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Text[...]=[Range,The desired temperature drop of the fluid measured as the difference between incoming and outgoing fluid temperatures.]

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Text[0]=["Conformance","Nominal Tonnage Rating Basis<br><br>Nominal ratings are based on ARI standard 480, specific conditions being:<br> 1 ton=12,000Btu/hr&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;100&deg;F.liquid entering TXV<br> 54&deg;F.inlet water&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;7&deg; superheat<br> 44&deg;F.outlet water&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;35&deg;F R22 Saturated Suction<br>0.0001ft&#178;hr&deg;F/Btu additive fouling factor <br><br>All models are designed and constructed to meet ASME Boiler and Pressure Vessel Code Section VIII, Division 1. ASME code for the shell side is available upon request.<br><br>Tube Side: 300 PSE at 200&deg; F<br>Shell Side: 200 PSI at 200&deg; F (non-code)<br><br>ER evoparotr shells are constructed with ASME grade carbon steel. Enhanced copper tubing is mechanically expanded for a superior seal into machined carbon steel tubesheets. Tubing wall thickness is 0.018 inches. Removable endplates, refrigerant and water connections are constructed from carbon steel. All baffles are made from corrosion resistant materials."]
Text[1]=["Construction","ER evaporator shells are constructed with ASME grade carbon steel. Enhanced copper tubing is mechanically expanded for a superior seal into machined carbon steel tubesheets. Tubing wall thickness is 0.018 inches. Removable endplates, refrigerant and water connections are constructed from carbon steel. All baffles are made from corrosion resistant materials. <br><br>Tube Side: 300 PSE at 200&deg; F<br>Shell Side: 200 PSI at 200&deg; F (non-code)"]
Text[2]=["Water Flow Rate","There is one baffle configuration per ER model. As a result, the water flow rate at the job site will need to be adjusted to obtain the design water flow rate. At a range of 10&deg;F, the water flow rate should be 2.4 gpm/ton."]
Text[3]=["Refrigerant Connections","The refrigerant side configuration for the ER evaporators is 3-Pass with nozzles at opposite ends. As a result, the refrigerant nozzles are on teh same ends, but may not be in the same locations as the other OEM Single Pass evaporators."]


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