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Hongsen Pressure Transmitter

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₹648   ₹1,050
You save ₹402!
38.3% OFF
Hongsen presents Single Manifold Without Gauge - HS-466N. A single manifold is a refrigeration system component that allows for the control of several individual components. It functions as a junction between several pieces of tubing, which carry refrigerant from the compressor to various sections of the system.
A single manifold can be used in a number of configurations, including applications where there are multiple compressors or condensers with several evaporator coils. For example, a restaurant may have multiple cooling units to accommodate the number of walk-in coolers and freezers it has. The single manifold allows the control of all these components with only one thermostat, and it removes the need for multiple pressure switches and temperature sensors.
There are a number of considerations to keep in mind when installing a single manifold to avoid reducing its effectiveness. The most important consideration is making sure that the lines connecting the separate units are equal lengths and do not kink or restrict flow in any way. This can be achieved by choosing tubing with an appropriate diameter and bending it properly to avoid sharp bends. It's also important to remember that each line should have a jumper tube installed so that there is always enough refrigerant in circulation even if one component loses power for some reason.
When in the open position, refrigerant flows from the manifold port to both of its connected ports (the remote end of the line and another port on the manifold). When in its closed position, all refrigerant flow ceases.
The flow rate that passes through this manually controlled port must be equal to half of what would pass through if it was totally open, which means that if 5 lb/min flowed through a fully opened line when there was no valve between it and another port on the manifold, only 2.5 lb/min can pass through while it is closed. This is because when in its closed position, this port allows some of its flow to branch off and pass through another port on the manifold (which remains fully opened).
₹376   ₹578
You save ₹202!
34.97% OFF
Hongsen presents Single Manifold Without Gauge - HS-466. A single manifold is a refrigeration system component that allows for the control of several individual components. It functions as a junction between several pieces of tubing, which carry refrigerant from the compressor to various sections of the system.
A single manifold can be used in a number of configurations, including applications where there are multiple compressors or condensers with several evaporator coils. For example, a restaurant may have multiple cooling units to accommodate the number of walk-in coolers and freezers it has. The single manifold allows the control of all these components with only one thermostat, and it removes the need for multiple pressure switches and temperature sensors.
There are a number of considerations to keep in mind when installing a single manifold to avoid reducing its effectiveness. The most important consideration is making sure that the lines connecting the separate units are equal lengths and do not kink or restrict flow in any way. This can be achieved by choosing tubing with an appropriate diameter and bending it properly to avoid sharp bends. It's also important to remember that each line should have a jumper tube installed so that there is always enough refrigerant in circulation even if one component loses power for some reason.
When in the open position, refrigerant flows from the manifold port to both of its connected ports (the remote end of the line and another port on the manifold). When in its closed position, all refrigerant flow ceases.
The flow rate that passes through this manually controlled port must be equal to half of what would pass through if it was totally open, which means that if 5 lb/min flowed through a fully opened line when there was no valve between it and another port on the manifold, only 2.5 lb/min can pass through while it is closed. This is because when in its closed position, this port allows some of its flow to branch off and pass through another port on the manifold (which remains fully opened).
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This data was last updated on 28/04/2026