SMC Corporation of America
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specification . 9-7 9.2 Outline dimensions . 9-8 9.2.1 HRS090-A-20/40/46-. 9-8 9.2.2 HRS090-W-20/40/46-. 9-9 9.3 Flow diagram . 9-10 9.3.1 HRS090-A-20/40/46-. 9-10 9.3.2 HRS090-W-20/40/46 . 9-10 9.4 Cooling capacity . 9-11 9.4.1 HRS090-A-20/40/46-. 9-11 HRS090 Series HRX-OM-T002 Contents 9.4.2 HRS090-W-20/40/46. 9-11 9.5 Pump capacity . 9-12 9.5.1 HRS090-A/W-20/40/46. 9-12 9.6 Types of hazard

Cooling Method: A (Air-cooled Refrigeration), Pipe Thread: N [NPT (w/Rc-NPT Conversion Fitting)], Power Supply: 46 [3-phase 380 to 415 VAC (50/60 Hz); 3-phase 460 to 480 VAC (60 Hz)]

Cooling Method: Air-cooled Refrigeration, Pipe Thread: N [NPT (w/Rc-NPT Conversion Fitting)], Power Supply: 46 [3-phase 380 to 415 VAC (50/60 Hz); 3-phase 460 to 480 VAC (60 Hz)], Option: -

HRS090-W-l (Water-cooled refrigeration) HRS090-A-l (Air-cooled refrigeration) * This circuit construction of the position of the parts may be different from actual product.

W: 13 [kW] w Derive the heat generation amount from the power supply output.

Cooling Method: A (Air-cooled Refrigeration), Pipe Thread: N [NPT (w/Rc-NPT Conversion Fitting)], Power Supply: 46 [3-phase 380 to 415 VAC (50/60 Hz); 3-phase 460 to 480 VAC (60 Hz)], Option: M (Applicable to Deionized Water Piping)

Cooling Method: A (Air-cooled Refrigeration), Pipe Thread: N [NPT (w/Rc-NPT Conversion Fitting)], Power Supply: 46 [3-phase 380 to 415 VAC (50/60 Hz); 3-phase 460 to 480 VAC (60 Hz)], Option: J (w/Automatic Fluid Fill Function)

Cooling Method: Air-cooled Refrigeration, Pipe Thread: N [NPT (w/Rc-NPT Conversion Fitting)], Power Supply: 46 [3-phase 380 to 415 VAC (50/60 Hz); 3-phase 460 to 480 VAC (60 Hz)], Option: Applicable to Deionized Water Piping

Cooling Method: Air-cooled Refrigeration, Pipe Thread: N [NPT (w/Rc-NPT Conversion Fitting)], Power Supply: 46 [3-phase 380 to 415 VAC (50/60 Hz); 3-phase 460 to 480 VAC (60 Hz)], Option: w/Automatic Fluid Fill Function

Applicable model HRS-WL003 HRS090-mm-20/40 Parts List q No.

Cooling Method: W (Water-cooled Refrigeration), Pipe Thread: Rc, Power Supply: 46 [3-phase 380 to 415 VAC (50/60 Hz); 3-phase 460 to 480 VAC (60 Hz)]

IPX4 (400 V as standard) HRS100/150 Standard type 1.0 5 to 35 V V (400 V as standard, 200 V as an option) HRSH090 Inverter type 0.1 5 to 40 V Indoor use (Only 200 V as an option) (400 V as standard, 200 V as an option) Outdoor installation IPX4 HRSH Inverter type 0.1 5 to 35 V V V V V (Only 200 V as an option.

Changes the circulating fluid set temperature. q w e HRS t r 2 Alarm display menu Indicates alarm number when an alarm occurs. HRS 090 Product temperature, pressure and accumulated operating time can be checked as daily inspection.

Power supply output VI: 1.0 [kVA] Q = P = V x I x Power factor In this example, using a power factor of 0.85: = 1.0 [kVA] x 0.85 = 0.85 [kW] = 850 [W] Cooling capacity = Considering a safety factor of 20%, 850 [W] x 1.2 = 1020 [W] HRZ W Efficiency Q = P = HRZD In this example, using an efficiency of 0.7: HRW 800 0.7 = = 1143 [W] HECR Cooling capacity = Considering a safety factor of 20%,