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Pressure Gauge FERRO M6310A 63 mm dial, 1/4” rear connection
Pressure Gauge FERRO M6310A 63 mm dial, 1/4” rear connection
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Pressure Gauge FERRO M6310A 63 mm dial, 1/4” rear connection
Leave your address - as soon as the price of the product goes down, you'll know about it right away
Pressure Gauge FERRO M6310A 63 mm dial, 1/4” rear connection
Pressure Gauge FERRO M6310A 63 mm dial, 1/4” rear connection
FERRO M6310A 63 mm dial pressure gauge with a 1/4” rear connection is a mechanical instrument for direct analog monitoring of fluid or gas pressure. Its compact 63 mm dial and rear (back) threaded connection make it suitable for panel or inline installation where space is limited. The gauge is intended for routine pressure checks and visual indication in HVAC systems, plumbing installations and general industrial equipment.
The mechanical design ensures continuous reading without power supply and offers straightforward, maintenance‑friendly operation. The 63 mm dial provides a clear, readable indication in confined installations while the 1/4” rear connection enables tidy mounting behind panels or on piping. Robust construction and a simple moving‑coil or Bourdon tube mechanism (depending on model variant) deliver reliable performance for common service environments.
Install the gauge by threading the 1/4” rear connection into a compatible tapped port or adapter; ensure sealing with appropriate tape or sealant suitable for the application. Position the dial so that the pointer is easily readable through the panel cutout or from the mounting location. After installation, pressurize the system gradually and observe the pointer movement to verify correct operation and absence of leaks. For accurate readings, avoid vibration, extreme temperature exposure and direct pulsation; if necessary use an isolating valve or snubber.
Perform regular visual inspections and compare readings against known references. Use compatible connection sealants, avoid overtightening the threaded connection, and select an installation location that minimizes mechanical shock and excessive temperature to prolong service life.
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