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Integral Five Valve Manifold

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  • Integral 5 Valve Manifold from SIYelectric
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  • Integral 5 Valve Manifold from SIYelectric
  • Integral Five Valve Manifold for Differential Pressure Transmitter

Integral Five Valve Manifold

Working Pressure: 6000Psi – 10000Psi(414 Bar – 690 Bar)

Working Temperatures: PTFE packing: -65 °F to 450 °F (-54 °C to 232 °C)

Graphite packing: -65 °F to 1200 °F (-54 °C to 649 °C)

Orifice: 0.157 (4.0 mm)

Inlet/Outlet/Test/Vent: NPT 1/2-NPT 1/4, Flange

Connection: Pressure Transmitter

 

 

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Integral Five Valve Manifold

The SIYelectric Integral Five Valve Manifold is designed for differential pressure instrument installation, isolation, equalizing, bleeding, venting, and calibration in industrial process measurement systems.

A typical integral five valve manifold combines two block valves, one equalizing valve, and two vent or bleed valves into one compact manifold body. The block valves isolate the high-pressure and low-pressure sides from the process, the equalizing valve balances pressure across the transmitter, and the vent valves allow controlled pressure release, draining, or calibration connection.

Compared with separate valves and fittings, the integral five valve manifold helps simplify instrument piping, reduce installation space, and minimize potential leakage points. It is commonly used with differential pressure transmitters, pressure transmitters, differential pressure gauges, and process instrumentation systems for flow measurement, level measurement, filter monitoring, pressure difference measurement, and process control applications.


Applications

Oil & Gas Industry

Differential pressure and process pressure monitoring
Used in drilling, production, pipeline transmission, gas processing, and refinery systems where DP transmitters are applied for flow, level, or pressure difference measurement.

Flow measurement support
Suitable for differential pressure flow measurement loops using orifice plates, flow nozzles, venturi tubes, and other primary flow elements.

Isolation, equalizing, venting, and draining
The integral five valve manifold allows operators to isolate both pressure sides, equalize pressure across the transmitter, vent trapped pressure, drain residual media, and perform calibration or maintenance more safely in high-pressure service.


Chemical and Petrochemical Plants

Process differential pressure measurement
Applied in reactors, pumps, filters, distillation columns, storage tanks, and chemical pipelines where stable differential pressure or process pressure monitoring is required.

Safer maintenance in harsh media
The manifold helps isolate DP instruments from corrosive, toxic, flammable, high-pressure, or high-temperature process media before inspection, replacement, zero adjustment, or calibration.


Power Generation

Steam and water systems
Used in boiler systems, turbine auxiliary systems, feedwater lines, condensate systems, and steam pipelines where DP transmitters are used for flow, level, and pressure difference measurement.

Instrument protection and calibration
The five valve structure helps protect the transmitter during commissioning, shutdown, venting, zero checking, and routine calibration work.


Pharmaceutical and Biotechnology

Clean utility and auxiliary process lines
Suitable for auxiliary differential pressure measurement in water systems, clean utility lines, filtration skids, fermentation equipment, mixing systems, and process skids.

Clean process isolation
For hygienic or sanitary applications, material selection, connection type, sealing structure, and surface requirements should be selected according to the actual medium and cleaning requirements.


Water Treatment and Distribution

Flow and differential pressure monitoring
Used in filtration systems, pumping stations, membrane systems, treatment equipment, desalination systems, and distribution pipelines to support stable pressure and differential pressure measurement.

Filter pressure drop measurement
Suitable for monitoring differential pressure across filters, membranes, and treatment units, helping operators identify clogging, fouling, or maintenance requirements.


HVAC Systems

Differential pressure measurement
Applied in chilled water, heating water, air handling units, filter sections, pump systems, and heat exchangers where pressure difference needs to be monitored.

Maintenance isolation and calibration
The integral five valve manifold allows technicians to isolate, equalize, vent, and calibrate the transmitter locally, helping reduce system interruption during maintenance.


Laboratories and Research Facilities

Controlled DP measurement lines
Used in laboratories, pilot plants, test benches, and research systems where gases or liquids require stable differential pressure monitoring.

Compact instrument connection
The integrated manifold body supports DP transmitter mounting, pressure balancing, pressure release, calibration, and pressure line management in experimental or small-scale process systems.


Advantages

  • Integral five valve body combines multiple valve functions into one compact structure.
  • Two block valves, one equalizing valve, and two vent or bleed valves provide complete isolation, pressure balancing, venting, and calibration functions.
  • Suitable for differential pressure instruments used in flow, level, filter, and process monitoring applications.
  • Compact installation design helps simplify instrument piping and reduce potential leakage points.
  • More convenient zero checking and calibration compared with a basic three valve manifold.
  • Non-rotating stem design helps reduce seat wear and extend valve service life.
  • Improved locking gland structure helps maintain stable stem operation and reliable sealing.
  • 100% pneumatic pressure testing before shipment helps verify sealing performance.
  • Tested at 1.5 times the design pressure to support reliable operation in demanding industrial applications.
  • Hastelloy tip available as standard configuration for improved corrosion resistance and longer service life.
  • Precision-machined valve body helps ensure accurate dimensions, smooth operation, and consistent sealing performance.

 

 

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