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rSYS DN25 3x2 CUXH

Item number: 001 287

rSTOR C

For highly efficient two-zone discharge of an rSTROR C buffer tank via a mixing circuit, achieved through highly efficient operation of a system separation using flow control, with connection BELOW a ball valve connection set

Gross price €9,999.00
Your price
€9,999.00 plus VAT.
Delivery time depends on the recipient country

Product documentation

Assembly instructions for motors

Tender text

BAFA Funding Opportunity for Heating System Optimization Through Hydraulic Balancing and Installation of Separate Control TechnologyrendeMIX Multi-Port Mixing Manifold with 3/2-Way Tangential Mixing Valve DN25×G1½(a) MsGuss (green adapter), valve and cover Ms58For highly efficient two-zone discharge from an rSTROR C buffer tank via a mixing circuit, achieved through highly efficient operation of a system separation using flow control, Connection BELOW a ball valve connection setActuator EMS 240, 230V~ 50Hz 3.5VA 3-point signal, 5Nm (240h), 240°, 93sSingle-circuit mixer assembly with 3 connections to the heat source, Cu Ø35×1, DN32×G1½(a) flat, pipe spacing 100 mm1 integrated gravity brake/backflow preventer, Dp 10 mbarMixing circuit (NT) for system separation to be provided on site: Kvs = 9.4 × V'max[100 mbar] = 3 m³/h × Q'max[20 K] = 70 kW × Q'max[10K] = 35 kW × Leak rate < 0.1%5 thermometers 0–120°C, Ø63 mm, solder sleeves Ms582 ball valve fittings, straight-through DN25, PN32, G1½(i)×Rp1 flat-seal, stuffing box, sealing hole, stem with aluminum wing handle

Insulating molded shell EPP 40 g/l, black, 300×450 mm, Quick-assembly kitWithout pump flangesAssembly does NOT include pump compensator – PAS L180 (Part No.: 001 338)With blind fitting consisting of a G1½ brass union nut, stainless steel washer, and insulating capModel DN 25 – lightweight version, PN 10 bar, Tmax 120°CCAUTION: NOT SUITABLE FOR USE WITHOUT SYSTEM ISOLATION!

Performance data

Mixing circuit (NT) for system separation on site: Kvs = 9.4 • V'max[100mbar] = 3m³/h • Q'max[20K] = 70kW • Q'max[10K] = 35kW • Leakage rate < 0.1%