QAHV-N560YA-HPB

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

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(*1) Water flow rate display method 1Set the PCB DIP switches as shown below. SW2 SW3 -10 -5 -6 -7 -8 -9 -10 OFF OFF OFF OFF OFF ON ON 2If the flow rate adjustment operation has never been performed, ‘ng’ appears on the PCB’s digital display after the system startup operation. Press SWP1 (up) or SWP2 (down) to delete the ‘ng’ from the PCB’s digital display (changing the display to a value such as 1). 3Press SWP3 repeatedly to change the code shown in the PCB’s display. The code changes with each press. Continue pressing SWP3 until item code ‘C25’ is displayed in the PCB’s digital display. 4Once ‘C25’ is displayed, press SWP1 or SWP2 to display and check the current flow rate. After displaying the flow rate, the display shows the current item code (*2) if SWP1 to SWP3 are not operated for one minute. Display and check the current flow rate by pressing SWP1 or SWP2 again. (*2) If the flow rate adjustment operation has never been performed, ‘ng’ appears in the PCB’s digital display after the system startup operation. Press SWP1 or SWP2 to delete the ‘ng’ from the PCB’s digital display (changing the display to ‘C25’). (Note 1) As a stopgap measure, change the settings of SW2-9 and SW2-3 as shown in the table below, then restart the power. Multiple unit change-over switch SW2-9 When startup operation has not completed OFF When startup operation has completed - Local/internal change-over switch SW2-3 ON - If water shutoff error 2601 occurs during the air bleeding operation, remove the cause of the problem, then change the setting of PCB slide SWS1 from LOCAL to OFF, and back to LOCAL again. The air bleeding operation starts. (You can clear water shutoff error by turning the power OFF and ON again. The equipment enters standby mode in this case.) (You can also clear water shutoff errors by changing the setting of PCB DIP SW1-8 or 1-9 from ON to OFF. Turning DIP SW1-8 OFF starts circulation heating circuit air bleeding (manual). Turning DIP SW1-9 OFF starts water supply circuit air bleeding (manual).) 34

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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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