SMC Corporation of America
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An angled supply port facilitates the supply of circulating fluid, even when units are?stacked.? A?large digital display provides a clear view of the current and set values.? The dustproof filter is integrated with the grill of the front panel allowing mounting and removal of the HRS?

HRS compact recirculating chillers are designed to meet the widest range of single-point applications in both industrial and technology settings. The package design is robust enough for the factory, yet ergonomic and compact for lab installations. Coolant can be either heated or cooled within the set temperature range. Choose from six cooling capacities, air or water cooled refrigerant, and

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HRS012-A-10 HRS012-W-10 HRS018-A-10 HRS018-W-10 Model Air-cooled refrigeration Water-cooled refrigeration Air-cooled refrigeration Water-cooled refrigeration Cooling method Refrigerant Control method Ambient temperature/humidity Note 2) R407C (HFC) PID control Temperature: 5 to 40C, Humidity: 30 to 70% Clear water, 15% ethylene glycol aqueous solution Note 5) Circulating fluid Note 3) Circulating

HRS012-A-10 HRS012-W-10 HRS018-A-10 HRS018-W-10 Model Cooling method Refrigerant Control method Ambient temperature/humidity Note 2) Air-cooled refrigeration Water-cooled refrigeration Air-cooled refrigeration Water-cooled refrigeration R407C (HFC) PID control Temperature: 5 to 40C, Humidity: 30 to 70% Clear water, 15% ethylene glycol aqueous solution Note 5) Circulating fluid Note 3) Circulating

) Note 10) Note 10) Note 10) Note 10) Note 10) use pressure within the specification range.

9.6.3 HRS012--10-T, HRS018--10-T, HRS012--10-MT, HRS018-10-MT 0.8 80 0.7 70 Circulating fluid pressure [MPa] 0.6 60 0.5 Pump head [m] Available area 50 0.4 Outlet60Hz 40 0.3 30 Outlet50Hz 0.2 20 Return port 0.1 10 Available area 0.0 0 0 5 10 15 20 25 5 Circulating fluid flow [L/min] Fig 9.6-3 Pump capacity(HRS012--10-T, HRS018--10-T, HRS012--10-MT, HRS018--10-MT) 9.6.4 HRS012--20-T, HRS018

HRS012/018--10-T/MT HRS012/018/024/030--20-T HRS012/018/024/030--20-MTNote 1) Applicable model Rated flow50/60Hz Note 2) 3) 7(0.36MPa)/10(0.42MPa) 10(0.44MPa)/14(0.40MPa) 10(0.32MPa/)/14(0.32MPa) Pump 18/22 Maximum flow rate (50/60 Hz) L/min Maximum pump head (50/60 Hz) m 55 70 60 Output W 320 550 Circuit protector 15A (10 A for standard) A 15 Recommended earth leakage breaker capacity 15

An angled supply port facilitates the supply of circulating fluid, even when units are stacked.  A large digital display provides a clear view of the current and set values. 

Cooling Capacity: 012 (Cooling Capacity: 1100/1300W, 50/60 Hz), Cooling Method: A (Air-cooled Refrigeration), Thread: N (NPT w/PT-NPT Conversion Fitting Set), Option: JMT (J + M + T)

Type: -, Cooling Method: -, Cooling Capacity: 1,100/1,300 W (50/60 Hz), Piping thread type: NPT (PT-NPT conversion fitting set included), Optional specifications: With automatic water supply / Compatible with deionized water (pure water) piping / High pump head specification

Applicable model HRR012/018--10-T/MT*1 HRR012/018/024/030--20-T HRR012/018/024/030--20-MT1 Pump Rated flow (50/60 Hz)2, 3 L/min 7 (0.36 MPa)/10 (0.42 MPa) 10 (0.42 MPa)/14 (0.40 MPa) 10 (0.32 MPa)/14 (0.32 MPa) Maximum pump head (50/60 Hz) m 50 50 50 Output W 350 550 Circuit protector A 15 15 (10 A for standard) Recommended earth leakage breaker capacity A 15 Cooling capacity4 W The cooling

Laser output power 3 [kW], conversion efficiency 30% The oscillators power consumption is, 3 [kW] 0.3 = 10 [kW] The cooling capacity required for the oscillator is, 10 [kW] 3 [kW] = 7 [kW] Considering a safety factor of 20%, 7 [kW] x 1.2 = 8.4 [kW] W Efficiency Q = P = In this example, using an efficiency of 0.7: 5.1 0.7 = = 7.3 [kW] Q: Heat generation amount Cooling capacity = Considering