The ConductiSense range of online conductivity meters from Pi utilize the very latest and best conductivity sensors available in the world today for measuring the online conductivity of any aqueous solution.
Online conductivity meters are common in today’s water treatment and process plants. ConductiSense is a stable, reliable, online conductivity meter for a reasonable cost.
The ConductiSense sensors and accessories are available with different controllers giving you the same great performance with different communication, display, and control options. With the ConductiSense range of Conductivity Monitors, you get everything that you need – and nothing that you don’t.
Our light industrial conductivity sensor utilizes Graphite technology. The durable epoxy body construction provides a rugged and dependable sensor for potable water and clean water. Mount them in-line, in a pipe “T” fitting, or submerse them into a tank. For many applications, the epoxy body conductivity sensors are the lowest cost, most reliable conductivity sensor to use, especially for process applications. Rugged epoxy bodies make the sensors virtually unbreakable. These are an excellent choice to use as standard online conductivity electrodes in the water and related industries.
The toroidal inductive conductivity sensors features a wide measurement range and dependable toroidal technology over the range 0-2,000,000 μS/cm. Resistant to corrosion, coatings and fouling common to contacting conductivity sensors, this probe is designed for a trouble free and long service life. Noryl is the standard material of construction and has a wide solvent tolerance and temperature stability to 105°C. All models can be submersed by utilizing the 3/4” NPT threads on the sensor or installed in 2” NPT tees for in-line deployment. A temperature sensor is built into the conductivity sensor for automatic temperature compensation.
- Resists coating, corrosion and fouling
- Durable Noryl (plastic) construction
- Easy installation
- Low purchase cost
- Custom tee for in-line mounting
Boiler Conductivity Sensor
A variety of stainless steel sensors are also available for high temperature applications. Please contact us for further information.
Document | Type | Size |
---|---|---|
ConductiSense |
Brochure | 583kB |
Conductivity – Background and Measurement |
Article | 693kB |
CRONOS® |
Brochure | 582kB |
CRIUS® |
Brochure | 584kB |
CRIUS® Remote Communications |
Brochure | 573kB |
CRONOS® and CRIUS® Control Options |
Technical Note | 534kB |
Remote Access GPRS |
Technical Note | 481kB |
benzene, alcohols, and petroleum products) have very low conductivities, while metals have very high conductivities. Measuring the conductivity of highly flammable liquids is very risky.
This should be done according to the following formula:
1 mg salt mixture/liter of distilled water = 1 ppm TDS, or in other words, X ppm TDS = X mg of salts + one liter of distilled water.
Remember that “X mg of salts” is the number of milligrams of a mixture of salt whose proportions simulate your test solution. An appropriate value for “X” is determined by the following rule:
Choose a ppm value for a calibrated solution as close as possible to the expected ppm values of the test solutions. If the ppm content of the test solution is expected to vary a great deal, it is best to choose a ppm value for the calibrated solution in the upper 1/3 of the TDS conductivity range.
standard solution, condition, rinse the probe in second sample of standard solution, use a third sample of standard solution to calibrate, and then adjust on the analyzer until the specified value is displayed. Recalibrate when you change ranges, or if readings seem to be incorrect.
The ‘Graphite’ sensor covers the range from 0-2000 µS/cm (0-2 mS/cm). Within that range we use different range constants (K- factor) to make the sensor more suitable for different applications. If you are measuring in the range 0-100 µS/cm then you will need a K- factor of 0.1. If you are measuring in the range 0-1000 µS/cm then a K-factor of 1.