SMC Corporation of America
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500 0 0 5 10 15 20 25 30 35 40 5 10 15 20 25 30 35 40 Circulating fluid temperature[] Circulating fluid temperature[] 60Hz 50Hz Fig. 9-5 Heating capacity(HRS050-A-20-(BJM)) 9.5.2 HRS050-W-20-(BJM) 2000 2000 Ambient Ambient temperature temperature 5 20 25 32 40 1500 1500 5 20 25 32 40 Heating capacity [W] Heating capacity [W] 1000 1000 500 500 0 0 5 10 15 20 25 30 35 40 5 10 15 20 25 30 35

500 1000 1500 Flow rate L/min Flow rate L/min (ANR) Flow rate L/min (ANR) SRH4100-03 SRH4110-03 SRH4100-03 0.5 0.20 0.20 0.4 Outlet pressure MPa Outlet pressure MPa Outlet pressure MPa 0.15 0.15 0.3 0.10 0.10 0.2 0.05 0.05 0.1 1000 500 10 5 0 15 20 25 500 1000 1500 0 0 Flow rate L/min (ANR) Flow rate L/min (ANR) Flow rate L/min 858 Clean Regulator SRH Series Pressure Characteristics (Representative

3 w e q !1 r y o e t !2 Courtesy of Steven Engineering, Inc.-230 Ryan Way, South San Francisco, CA 94080-6370-Main Office: (650) 588-9200-Outside Local Area: (800) 258-9200-www.stevenengineering.com 4 Built-in magnet Without magnet Single acting u i r y o e w i e u !

After washing the element, make sure the base seal is properly mounted. 500 A Vertical Suction Filter FHIA Series Dimensions Differential pressure indicator 16 B (34) F OUT Removal dimension K H F OUT D E C H Differential pressure indication switch FH FH 62 HOW (65) F IN 4 x I OUT A J G (mm) A B C D E F G H I J K Model Weight (kg) FHIA-04 FHIA-06 FHIA-08 FHIA-10 FHIA-12 FHIA-16 FHIA-20 FHIA

E (KF ) Fn J H B A G A mm A B C D E Fn G H J XLC-16 40 110 38 1 30 17 40 26 XLC-25 50 120 48 1 12 40 26 39 27.5 XLC-40 65 171 66 2 11 55 41 63 36 9 XL-OMV0002 4-2.162580,100,160 C E D C E E (KF ) (K ) Fn Fd J K H B A G A mm A B C D E Fn Fd G H J K XLC-50 70 183 80 31 10.5 75 52 77 29 10.5 XLC-63 88 209 100 39 11 87 95 70 76.5 36 9 XLC-80 90 250 117 45.5 11 114 110 83 105 44 9 XLC-100 108

The kinetic energy can be calculated using the formula below. 2 1 = I E E: Kinetic energy [ J ] 2 I: Moment of inertia [ 2 m kg ] : Angular speed [ s rad ] There is a threshold of kinetic energy that a rotary actuator allows. Therefore, by finding the moment of inertia, it is possible to find the threshold value of the rotation time.

low load shock absorber + Adjusting bolts MY1W Bore size Stroke L TT h h E F EA h EB W F Stroke adjusting unit S (Shock absorber stroke) T MY1W16, 20 F MY1W50, 63 Shock absorber EC EY h 3.6 3.6 3.5 4.5 4.5 5.5 5.5 TT 5.4 (Max. 11) 5 (Max. 11) 5 (Max. 16.5) 8 (Max. 20) 9 (Max. 25) 13 (Max. 33) 13 (Max. 38) S 40.8 40.8 46.7 67.3 67.3 73.2 73.2 E 14.6 20 24 29 35 40 52 EY 39.5 45.5 53.5 67

D-F7BV D-F7BAL, D-J79W D.A72,D-A72H B i r w n l 8 t u w n (Black) D.F7PW D-E80A D-E73A (Black) o Reed swil.h o e Beed swltch Brue :Ei*" lblack) ked) D.A76H. D-E75A (+) E | 'FesisLort Black ;fi-+4--lrl" (-) o Series NCX2 6.14 10.14 Aub sr.

SMC's E-MY2 series e-rodless actuators require no programming, and have both the operational ability of an air cylinder, and the speed controllability of an electric actuator.  The series consists of the E-MY2B (basic), E-MY2C (cam follower guide), E-MY2H (linear guide, single axis), and the E-MY2HT (linear guide, double axis) styles. 

SMC's E-MY2 series e-rodless actuators require no programming, and have both the operational ability of an air cylinder, and the speed controllability of an electric actuator.  The series consists of the E-MY2B (basic), E-MY2C (cam follower guide), E-MY2H (linear guide, single axis), and the E-MY2HT (linear guide, double axis) styles. 

SMC's E-MY2 series e-rodless actuators require no programming, and have both the operational ability of an air cylinder, and the speed controllability of an electric actuator.  The series consists of the E-MY2B (basic), E-MY2C (cam follower guide), E-MY2H (linear guide, single axis), and the E-MY2HT (linear guide, double axis) styles. 

SMC's E-MY2 series e-rodless actuators require no programming, and have both the operational ability of an air cylinder, and the speed controllability of an electric actuator.  The series consists of the E-MY2B (basic), E-MY2C (cam follower guide), E-MY2H (linear guide, single axis), and the E-MY2HT (linear guide, double axis) styles. 

SMC's E-MY2 series e-rodless actuators require no programming, and have both the operational ability of an air cylinder, and the speed controllability of an electric actuator.  The series consists of the E-MY2B (basic), E-MY2C (cam follower guide), E-MY2H (linear guide, single axis), and the E-MY2HT (linear guide, double axis) styles. 

SMC's E-MY2 series e-rodless actuators require no programming, and have both the operational ability of an air cylinder, and the speed controllability of an electric actuator.  The series consists of the E-MY2B (basic), E-MY2C (cam follower guide), E-MY2H (linear guide, single axis), and the E-MY2HT (linear guide, double axis) styles. 

SMC's E-MY2 series e-rodless actuators require no programming, and have both the operational ability of an air cylinder, and the speed controllability of an electric actuator.  The series consists of the E-MY2B (basic), E-MY2C (cam follower guide), E-MY2H (linear guide, single axis), and the E-MY2HT (linear guide, double axis) styles. 

SMC's E-MY2 series e-rodless actuators require no programming, and have both the operational ability of an air cylinder, and the speed controllability of an electric actuator.  The series consists of the E-MY2B (basic), E-MY2C (cam follower guide), E-MY2H (linear guide, single axis), and the E-MY2HT (linear guide, double axis) styles. 

SMC's E-MY2 series e-rodless actuators require no programming, and have both the operational ability of an air cylinder, and the speed controllability of an electric actuator.  The series consists of the E-MY2B (basic), E-MY2C (cam follower guide), E-MY2H (linear guide, single axis), and the E-MY2HT (linear guide, double axis) styles. 

SMC's E-MY2 series e-rodless actuators require no programming, and have both the operational ability of an air cylinder, and the speed controllability of an electric actuator.  The series consists of the E-MY2B (basic), E-MY2C (cam follower guide), E-MY2H (linear guide, single axis), and the E-MY2HT (linear guide, double axis) styles.