SPEDIZIONI IN 24/48 ORE IN TUTTA ITALIA
logo

Griglia a barre fisse alluminio 1000x100 RAL9003 Systemair 217447


€ 39,04


€ 50,75

IVA incl.


Seleziona la tua taglia:
Selezionare una misura
Articolo disponibile anche in questi colori:
Consegna: 1-3 giorni
Solo 1 pezzo disponibile
Disponibilità immediata
In arrivo Non disponibile Non disponibile. Vedi alternativa.
EAN:
Collezione:
Materiale:
SKU: 217447
Colore:
Misura:
Il Prodotto è momentaneamente non disponibile!

Griglia lineare a doppio filare 1000x100 mm passo 12 mm in alluminio bianco Systemair NOVA L1 2 1000x100 1 12 SW 217447


La griglia lineare Systemair NOVA-L1-2-1000x100-1-12-SW è progettata per la mandata dell’aria in impianti di ventilazione e trattamento aria. Realizzata in alluminio estruso con finitura bianco RAL9003, presenta una configurazione a doppio filare con primo filare fisso e secondo regolabile, ideale per una diffusione precisa del flusso d’aria.
Il prodotto è certificato per conformità igienica HY e dotato di Dichiarazione Ambientale di Prodotto (EPD), garantendo elevate prestazioni, lunga durata e ridotto impatto ambientale. La griglia può essere installata tramite clips o viti, con controtelaio consigliato.


Caratteristiche principali:

  • Griglia lineare a doppio filare per mandata aria
  • Primo filare fisso e secondo regolabile
  • Installazione a clips o a viti
  • Finitura bianco RAL9003
  • Elevata igiene: certificazione HY
  • Dichiarazione ambientale EPD
  • Ideale per locali commerciali, uffici e aree industriali
  • Disponibile per installazioni in linea continua
  • Adatta a condotti rettangolari

Caratteristiche tecniche:

  • Marca: Systemair
  • Modello: NOVA-L1-2-1000x100-1-12-SW
  • Codice articolo: 217447
  • Dimensioni nominali: 1000 × 100 mm
  • Filare: doppio (1 fisso + 1 regolabile)
  • Configurazione alette: singola deflessione
  • Passo alette: 12 mm
  • Finitura: Bianco RAL9003
  • Materiale: alluminio estruso
  • Installazione: a clips (consigliato controtelaio UR-NOVA-1000x100)
  • Portata aria: 504 / 784 / 1121 m³/h
  • Calo di pressione: 5 / 11 / 23 Pa
  • Livello potenza sonora: 24 / 29 / 34 dB(A)
  • Lunghezza lancio (0,2 m/s): fino a 15,3 m
  • Peso: 1,11 kg
  • Accessori compresi: UR-NOVA-1000x100 (41263)
  • Accessori compatibili:
    • R1-NOVA-1000x100 (41284)
    • Telaio di montaggio UR-NOVA
    • Serie accessori NOVA-L

La griglia per ventilazione aria Systemair offre una soluzione affidabile per la mandata e la ripresa dell’aria, soddisfacendo le esigenze di ambienti dove l’igiene e la qualità dell’aria sono fondamentali. Costruita in alluminio verniciato bianco, è progettata per mantenere elevate prestazioni in un intervallo di portata fino a 1121 m³/h, con una perdita di carico minima e un livello di rumorosità tra i più bassi della categoria.


Le sue dimensioni di 1000x100 mm e la configurazione delle barre fisse orizzontali con passo di 12 mm assicurano un flusso d’aria controllato e uniforme. Questo prodotto garantisce semplicità di installazione, grazie alla possibilità di fissaggio tramite clips o telaio, ed è dotato di finitura bianca RAL9003 che si integra facilmente in ogni tipo di ambiente. La certificazione igienica conforme alla norma EN ISO 846 attesta la resistenza contro funghi e batteri, offrendo sicurezza e comfort in ambienti civili, commerciali e industriali.
La griglia Systemair unisce efficienza tecnica, cura nei materiali e rispetto per l’ambiente grazie alla Dichiarazione di Prodotto Ambientale (EPD), risultando un componente affidabile in ogni impianto di climatizzazione.

  • Soluzione per ventilazione ambientiPermette la distribuzione e la ripresa dell'aria in impianti di climatizzazione, mantenendo una qualità dell’aria ottimale.
  • Materiali certificati EN ISO 846L’alluminio testato assicura igiene e resistenza contro batteri e funghi, ideale per locali pubblici e privati.
  • Portata aria elevata e silenziositàFino a 1121 m³/h con livelli di rumore ridotti a 26 dB(A) per comfort acustico.
  • Installazione versatilePredisposta sia per fissaggio a clips che tramite viti o telaio, adatta a diverse tipologie di pareti e controsoffitti.
  • Finitura bianca RAL9003Design pulito facilmente integrabile, resistente per ambienti civili e industriali.
Di questo prodotto abbiamo 1 quantità a disposizione nella nostra esposizione, in alcuni casi possiamo venderti il prodotto ad un prezzo scontato che dobbiamo valutare di volta in volta in base all'usura.
Può piacerti anche
Abbinalo con
Prodotti simili
Condizionatore o Climatizzatore? Scopri le differenze e scegli il comfort ideale
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
Continua a leggere
Condividi:
Dal montaggio alla manutenzione: guida completa agli accessori per climatizzatori
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
Continua a leggere
Condividi:
Split, Multi Split e Unità Esterne: la guida completa per scegliere il climatizzatore giusto
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
Continua a leggere
Condividi: