Frekvensomformer

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Frekvensomformere til ventilatorer med hastighedsregulering

Frekvensomformere muliggør trinløs hastighedsregulering af elmotorer og er dermed et vigtigt værktøj til energieffektive udsugnings- og ventilationsanlæg. I stedet for at drive ventilatorer permanent ved fuld ydelse kan hastigheden tilpasses det faktiske luftbehov. Det reducerer unødvendigt energiforbrug og giver en væsentligt mere fleksibel regulering af anlægget.

I denne kategori finder du frekvensomformere til forskellige motorydelser og anvendelser inden for udsugnings- og luftteknik. Afhængigt af udførelsen kan referenceværdier angives via potentiometre, sensorer, eksterne signaler eller overordnede styringer. Funktioner som blødstart, rampe­tider, fejlmeldinger og motorbeskyttelse kan også indgå i systemet.

Ved valget skal motorydelse, netspænding, mærkestrøm, reguleringsområde og installationsforhold passe sammen. Omgivelsestemperatur, kapslingsklasse og den ønskede styring er også vigtige faktorer. Ved længere motorledninger eller særlige EMC-krav kan yderligere foranstaltninger være nødvendige. En teknisk korrekt dimensionering sikrer, at ventilator, motor og frekvensomformer arbejder pålideligt sammen.

Dine fordele

✅ behovstilpasset hastighedsregulering

✅ lavere energiforbrug ved dellast

✅ blød motorstart og fleksible driftstilstande

✅ kan kombineres med sensorer og styringer

✅ bedre tilpasning af luftmængden til processen

Vis som

Ingen produkter fundet

Variable frequency drives in extraction and ventilation systems

Variable frequency drives control the speed of electric motors by adjusting frequency and voltage. In extraction and ventilation systems, this technology is primarily used to adjust fan power and flow rate to actual demand. This is particularly useful in situations with varying operating conditions, multiple measurement points, or systems that do not require their maximum airflow capacity at all times.

Why Speed Control Can Save Energy

For fans, power consumption varies significantly with speed. If the required flow rate is adjusted by reducing the speed rather than by throttling, energy consumption can be significantly reduced. This requires proper design of the entire system and a suitable motor.

Key Selection Criteria

✔ Motor power and rated motor current

✔ Mains voltage and connection type

✔ Desired frequency and speed range

✔ Control and setpoint signals

✔ Protection class and installation situation

✔ Cable lengths and EMC requirements

Control Based on Process Requirements

A variable frequency drive can be operated manually via a setpoint or automatically via a control system. In extraction systems, control via pressure or flow sensors is particularly useful. If the system resistance changes, the speed can be adjusted automatically. This helps maintain the desired operating condition more stably.

Typical Functions
FunctionMeaningBenefits
Speed ControlAdjust engine speeddemand-based flow rate
Ramp-up timesSmooth startup and shutdownlower mechanical stress
Setpoint InputProcess external setpointAutomation possible
Error outputReport IssuesImproved equipment monitoring
The motor and drive must be compatible

It’s not just the rated power that matters. The rated current, motor type, cooling system, and intended speed range must also be taken into account. At very low speeds, a motor’s self-cooling capacity may decrease. In addition, additional filters or shielded cables are recommended for long motor cables, sensitive electronics, or special EMC requirements.

Typical Applications

✔ Centrifugal fans in extraction systems

✔ Centralized filter systems with varying air demand

✔ Systems with automatic pressure control

✔ Multiple workstations connected to a shared piping network

✔ Process air systems with variable operating conditions

FAQ

Can any motor be operated with a variable frequency drive?
Not automatically. Motor specifications and suitability for the intended speed range must be verified.

Does a variable frequency drive always save energy?
This is especially true when the flow rate is frequently required to be below the maximum capacity.

Can a pressure sensor control the variable frequency drive?
Yes, provided that the signal type and control concept are appropriately designed.

Why are EMC measures important?
Variable frequency drives generate rapid switching operations. Proper installation reduces interference with other electrical components.

Is a frequency converter also suitable for retrofits?
Often yes, provided that the motor, power supply, control system, and installation are suitable for this purpose.

Design Consulting

To make a selection, the following information is required in particular: motor power, rated current, line voltage, desired control range, and the planned control concept.

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