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IP65/67NEMA Type 4XPN 25

BURKERT 309101 Type 2100 Pneumatically Operated 2/2-Way Angle Seat Valve

Burkert 309101 Type 2100 pneumatically operated 2/2-way angle seat valve. Features stainless steel body, PTFE seal, G 2 1/2 internal thread, and flow above seat for gases and steam.

BURKERT 309101 Type 2100 Pneumatically Operated 2/2-Way Angle Seat Valve

Burkert 309101 Type 2100 is a pneumatically operated 2/2-way angle seat valve specially optimized for decentralized process automation and fulfills tough criteria in process environments. Its unique design allows easy integration of automation units in all expansion stages. Maximum service life and tightness are achieved by the proven self-adjusting V-seal packing gland. The highly integrated system of valve and automation unit is characterized by its compact and smooth design, integrated pilot air ducts, high resistance to chemicals, and IP65/67 protection.

Key Features:

  • High flow rates and long service life
  • Flow-optimized stainless steel valve body with threaded connection
  • Suitable for steam and gases
  • Easy integration of automation units with ELEMENT

Device Components

Burkert 309101 product overview and components

  1. Transparent cap with position
  2. Actuator cover
  3. Actuator housing
  4. Relief bore
  5. Valve body
  6. Flow direction marking
  7. Port connection
  8. Body connection
  9. Actuator connection
  10. Pilot air port 1
  11. Pilot air port 2

Principle of Operation

Control function A (CF A): Pneumatically operated 2/2-way on/off valve. Normally closed by spring force.

Flow direction above the seat

WARNING

Risk of damage due to bursting pipes and bursting equipment when the flow is above the seat. In the case of liquid mediums, water hammer can occur, causing pipes and the device to burst. Do not use valves with flow above the seat for liquid mediums.

Burkert 309101 flow direction above the seat diagram

As the medium is present above the swivel plate, the operating pressure contributes to the closing of the valve. The operating pressure also supports the sealing of the valve seat. This flow direction is strictly intended for gases and steam.

Technical Data

PropertyValue
DesignAngle seat valve
Safety settingNormally closed (control function A)
Flow directionFlow to close (above seat)
Nominal pressurePN 25 (DIN EN 1333)
Operating mediumSteam, neutral gases, oxygen and fuel gases (with specific approvals)
Medium temperature-10 °C to +185 °C
Ambient temperature-10 °C to +100 °C
Degree of protectionIP65/67
Installation positionAs required, preferably with actuator in upright position

Materials

ElementMaterial
Actuator coverPPS
Actuator casingStainless steel 1.4561 (316Ti)
Packing glandPTFE V-Rings (filled), with spring compensation
Spindle / Swivel plateStainless steel 1.4401 (316) / 1.4404 (316L)
Spindle guidePEEK
Seat sealPTFE
Valve bodyStainless steel CF3M

Dimensions

Body with threaded connection

Burkert 309101 body with threaded connection dimensions

DNNPSG (DIN ISO 228-1)NPT (ASME B1.20.1)RC (ISO 7-1)CMLMAF
81/414109.72475-
103/81210.310.1246527
151/21413.713.2246527
203/41614.014.5277534
2511816.816.829.59041
321 1/41617.319.13611050
401 1/21817.319.13512055
5022417.623.44515070
652 1/22623.726.75718585
80328--71220100

Operating Limits

In addition to the maximum operating pressures, the operating range of Bürkert process valves is limited by the nominal pressure according to the relevant standard.

Burkert 309101 operating limits for medium temperature and pressure

Derating the operating pressure as per DIN EN 12516-1/PN25:

Temperature [°C]Pressure [bar]
-10...+5025.0
10024.5
15022.4
20020.3
23019.0

Safety Instructions for Potentially Explosive Atmospheres (ATEX)

DANGER

Explosion hazard due to electrostatic charging! If statically charged devices or persons discharge suddenly, there is an explosion hazard in the potentially explosive area.

  • Take appropriate measures to ensure that no electrostatic charges can build up in the potentially explosive area.
  • Clean the device surface by gently wiping it with a damp or antistatic cloth only.
  • Ground the actuator and the valve body.
  • If a plastic valve body is used, ground the actuator separately.

Device Grounding:

  1. Ground the valve body. To establish potential equalization, ground the valve body to the piping system using a conductive connection.
  2. Exposed metal parts that are not integrated into the valve potential equalization (PA) must be included in the PA by the customer via an additional PA connection.
  3. Ground conductive parts of the device individually.