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QAHV-N560YA-HPB

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QAHV-N560YA-HPB ( qahv-n560ya-hpb )

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8. Main Specifications Model Power source Capacity *1 Capacity *2 Capacity *3 Water pipe diameter and type Inlet Outlet External finish External dimensions H x W x D Net weight Design pressure Heat exchanger Compressor Fan HIC (Heat inter-changer) circuit Defrosting method Refrigerant Type and factory charge kg Flow and temperature control Power input Current input COP (kW/kW) Power input Current input COP (kW/kW) Power input Current input COP (kW/kW) Maximum current input *4 A Allowable external pump head Sound pressure level (measured 1 m below the unit in an anechoic room) *1 Outlet water temperature Outdoor temperature R744 Water Water-side Air-side Type Manufacturer Starting method Motor output kW Case heater kW Lubricant m3/min Air flow rate L/s cfm Type and quantity Control and driving mechanism Motor output kW High pressure Inverter circuit Compressor Fan motor SPECIFICATIONS kW kcal/h Btu/h kW A kW kcal/h Btu/h kW A kW kcal/h Btu/h kW A D.B. dB (A) mm (in) mm (in) mm in kg (lb) MPa MPa QAHV-N560YA-HPB (-BS) 3-phase 4-wire 380-400-415 V 50 Hz 40 34400 136480 10.31 17.8-16.9-16.3 3.88 40 34400 136480 10.97 20.0-19.0-18.3 3.65 40 34400 136480 11.6 20.4-19.4-18.7 3.44 28.8-27.4-26.4 77 kPa Temperature range 55–90oC (when the secondary side control is enabled: 55–80oC) 131–194oF (when the secondary side control is enabled: 131–176oF) -25–43oC -13–109.4oF 56 19.05 (Rc 3/4"), screw pipe 19.05 (Rc 3/4"), screw pipe Acrylic painted steel sheet 1837 (1777 not including legs) x 1220 x 760 72.3 (69.9 not including legs) x 48.0 400 (882) 14 0.5 Copper tube coil Plate fins and copper tubes Inverter scroll hermetic compressor MITSUBISHI ELECTRIC CORPORATION Inverter 11.0 0.045 PAG 220 3666 7768 Propeller fan Inverter control, direct driven by motor 0.92 Copper pipe Protection devices High-pressure sensor and switch set at 14 MPa (643 psi) Overheat and overcurrent protection Overheat protection Thermal switch Auto-defrost mode (Hot gas) CO2 (R744) 6.5 kg LEV 80

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CO2 Organic Rankine Cycle Experimenter Platform The supercritical CO2 phase change system is both a heat pump and organic rankine cycle which can be used for those purposes and as a supercritical extractor for advanced subcritical and supercritical extraction technology. Uses include producing nanoparticles, precious metal CO2 extraction, lithium battery recycling, and other applications... More Info

Heat Pumps CO2 ORC Heat Pump System Platform More Info

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