SMC Corporation of America
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Fig. 8.4-3 Cooling capacity(HRSE012-A-20/23) HRSE Series Product Warranty 8-7 HRX-OM-R039 Chapter 8 Documents 8.4.4 HRSE018-A-20/23-(T) Ambient Ambient 2000 2000 Temperature Temperature 25 35 40 25 35 40 1500 1500 Cooling capacity[W] Cooling capacity[W] 1000 1000 500 500 0 0 0 10 20 30 40 0 10 20 30 40 Circurating fluid temperature[] Circurating fluid temperature[]] 50Hz 60Hz The cooling

SMXS16A, #3 SMXS16A, #4(#4+#9) SMXS16B, #1 SMXS16B, #2 SMXS16B, #3(#3+#7) (mm) Model F 35 35 35 40 30 55 65 70 ZZ 87 87 87 97 112 162 210 260 M 76 76 76 86 101 151 199 249 Z 75 75 75 85 100 150 198 248 K 29 39 49 59 69 94 119 144 J 40 40 40 50 60 85 118 155 I 10 10 10 10 15 40 55 68 NN 2 2 2 2 3 4 5 7 H 40 40 40 50 30 35 35 35 KA NA 2 2 2 2 2 4 4 4 G 16 16 16 16 21 26 39 19 HA 40 40 40 50

/m3. ( ) Therefore, with an air flow rate of 3m3/min (22kW equivalent compressor), the amount of condensed water per unit of time is 15.2 x 3 x 60 = 2736g/h. 6 7 8 3 1 2 3 4 5 Dew Point Conversion Chart 60 50 40 30 Pressure dew point C 20 10 1.5MPa 1.3MPa 1.1MPa 0.9MPa 0.7MPa 0.5MPa 0.3MPa 0.1MPa Atmospheric pressure 0 -40 -30 -20 -10 -60 -50 -60 -50 -40 -30 -20 -10 0 10 20 30 Atmospheric

N O P 32 7 34 5.5 9 Rc 1/8 7 49.5 14 40 7 40 5.5 9 Rc 1/8 7 57 14 50 8 50 6.6 11 Rc 1/4 8 71 19 63 8 60 9 14 Rc 1/4 10.5 84 19 Series CBQ2 Dimensions Foot type/CBQ2L, CDBQ2L (mm) Foot type B + Stroke L With rear lock With front lock Bore size (mm) L L1 LD A B LS A B LS 89.7 65.5 49.5 82.2 58 42 17 38.5 6.6 32 Special cap bolt 99.2 75 59 88.7 64.5 48.5 17 38.5 6.6 40 LH LY 101.7 75.5 52.5

Poloneza 89, PL-02-826 Warszawa Portugal SMC Sucursal Portugal, S.A. (351) 22 616 6570 Rua De Eng Ferrerira Dias 452 4100-246,Porto Romania SMC Romania S.r.l. (40)21-3205111 Str.

) 32 40 50 V W HB IA IB J KA KB L M N OB RA RB S U Z , TN, TF , TN, TF 38 10 5 60 58.5 4.5 28 19.8 7 34 5.5 9 7 58.5 31.5 10 M5 x 0.8 10-32UNF M6 x 1.0 1/4-20UNC 14 46 10 5 69 67.5 5 33 23.3 7 40 5.5 9 7 66 35 10 M5 x 0.8 10-32UNF M6 x 1.0 1/4-20UNC 14 58 12 6 86 84.5 7 42 29.7 8 50 6.6 11 14 8 80 41 M6 x 1.0 1/4-20UNC M8 x 1.25 5/16-18UNC 19 7 Compact Cylinder/Guide Rod Type Series CQM Auto

14 H 13.5 12.5 13 20 20.5 22 29 33 33 I 28 34 40 50 58 72 J 4.5 4.5 6 6 8 8 10 12 12 N 9.5 11 11 18 18.5 20 26 25 25 Q NN S 62 63 83 106 111 124 150 176 188 K 5 4 11 8 10 15 16 25 26 V A 4 4 4 8 8 8 10 T C 8 14 14 26 32 32 41 L 35 38 57 66 70 80 92 110 122 MM NA 10 14 17 24 30 36 46 55 69 Model 12-CY3B6 12-CY3B10 12-CY3B15 12-CY3B20 12-CY3B25 12-CY3B32 12-CY3B40 12-CY3B50 12-CY3B63 R

MGQ 1 2 3 4 5 10 20 30 40 50 100 200 300 400 10 20 30 40 50 100 200 300 400 Eccentric distance l (mm) Eccentric distance l (mm) MGG MGC MGTL100 300 300 MGTM100 200 200 P = 0.5 MPa MGF 100 P = 0.5 MPa Larger than 75st Larger than 50st Load mass m (kg) Load mass m (kg) MGZ 40 50 100 25st 50st 30 25, 50st MGT 20 50 40 10 30 5 4 3 20 2 1 10 20 30 40 50 100 200 300 1 2 3 4 5 10 20 30 40 50 100

Hmm 0.7MPa 0.3MPa 0.3MPa 60 0.7MPa 60 0.4MPa 0.4MPa 40 40 20 20 100 80 60 40 20 0 80 60 40 20 0 100 Gripping point L mm Gripping point L mm 3 Series MHF2 Confirmation of external force on fingers: Series MHF2 Step 3 L L Mr Mp Fv My L L: Distance to the point at which the load is applied (mm) Maximum allowable moment Allowable vertical load Fv (N) Model Pitch moment Mp (Nm) Yaw moment My(