80 85 90 95 100 105 60 65 70 75 80 85 73 78 83 88 93 98 16 to 25 Relief port 2 x M5 x 0.8 2 x P through M5 x 0.8 R QA Q GC GB E MM GA D J C 2.8 A Width across flats L 2 x P through A1 H E 4 x T counterbore 0.5 B S Z (mm) S Z A A1 GB P Q QA R T B C D E GA GC H J L MM Bore size 5 30 40 50 5 10 15 20 25 30 40 50 10 15 20 25 20 16 12 11 5.5 4.5 9 4 4.5 2 16 12 26 20 40 32 8 6 30 27 M6 x 1.0
40 30 20 10 0 1 5 10 50 100 100 90 80 100 90 80 70 60 50 40 30 20 10 0 100 200 300 400 500 100 200 300 400 500 100 200 300 400 500 Elimination ratio (%) Elimination ratio (%) Elimination ratio (%) 75 70 60 50 40 30 20 10 0 1 5 10 50 30 100 1 5 10 50 100 Flow-back count Flow-back count Flow-back count Explanation of graph Explanation of graph Example: Elimination ratio and concentration after
ST 10 20 30 40 50 9+ST 19 29 39 49 59 10+ST 20 30 40 50 60 37+ST 47 57 67 77 87 47+ST 57 67 77 87 97 CXSJ6-10 21-/2211-/12CXSJ6-20 CXSJ6-30 CXSJ6-40 CXSJ6-50 21-/2211-/1221-/2211-/1221-/2211-/1221-/2211-/12850 Dual Rod Cylinder/Compact Type CXSJ 2122CXSJ/ 1112Dimensions: 10 16 17+ST 4 x M3 x 0.5 thread depth 4.5 3.5 8 7.5 2 x M5 x 0.8 thread depth 4 (Piping port) 21 8 Steel ball 34 M3 x 0.5
VX2 60-02 VX2 602 10 15 5 3 5 10 15 20 25 30 4.5 10 15 20 30 40 50 60 3 2 6 30 60 8 25 35 10 20 40 10 35 Flow rate Q kg/h Figures inside [ ] indicate the saturated steam holding heat (kcal/kg).
50mm K 63 63mm 80 80mm N 100 100mm R H Z mm mm mm 40 25~850 25~700 1200 950 50 25~800 25~650 1150 900 63 25~800 25~650 1150 900 80 25~750 25~600 1100 900 100 25~750 25~600 1100 850 4-2 CEU2 NPN P PNP 15 4-3 CE1-R 5 5m 10 10m C 15 15m 20 20m A B CD E F G () 16 5. 5-1 17 18 5-2 19 5-3 20 6. 6-1 1 3 4 7 5 2 6 8 9 10 11 6-2 1 11 10 9 2 3 4 5 6 7 8 12 AC DC LCD 21
Viscosity Transfer is possible up to about 100 mPas. 50 0 1 2 3 4 5 10 20 30 40 50 100 Viscosity (mPas) Kinematic viscosity = Viscosity /Density (103m2/s) = (mPas)/(kg/m3) = 8 Series PB1313A Working Principle: Air Operated When air is supplied with the external 3-port solenoid valve turned ON (energized), air enters the driving chamber and the diaphragm moves to the left.
For example, changing from F Kit (D-sub connector) to S Kit (serial transmission) is achieved by simply changing the kit piece. 19 20 19 20 19 20 19 20 19 20 19 20 19 20 19 20 COM Station 1 Double wiring Station 2 Single wiring Station 3 Double wiring Station 4 Single wiring (Refer to the connector wiring diagram) Printed circuit board patterns between connectors are shifted at every station
20 11 4.5 60 45 35 55 45 35 55 60 50 60 Rated value 10 104 VXF 2150 83 LVC DC 6 VXF 2160 AC 50 20 11 4.5 60 6 DC Rated value 10 105 LVA 85 VXF 2280 AC 50 40 18 7.5 60 8 DC Rated value 10 108 LVH 85 LVD LVQ LQ LVN TI/ TIL PA PAX PB 17-3-73 4 The VX series will be revised shortly.
30 40 50 0 10 20 30 40 50 F1 Gripping point L (mm) Gripping point L (mm) F1 F1 532 MHR3/MDHR3 Series Rotary Actuated Air Gripper 3-Finger Type Construction q !
M4x0.7x22L 20 NBA-088S 25 NBA-106S (mm) 32 BGS1-032S 40 BAF-04S 50 BAF-05S 63 BAF-06S 80 BAF-08S 100 BAF-10S D-G5BA mm 20 25 32 40 50 63 80 100 D-G5BA 5 5 5.5 6 7 7.5 7.5 8 30% 1 2 2 mm mm D-G5BA A B Hs 20 25 31.5 31.5 24 26 24 25 28 36 36 46 80 28.5 32 40 50 63 32.5 33 37 36.5 45.5 45.5 42 48.5 57.5 56 100 57 46 68 (mm) 10 20 75 15 3. 3-1. 1 2 3 4 5 6 7 8 9 10 1 2 3 416
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 pressure dew point C 8
/60 Hz 200 VAC 50/60 Hz 110 VAC 50/60 Hz 220 VAC 50/60 Hz 24 VDC 12 VDC 240 VAC 50/60 Hz Other VC 100 VAC 50/60 Hz 200 VAC 50/60 Hz 110 VAC 50/60 Hz 220 VAC 50/60 Hz 24 VDC 12 VDC 240 VAC 50/60 Hz Other Nil S Z None With surge voltage suppressor With light/surge voltage suppressor With indicator light Option VDW L Light/Surge voltage suppressor Nil Z VQ Except 12 VDC, 240 VAC, other voltages
. 7 s 2 5F.S. 1090 2 (ZS-40-W) AWG26 0.51 mm 1.00 mm 3.5 mm -68No.PF-OMN0011CN-C / (PF3W704/720740) A B C 1 V 1.5 V 5 V 4 mA 6 mA 20 mA (PF3W711) A B C 1 V 1.4 V 5 V 4 mA 5.6 mA 20 mA (PF3W721) A B C 1 V 1.5 V 5 V 4 mA 5.9 mA 20 mA [L/min] PF3W504 0.5 4 PF3W520 2 16 PF3W540 5 40 PF3W511 10 100 PF3W521 30 250 -69No.PF-OMN0011CN-C / A B C D 0.6 V 1 V 5 V 5.4 V 2.4 mA 4 mA 20 mA
Form w 1 Material e Buffer spec. r Buffer stroke t Vacuum inlet M5 x 0.8 Effective thread depth 4 3 40 22.5 1.2 11 6 46 25 14.5 10 56 29 20.5 04 A J K 3 40 22.5 1.8 11 6 46 25 14.5 10 56 29 20.5 06 08 N S U F GN GS HS 18 11 15 59 42.5 1.2 10 20 66.5 50 06 08 15 59 42.5 1.8 20 66.5 50 04 JB K ZP3 Y UM B5 3 41 23.5 11 6 47 26 14.5 10 57 30 20.5 JB K 15 60 43.5 10 20 67.5 57 J K 4 10 13 16 D
O 54 66 66 80 80 88 88 102 136 P 70 84 84 100 100 110 110 130 180 Q 26 28 28 34 34 50 50 60 76 R 4.5 5 5 5 5 9 9 10 12 S 1.6 2.0 2.0 2.3 2.3 3.2 3.2 4.5 4.5 T U 37 37 37 37 37 37 37 37 37 AMD150 1 8 1 4 3 8 159 172 178 204 210 225 232 259 311 13 13 16 16 19 19 22 22 32 100 113 119 145 151 166 173 200 253 63 76 76 90 90 106 106 122 160 20 20 20 20 20 20 20 20 20 63 76 76 90 90 106 106 122
Applicable bore A 0.51 D C 1/4-28 UNF B 0.16 JM-025 0.44 3/4", 7/8" JM-03 0.50 0.19 5/16-24 UNF 0.50 1 1/16" JM-045 0.69 0.79 0.26 7/16-20 UNF 1 1/4", 1 1/2" JM-04 0.56 3/8-24 UNF 0.65 0.23 1 1/4", 1 1/2" (Non-rotating) JM-05 0.75 1/2-20 UNF 0.32 0.87 2" 6-14-20 21 Series NCM Mounting Bracket Accessory Material: Rolled steel P dia.
Part No.: ES001S002 X25 N Nominal filtration O-ring Symbol N V T Material NBR FKM PTFE Nominal filtration m 1 2 5 10 20 40 70 100 Symbol 001 002 005 010 020 040 070 100 312 SF Series Specific Product Precautions 1 Be sure to read this before handling the products. Refer to back page 50 for Safety Instructions and pages 6 to 8 for Air Preparation Equipment Precautions.
Dynamic moment Me3 L2 We W = 1/3 14.7 (50 + 27) 103 Review Me3. = 0.38 [Nm] 3 = Me3/Me3 max = 0.38/3 = 0.13 Guide central axis A Me1 W We Me1 = 1/3 We (L1 + B) 103 = 1/3 14.7 (50 + 48) 103 L1 B = 0.48 [Nm] 4 = Me1 /Me1 max = 0.48/3 = 0.16 Review Me1.
Dynamic moment Me3 We W L2 = 1/3 14.7 (50 + 27) 103 Review Me3. = 0.38 [Nm] 3 = Me3/Me3 max = 0.38/3 = 0.13 Guide central axis A Me1 W We Me1 = 1/3 We (L1 + B) 103 = 1/3 14.7 (50 + 48) 103 L1 B = 0.48 [Nm] 4 = Me1 /Me1 max = 0.48/3 = 0.16 Review Me1.