarm.

3. The system of claim 1 wherein the controller is a Programmable Logic Computer (PLC) and the fieldbus communication module is configured to send the alarm to the PLC.

4. The system of claim 1 wherein the alarm is an audio alarm.

5. A fluid control system comprising:

a controller;

a fieldbus communication module controlled by the controller and connected to the controller via a fieldbus network;

at least one manifold unit connected to the fieldbus communication module, the manifold unit including at least one solenoid control valve for controlling flow of a fluid;

at least one fieldbus I/O module connected to the fieldbus communication module; and

a field device pneumatically connected to the manifold unit, the field device including a piston and sensors for determining when the piston is in its extended or retracted position, the sensors electrically connected to the fieldbus I/O module;

the fieldbus communication module configured to process signals received from the controller and, in response, send signals to the solenoid control valve to control flow of the fluid to the field device;

wherein the fieldbus communication module is further configured to process the signals received from the controller and signals received from the field device sensors via the fieldbus I/O module to determine the elapsed time between an initiation and completion of an actuation cycle of the piston and to actuate an alarm if the elapsed time is outside of a predetermined tolerance boundary; and

wherein the fieldbus I/O module includes a display for displaying the alarm.

6. A fluid control system comprising:

a controller;

a fieldbus communication module controlled by the controller and connected to the controller via a fieldbus network;

at least one manifold unit connected to the fieldbus communication module, the manifold unit including at least one solenoid control valve for controlling flow of a fluid;

at least one fieldbus I/O module connected to the fieldbus communication module; and

a field device pneumatically connected to the manifold unit, the field device including a piston and sensors for determining when the piston is in its extended or retracted position, the sensors electrically connected to the fieldbus I/O module;

the fieldbus communication module configured to process signals received from the controller and, in response, send signals to the solenoid control valve to control flow of the fluid to the field device;

wherein the fieldbus communication module is further configured to process the signals received from the controller and signals received from the field device sensors via the fieldbus I/O module to determine the elapsed time between an initiation and completion of an actuation cycle of the piston and to actuate an alarm if the elapsed time is outside of a predetermined tolerance boundary; and

wherein the sensors are electrically connected to separate I/Os of the fieldbus I/O module.

Assignments (2)
MERGER AND CHANGE OF NAME Recorded Jun 25, 2021
From: NUMATICS, INCORPORATED; ASCO, L.P.
To: ASCO, L.P.
Reel/Frame 056664/0605 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 24, 2021
From: DE CAROLIS, ENRICO; WELLS, GREGORY A., SR.; FRAZIER, MITCH
To: NUMATICS, INCORPORATED
Reel/Frame 056659/0882 →
Continuity (1)
Related Publication 20200232484A1 · Jul 23, 2020