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Manual abstract: user guide HONEYWELL DNSDATASHEET
Detailed instructions for use are in the User's Guide.
[. . . ] Furthermore, the stroke of the bellows is limited by an internal stop so that the forces resulting from the overpressure cannot be transmitted to the switching device. The parts of the sensor in contact with the medium are welded together without filler metals. Copper bellows, which are used only for low pressure ranges, are soldered to the sensor housing. The sensor housing and all parts of the sensor in contact with the medium can also be made entirely from stainless steel 1. 4571 (DNS series). [. . . ] We equip all units which are explicitly designed for such use with microswitches having gold contacts, a grounding screw and -- for ease of identification -- a blue cable entry.
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Pressure switches Mechanical pressure switches
General information about explosion protection
Zone classification
Explosion risk areas are grouped into zones according to the likelihood of a dangerous explosive atmosphere according to EN 1127-1 occurring. When assessing the explosion hazard, i. e. when identifying explosion risk areas, the "Guidelines for the Avoidance of Danger due to Explosive Atmospheres with Examples (ExRL)" of the German Insurance Association for the Chemical Industry [Berufsgenossenschaft Chemie] must be taken into account. If the situation concerns a special case or if doubts exist as to the definition of explosion risk areas, the matter shall be decided by the supervisory authorities (Trade Supervisory Office [Gewerbeaufsichtsamt], where applicable with the assistance of the Insurance Association or the Technical Control Boards [Technische Überwachungsvereine]). In Zones 0 (20) and 1 (21), only electrical equipment for which a type test certificate has been issued by a recognized testing agency may be used. In Zone 0 (20), however, only equipment expressly authorized for that zone may be used. Equipment approved for use in Zones 0 (20) and 1 (21) may also be used in Zone 2 (22). Under the new European Directive 94/9 EC (ATEX 100a), a distinction is made between gas atmospheres and dust atmospheres. This results in the following zone classifications: Zone 0 continuously or for long periods Zone 0 (gas) is a place in which a dangerous explosive atmosphere is present continuously or for long periods. This normally includes only the interior of containers or the interior of apparatus (evaporators, reaction vessels etc. ), if the conditions of Zone 0 are fulfilled. Zone 1 (gas) is a place in which a dangerous explosive atmosphere can be expected to occur occasionally in normal operation. This may include the immediate vicinity of Zone 0. Occasional danger = 10 to 1000 hours/year. Zone 2 (gas) is a place in which a dangerous explosive atmosphere can be expected to occur only rarely and then only for short periods. This may include areas surrounding Zones 0 and/or 1. Danger only under abnormal operating conditions < 10 hours/year. Zone 20 (dust) is a place in which a dangerous explosive atmosphere in the form of a cloud of dust in air is present continuously or for long periods, and in which dust deposits of unknown or excessive thickness may be formed. Dust deposits on their own do not form a Zone 20. Zone 21 (dust) is a place in which a dangerous explosive atmosphere in the form of a cloud of dust in air may occasionally occur in normal operation, and in which deposits or layers of inflammable dust may generally be present. This may also include the immediate vicinity of Zone 20. Occasional danger = 10 to 1000 hours/year. Zone 22 (dust ) is a place in which a dangerous explosive atmosphere may be expected to occur only rarely and then only for short periods. [. . . ] Contact arrangement Single-pole changeover switch. Switching capacity Normal EEx-d 250 VAC 250 VDC 24 VDC (ohm) (ind) (ohm) (ohm) 8 A 5 A 0. 3 A 8A 3 A 2 A 0. 03 A 3A
Product Summary Type Setting range Switching differential (mean values) 45 50 30 40 60 0. 1 0. 15 0. 3 0. 5 mbar mbar mbar mbar mbar bar bar bar bar Max. permissible pressure 3 6 6 6 6 16 16 16 25 bar bar bar bar bar bar bar bar bar Dimensioned drawing
Switching differential not adjustable VNS 301-201 -250. . . +100 mbar VNS 111-201 -1*. . . +0. 1 bar DNS 025-201 0. 04. . . 0. 25 bar DNS 06-201 0. 1. . . 0. 6 bar DNS 1-201 0. 2. . . 1. 6 bar DNS 3-201 0. 2. . . 2. 5 bar DNS 6-201 0. 5. . . 6 bar DNS 10-201 1. . . 10 bar DNS 16-201 3. . . 16 bar
1 + 15
1 + 18 1 + 16
. . . -203 types Adjustable switching differential Plastic-coated housing VNS 301351 250. . . +100 mbar 45 VNS 111351 1*. . . +0. 1 bar 50 DNS 025351 0. 04. . . 0. 25 bar 30 DNS 06351 0. 1. . . 0. 6 bar 40 DNS 1351 0. 2. . . 1. 6 bar 60 DNS 3351 0. 2. . . 2. 5 bar 0. 1 DNS 6351 0. 5. . . 6 bar 0. 15 DNS 10351 1. . . 10 bar 0. 3 DNS 16351 3. . . 16 bar 0. 5
mbar mbar mbar mbar mbar bar bar bar bar
3 6 6 6 6 16 16 16 25
bar bar bar bar bar bar bar bar bar
2 + 15
2 + 18 2 + 16
version, (housing 700), explosion protection EEx-d Ex-VNS 301 250. . . +100 mbar 45 mbar Ex-VNS 111 1*. . . +0. 1 bar 50 mbar Ex-DNS 025 0. 04. . . 0. 25 bar 30 mbar Ex-DNS 06 0. 1. . . 0. 6 bar 40 mbar Ex-DNS 1 0. 2. . . 1. 6 bar 60 mbar Ex-DNS 3 0. 2. . . 2. 5 bar 0. 1 bar Ex-DNS 6 0. 5. . . 6 bar 0. 15 bar Ex-DNS 10 1. . . 10 bar 0. 3 bar Ex-DNS 16 3. . . 16 bar 0. 5 bar
3 6 6 6 6 16 16 16 25
bar bar bar bar bar bar bar bar bar
3 + 15
3 + 18 3 + 16
Plastic coating The diecast aluminium housing in GD Al Si is chromated and stove-enamelled with resistant plastic. Corrosion tests with 3% saline solution and 30 temperature changes from +10 to +80°C showed no surface changes after 20 days.
Explosion protection EEx-i with ZF 513 Example for ordering: DNS. . . -513 * At very high vacuums, close to the theoretical maximum of 1 bar, the switch may not be usable in view of the special conditions of vacuum engineering. [. . . ]
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