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Kayden CLASSIC 810 Thermal Flow, Level & Interface Switch

SKU: MIR9000e-36

The Clasic 810 Serie s manufactured to order. Typically ships fom factory within £3 days ARO. The Kayden CLASSIC 810 Flow, Level, and Interface Switch features precision-welded, highly accurate stainless steel Senso.

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  • Datasheet
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Brand

Kurz Instruments

Features & Benefits

Benefits
The adoption of thermal dispersion flow, level, and interface switches confers tangible operational, economic, and safety advantages. From ther high durability and minimal
maintenance needs to their seamless integration and adaptability, these instruments support more reliable, efficient, and compliant industrial processes. Thermal dispersion, or
calorimetric, flow, level, and interface switches offer a multitude of advantages that contribute to improved process reliability, safety, and cost-effectiveness in industrial settings.

These benelits span operational performance, lfecycle economics, and integration flexibility.

HIGH RELIABILITY & LONG-TERM STABILITY

Robust sensor elements and protective housings are highly durable in harsh conditions, allowing them to withstand corrosive lids, extreme temperatures, high pressures, and
abrasive or viscous media

The fundamental thermal measurement principle i stable over time, ensuring stable, repeatable performance over years of operation.

BROAD APPLICABILITY & VERSATILE SENSING CAPABILITY.

A single thermal dispersion instrument can often serve multiple functions detecting flow/no-flow conditions, monitoring iqud levels, and identifying interface boundaries in
multi-layer lid systems, as its operating principle and technology ae inherently versal. The same fundamental principle applies to both gases, liquids, and slurries
accommodating a wide range of process fluids, including water, ois chemicals, solvents, and slurries.

Thermal dispersion switches can accurately detect vry low flow rates and respond reliably in varying fluid densities, viscosities, and temperatures.

COST-EFFECTIVE OWNERSHIP & LOW MAINTENANCE.

With no moving parts to recalibrate, repair, or replace, scheduled maintenance requirements and associated abor costs ae drastically reduced, keeping maintenance demands to
an extreme minimum.

The inherent ruggedness and simplicity in desig lead to an extended service fe with intervals between service and fewer unscheduled shutdowns, lowering th tota cost of
ownership, Kayden thermal dispersion devices require na periodic recalibration and hod their calibration wel, further cutting maintenance expenditures.

SAFETY & REGULATORY COMPLIANCE

Kayden’s models, standard with failsafe operation, can be configured o go nto safe states under defined fault conditions, supporting plant safety intiatives and regulatory
compliance. All models are available with explosion-proof certifications, enabling use n flammable o otherwise hazardous environments while meeting regulatory standards.
EASY INTEGRATION & REDUCED PROCESS IMPACT

‘Thermal dispersion switches are designed a insertion-type instruments that can be nstaled through a simple nozzle or port, minimizing ping modifications and associated
costa Because the sensor elements are smal and stzeamiined, their presence inthe flow path introduces negligible pressure 10s, helping maintain eficiency in uid transport,
Available in varius geometries and instalation options, these switches readily fit existing systems and can be located in dificult to-access or space-restricted areas.
ENHANCED PROCESS CONTROL & OPTIMIZATION

The continuous, real-time monitoring of steady, non-interrupted dats stream enbles immediate recpanse to changing conditions, improving process control and product
quality. Reliable flow/no-flow and level detection help identify early detection of anomalies and problems such as pum failures, line blockages, leaks, o interface layer shits before.
they escalate

“THERMAL FLOW, LEVEL & INTERFACE SWITCHES

Kayden’s thermal dispersion flow, level, and interface switches and transmitters offer many distinct advantages that make them highly valuable for monitoring and controlling the
flow or level of quid, gases, and surres in various industrial applications, making them highly effective and dependable for critical applications in industries such as chemical
processing, oil and gas, water and wastewater management, and pharmaceuticals, where precise monitoring of flow or level is essential or operational safety and efficiency.

NO MOVING PARTS.

Thermal dispersion devices rely on temperature differential rather than mechanical mation, eliminating wear-prona components such as paddles, float, or turbines. This inherently
reduces the ikelinood of mechanical failure.

‘Thermal dispersion switches do not have any moving parts, which significantly reduces the potential for mechanical wear and tea. This sbsence of moving parts leads to increased
dural and reliability, minimizing maintenance requirements and prolonging the lfespan of the device, while providing simpler design 3nd operation, reducing the risk of
operations failures, and simplifying maintenance procedures. Choose thermal dispersion switches for ther igh relsbilty and simplicity.

VIRTUALLY NO PRESSURE LOSS.

The design of thermal dispersion flow sensors ensures tht they Introduce very tle resistance tothe flow. Ths characteristic is crucial in applications where maintaining the
existing pressure level is critical,

Thermal dispersion flow sensors, having no moving pats and providing minimal intrusion into the flow, ensure tha they do not significantly disrupt the flud’s path or create
turbulence, thereby causing minimal interference obstruction to the flow of the medium and reducing the potential fo pressure drops. By minimizing pressure oss, these sensors.
help maintain energy efficiency In the system, reducing the need for addtional energy to compensate for pressure drops. This feature makes them idea for use In systems where
pressure stability is crucial, such asin certain chemical processing or HVAC applications.

Kayden’s Classic 800 Series of therm dispersion flow switches and transmitters are particularly advantageous in applications where maintaining the origina pressure of the
system is crucial. Their design minimizes pressure drop, ensures high accuracy and relabity, and offers a versatile solution for a wide range of industrial applications. These
benefits make them an excellent choice when pressure los s a critical consideration.

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