G01L19/003

PRESSURE MONITORING SYSTEM AND HOUSING THEREFOR
20200232864 · 2020-07-23 ·

Example aspects of an outer housing for a pressure monitoring system and a pressure monitoring system for a wet barrel hydrant are disclosed. The outer housing for a pressure monitoring system can comprise a sidewall shell defining an axis extending centrally therethrough and comprising an annular inner sidewall projection extending from a top end thereof; and a cap mounted to the sidewall shell, the cap defining an annular cap recess, wherein the annular inner sidewall projection is configured to engage the annular cap recess.

PRESSURE MONITORING SYSTEM FOR WET BARREL HYDRANT

Example aspects of a pressure monitoring system for a wet barrel hydrant, a pressure monitoring and leak detection system for a wet barrel hydrant, and a method for using a pressure monitoring and leak detection system are disclosed. The pressure monitoring system for a wet barrel hydrant can comprise a pressure sensor assembly comprising a pressure sensor and a connector, the pressure sensor configured to measure the pressure of a fluid received in the wet barrel hydrant, the connector configured to attach the pressure monitoring system to the wet barrel hydrant; a mounting flange coupled to the pressure sensor assembly; a main PCB configured to process pressure data measured by the pressure sensor; an antenna configured to send a signal representative of the pressure data; and a housing coupled to the mounting flange, the housing enclosing the processor and the antenna.

REMOTE SEAL SYSTEM WITH IMPROVED TEMPERATURE COMPENSATION
20200209899 · 2020-07-02 ·

A remote seal system includes a remote diaphragm having a first side configured to be exposed to a process fluid. A conduit is coupled to the remote diaphragm and includes a fill fluid in fluidic communication with a second side of the remote diaphragm. A temperature sensor is thermally coupled to the conduit and configured to sense a temperature of the fill fluid. In one alternative example, a remote sensing assembly includes a flexible elongate conduit having a first end coupled to a remote diaphragm in fluidic communication with a process fluid and a second end extending a length from the first end to a process fluid pressure transmitter. A substantially incompressible fill fluid is disposed within the flexible elongate conduit. The process fluid pressure transmitter is configured to generate an output value indicative of pressure in the process fluid based on a corresponding pressure in the fill fluid. A temperature detector is coupled to the flexible elongate conduit and is configured to provide a signal indicative of an average temperature of the fill fluid along the flexible elongate conduit. A compensation system calculates a thermal expansion value based on the average temperature and adjusts the pressure signal based on the thermal expansion value.

PRESSURE MEASUREMENT MODULE
20200209087 · 2020-07-02 ·

A module for measuring and monitoring an inlet and outlet pressure is described herein. The module includes an inlet pressure port for fluid communication to a fluid line before a filter and the inlet pressure port comprising a first pressure sensor. The module includes an outlet pressure port for fluid communication to a fluid line after the filter and the outlet pressure port comprising a second pressure sensor. At least one signal port is disposed in the module. The first pressure sensor and the second pressure sensor during operation are in signal communication with the at least one signal port.

CARTRIDGE TYPE FLUID DISPENSING APPARATUS AND METHODS

A dispensing apparatus having various features is described. The dispensing apparatus can receive a cartridge having a movable plunger configured to direct the fluid through a dispensing valve. The plunger can be movable under a force applied by air pressure. The cartridge can be inserted in the dispensing apparatus using a clamping and sealing mechanism and can be released using a cartridge ejector. The dispensing apparatus can include a ball valve having a ball defining an internal passageway that selectively aligns with a second internal passageway outside of the ball, a brush mounted via an elongating mechanism, and/or a gear train transmitting power from the elongating mechanism.

FITTING WITH A LIQUID SEAL
20200191621 · 2020-06-18 ·

The present disclosure is directed to an instrumentation fitting with a liquid seal to prevent fluid leakage therefrom. The instrumentation fitting includes a connector configured to connect to an apparatus having a pressurized region with fluid therein. A sealing grommet is positionable within the connector and an extension tube is engageable with the sealing grommet within the connector. The extension tube is configured to extend to a height H above the pressurized region and fill with liquid to a height level h to provide a hydraulic head sufficient to equalize the pressure within the pressurized region.

Cartridge type fluid dispensing apparatus and methods

A dispensing apparatus having various features is described. The dispensing apparatus can receive a cartridge having a movable plunger configured to direct the fluid through a dispensing valve. The plunger can be movable under a force applied by air pressure. The cartridge can be inserted in the dispensing apparatus using a clamping and sealing mechanism and can be released using a cartridge ejector. The dispensing apparatus can include a ball valve having a ball defining an internal passageway that selectively aligns with a second internal passageway outside of the ball, a brush mounted via an elongating mechanism, and/or a gear train transmitting power from the elongating mechanism.

FLOW PASSAGE UNIT, PRESSURE DETECTION DEVICE, AND METHOD FOR MANUFACTURING FLOW PASSAGE UNIT
20200182727 · 2020-06-11 ·

To provide a flow passage unit which is detachably mounted on a pressure detection unit, the flow passage unit including: a flexible flow passage part including a flexible flow passage which introduces liquid flowing in the flexible flow passage part from an inflow port, to an outflow port, and which is made of a flexible material; a body portion configured to form a pressure transmitting space which surrounds an outer peripheral surface of the flexible flow passage part; a diaphragm mounted on the body portion and having a thin-film shape; and a pressure transmission medium filled in the pressure transmitting space, and being non-compressible, wherein the flexible flow passage is a flow passage which has a predetermined inner diameter, and which extends in a straight line along an axis.

Oil pressure sensor attachment structure

According to one aspect of the present invention, there is provided an oil pressure sensor attachment structure including: the oil path body; the sensor case; and a fixing member which fixes the sensor case to the oil path body. The sensor case has a columnar portion which is disposed along a central axis extending in an up and down direction, and a flange portion which protrudes from the columnar portion to an outside in a radial direction. The fixing member has a fixing portion which comes into contact with the oil path body and is fixed thereto, and a pressing portion which comes into contact with the upper surface of the flange portion and presses the flanges portion against the oil path body. The fixing portion and the pressing portion are disposed with an interval therebetween.

PROCESS CONNECTION FOR A SENSOR AND METHOD OF MANUFACTURING THE PROCESS CONNECTION

The present disclosure relates to a process connection for connecting a sensor to a process inlet via a process seal and a fixing element. The process connection includes a sensor housing and a clamping element. The sensor housing has a housing body configured to receive the sensor and a housing collar that extends around the housing body and has a first sealing section, which encircles the housing body, and a contact area. The housing collar is formed integrally with the housing body. The first sealing section is suitable for receiving the process seal to connect the process inlet to the housing collar in a fluid-tight manner. The clamping element has a contact area which is suitable for coming into contact with the contact area of the housing collar to press the housing collar onto the process seal.