Type: JAF JAF180 200--X530 4 x J Center of sphere M U U D 60 G P T B C H R A Dimensions (mm) Maximum operating tensile and compressive force (N) Center of sphere R Maximum screw-in depth P Allowable eccentricity U Applicable bore size Model M A B C D T J G H Weight (kg) Nominal size Pitch 180 JAF180-40-150-X530 40 1.5 159 150 100 96 29 22 28 70 86 49 3 55000 9.1 200 JAF200-45-150-X530 45
39 32.4 10.8 3.5 P , E port E P 8.9 E P 11 2-3.5 Mounting hole 26.5 27.2 34 V100 (Lead wire length) 300 (Lead wire length) SY P = 1011.5 300 300 (Lead wire length) 43.3 37.2 12.5 7.5 43.3 SYJ U side D side 1 2 3 4 5 n (Lead wire length) VK For latching and AC VZ Courtesy of Steven Engineering, Inc.-230 Ryan Way, South San Francisco, CA 94080-6370-Main Office: (650) 588-9200-Outside Local
Consult SMC for other voltages. 2.9-12 Series VQ100 Plug Lead Unit Manifold (VV3Q12) L1 10.8 3.5 5 L2 3 P E 8.9 P E 11 Round head screw M1.7 X 14 W (L type) 28.7 26.5 W (M type) 300 33.8 300 2-3.5 Mounting hole 4-M5 SY P, E port Manual override SYJ 11.5 P=10 300 Latching, 100V AC or more VK H (M type) U side D side n 5 4 3 2 1 300 H (L type) VZ VT VT 42.2 L type M type 36.3 VP W
200 100 100 500 400 300 200 100 Maximum speed: V(mm/s) Maximum speed: V(mm/s) Graph 6 Graph 3 0.4MPaP<0.5MPa 0.4MPaP<0.5MPa 3000 3000 2000 2000 160 140 1000 1000 700 800 900 700 800 900 125 Load weight: m(kg) Load weight: m(kg) 600 600 160 500 500 400 400 140 320 125 300 300 200 200 280 100 100 100 500 400 300 200 100 500 400 300 200 Maximum speed: V(mm/s) Maximum speed: V(mm/s) Graph 7
L Series VQ1000 Plug lead Cassette Plug-in P.1.10-12 P.1.10-14 Series VQ0 P.1.10-44 P.1.10-36 P.1.10-40 Series VQ1000 P.1.10-36 P.1.10-40 P.1.10-44 C Series VQ2000 P.1.10-40 P.1.10-44 P.1.10-36 Series VQ1000 P.1.10-74 P.1.10-76 P.1.10-78 1.10-4 Manifold Variations C S L Port size SUP EXH port Cylinder port kit kit SY Lead wire Direct electrical entry style Serial transmission unit P, R A,
Refer to p.0-39 through 0-46 for Safety Instructions and common precautions.
. 5-6-8 Series VM100 P . 5-6-12 Series VM200 P . 5-6-20 Series VM400 P . 5-6-26 Series VZM500 P . 5-6-41 Series VZM400 P . 5-6-35 Series VFM300 P . 5-6-48 Series VFM200 P . 5-6-54 Series VFM800 P . 5-6-32 Transmitters Page Relay Valve P . 5-7-1 Shuttle Valve P . 5-7-3 Shuttle Valve with One-touch Fitting P . 5-7-5 AND Valve with One-touch Fitting P . 5-7-7 Time Delay Valve P . 5-7
Secure the adjusting bolt at the position where it protrudes approximately 0.5 mm from the shock absorber. 25 Horizontal collision: P = 0.5 MPa 50 Horizontal collision: P = 0.5 MPa 2000 1500 2000 1500 Collision speed (mm/s) Collision speed (mm/s) L unit L unit 1000 1000 Air cushion Air cushion 500 400 300 500 400 300 Adjusting bolt 200 200 1002 3 5 10 20 50 100 1 2 3 4 5 10 20 30 0.5 40 50
500 400 300 200 200 100 1 2 3 4 5 10 20 30 1002 3 4 5 10 20 30 0.5 40 50 100 Load weight (kg) Load weight (kg) 20 Horizontal collision: P = 0.5 MPa 40 Horizontal collision: P = 0.5 MPa 2000 1500 2000 1500 Collision speed (mm/s) Collision speed (mm/s) L unit 1000 1000 Air cushion 500 400 300 500 400 300 L unit Air cushion 200 200 1002 3 4 5 10 20 50 100 1 2 3 4 5 10 20 30 400 50 Caution Load
m(kg) Load weight: m(kg) 160 600 600 140 500 500 125 400 400 300 300 200 200 100 100 100 500 400 300 200 100 500 400 300 200 Maximum speed: V(mm/s) Maximum speed: V(mm/s) 31
Stations 12 13 14 15 16 17 18 19 20 21 22 23 24 11 10 9 8 7 6 5 1 2 3 4 Description/Model A B Single PEB EA A B Double P EA EB A B Valves Options Closed center EAPEB A B Exhaust center P EA EB A B Pressure center EB P EA A B Perfect EB P EA Blanking plate VVQ4000-10A-1 Individual SUP spacer VVQ4000-P-1-02/03 Individual EXH spacer VVQ4000-P-1-02/03 Throttle valve spacer VVQ4000-20A-1 Perfect
T4 = 0.05 [s] T1 = V/a1 = 300/5000 = 0.06 [s], T3 = V/a2 = 300/5000 = 0.06 [s] T2 = = = 0.94 [s] L 0.5 V (T1 + T3) V 300 0.5 300 (0.06 + 0.06) 300 T4 = 0.05 [s] Therefore, the cycle time can be obtained as follows.
Code D33 SST Sensor Dual Module Code D44 Namur Sensor Dual Module Code I02 P+F NJ2-12GK-SN Code I09 P+F NCB2-12GM35-N0 Code I32 Omron E2E-X2Y1 Code I41 P+F NJ4-12GK-SN Code I45 P+F NJ3-18GK-S1N Code I56 IFC 2002-ARKG/UP Code K05 Omron D2VW-5 Code K06 Omron D2VW-01 Code B06 Omron D2VW-01 (ND9100F/P, ND9200F/P and ND9300F/P only) 2.5 Recycling and disposal WARNING (ND9000, ND7000): During automatic
Class 3 ground Ground resistor 100 or less Command pulse (MAX.225/kpps) PULS SIGN P Incremental encoder SIGN CLR P Deviation counter clear signal (active high) 2CN PG CLR P Be certain to treat the shielding wire terminals.
3 contained in one kit, and can be ordered using the kit number for each cylinder bore size. 2.4-7 Series MUW Basic: MUWB Rod end male thread (mm) H1 6 7 8 11 11 H 36 40 45 53 56 GY 5 5.5 7 8 10 GX 10 8.5 9 11.5 11.5 EY 26 42 54 64 72 Model MUWB25 MUWB32 MUWB40 MUWB50 MUWB63 Stroke range (mm) 5 to 300 5 to 300 5 to 300 5 to 300 5 to 300 D 12 14 16 20 20 C 54 68 86 104 124 B1 17 19 22 27 27
Contact P/A for more details.
Unit switching Real-time switch output ( ) For air Hysteresis mode Display Real-time flow rate l/min Accumulated flow l ON YES CFM x 10-2, CFM x 10-1 ft3 x 10-1 OFF P-1 P-2 High flow rate CFM=ft3/min "P" Window comparator mode H : Hysteresis High Flow Rate Type (For Air) H H Display Real-time flow rate l/min Accumulated flow l, m3, m3 x 103 ON NO OFF P-1 P-2 ft3, ft3 x 103, ft3 x 106 CFM
z300 R E C C R E Water For Air For Medium A 2 x P Port size 2 P Port size A B1 B1 B B Vacuum For Oil Construction Dimensions Construction Dimensions DIN terminal Conduit terminal F Q Cable 6 to 12 D D S G1/2 Qp2 F 34 (44) 31.5 25 T C C R R E G1/2 E 2 x P Port size A 2 x P Port size A B1 Sp2 B B1 B Conduit Faston type D G1/2 Q F D Q F 11 z 280 VX2 23 R C C R E E 2 x P Port size A 2 x P Port
Unit switching Real-time switch output ( ) For air Hysteresis mode Display Real-time flow rate l/min Accumulated flow l ON YES CFM x 10-2, CFM x 10-1 ft3 x 10-1 OFF P-1 P-2 High flow rate CFM=ft3/min "P" Window comparator mode H : Hysteresis High Flow Rate Type (For Air) H H Display Real-time flow rate l/min Accumulated flow l, m3, m3 x 103 ON NO OFF P-1 P-2 ft3, ft3 x 103, ft3 x 106 CFM
T1 = V/a1 = 300/5000 = 0.06 [s], T3 = V/a2 = 300/5000 = 0.06 [s] T2 = = = 0.94 [s] L 0.5 V (T1 + T3) V 300 0.5 300 (0.06 + 0.06) 300 T4 = 0.05 [s] Therefore, the cycle time can be obtained as follows.