Jutikliai

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Jutikliai stebėsenai ir pagal poreikį valdomam įrenginių valdymui

Jutikliai pateikia matavimo duomenis, kuriais remiantis ištraukimo, filtravimo ir vėdinimo įrenginiai gali reaguoti automatiškai. Jie, pavyzdžiui, fiksuoja slėgį, slėgio skirtumą, oro srautą, temperatūrą ar kitus eksploatacijai svarbius parametrus, todėl galima gerokai tiksliau valdyti sistemas nei naudojant vien tik laiko arba įjungimo būsenomis pagrįstus sprendimus.

Šioje kategorijoje rasite jutiklius įvairioms pramoninės oro technikos užduotims. Atsižvelgiant į taikymą, jutikliai gali būti naudojami filtrams stebėti, eksploatacinėms būsenoms fiksuoti, tūriniam srautui reguliuoti arba matavimo duomenims perduoti valdikliams ir dažnio keitikliams. Svarbu, kad matavimo diapazonas, išėjimo signalas, montavimo vieta ir aplinkos sąlygos atitiktų konkrečią paskirtį.

Siekiant užtikrinti patikimą veikimą, jutiklių nereikėtų vertinti izoliuotai. Reguliavimo kokybei įtakos turi matavimo vieta, užterštumas, linijų nutiesimas ir signalo apdorojimas. Ypač matuojant slėgio skirtumą arba oro srautą svarbu tinkamai parinkti jutiklio padėtį. Saugai svarbiose arba potencialiai sprogiose zonose papildomai būtina atsižvelgti į konkrečius įrenginio koncepcijos reikalavimus.

Jūsų privalumai

✅ Patikimai fiksuoti eksploatacines būsenas

✅ Stebėti filtrų būklę ir slėgio santykius

✅ Įgalinti automatinį ventiliatorių valdymą

✅ Perduoti matavimo duomenis valdikliams ir dažnio keitikliams

✅ Užtikrinti skaidresnį ir efektyvesnį įrenginių veikimą

Peržiūrėti kaip

Produktų nerasta

Sensors for Extraction, Filtration, and Ventilation Technology

Sensors make operating conditions measurable. In extraction systems and filter systems, they provide readings that can be used for monitoring, control, or fault diagnosis. Typical measured variables include pressure, differential pressure, flow rate, temperature, and switch states. The right sensor technology thus enables automated and more transparent system operation.

Differential pressure as an important measurement

In filter systems, differential pressure is a key parameter. It describes the pressure difference across the filter. If this value increases, it may indicate increasing filter loading or higher system resistance. In suitable systems, the measured value can be used for filter cleaning, maintenance alerts, or fan control.

What to Look for in Sensors

✔ appropriate measurement unit and measurement range

✔ Appropriate source text

✔ Supply voltage and connection type

✔ Protection Class and Environmental Conditions

✔ Appropriate measurement point in the system

✔ Compatibility with control systems or variable frequency drives

The measurement point and installation location are key factors

A high-quality sensor will only provide usable readings if it is installed in a suitable location. Turbulence, contamination, condensation, or unsuitable pressure taps can distort measurements. Therefore, the sensor and its installation location should always be considered as a single unit.

Typical sensor tasks
Measurement unitTypical TaskApplication
Differential pressureMonitor resistanceFilter condition
PrintRecord equipment conditionPiping Network / Fan Control
flow rateMonitor air flowExtraction efficiency
Temperaturemonitor thermal conditionsProcess and Exhaust Air
Sensors as a Component of the Control System

In automated systems, the sensor value is often processed directly by the control system. One example is constant-pressure control: The sensor measures the pressure in the piping network, the control system compares it to the setpoint, and the variable frequency drive adjusts the fan speed. This allows a system to respond to changing open sensing points.

Typical Applications

✔ Monitoring of filter elements

✔ Fan speed control

✔ Monitoring of air and pressure conditions

✔ Troubleshooting and Maintenance Notifications

✔ Process monitoring in extraction systems

FAQ

What is the difference between pressure and differential pressure?
Pressure describes a measured value at a single point. Differential pressure compares two pressure points with each other.

Why is the measurement range important?
An inappropriate measurement range can lead to poor resolution or sensor overload.

Can sensors directly control a fan?
In most cases, the values are evaluated via a control system or a variable frequency drive.

Do sensors need to be maintained?
Depending on the measurement principle and environment, measurement points, lines, and functions should be checked regularly.

What is important in a dusty environment?
The protection class, measuring principle, and positioning must be appropriate for the load.

Consulting on Sensor Technology

The selection depends on the measured variable, measurement range, existing control system, desired output signal, and installation conditions.

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