Showing posts with label industrial. Show all posts
Showing posts with label industrial. Show all posts

Seametrics iMAG 4700 Series Flanged Magnetic Flow Meter

Seametrics iMAG 4700 Series

Flanged In-line Magmeter with Pulsed and 4-20mA Outputs

Used in water & wastewater treatment, municipalities, pump skids, pump stations, packaged plants, filtration systems, reclaimed water, hydraulic fracturing.

DOWNLOAD BROCHURE HERE

iMAG 4700 Features

  • Easy setup
  • External AC or DC Power Versions with Battery Backup
  • Minimal Straight Pipe
  • Meter Mounted Rate/Total Indicator
  • Pulse and 4-20mA Output Standard. Additional Optional Output: HART/4-20mA, Modbus or Digital
  • Optional Datalogger
  • NSF-61 Approved and IP68 Rated

For more information contact Instrument Specialties. Call them at 407-324-7800 or visit their website at https://isisales.com.

The MSA ULTIMA® X5000 Gas Monitor

The ULTIMA® X5000 Gas Monitor is the future of gas detection for oxygen, toxic and combustible gases. MSA XCell® gas sensors with TruCal® technology offer calibration cycles up to 18 months (local calibration respected). The gas transmitter's advanced, multi-lingual OLED display is easy to read and the unique touch-screen interface makes it simple to navigate.
  • X5000 Gas Monitor Features:
  • Bluetooth wireless technology
  • Check status and get alerts up to 75 ft. (23 m) away 
  • Modify settings/setpoints/alarms
  • Initiate calibration and view progress
  • Reduce setup time by at least 50%
  • Up to 1.5 YEARS between calibrations!
  • Adaptive Environmental Compensation (AEC)
  • 12+ Patents
  • 5 Yr. Expected Life
  • 3 Yr. Warranty


For more information on the ULTIMA® X5000, contact Instrument Specialties, Inc. Call them at 407.324.7800 or visit https://isisales.com.

Control Valve Flow Characteristics

industrial control valve with actuator and positioner
Industrial Control Valve
Courtesy Flowserve - Valtek
Flow characteristics, the relationship between flow coefficient and valve stroke, has been a subject of considerable debate. Many valve types, such as butterfly, eccentric disk and ball valves, have an inherent characteristic which cannot be changed (except with characterizable positioner cams). Flow characteristics of globe valves can be determined by the shape of the plug head.

The three most common types of flow characteristics are quick opening, equal percentage and linear. The adjacent figure shows the ideal characteristic curve for each. These characteristics can be approximated by contouring the plug. However, inasmuch as there are body effects and other uncontrollable factors, plus the need for maximizing the flow capacity for a particular valve, the real curves often deviate considerably from these ideals. When a constant pressure drop is maintained across the valve, the characteristic of the valve alone controls the flow; this characteristic is referred to as the “inherent flow characteristic.” “Installed characteristics” include both the valve and pipeline effects. The difference can best be understood by examining an entire system.

graph of control valve flow properties
Control valve flow properties
Courtesy Flowserve - Valtek

Equal Percentage


Equal percentage is the characteristic most commonly used in process control. The change in flow per unit of valve stroke is directly proportional to the flow occurring just before the change is made. While the flow characteristic of the valve itself may be equal percentage, most control loops will produce an installed characteristic approaching linear when the overall system pressure drop is large relative to that across the valve.

Linear


An inherently linear characteristic produces equal changes in flow per unit of valve stroke regardless of plug position. Linear plugs are used on those systems where the valve pressure drop is a major portion of the total system pressure drop.

Quick Open


Quick open plugs are used for on-off applications designed to produce maximum flow quickly.

This information provided courtesy of Flowserve Valtek. Share your control valve requirements and challenges with a valve specialist, combining your own process knowledge and experience with their product application expertise to develop effective solutions.

Self Regulating Heat Trace Guide

Self-regulating cable
Self-regulating cable
Self-regulating heat tracing systems are the preferred choice for most complex pipe-tracing applications. This is due to their parallel construction, which allows them to be cut to length and spliced in the field, and their self-regulating output, which provides more heat where it is needed.

Self-regulating cable uses conductive-polymer technology in both monolithic (solid core) and fiber (polymeric fiber wrap) heating cables. The heating element is made of polymers mixed with conductive carbon black. This special blend of materials creates electrical paths for conducting current between the parallel bus wires along the entire cable length.
In each heating cable the number of electrical paths between the bus wires changes in response to temperature fluctuations. As the ambient temperature surrounding the heating cable decreases, the conductive core or fiber contracts microscopically. This contraction decreases electrical resistance and creates numerous electrical paths between the bus wires. Current flows across these paths to warm the core or fiber.

The document below provides an excellent detailed description of self-regulating cable, its application and selection.


For more information, contact:

Instrument Specialties Inc.
3885 St. Johns Parkway
Sanford, FL 32771
phone 407.324.7800
fax 407.324.1104
e-mail: offices@isisales.com
www.isisales.com