Heat Controller 10 manuals
Household Appliance > Air Conditioner
When we buy new device such as Heat Controller 10 we often through away most of the documentation but the warranty.
Very often issues with Heat Controller 10 begin only after the warranty period ends and you may want to find how to repair it or just do some service work.
Even oftener it is hard to remember what does each function in Air Conditioner Heat Controller 10 is responsible for and what options to choose for expected result.
Fortunately you can find all manuals for Air Conditioner on our side using links below.
Heat Controller 10 Installation Instructions
40 pages 3.65 Mb
HEAT CONTROLLERINSTALLATION INSTRUCTIONSDO NOT DESTROYPLEASE READ CAREFULLY AND KEEP IN A SAFE PLACE FOR FUTURE REFERENCE. ! 20 AIRFLOW PERFORMANCERKNB- SERIESNOTE: Add component resistance to duct resistance to determine total external static pressure. [ ] Designates Metric ConversionsNOTES: 1. Multiply correction factor times gross performance data. 7.5 TON [26.4 kW] COMPONENT AIR RESISTANCE, IWC 7.5 TON [26.4 kW] AIRFLOW CORRECTION FACTORS3. Do not operate above blower RPM shown as motor overloading will occur. 2. Re-adjustment of sheave required to achieve rated airflow at ARI minimum E.S.P. NOTES: 1. Factory sheave settings are shown in bold print. RPM 682 650 620 587 555 523 869 838 806 774 742 710 Turns Open 1 2 34 5 6 1 2 34 5 6 Motor Sheave 1VP-44 1VP-44 Blower Sheave BK110 BK90 AIRFLOW PERFORMANCE7.5 TON [26.4 kW]Drive Package L M Motor H.P. [W] 2.0 [1491.4] 2.0 [1491.4] N 3.0 [2237.1] BK65 1VP-44 1 2 3 4 5 6 1157 1106 1056 1005 954 9042. Resulting sensible capacity cannot exceed total capacity. DNA = Data not Available. AIR-FLOW PERFORMANCE 8.5 TON MODELS 21 AIRFLOW PERFORMANCERKKB/RKMB-[ ] Designates Metric ConversionsNOTES: 1. Multiply correction factor times gross performance data. NOTE: Add component resistance to duct resistance to determine total external static pressure. 8.5 TON [29.9 kW] COMPONENT AIR RESISTANCE, IWC 8.5 TON [29.9 kW] AIRFLOW CORRECTION FACTORS3. Do not operate above blower RPM shown as motor overloading will occur. 2. Re-adjustment of sheave required to achieve rated airflow at ARI minimum E.S.P. NOTES: 1. Factory sheave settings are shown in bold print. AIRFLOW PERFORMANCE8.5 TON [29.9 kW]DNA = Data not Available. 2. Resulting sensible capacity cannot exceed total capacity. AIR-FLOW PERFORMANCE 10 TON MODELS 22 AIRFLOW PERFORMANCERKKB/RKMB/RKNB-[ ] Designates Metric ConversionsNOTES: 1. Multiply correction factor times gross performance data. NOTE: Add component resistance to duct resistance to determine total external static pressure. COMPONENT AIR RESISTANCE, IWC 10 TON [35.2 kW] 10 TON [35.2 kW] AIRFLOW CORRECTION FACTORS3. Do not operate above blower RPM shown as motor overloading will occur. 2. Re-adjustment of sheave required to achieve rated airflow at ARI minimum E.S.P. NOTES: 1. Factory sheave settings are shown in bold print. AIRFLOW PERFORMANCE10 TON [35.2 kW] DNA = Data not Available. 2. Resulting sensible capacity cannot exceed total capacity. AIR-FLOW PERFORMANCE 12.5 TON MODELS 23 AIRFLOW PERFORMANCERKKB/RKMB- SERIES[ ] Designates Metric ConversionsNOTES: 1. Multiply correction factor times gross performance data. NOTE: Add component resistance to duct resistance to determine total external static pressure.[0.077] AA76 & Transition RXMC-CF06 DNA DNA DNA DNA 0.31 Concentric Diffuser RXRN-AA66 or [0.024] [0.021] 100% R.A. Damper Open Economizer [0.020] Wet Coil 0.082 ResistanceInches Water [kPa] COMPONENT AIR RESISTANCE, IWC 12.5 TON [44 kW] 12.5 TON [44 kW] AIRFLOW CORRECTION FACTORS3. Do not operate above blower RPM shown as motor overloading will occur. 2. Re-adjustment of sheave required to achieve rated airflow at ARI minimum E.S.P. NOTES: 1. Factory sheave settings are shown in bold print. AIRFLOW PERFORMANCE12.5 TON [44 kW]NOTES: 1. Multiply correction factor times gross performance data. NOTE: Add component resistance to duct resistance to determine total external static pressure. COMPONENT AIR RESISTANCE, IWC 12.5 TON [44 kW] 12.5 TON [44 kW] AIRFLOW CORRECTION FACTORS3. Do not operate above blower RPM shown as motor overloading will occur. 2. Re-adjustment of sheave required to achieve rated airflow at ARI minimum E.S.P. NOTES: 1. Factory sheave settings are shown in bold print. AIRFLOW PERFORMANCE12.5 TON [44 kW]DNA = Data not Available. 2. Resulting sensible capacity cannot exceed total capacity. [ ] Designates Metric Conversions AIRFLOW PERFORMANCERKKB/RKMB- SERIES3800 [1793] 4000 [1888] 4200 [1982] 4400 [2076] 4600 [2171] 4800 [2265] 5000 [2359] 0.24 [0.060] 0.27 [0.067] DNA DNA DNA Horizontal Economizer 100% O.A. Damper Open 0.15 [0.036] 0.16 [0.040] 0.18 [0.44] 0.19 [0.047] 0.20 [0.050] 0.087 0.093 [0.023] 0.099 0.105 [0.026] 0.110 [0.027] 0.115 [0.029] 0.12 0.13 [0.032] 0.14 [0.035] 0.15 [0.037] 0.16 [0.040] 0.17 [0.042] 0.18 [0.045] Horizontal Economizer 100% R.A. Damper Open 0.07 [0.017] 0.08 [0.020] 0.19 [0.047] 0.120 5200 [2454] 0.22 [0.055] 0.20 [0.050] 0.125 [0.031] 5400 [2548] 0.23 [0.057] 0.12 0.131 [0.033] 5600 [2643] 0.24 [0.060] 0.14 [0.035] 0.22 [0.055] 0.136 [0.034] 5800 [2737] 0.32 [0.080] 0.34 [0.085] 0.36 [0.090] 0.39 [0.097] DNA DNA DNA = Data not Available. 2. Resulting sensible capacity cannot exceed total capacity. 24 XIX. HEATER KIT CHARACTERISTICS25 HEATER KIT CHARACTERISTICS (continued)26 HEATER KIT CHARACTERISTICS (continued)27 XX. TROUBLE SHOOTING CHARTFIGURE 16SYSTEM CHARGE CHART - REFRIGERANT 410A -B072, CIRCUIT 1 32 XXII. CHARGING CHARTS-072, CIRCUIT 1 33 FIGURE 17-085, CIRCUIT 1SYSTEM CHARGE CHART - REFRIGERANT 410A -B085, CIRCUIT 1 34 FIGURE 18-090, CIRCUITS 1 & 2SYSTEM CHARGE CHART - REFRIGERANT 410A -B090, CIRCUITS 1 & 2100 105 110 115 120 125 130 135 140 145 150 155 160 165 200 175 200 175 100 105 110 115 120 125 130 135 140 145 150 155 160 165 -B090, CIRCUIT 1 -B090, CIRCUIT 2 BOTH COMPRESSORS MUST BE OPERATING BEFORE CHECKING REFRIGERANT CHARGE. BEFORE FINAL REFRIGERANT CHECK! RETURN AIR TEMPERATURE MUST BE WITHIN COMFORT CONDITIONS -B102, CIRCUITS 1 & 2100 105 110 115 120 125 130 135 140 145 150 155 160 165 -B102, CIRCUIT 1 -B102, CIRCUIT 2 35 FIGURE 1936 FIGURE 20-120, CIRCUITS 1 & 2-B120, CIRCUIT 1 -B120, CIRCUIT 2 -B120, CIRCUITS 1 & 2 37 FIGURE 21-150, CIRCUITS 1 & 2-B150, CIRCUIT 1 -B150, CIRCUIT 2 -B150, CIRCUITS 1 & 2
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