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  • RMG 502 Gas pressure regulator

RMG 502 Gas Pressure Regulator

Update Terakhir
17 / 02 / 2021
Min. Pembelian
1 Unit


PT. Surrama Tridaya Mandiri adalah perusahaan yang bergerak dalam bidang usaha importir , distributor alat-alat instrument : flowmeter, gas detector, control valve, safety valve, pressure reducing valve, dll

Detail RMG 502 Gas Pressure Regulator

RMG 502 Gas pressure regulator

RMG 502 is a transmission station application device for gas distribution networks for power plants and industrial plants. The unit has a wide range of inlets available. Use this design for the RMG 630 RMG 630-1 (formerly RMG 640) pressure variable inlet pilot set. The RMG 502 has a 15 bar DN outlet twice as much as the DN inlet. The device is therefore easy to maintain and works softly. The system is built with a grid layer to reduce noise and is compatible with steel filler to reduce noise. The RMG 502 is suitable for non-aggressive gases. Regulator Gas

The RMG 502 ensures precision and reliability even at very low flow levels due to the combination of the control diaphragm and the extension portion. The system offers a quick zero-flow shut-off. The RMG 502 Application Device comes with a starting valve that enables accelerated stress adjustment in the control diaphragm. The RMG 502 will also be fitted with the security cut-off modules RMG 503 or RMG 505. The two security cut-off systems include a control system, an external stress relief module, a trip and a measurement tool. The measurement devices were equipped with overpressure and underpressure spring-loaded diaphragms. Once the outlet level is met or less than the reaction maximum, the protection shut-off valve system installed on the inlet side of the regulator activates.

The regulated output force is guided from the point of calculation to the bottom of the diaphragm. It tests the current output stress and relates it to the variable setpoint level (spring voltage). Every inconsistency directly affects the direction of the key valve through the valve string. The resultant shift in stream allows the actual production stress to be relative to the setpoint price. The device is completely sealed at null consumption.
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