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AVENTICS-G653A3M06011100

AVENTICS™ 3/2-shut-off valve, mechanically operated, Series 653 G653A3M06011100

753 zł
ILOŚĆ:

Product Description

3/2 - SHUT OFF VALVE 653 SERIES PORT SIZ

Activation
Mechanical
Nominal flow Qn
51900 l/min
Compressed air connection
G 1
Certificates
ATEX optional
Parts
Shut-off valve
Lock type
for padlocks
Silencer
with silencer
Min. ambient temperature
-10 °C
Max. ambient temperature
50 °C
Min. medium temperature
-10 °C
Max. medium temperature
50 °C
Medium
Compressed air, Neutral gases
Compressed air connection standard
according to ISO 228-1
Nominal flow Qn 1 to 2
51900 l/min
Nominal flow Qn 2 to 3
300 l/min
Weight
0.94 kg
Housing material
Aluminum
Seal material
Nitrile butadiene rubber
Silencer material
metal

Charakterystyka

  • The industry´s highest flow rates assure OEMs and maintenance managers that their air preparation products will optimize machine performance.
  • Extended high- and low-temperature capabilities (-40° C to 80° C) allow the FRLs to be specified across a broad range of applications, including those within harsh environments.
  • New manifold endplate flanges allow the maintenance technician to pull the manifold assembly out of service without disconnecting the piping.
  • Front-facing easy-to-read, low-profile gauges improve serviceability. They are the only products of their type to offer these gauges on shut-off isolation valves and slow-start/quick-exhaust valves.
  • Optional pressure regulator with reverse flow check permits placement of the regulator between the valve and cylinder - allowing air to be exhausted through the regulator without causing damage or reduced life.
  • Optional integrated pressure range indicators allow the user to easily set the red/green colour indicators to the desired pressure range.
  • Available with integrated redundant safe exhaust valve to implement safety standards without affecting productivity. Meets ISO 13849 standard, category 3 PLd (Performance Level).
  • Available with integrated IIoT enabled air flow sensor to monitor air consumption in pneumatic systems. This enables fast action in case leaks are detected, to optimize energy consumption, prevent machine downtime, and reduce costs.

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