CamGT 3V-600

  • Surface optimisée pour une durée de vie plus longue ou des applications haut débit
  • Haute efficacité de filtration (jusque H13)
  • Plis verticaux brevetés
  • Evolution lente de la perte de charge pour un meilleur rendement énergétique
  • Cadre robuste pour éliminer les risques de fuite
  • Grille de support aérodynamique brevetée
  • Respecte les exigences les plus strictes de l'industrie charge moindre
  • ICON34 gasket_01_00_10
  • ICON3 efficiency guarantee
  • ICON5 Low Pressure Drop
  • ICON7 iso16890.ai
  • ICON9 en1822
  • ICON15 LCC optimized
Article ISO 29461 Classe ISO 16890 Classe de filtration EN779 Largeur (mm) Hauteur (mm) Profondeur (mm) Débit (m3/h) Perte de charge initiale (Pa) Classe de filtration EN1822
CAM GT 3V 600-T8-Std T8 ePM1 80% F8 592 592 600 4250 95
CAM GT 3V 600-T9-Std T9 ePM1 85% F9 592 592 600 4250 115
CAM GT 3V 600-T10-Std T10 592 592 600 4250 135 E10
CAM GT 3V 600-T11-Std T11 592 592 600 4250 140 E11
CAM GT 3V 600-T12-Std T12 592 592 600 4250 190 E12
CGT3VCB-T12-0592/0592/0600 T12 592 592 600 4250 190 E12
CAM GT 3V 600-T13-Std T13 592 592 600 4250 240 H13
 L'outil de calcul de la perte de charge est disponible

Calculer la perte de charge

Choisissez un filtre de "pleine taille" dans le tableau ci-dessous pour calculer la perte de charge.
Les dimensions des filtres de "pleine taille" sont généralement de 592x592 mm pour les filtres à poches et panneaux filtrants, et de 610x610 mm pour les filtres HEPA.

Spécifications

Application
Admission d'air de turbines à gaz.
Cadre
Plastique PS moulé, ABS
Média
Fibre de verre
Max temperature (°C)
70°C
Humidite relative
100%
Perte de charge finale recommandée
600 Pa
Separateur
Hot-melt
Joint
Polyuréthane coulé d'une pièce
Grille, aval
De renfort ABS
Joint
Polyuréthane
Débit max
1,8 x débit nominal
Commentaire
Pression d'éclatement: > 6250 Pa

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