Description Material Quantity Note y 1 Case 20 tubes A6063 2 Black anodized Y-Y Y1-Y1 2 Plate (A) 20 tubes SPCC 1 Black zinc chromated 3 Plate (B) 20 tubes SPCC 1 Black zinc chromated 4 Plug 20 Electroless nickel plating 5 Socket 20 Electroless nickel plating 6 Clamp bolt C3604 3 Electroless nickel plating 7 Cross recessed round head screw SWRM 16 M2.5 x 8 Black zinc chromated 8 Cross recessed
Load Blocking Weight and Center of Gravity for Workpiece Y Center of gravity X Workpiece no. Weight m X-axis Y-axis Z-axis Z 20 W 20 mm 30 mm 50 mm 2 kg 50 Y 30 3.
1/8 Rc 1/8 Rc 1/8 Q 17 20 20 24.5 24.5 T 20 24 36 44 56 U 22.5 24.5 31.5 35 41 V 18 22 20 28 28 W 41.5 48 58.5 66 80 Y 38 47 Z 14 14 19 Bore size (mm) 16 20 32 40 50 Note 4) These figures show the piston rod extended.
0 y !2 @5 !1 !7 @6 !0 r @4 e o t 16: 25 stroke MX 20, 25: 75 stroke or less !8 MTS !
Note 3) ZP3-Y(04/06/08)UM;(J/K)3-@ ZP3-Y(04/06/08)B;(J/K)3-@ ZP3-Y(04/06/08)UM;(J/K)6-@ ZP3-Y(04/06/08)B;(J/K)6-@ ZP3-Y(04/06/08)UM;(J/K)10-@ ZP3-Y(04/06/08)B;(J/K)10-@ ZP3-Y(04/06/08)UM;(JB/K)15-@ ZP3-Y(04/06/08)B;(JB/K)15-@ ZP3-Y(04/06/08)UM;(JB/K)20-@ ZP3-Y(04/06/08)B;(JB/K)20-@ ZP3B-Y2B(J/K)6-B5 ZP3B-Y2B(J/K)10-B5 ZP3B-Y2B(JB/K)15-B5 ZP3B-Y2B(JB/K)20-B5 ZP3-(04/06/08)UM; ZP3-(04/06/08
Note 3) ZP3-Y(04/06/08)UM;(J/K)3-@ ZP3-Y(04/06/08)B;(J/K)3-@ ZP3-Y(04/06/08)UM;(J/K)6-@ ZP3-Y(04/06/08)B;(J/K)6-@ ZP3-Y(04/06/08)UM;(J/K)10-@ ZP3-Y(04/06/08)B;(J/K)10-@ ZP3-Y(04/06/08)UM;(JB/K)15-@ ZP3-Y(04/06/08)B;(JB/K)15-@ ZP3-Y(04/06/08)UM;(JB/K)20-@ ZP3-Y(04/06/08)B;(JB/K)20-@ ZP3B-Y2B(J/K)6-B5 ZP3B-Y2B(J/K)10-B5 ZP3B-Y2B(JB/K)15-B5 ZP3B-Y2B(JB/K)20-B5 ZP3-(04/06/08)UM; ZP3-(04/06/08
(N)VV4Z1 20 S TAT I O N S 1 T H R E A D T Y P E 02 2 Stations to 20 20 Stations PT 00T NPTF D I M E N S I O N S M A N I F O L D T Y P E 20 T O P P O R T E D M P L U G T Y P E F Bracket O P T I O N D I M E N S I O N S M A N I F O L D T Y P E 20 T O P P O R T E D G R O M M E T T Y P E Lead Wire Length ACCESSORIES M A N I F O L D T Y P E 20 T O P P O R T E D DXT170-25-1A Blanking Plate Assembly
Do not apply strong impact or an excessive moment while mounting the product or a workpiece. LEC SS-T LEC Y LEC Y If an external force over the allowable moment is applied, it may cause play in the guide or an increase in the sliding resistance. 3.
5 x 20 Symbol Size 6 x 20 8 x 20 4 x 30 5 x 30 6 x 30 8 x 30 N S U F GN GS 3507 4010 5010 6010 4020 5020 6020 8020 4030 5030 6030 8030 Pad type Type Oval Symbol W Dimensions: Pad Unit ZP2W ZP220 W ZP230 W 7 7 8 7 12 20 30 8 8 Y Y Y a A a A a A C C C b 20 30 B 31 21 Dimensions Dimensions Dimensions a 3.5 4 5 6 A 4.5 5 6 7 b 7 B 8 C Y a 4 5 6 8 A 5 6 7 9 C 2 x 1.8 2 x 2 2.5 3 Y a 4 5 6 8 A
(L): 3 4 5 3 4 5 3 4 5 3 4 5 SY7 20-L(-F2) C8, N9 C10, N11 D Y SY7 20(-F2) C8, N9 C10, N11 SY7 20-WO(-F2) C8, N9 C10, N11 SY7 20-M(-F2) C8, N9 C10, N11 Applicable cable O.D. 3.5 to 7 Approx. 300 (Lead wire length) 66 58.5 47.2 Max. 10 32.1 31.5 [38.5] 36 16.1 42.6 [49.6] Approx. 300 (Lead wire length) M8 x 1 18.5 Pg7 70.6 [72.8] 60.8 [63] 80.6 79.7 55.8 75.3 69.7 62.3 154.2 [158.6] 52.8
YZ VFS3320-D/DZ/Y/YZ VFS3420-D/DZ/Y/YZ VFS3520-D/DZ/Y/YZ Lead wire O.D.
Applicable shaft type: W (mm) Size L2 Y (mm) Size 10 X L1 3 to 8 5-(8-Y) to (Y-1) 10 15 9-(14-X) to (X-3) 5 to 14 3 to 9 6-(9-Y) to (Y-1.5) Y = L1= 15 20 8 to 18 10-(18-X) to (X-4) 3 to 10 7-(10-Y) to (Y-1.5) L2 = 20 30 10 to 20 10-(20-X) to (X-4.5) 5 to 13 8-(13-Y) to (Y-2) X = 30 40 10 to 22 12-(22-X) to (X-5) 7 to 15 9-(15-Y) to (Y-2) CRB1 Free-Mounting Type CRBU2 CRB2 Symbol: A11 Symbol
(For details, refer to page 4-4-25.) 4-4-20 21 3 Port Pilot Operated Solenoid Valve Rubber Seal Series SYJ500 Construction q e r t w y q e r t w y N.C. N.O.
D2012-10-9 9 Series MHY2 Construction Closed condition Size 10 Size 16 Size 20, 25 r o !8 e w !7 t r o !8 e w @0 !7 t r o !8 e w @0 !7 t !5 !5 !5 !6 !6 !0 u !2 i q !1 y !9 !0 u !2 i q !1 y !9 !0 u !3 !2 i q !1 y !9 !4 !4 !
A L1 MM R1 ND E1 U1 A1 16 20 22 28 38 44 Y-G02 Y-G03 Y-G04 Y-G05 Y-G08 Y-G10 25 30 30 40 50 55 M8 x 1.25 M10 x 1.25 M14 x 1.5 M18 x 1.5 M22 x 1.5 M26 x 1.5 11.5 14 14 20 27 31 8 10 10 14 18 22 8 10 18 22 28 32 IY-G02 IY-G03 IY-G04 IY-G05 IY-G08 IY-G10 16 20 36 44 56 64 21 25.6 41.6 50.6 64 72 20 25, 32 40 50, 63 80 100 8.5 10.5 16 20 23 24 10.3 12.8 12 16 21 24 34 41 42 56 71 79 +0.4 +0.2
Mass m X-axis Y-axis Z-axis Z 20 W 20mm 30mm 50mm 2kg 50 Y 30 3 Calculation of load factor for static load m: Mass m m max (from 1 of graph MY1B/m = 27 (kg) Load factor = m/m max = 2/27 = 0.07 X M: Moment m M max (from 2 of graph MY1B/M) = 13 (Nm) M = m x g x X = 2 x 9.8 x 20 x 10= 0.39 (Nm) M Load factor = M/M max = 0.39/13 = 0.03 M: Moment Y M max (from 3 of graph MY1B/M) = 1.6 (Nm
Ratio of resistance [k m] 100 10 50 Particle ratio [number/cc] 1 0 5 10 15 20 25 30 Duration of flow [min] 2 or 3 particles/cc Tube 00 10 20 30 40 50 60 70 Duration of flow [min] The data was obtained by performing an actual 10 minutes supersonic cleaning using an average 16 Mcm of deionized water at class 10 clean room (1 l/min flow rate).
800 Me L5 [mm] L5 [mm] L5 [mm] L5 [mm] m 600 600 600 600 L5 Wall Y 400 400 400 400 200 200 200 200 0 0 0 0 0 10 20 30 50 40 0 20 40 60 80 0 10 5 15 20 0 10 5 15 20 30 25 Work load [kg] Work load [kg] Work load [kg] Work load [kg] 1000 1000 1000 1000 800 800 800 800 L6 L6 [mm] L6 [mm] L6 [mm] L6 [mm] 600 600 600 600 Z Me 400 400 400 400 m 200 200 200 200 0 0 0 0 0 10 20 30 50 40 0 20 40 60