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Myron L O72S ORP/Redox Sensor, 1/2" MNPT Single Junction

Myron L

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SKU:
O72S
Availability:
Contact us for pricing
Connection-Size:
2-inch MNPT
Sensor-Type:
ORP
Brand:
Myron L
Product-Category:
Sensor/Instrument
TECHNICAL SPECIFICATIONS: Myron L O72S ORP/Redox Sensor, 1/2" MNPT Single Junction
Identification
Model / SKUO72S
BrandMyron L® Company
Country of OriginUnited States
Product TypeORP / Redox sensor
Measurement
ParameterORP / Redox
ElectrodePlatinum ORP electrode
Reference JunctionSingle junction
Temperature CompensationIntegral temperature sensor; automatic compensation to 25 °C between 0-100 °C / 32-212 °F
Process & Physical
Process Connection1/2" MNPT
Body MaterialCPVC
Pressure / TemperatureIntermittent use to 50 psi / 690 kPa at 100 °C / 212 °F (P72S typical). High-temperature models available — see the pH/ORP Sensor Selection Guide
Cable5-wire, 24 ga. shielded; 10 ft./3 m standard, 25 ft./8 m and 100 ft./30 m available
Compatibility720 Series II pH / ORP Monitor/controllers
Warranty
Six (6) Month Limited Warranty. Myron L applies a six-month limited warranty to all pH and ORP sensors, shorter than the two-year term on the instruments themselves.
WHERE THIS IS USED — 9 APPLICATIONS

Myron L publishes an application bulletin for each of these. The summaries below are ours; the linked bulletins are Myron L’s own and open in a new tab.

Boilers & Cooling Towers

Facilities, HVAC, process steam

Boilers and cooling towers concentrate dissolved minerals as water boils off or evaporates, and past a certain point that causes either scale or corrosion. Myron L notes that as little as 1/8 in. of scale can cost a boiler 18% of its efficiency and a cooling-tower heat exchanger 40%. Conductivity or TDS tracks the cycles of concentration so blowdown and bleed-off happen at the right moment — enough to protect the plant, not so much that water and treatment chemicals are wasted.

Measured here: Conductivity / TDS, pH, ORP, temperature, LSI

📄 Boilers & Cooling Towers Application Bulletin (PDF)
Environmental Monitoring

Wastewater, stormwater, surface water

Discharge to waterways, to municipal sewers and increasingly stormwater runoff all sit under permit limits, and demonstrating compliance means measuring at many points rather than one. Conductivity, pH, ORP, dissolved oxygen and nitrate together characterise both the health of a receiving water and the quality of an effluent, and handheld instruments make it practical to sample where the water actually is.

Measured here: Conductivity / TDS, pH, ORP, dissolved oxygen, nitrate, temperature

📄 Environmental Monitoring Application Bulletin (PDF)
Fountain Solutions (Lithographic Printing)

Commercial printing

In lithography the dampening (fountain) solution has to be held at the right concentration: too weak and the non-image area dries out, giving tinting, scumming and blanket piling; too strong and the ink over-emulsifies, weakening colour and changing its body and flow. pH was the traditional test, but most modern fountain solutions are buffered, so pH barely moves even when strength changes a lot. Conductivity tracks concentration directly and is now the more reliable control.

Measured here: Conductivity, temperature, pH

📄 Fountain Solutions (Lithographic Printing) Application Bulletin (PDF)
Hemodialysis & Dialysate

Clinical / medical

Dialysate composition directly affects patient safety — errors range from nausea and fatigue through to metabolic acidosis and sepsis. That puts three things under control: the proportioning and mixing of concentrate, the quality of the water it is mixed with, and the water used for reprocessing, maintenance and disinfection. Conductivity is the practical proxy for correct dialysate concentration, which is why dedicated dialysate instruments read in the narrow ranges these solutions occupy.

Measured here: Conductivity, temperature, pH, resistivity

Clinical use. Dialysate and dialysis water monitoring is subject to your facility’s own protocols and to applicable medical device regulation — confirm suitability before specifying.

📄 Hemodialysis & Dialysate Application Bulletin (PDF)
Horticulture & Growing

Nurseries, greenhouses, turf, irrigation

Three on-site tests tell a grower most of what a lab would: electrical conductivity, pH and alkalinity. EC reads the total dissolved fertiliser salts, so it shows whether feed strength and soil salinity are where they should be; pH governs whether those nutrients are actually available to the plant; and alkalinity determines how strongly the irrigation water will push the growing medium’s pH over time.

Measured here: Conductivity / EC, pH, alkalinity, temperature

📄 Horticulture & Growing Application Bulletin (PDF)
Hydroponics

Controlled-environment agriculture

With no soil to buffer it, the nutrient solution is the entire root environment, and managing it is the whole job. Conductivity gives the dissolved nutrient strength and pH governs which of the seventeen required elements the roots can actually take up. Both drift as plants feed and as water evaporates, so they are checked and corrected far more often than in soil growing.

Measured here: Conductivity / TDS, pH, temperature, dissolved oxygen

📄 Hydroponics Application Bulletin (PDF)
Oxidation Reduction Potential (ORP / Redox)

Disinfection, process control, water treatment

ORP measures the strength of the oxidisers and reducers present rather than their concentration, and it is reported in millivolts with no temperature correction. That distinction matters: a chlorine residual tells you how much is there, while ORP tells you how effectively it is actually oxidising. Positive readings indicate an oxidising solution such as chlorinated water; negative readings indicate a reducing agent such as sodium sulfite.

Measured here: ORP / redox, pH, free chlorine equivalent

📄 Oxidation Reduction Potential (ORP / Redox) Application Bulletin (PDF)
Reverse Osmosis

Desalination, industrial, medical, drinking water

Conductivity is the standard way to judge RO water quality and membrane performance, because comparing feed against permeate gives percent rejection directly. ORP and pH matter for membrane life rather than product quality: membranes are attacked by oxidisers such as chlorine, bromine, ozone and peroxide, so a high ORP signals a need for pretreatment while a low one can indicate biological activity and fouling. Reading ORP on the reject stream, where concentration is highest, shows even trace oxidisers or reducers.

Measured here: Conductivity / TDS, resistivity, ORP, pH, temperature

📄 Reverse Osmosis Application Bulletin (PDF)
Textiles Manufacturing

Wet processing, dyeing, finishing

Wet spinning, sizing, desizing, scouring, bleaching, mercerisation, dyeing and printing all depend on aqueous chemistry, and pH is the primary control in every one of them — it governs how effectively oxidising and reducing agents work and how dye takes up. Holding pH, conductivity or salt concentration, ORP and temperature to target conserves chemicals and energy, keeps shade and quality consistent, and reduces the effluent load that has to be treated before discharge.

Measured here: pH, conductivity / TDS / salt concentration, ORP, temperature

📄 Textiles Manufacturing Application Bulletin (PDF)

Application areas are those in which the Myron L® Company’s own application bulletin names this instrument. Bulletins are reproduced unaltered with Myron L’s copyright notices intact. Suitability for a specific installation should be confirmed with us before purchase.

Specifications taken from 720 II pH/ORP Sensor Selection Guide; 720 Series II Data Sheet, published by the Myron L® Company. Myron L reserves the right to change design, specifications and prices without notice — please confirm critical figures with us before purchase. Myron L®, Ultrameter®, CONTROLSTIK II™, RO-CHECK™ and AQUASWITCH™ are trademarks of the Myron L Company. Teflon® is a registered trademark of DuPont; Kynar® of Arkema; Ryton® PPS of Chevron Phillips Chemical Company LLC.

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