SFP-EX
Breather caps
with splash guard
SFP-EX - Breather caps <BR>with splash guard
RoHS status
SFP-EX - Breather caps <BR>with splash guard
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Elesa StandardsMain dimensionsWeight
CodeDescriptiondhDLd2g
54001-EXSFP.30-3/8-EXG 3/89.53129.51011
54101-EXSFP.30-1/2-EXG 1/29.53129.51211
54201-EXSFP.40-3/4-EXG 3/411.54236.51822
Elesa StandardsMain dimensionsWeight
CodeDescriptiondhDLd2g
54022-EXSFP.30-3/8+F-EXG 3/89.53129.51013
54122-EXSFP.30-1/2+F-EXG 1/29.53129.51215
54222-EXSFP.40-3/4+F-EXG 3/411.54236.51828
Material
Polyamide based (PA) technopolymer. Resistant to solvents, oils, greases and other chemical agents.
- Cover: RAL 2004 orange, semi-matte finish, marked "OIL".
- Threaded connector: black colour, semi-matte finish.

Flat packing ring
NBR synthetic rubber.

Splash guard
Technopolymer.

Standard executions
- SFP-EX: without air filter (black splash guard).
- SFP+F-EX: with "tech-foam" air filter in polyurethane foam mesh (polyester base), air filtration 40 µ (grey splash guard).

ATEX directive compliance
The breather caps of the SFP-EX series comply with Health and Safety Requirements intended in 94/9/EC ATEX European Directive (explosive atmospheres) for equipments in Group II, category 2GD.
II 2 G D IIB T6, marked on the SFP-EX breather caps, represents the identification according to ATEX directive.
II: group of substances for which the product is suitable
2: identification of the category
G: identification of the type of explosive atmosphere (Gases or vapours)
D: identification of the type of explosive atmosphere (Dust)
IIB: group of explosive gases
T6: temperature class
Ambient and/or fluid temperature: -30 ÷ +80°C
The declaration of conformity to European Directives of this product is available and it is part of the product itself.

Features and applications
SFP-EX breather caps come complete with splash guard device (ELESA original design) that prevents oil loss and are particularly suitable for use where oil is violently agitated and could be splashed against breather cap.

Technical data
Air flow rate for each model can be determined from the graph calculating the difference between the pressure inside and outside the reservoir.

Breather caps
with splash guard
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