ERACS.C-N Higher efficiency air-cooled screw pump

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ELITE TM Series COOLING ERACS.C-N Higher efficiency air-cooled screw pump HEATING HOT WATER Cooling Capacity:5~1341 (7~381 Tons) Heating Capacity:60~1363 (74~388 Tons)

High Efficiency Air-cooled Heat Pump Unit Classification The latest CLIMAVENETA "ERACS.C-N" series high efficiency screw heat pump is totally imported from Italy and it's energy efficiency can fully reach Class A of European standard and Energy Saving Certificate of Chinese national code. For all units of air-cooled heat pump, the 4-way valve is equipped to reverse the circulation direction of refrigerant that can offer chilled water or hot water to users. Because the unit is air source heat pump and using the reverse cycle, the cooling tower, cooled water pump and cooled water system can de deleted that the investment and operation charge of cooled system can be reduced. And the unit can be installed on the building roof or outside, no need extra room. So the ERACS.C-N units suit for all commercial and industry application and can fulfill the air-conditioning and heating request all year round. The unit adopts Intelligent defrost programme to ensure safe operation and stable heating in winter. The environment friendly refrigerant HFC134a is used for better running efficiency and the temperature tolerance in summer and hot water temperature in winter are both higher. Nomenclature ERACS C - N - D - SL Configuration: B standard SL super low noise Heat Recovery: D partial heat recovery Functions: chiller is not marked N heat pump unit Design number Model Air-cooled Screw Heat Pump ERACSC-N-D-B means high efficiency screw heat pump unit using R134a with partial heat recovery function and unit model is. Suggested Workplace B Standard unit suitable for normal place SL Super low noise unit suitable for the place where have strict noise requirement Operation Range Cooling Tube and shell type heat exchanger (Evaporator) Fin type heat exchanger (Condenser) Heating Tube and shell type heat exchanger (Evaporator) Fin type heat exchanger (Condenser) Water outlet Temp. (during running) Min Temp. Max Temp. 5 15 - - 6 55 (60 as optional) - - Air inlet Temp. Min Temp. Max Temp. - - -10 46 - - -10 0

Unit Features Energy Saving and Environment Friendly All units of ERACS.C-N series can reach Class A according to European energy efficiency standard and Chinese energy saving standard. A B C D E F G Heating in Super Low Temp. Super heat exchanger with injecting cooling and intelligent defrost technology to make sure heating even in -10. So the balance between reliability and COP of heating in super low temp. is perfectly achieved. Innovative Intelligent Defrost Function (CLIMAVENETA Patent) The reverse cycle type intelligent defrost function introduce the self-adjust technology which can automatically modify and regulate the judgement and data for next defrosting according to the change of ambient air temperature, humidity and defrost time as well as the difficult level of last defrosting. So the defrost no longer need manual adjusting and it can be fit for all kinds of weather condition. Much precise, reliable and energy saving from traditional defrosting method. Screw Type Compressor Semi-hermetic screw compressor specially designed for HFC134a with higher compression efficiency under full load as well as part load; Precisely manufactured twin-screw rotor with aircraft-grade bear featuring in high reliability, low noise, low vibration and stable running; The motor drive the bear directly with least moving component and wearing part that cause no energy loss and higher mechanical efficiency; Automatically adjust power output according to load by microprocessor. The slide valve is fixed for stepless control and increase part load performance. 3

High Efficiency Air-cooled Heat Pump Electric Expansion Valve EEV for precise control to meet load change. Green Technology Environment friendly HFC134a; Unit Features Optimize the refrigerant system to reduce energy consumption and CO emission. High Performance Fan High efficiency exterior rotor fan from German brand with variable speed controller. It can change fan speed automatically (DVV design) to reduce energy consumption and fan noise. Dedicated Economizer The dedicated economizer is equipped for all units to increase heat exchange and supercooling. Finally enhance working performance and efficiency. Super Low Noise All compressors of ERACS.C-N series are equipped inside the sound proof housing. And the compressor is installed on the spring isolator. The rubber pad is also fixed between compressor and frame to prevent vibration and noise. The fan is exclusive designed with aircraft grade blades and aluminum-cast exterior motor as well as the air deflector cylinder to eliminate air side noise. According to different noise request in different application, the super low noise unit also can be installed. The noise of super low noise unit (SL) is 8-10 db(a) lower than standard unit (B). Build-in pump and hydraulic kit The build-in water pump (available in different head) or hydraulic kit can be selected for the unit. The hydraulic kit includes all necessary kits such as strainer, pump, safety valve, pressure gauge, pressure difference switch, stop valve and pump control system. Customer can simplify the installation on site, save installation area and increase auto-control level by selecting build-in kits. Reliable Operation The unit is designed, manufactured, tested according to international and local standard AHRI, EN, UNI, JIS, GB/T18430.1 for reliable performance. And the electrical system is also strictly designed and produced comply with standard IEC6004-1/GB56.1. The unit is controlled by the dedicated microprocessor control system. In order to protect operation safety, the high/low pressure switch, over/under voltage, phase failure, phase reverse, over load, winding over heat, gas exhaust temperature, water flow switch and oil heater are all equipped. For the evaporator, the heater is attached to the evaporator exterior to prevent freezing. Heat Recovery-Hot water free! The heat of condensation usually will be exhaust to the environment during air-cooled heat pump working in cooling. And also the unit can not transfer all the heat during heating. So CLIMAVENETA introduce the heat recovery technology which can recovery the condensation heat during cooling and extra heat during heating to produce free hot water. This technology will help users to save obvious operation cost. Optional Function Available optional function: low temperature refrigeration, ice storage, fin protection, salt spray protection of fins, remote keyboard, power factor regulation. 4

Latest Control System All unit are equipped with latest control system, friendly human-computer interface for excellent control performance, better extended function, regulation ability and compatibility. Friendly Interface New generation regulation system with humancomputer interface, better extended utility, supervision and compatibility. Panel screen on the unit, easy operation, better protection Microprocessor regulation fulfill human-free running. W3000 with LCD display, multi-language & multilevel menu for data display & set-point regulation. According to CLIMAVENETA tradition, another display of compressor working data is adopted for easy supervision. Unit Control and Operation Regulation Dedicated W3000 microprocessor is inserted with CLIMAVENETA control algorithm to make sure energy saving and reliability. FIFO compressor running time balance function extends unit working life; Auto compressor power input control following with load change from 10-100% for energy saving; Environment adaptation by data regulation and setting; Modulating measurement is used for temperature pressure protection. It can increase reliability and predict fault occurs. Expansion kit for remote control and group control. Network Communication and BMS Control Available in BMS control, such as CLIMAVENETA or De'longhi control system, as well as ModBus, LonWorks, BacNet, Siemens and Trend BMS control system. Fault Predict, Alarm and Diagnose Microprocessor have complete fault predict, alarm, record and self diagnose function assuring operation protection & working state. Black Box record 400 faults and 00 data before each fault, which diagnose & remove fault quickly We also can find potential fault and take preventive action before it occur by CLIMAVENETA remote service program 5

High Efficiency Air-cooled Heat Pump Remote Group Controler Manager 3000 Touch screen for easy operation Group control & administration Centralized ON/OFF control Pump control Available in ModBus, LonWorks, Bacnet protocol to BMS system Sequencer LCD display Group control & administration Centralized ON/OFF control Pump control Available in ModBus, LonWorks, Bacnet protocol to BMS system FWS Internet Server The CLIMAVENETA FWS Internet Server also is optional for microprocessor to supervise unit operation, set parameters and regulate unit running by LAN or Internet. Microprocessor Control Features Microprocessor W3000 Microprocessor W3000 Remote on/off with external volt-free contact Manual control Multi-language Menu Public communication protocol Phase sequence relay Metasys Johnson communication protocol Cumulative fault alarm ModBus communication protocol Alarms Code function BACNET communication protocol BLACK BOX function for alarm events LonWorks communication protocol Self-test when power on Siemens communication protocol Real time programming of daily/weekly program Par. Pump control Evaporator inlet/outlet water temp. display Backup pump control Compressor/unit failure display Water temp. set-point regulation from external signal(4-0ma) General unit alarms display Remote electric relay control Entering water temp. ratio control Local/remote monitor(fws) Start/stop operation timer Par. Remote secondary temp. control Double set-point timer Par. Set-point regulation from external signal(0-10v) PUMP-DOWN when stopped Compressor run-timer, time balance & FIFO Energy limit function Compressor start scheduling standard function Available on request Par. Available from modifying parameter 6

B Standard Version Model Cooling capacity (1) Power input (1) Evaporator water flow rate (1) m 3 /h Evaporator water pressure drop (1) kpa ERACS.C-N Heating capacity () Power input () Hot water flow rate () m 3 /h Hot water pressure drop () kpa Cooling capacity (1) Power input (1) Evaporator water flow rate (1) m 3 /h ERACS.C-N-D Evaporator water pressure drop (1) kpa Partial heat recovery (1)(3) Partial heat recovery water flow rate (1)(3) m 3 /h Partial heat recovery water pressure drop (1)(3) kpa Microprocessor Compressors Number of compressors Number of circuit Capacity regulating Fans Number of fans Cooling Air flow rate Heating Cooling Fan power Heating m 3 /s Refrigerant charge Refrigerant R134a Oil Dimension Length Width Height Operating weight kg kg mm mm mm kg General Technical Data 101 141 5.0 340.0 66.7 93. 43.4 58.5 7.1 33.6 60.1 360.4 67.3 93. 45. 6.6 9.4 38.4 61.5 35.7 64.3 90.0 45.0 60.7 9.1 36.1 59.5 83. 10.3 14.5 47.4 5.1 W3000 1 1 1 1 1 1 1 6 6 34.8 35.3.0.0 77 95 4000 4900 60 60 430 430 3590 4480 (1) Chilled water (in/out) 1/7 Ambient temperature 35 () Condenser water (in/out) 40/45 Ambient temperature 7 Relative humidity 87% (3) Partial heat recovery water (in/out) 40/45 Note: The partial heat recovery parameter during heating is same as the partial heat recovery parameter during cooling. 1801 440.0 114.5 75.7 35.7 447.5 113.7 77.8 37.7 456.5 110.5 78.5 38.4 10. 17.8 50.1 101 500.0 13.5 86.1 46. 519.1 133.7 90. 50.7 518.8 17.9 89. 49.6 118.3 0.6 49.4 401 565.0 150.0 97.3 35.0 58.6 149.5 101. 37.9 586. 144.7 100.8 37.6 133.9 3.3 41.8 0 510.1 139. 87.8 38.6 51.9 13.7 90.7 41.1 59. 134.3 91.0 41.5 14.3 1.6 34.9 558. 150.0 96.1 4.5 577.3 146.0 100.3 46.3 579.1 144.7 99.6 45.6 133.9 3.3 40.5 4 596.9 161.7 10.8 48.6 614.0 157.5 106.7 5.4 619.3 156.1 106.5 5. 144.4 5.1 47.1 1 1 1 5 ~ 100% 1.5 ~ 100% 10 5.8 10 55.7 1 63.4 10 50.6 38.1 1 65.6 50.6 1 61.0 46.0.0.0.0 1. 1. 1. 105 35 4900 60 430 500 15 35 5800 60 430 5860 140 35 5800 60 430 6130 171 44 4900 60 430 6050 191 44 5800 60 430 6630 198 44 5800 60 430 6710 7

High Efficiency Air-cooled Heat Pump B Model Cooling capacity (1) Power input (1) Evaporator water flow rate (1) m 3 /h Evaporator water pressure drop (1) kpa ERACS.C-N Heating capacity () Power input () Hot water flow rate () m 3 /h Hot water pressure drop () kpa Cooling capacity (1) Power input (1) Evaporator water flow rate (1) m 3 /h ERACS.C-N-D Evaporator water pressure drop (1) kpa Partial heat recovery (1)(3) Partial heat recovery water flow rate (1)(3) m 3 /h Partial heat recovery water pressure drop (1)(3) kpa Microprocessor Compressors Number of compressors Number of circuit Capacity regulating Fans Number of fans Cooling Air flow rate Heating Cooling Fan power m 3 /s m 3 /s Heating Refrigerant charge Refrigerant R134a Oil Dimension Length Width Height Operating weight kg kg mm mm mm kg General Technical Data 6 7 3 650.5 745.4 178.5 03.7 11.0 18.3 891. 43.7 153.4 3.6 41. 46.6 654.6 757.6 164.8 194.6 113.8 131.7 89.9 9. 155. 33.6 43.3 47.7 674.9 773.4 17.3 196.1 116.1 133.0 94.6 35. 159.0 35.0 44.3 50.1 159.4 19. 7.7 33.4 6.8 39.1 1 14 61.0 7.5 46.0 54.9 1. 1. 09 49 44 38 5800 7000 60 60 430 430 6950 7480 17.6 37.8 34.4 16 8.9 6.8 1. 8 70 7900 60 430 960 Standard Version 36 4 48 54 1031.1 1155. 190. 1340.9 73.5 309.5 346.1 397.0 177.5 198.9.1 30.8 4. 53.4 46.9 50.6 104.3 1166.7 194.3 1363.0 63.0 93.8 38.1 370.0 178.0 0.7 4.9 36.9 4.5 55.5 48.1 53.3 1069.7 1198.6 1338.6 1391. 64.0 98.6 334.0 383.1 184.0 06.1 30. 39. 45.3 57.3 50.4 54.4 44. 76. 308.9 354.4 4.4 48.0 53.7 61.6 4.8 31.8 30.8 40.6 W3000 1.5 ~ 100% 0 4 4 4 101. 17. 1.0 1.0 76.1 97.0 9.1 9.1 1. 1. 1. 1. 31 31 387 400 70 70 70 70 10000 11800 11800 11800 60 60 60 60 430 430 430 430 10650 1160 11690 11870 (1) Chilled water (in/out) 1/7 Ambient temperature 35 () Condenser water (in/out) 40/45 Ambient temperature 7 Relative humidity 87% (3) Partial heat recovery water (in/out) 40/45 Note: The partial heat recovery parameter during heating is same as the partial heat recovery parameter during cooling. 8

SL Supper Low Noise Version Model Cooling capacity (1) Power input (1) Evaporator water flow rate (1) Evaporator water pressure drop (1) ERACS.C-N Heating capacity () Power input () Hot water flow rate () Hot water pressure drop () Cooling capacity (1) Power input (1) Evaporator water flow rate (1) ERACS.C-N-D Evaporator water pressure drop (1) Partial heat recovery (1)(3) Partial heat recovery water flow rate (1)(3) Partial heat recovery water pressure drop (1)(3) Microprocessor Compressors Number of compressors Number of circuit Capacity regulating Fans Number of fans Air flow rate Fan power Refrigerant charge Refrigerant R134a Oil Dimension Length Width Height Operating weight General Technical Data 101 49.5 67.8 m 3 /h 4.9 kpa 6.6 57.5 67.1 m 3 /h 44.7 kpa 8.8 58.8 65.4 m 3 /h 44.5 kpa 8.6 60.5 m 3 /h 10.5 kpa 49.0 1 1 6 m 3 /s 4.4 1.1 kg 77 kg mm 4000 mm 60 mm 430 kg 3870 (1) Chilled water (in/out) 1/7 Ambient temperature 35 () Condenser water (in/out) 40/45 Ambient temperature 7 Relative humidity 87% (3) Partial heat recovery water (in/out) 40/45 Note: The partial heat recovery parameter during heating is same as the partial heat recovery parameter during cooling. 141 1801 101 401 0 337.4 430.4 489. 553. 489. 541.6 95. 118.3 137.7 155.6 151.6 163. 58.1 74.1 84. 95. 84. 93. 33.1 34. 44. 33.6 35.5 40.0 356.6 43.1 504.7 563.0 511.7 571.0 9.9 11.7 13.7 148.1 130.8 145.5 6.0 75.1 87.7 97.8 88.9 99. 37.6 35.1 47.9 35.4 39.5 45.3 50.0 446.5 507.5 573.9 507.5 561.9 91.8 114. 13.9 150.1 146.3 157.5 60. 76.8 87.3 98.7 87.3 96.6 35.5 36.7 47.5 36.1 38.1 43.0 85.0 105.6 1.9 138.9 135.3 145.6 14.8 18.4 1.4 4.1 3.5 5.3 54.3 53.6 53.4 45.0 41.4 47.9 W3000 1 1 1 1 1 1 1 1 5 ~ 100% 1.5 ~ 100% 8 10 1 1 10 1 3.0 35.1 44.9 4.4 35.1 46.6 1.1 1.1 1.1 1.1 1.1 1.1 95 105 15 140 171 191 35 35 35 44 44 4900 4900 5800 5800 4900 5800 60 60 60 60 60 60 430 430 430 430 430 430 4680 5550 6090 6600 6190 6680 9

High Efficiency Air-cooled Heat Pump General Technical Data SL Supper Low Noise Version Model 4 6 7 3 36 4 48 ERACS.C-N Cooling capacity Power input Evaporator water flow rate Evaporator water pressure drop Heating capacity Power input Hot water flow rate Hot water pressure drop Cooling capacity Power input Evaporator water flow rate (1) (1) (1) (1) () () () () (1) (1) (1) m 3 /h kpa m 3 /h kpa m 3 /h 576.8 176.8 99.3 45.4 606.4 156.9 105.4 51.1 598.4 170.6 10.9 60.0 19.3 106.7 9.6 641.7 159.5 111.5 3.3 643.3 185.5 110.6 ERACS.C-N-D Evaporator water pressure drop Partial heat recovery Partial heat recovery water flow rate (1) (1)(3) (1)(3) kpa m 3 /h 48.8 157.8 7.4 31.8 171.6 9.8 Partial heat recovery water pressure drop (1)(3) Microprocessor Compressors Number of compressors Number of circuit Capacity regulating Fans Number of fans Air flow rate Fan power Refrigerant charge Refrigerant R134a Oil Dimension Length Width Height Operating weight kpa m 3 /s kg kg mm mm mm kg 56. 1 4.4 1.1 198 44 5800 60 430 6770 31.1 1 4.4 1.1 09 44 5800 60 430 7010 70.1 865.4. 66.0 14.0 147.4 38.4 43.0 748.5 881.7 193.9 8.3 130.1 153. 4.3 46.5 747.1 888.5 14.5 56.7 18.5 15.8 41. 46. 198.4 37.4 34.5 41.3 41.6 41.0 W3000 1.5 ~ 100% 14 16 50.7 58.0 1.1 1.1 49 8 38 70 7000 7900 60 60 430 430 7650 980 993.4 95.6 171.0 39. 1010.9 61.9 175.7 41.4 1030.7 85.3 177. 4.1 63.9 45.9 9.0 0 70. 1.1 31 70 10000 60 430 10890 1114.4 335.3 191.8 49.7 1153.6 9.7 00.5 54.3 1156.1 33.6 198.8 53.4 99.3 5.0 37.3 4 89.8 1.1 31 70 11800 60 430 11510 14.5 376.5 13.9 43.5 177.6 36.7.0 46.8 189.1 363.4 1.7 46.7 336.1 58.4 36.5 4 84.9 1.1 387 70 11800 60 430 11950 (1) Chilled water (in/out) 1/7 Ambient temperature 35 () Condenser water (in/out) 40/45 Ambient temperature 7 Relative humidity 87% (3) Partial heat recovery water (in/out) 40/45 Note: The partial heat recovery parameter during heating is same as the partial heat recovery parameter during cooling. 10

ERACS.C-N Coefficient Table of Cooling Condition (Cooling Capacity and Power input) Chilled water outlet temperature ( ) 5 6 7 8 9 10 11 1 13 14 15 Pf P.a.C Pf P.a.C Pf P.a.C Pf P.a.C Pf P.a.C Pf P.a.C Pf P.a.C Pf P.a.C Pf P.a.C Pf P.a.C Pf 0 1.031 0.718 1.065 0.76 1.099 0.735 1.133 0.745 1.168 0.754 1.0 0.763 1.37 0.773 1.7 0.781 1.307 0.791 1.34 0.799 1.377 1.0 0.747 1.056 0.756 1.090 0.766 1.14 0.776 1.158 0.786 1.19 0.796 1.6 0.806 1.61 0.815 1.95 0.843 1.330 0.834 1.365 4 1.013 0.777 1.046 0.788 1.080 0.799 1.11 0.809 1.147 0.819 1.181 0.89 1.15 0.839 1.48 0.849 1.8 0.860 1.317 0.869 1.351 6 1.00 0.809 1.035 0.81 1.068 0.83 1.101 0.84 1.134 0.854 1.168 0.864 1.01 0.875 1.35 0.885 1.68 0.895 1.30 0.906 1.336 8 30 3 34 35 0.989 0.977 0.96 0.947 0.939 0.846 0.879 0.919 0.956 0.9733 1.0 1.009 0.994 0.978 0.969 0.856 0.894 0.99 0.967 0.986 1.055 1.041 1.05 1.009 1.000 0.868 0.903 0.941 0.980 1.000 1.087 1.073 1.057 1.040 1.031 0.880 0.916 0.953 0.993 1.013 1.10 1.105 1.089 1.071 1.06 0.890 0.97 0.965 1.005 1.059 1.153 1.138 1.11 1.10 1.09 0.901 0.938 0.977 1.018 1.0388 1.186 1.170 1.15 1.133 1.13 0.911 0.950 0.989 1.09 1.0506 1.19 1.03 1.184 1.165 1.154 0.9 0.960 1.000 1.04 1.06 1.53 1.35 1.16 1.196 1.185 0.933 0.97 1.01 1.054 1.074 1.86 1.68 1.48 1.7 1.16 0.943 0.983 1.03 1.14 1.086 1.319 1.301 1.80 1.59 1.47 36 0.930 0.996 0.961 1.007 0.991 1.0 1.01 1.034 1.05 1.047 1.08 1.059 1.11 1.070 1.143 1.084 1.174 1.096 1.04 1.107 1.35 38 0.913 1.037 0.943 1.049 0.97 1.06 1.00 1.077 1.031 1.089 1.061 1.10 1.091 1.115 1.11 1.18 1.150 1.141 1.180 1.153 1.10 40 0.894 1.081 0.93 1.09 0.95 1.105 0.981 1.11 1.010 1.133 1.038 1.147 1.068 1.160 1.096 1.173 1.15 1.186 1.154 1.198 1.183 4 0.874 1.11 0.90 1.136 0.931 1.150 0.959 1.165 0.987 1.179 1.015 1.19 1.043 1.06 1.071 1.19 1.099 1.33 1.17 1.45 1.089 44 0.859 1.166 0.881 1.183 0.908 1.196 0.918 1.1 0.887 1.074 0.941 1.086 0.94 1.098 0.971 1.110 0.999 1.11 1.07 1.133 1.056 46 0.751 1.060 0.778 1.073 0.804 1.086 0.831 1.099 0.858 1.11 0.885 1.13 0.91 1.136 0.939 1.148 0.966 1.159 0.993 1.171 1.01 P.a.C 0.808 0.84 0.878 0.915 0.954 0.993 1.034 1.076 1.098 1.119 1.164 1.10 1.107 1.144 1.18 Ambient temperature( ) Note: 1.Standard condition: chilled water 7/1, ambient air 35 ; 100% cooling load and power input..for other condition (anti-standard condition), please use the rated data (under standard condition) multiply the corresponding coefficient to calculate cooling capacity and power input(pf: cooling capacity coefficient; P.a.c: power input coefficient). 3.For more details, please contact the company. 11

High Efficiency Air-cooled Heat Pump ERACS.C-N Coefficient Table of Heating Condition (Heating Capacity and Power input) Chilled water outlet temperature ( ) 35 36 38 40 4 44 45 46 48 50 5 54 55 Pt P.a.C Pt P.a.C Pt P.a.C Pt P.a.C Pt P.a.C Pt P.a.C Pt P.a.C Pt P.a.C Pt P.a.C Pt P.a.C Pt P.a.C Pt P.a.C Pt -10 0.683 0.738 0.68 0.753 0.680 0.783 0.678 0.813 0.677 0.846 0.676 0.880 0.675 0.897 0.674 0.916 0.673 0.953 0.67 0.99-8 0.709 0.745 0.708 0.760 0.707 0.791 0.706 0.81 0.705 0.854 0.704 0.889 0.703 0.907 0.70 0.95 0.701 0.963 0.700 1.003 0.699 1.004-6 0.739 0.753 0.738 0.768 0.737 0.798 0.736 0.89 0.735 0.863 0.734 0.900 0.733 0.917 0.73 0.936 0.731 0.975 0.731 1.015 0.730 1.057 0.79 1.100-5 0.755 0.757 0.754 0.77 0.753 0.80 0.75 0.834 0.751 0.868 0.750 0.905 0.749 0.9 0.748 0.941 0.747 0.980 0.747 1.01 0.746 1.063 0.745 1.107 0.744-4 0.77 0.760 0.771 0.776 0.770 0.806 0.769 0.839 0.768 0.873 0.767 0.909 0.766 0.98 0.765 0.947 0.764 0.986 0.764 1.07 0.763 1.070 0.76 1.114 0.761-0 4 5 6 7 0.808 0.848 0.889 0.934 0.957 0.981 1.006 0.768 0.779 0.787 0.798 0.80 0.810 0.815 0.807 0.847 0.888 0.933 0.956 0.980 1.005 0.783 0.795 0.80 0.814 0.81 0.85 0.83 0.806 0.846 0.887 0.93 0.955 0.979 1.004 0.817 0.85 0.837 0.848 0.85 0.859 0.867 0.805 0.845 0.886 0.931 0.954 0.978 1.003 0.848 0.859 0.871 0.88 0.890 0.879 0.903 0.804 0.844 0.885 0.930 0.953 0.978 1.00 0.884 0.895 0.907 0.90 0.97 0.933 0.940 0.803 0.84 0.884 0.99 0.95 0.977 1.001 0.90 0.93 0.945 0.958 0.966 0.973 0.980 0.80 0.841 0.883 0.98 0.951 0.976 1.000 0.940 0.95 0.965 0.978 0.985 0.99 1.000 0.801 0.840 0.88 0.97 0.950 0.975 0.999 0.959 0.971 0.984 0.998 1.006 1.013 1.01 0.800 0.839 0.881 0.96 0.949 0.974 0.998 0.999 1.01 1.05 1.040 1.048 1.055 1.063 0.800 0.839 0.881 0.95 0.949 0.973 0.997 1.040 1.054 1.068 1.083 1.090 1.098 1.106 0.799 0.838 0.880 0.94 0.947 0.971 0.996 1.083 1.097 1.11 1.18 1.135 1.144 1.15 0.798 0.837 0.879 0.93 0.946 0.970 0.994 1.18 1.143 1.158 1.174 1.18 1.190 1.199 0.797 0.836 0.878 0.9 0.945 0.969 0.993 Ambient temperature( ) 8 1.031 0.81 1.030 0.838 1.09 0.875 1.08 0.909 1.08 0.947 1.07 0.987 1.06 1.007 1.05 1.08 1.04 1.071 1.03 1.115 1.01 1.160 1.018 1.07 1.017 10 1.087 0.833 1.086 0.85 1.085 0.886 1.084 0.94 1.083 0.96 1.081 1.00 1.080 1.03 1.079 1.044 1.078 1.087 1.075 1.13 1.073 1.178 1.070 1.5 1.068 1 1.146 0.848 1.145 0.867 1.144 0.901 1.143 0.939 1.141 0.977 1.139 1.018 1.138 1.039 1.136 1.060 1.134 1.104 1.131 1.149 1.17 1.195 1.14 1.43 1.1 14 1.09 0.863 1.08 0.878 1.06 0.916 1.05 0.954 1.0 0.99 1.199 1.035 1.198 1.056 1.196 1.077 1.193 1.1 1.189 1.167 1.185 1.14 1.180 1.6 1.177 15 1.4 0.871 1.41 0.886 1.39 0.94 1.37 0.96 1.34 1.00 1.31 1.044 1.9 1.065 1.7 1.086 1.4 1.130 1.19 1.176 1.14 1.3 1.09 1.7 1.06 16 1.75 0.878 1.74 0.894 1.7 0.93 1.61 0.970 1.67 1.011 1.63 1.05 1.61 1.074 1.59 1.095 1.55 1.140 1.50 1.186 1.45 1.33 1.39 1.8 1.36 18 1.347 0.894 1.346 0.913 1.343 0.951 1.339 0.989 1.335 1.09 1.330 1.071 1.38 1.09 1.35 1.114 1.30 1.159 1.314 1.05 1.307 1.5 1.300 1.30 1.97 Note: 1.Standard condition: chilled water 40/45, ambient air 7, RH87%; 100% heating load and power input..for other condition (anti-standard condition), please use the rated data (under standard condition) multiply the corresponding coefficient to calculate heating capacity and power input(pt: heating capacity coefficient; P.a.c: power input coefficient). 3.For more details, please contact the company. P.a.C 1.19 1.136 1.151 1.166 1.181 1.197 1.06 1.14 1.3 1.3 1.49 1.68 1.87 1.97 1.306 1.37 1

ERACS.C-N Electrical Data Power Input 380/400V-3-50Hz Voltage tollerance < ±10% Voltage unbalance < 3% Maximum Values Model n Compressor(single) F.L.I. F.L.A. () (A) L.R.A. (A) F.L.I. () Fan F.L.A. (A) F.L.I. () Total unit F.L.A. (A) S.A. (A) 101 1 100.5 173.8 315.8 1.8 11.5 196.6 338.6 141 1 17.1 30.8 43.8 1.8 139.1 53.6 446.6 1801 1 16.7 75 49.5 0 38 18.7 313 530.5 101 1 189.1 35 653 0 38 09.1 363 691 401 1 14. 366.6 77.6 4 45.6 38. 41. 773. 0 85.4 137 46 0 38 190.8 31 377 85.4/100.7 137/164.6 46/300 4 45.6 10 347 439 4 100.7 164.6 300 4 45.6 5 375 449 6 111.6 183.5 360 4 45.6 47 413 534 7 17.3 08 404 8 53. 83 469 589 3 145.3 35 436 3 60.8 33 531 658 36 170.7 7 465 40 76 381 60 706 4 191.1 310 586 48 91. 430 711 891 48 17 351 650 48 91. 48 793 957 54 40 388 719 48 91. 58 867 1163 Note: All the values are referred to the maximum working condition. Safety values need to be considered when cabling the unit for power supply and line-protections. F.L.I Power input F.L.A Current absorption L.R.A Locked rotor current for single compressor S.A. Starting current Description: screw compressor is star-delta starter. 13

High Efficiency Air-cooled Heat Pump ERACS 101-401C-N 14

ERACS 0-54C-N Evaporator water inlet Evaporator water outlet Lifting points Electrical wires inlet Maintenance space 15

High Efficiency Air-cooled Heat Pump ERACS.C-N Electrical Data Dimensions Maintenance space Evaporator pipe connection Model A B H Operating weight [kg] R1 R R3 R4 IN/OUT Type Ø ERACS 101C-N-B 4000 60 450 3590 000 000 1800 1500 Victaulic 4 ERACS 141C-N-B 4900 60 450 4480 000 000 1800 1500 Victaulic 5 ERACS 1801C-N-B 4900 60 450 500 000 000 1800 1500 Victaulic ERACS 101C-N-B 5800 60 450 5860 000 000 1800 1500 Victaulic ERACS 401C-N-B 5900 60 450 6130 000 000 1800 1500 Victaulic ERACS 0C-N-B 4900 60 430 6050 000 000 1800 1500 Victaulic ERACS C-N-B 5800 60 430 6630 000 000 1800 1500 Victaulic ERACS 4C-N-B 5800 60 430 6710 000 000 1800 1500 Victaulic ERACS 6C-N-B 5800 60 430 6950 000 000 1800 1500 Victaulic ERACS 7C-N-B 7000 60 430 7480 000 000 1800 1500 Victaulic ERACS 3C-N-B 7900 60 430 960 000 000 1800 1500 Victaulic ERACS 36C-N-B 10000 60 430 10650 000 000 1800 1500 Victaulic ERACS 4C-N-B 11800 60 430 1160 000 000 1800 1500 Victaulic ERACS 48C-N-B 11800 60 430 11690 000 000 1800 1500 Victaulic ERACS 54C-N-B 11800 60 430 11870 000 000 1800 1500 Victaulic Note: All the values are referred to the maximum working condition. Safety values need to be considered when cabling the unit for power supply and line-protections. F.L.I Power input F.L.A Current absorption L.R.A Locked rotor current for single compressor S.A. Starting current Description: screw compressor is star-delta starter. 16

ERACS.C-N Electrical Data Dimensions Maintenance space Evaporator pipe connection Model A B H Operating weight [kg] R1 R R3 R4 IN/OUT Type Ø ERACS 101C-N-SL 4000 60 450 3870 000 000 1800 1500 Victaulic 4 ERACS 141C-N-SL 4900 60 450 4680 000 000 1800 1500 Victaulic 5 ERACS 1801C-N-SL 4900 60 450 5550 000 000 1800 1500 Victaulic ERACS 101C-N-SL 5800 60 450 6090 000 000 1800 1500 Victaulic ERACS 401C-N-SL 5800 60 450 6600 000 000 1800 1500 Victaulic ERACS 0C-N-SL 4900 60 430 6190 000 000 1800 1500 Victaulic ERACS C-N-SL 5800 60 430 6680 000 000 1800 1500 Victaulic ERACS 4C-N-SL 5800 60 430 6770 000 000 1800 1500 Victaulic ERACS 6C-N-SL 5800 60 430 7010 000 000 1800 1500 Victaulic ERACS 7C-N-SL 7000 60 430 7650 000 000 1800 1500 Victaulic ERACS 3C-N-SL 7900 60 430 980 000 000 1800 1500 Victaulic ERACS 36C-N-SL 10000 60 430 10890 000 000 1800 1500 Victaulic ERACS 4C-N-SL 11800 60 430 11510 000 000 1800 1500 Victaulic ERACS 48C-N-SL 11800 60 430 11950 000 000 1800 1500 Victaulic Note: All the values are referred to the maximum working condition. Safety values need to be considered when cabling the unit for power supply and line-protections. F.L.I Power input F.L.A Current absorption L.R.A Locked rotor current for single compressor S.A. Starting current Description: screw compressor is star-delta starter. 17

High Efficiency Air-cooled Heat Pump Climaveneta Water Circulation Schematic Diagram 1 3 4 5 6 7 8 9 10 1 11 5 Climaceneta User pipeline 1 3 4 5 1 13 14 5 1. Pressure gauge of water side. Shut off valve 3. Automatic air-exhaust valve 4. Flexible connection 5. Stop valve 6. Bypass pipeline 7. Filter 8. Draining valve 9. Circulation pump 10. Safety draining valve 11. Expansion tank 1. Target flow switch 13. Check valve 14. Thermometer indicator gauge Precautions: 1. The air-exhaust valve should be fixed at the highest point of chilled water pipeline.. Unit evaporator import and export must be equipped with rubber flexible connection, as well as the chilled water pipe of watercooled units. 3. A flow switch should be installed on the horizontal pipeline of both cooling water side and chilled water side, and the flow switch should connect to the control system of the unit. 4. A bypass with gate valves is recommended to enable the pipes to be washed through without having to disconnect the unit. When the system water quality corresponds with the requirement after enough wash and cleaning, the unit could be connected to the water circuit. But in order to prevent any damage, water MUST NOT enter the unit BEFORE our service engineer arriving at the site. 5. Y-Strainer Must be installed in front of the evaporator inlet pipe (60 holes or more), to ensure that the evaporator circulating water must not contain any impurities such as metal materials, welding slag, steel wire. 6. In order to ensure the unit heat exchanger not be corrosive due to water quality. The water shall not contain corrosive ions such as chloride ions, ammonium ions, sulfur ions according to the chemical characteristics of the copper. If the unit is used in the hard water areas, an extra qualified water softening devices should be installed on the water system to make sure the bicarbonate content comply with national standards. 7. For outdoor installed units, the outdoor pipes should install draining valve. In winter when unit is not in use, it can drain all water inside the unit, to avoid freezing pipes or unit. 8. Evaporator inlet and outlet pipe should be equipped with shut off valve. 18

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Climaveneta Italy: 36061 BASSANO DEL GRAPPA (VICENZA) ITALIA - VIA SARSON 57/c TEL. +39 / 044 509 500 (r.a.) - TELEFAX +39 / 044 509 509 E-mail:info@climaveneta.com http://www.climaveneta.com Climaveneta China: No,88 Baiyun Road Xinghuo Developing Zone,Shanghai,China Post Code:01419 TEL: +86-1-57505566 FAX: +86-1-57505797 E-mail:info@climaveneta.com.cn http://www.climaveneta.com.cn Climaveneta Hongkong: Room 003,CCT Telecom Building, 11 Wo Shing Street,Fotan,Shatin,N.T.,Hongkong TEL: +85-6871755 FAX: +85--6873078 E-mail:info@climaveneta.com.cn http://www.climaveneta.asia Climaveneta Vietnam: 3rd Floor MEKONG Tower-35-41 Cong Hoa str Ward 13 Tan Binh Dist HCMC TEL: +848 66 9966 FAX: +848 66 9977 E-mail: info@climaveneta.com.cn http:// www.climaveneta.com All specification and data are subject to change without notice B15 CCU/01-04-014EN-SH