B Counter bore depth C 2-P (Piping port) T Y HP L 0 -0.1 4-J x E TC X F WP D GW QW PW 7 GP 4-LD 2 x 4-MM Thread depth M Switch rail W K Plug HS Q + Stroke G G HR CR Z + Stroke CY3R25, 32, 40 CY3R15, 20 (mm) Model CY3R15 CY3R20 CY3R25 CY3R32 CY3R40 J x E M5 x 0.8 x 7 M6 x 1 x 8 M6 x 1 x 8 M8 x 1.25 x 10 M8 x 1.25 x 10 A 10.5 9 8.5 10.5 10 HC 31 38 43 54 66 HP 17 24 23.5 29 36 HR 30 36 41 51
Suffix of how to order () U2: M-3AU-2,U4: M-3AU-4-X83 02: KJH02-M3,04: KJH04-M3-X83 Pad diameter: 10 to 16 Model Pad unit part no. Adapter part no. ZP3-Y (10/13/16)UM;-B5-@ ZP3-Y (10/13/16)B;-B5-@ ZP3-(10/13/16)UM ZP3-(10/13/16)B ZP3A-Y1-B3 ZP3A-Y3-B5 Note 1) in the table indicates the pad material. Note 2) in the table indicates the vacuum inlet.
Description Material Note 1 Body (R, L) Aluminum alloy (Black hard anodized) XT661-2A, 3A w 2 Body M Aluminum alloy (Black hard anodized) 741 XT661 Series Construction [Bernoulli Type] Size: 40 Size: 60 Size: 80, 100 A-A A-A A A q w w i u y t e e A B i A B r A A q A-A B-B t y u q u y t e w r r Size: 120, 150 B-B A-A A B B q r e w t y u i r C-C C C r A Guide assembly Component Parts A-A o
B With double shaft DD W D H 2 10 2-M5 x 0.8 (port size) (US) M (UW) BD Q BC ab BA BB BA D (AU) Max.
) B With double shaft DD W D H 2 10 2-M5 x 0.8 (port size) (US) M (UW) BD Q BC ab BA BB BA D (AU) Max.
"A" End AXT 334-16-1 10 Bushing.Body t2\ axT 334-22-6 1 1 Cushion-Pilot Covea A' End axT 3s4-12.1 PILOT COVER '1" enol"a" ero '124 Type "O" w/o Operators d(4) Screws (ea.) 12) Alum. D.C. PC 0102-1 I N 124 Typ "N". w/operator & (4)Screws (ea.) (2) Alum. D.C. PC 01031 r2c Type "B" w/o Operalor. w/(4) Screws (ea.) Alum. D.C. PiJ0112. 12D Type "4" . w/Operalor & {4) Screvr's (ea.) Alum.
M1 3A = M1E/M1E max = 2.25/10 = 0.225 m x g L1 M1E FE M3E = 0.05 x a x m x L2 (FE = 1.4/100 x a x g x m) = 0.05 x 300 x 3 x 0.04 = 1.8 [Nm] Investigate M3E. a From above, find the value of M3E max at 420 mm/s in Graph (3).
W D d E E D M MA a a M MA F NA NA F K A A K C H + Stroke S + Stroke H B ZZ + 2 strokes (mm) Bore size (mm) A a B C d E F G GA J K M MA MM NA P R S T V W H ZZ D 0 -0.018 0 -0.021 0 -0.021 0 -0.021 0 -0.025 0 -0.025 0 -0.025 0 -0.062 0 -0.062 0 -0.074 0 -0.074 0 -0.074 0 -0.074 0 -0.087 40 23 10 60 44 18 45 25 14 17.5 M8 x 1.25 18 13 20 M14 x 1.5 30 1/4 37 114 11 7.5 8 66 246 17 50 25 9 73
Y DC: 0.45 W (With indicator light: 0.5 W) 24 VDC and 12 VDC are applicable to 0.45 W.
x C2, C4, N1, N3 <1(P), 5(EA), 3(EB) port> C2: 2 One-touch fitting C4: 4 One-touch fitting N1: 1/8" One-touch fitting N3: 5/32" One-touch fitting 16.7 With plug connector/light, built-in silencer S0736S-mM(O)-m External Pilot 2-Position Single Grommet (G): S0716R-mG-m-m 2-Position Double/3-Position Closed Center Grommet (G): S07 6R-mG-m-m 2 3 (Lead wire length) (Lead wire length) 300 300
The kinetic energy of load can be found using the following formula. 20 10 5 V M M 2 V 2 100 300 1000 2000 500 Ek = Ek: Kinetic energy (J) M: Weight of load (kg) V: Piston speed (m/s) Maximum drive speed (mm/s) Example) Load limit at rod end when air cylinder 63 is actuated with max. actuating speed 500 mm/s. at a maximum drive speed of 500 mm/s.
The kinetic energy of load can be found using the following formula. 20 10 5 V M M 2 V 2 100 300 1000 2000 500 Ek = Ek: Kinetic energy (J) M: Weight of load (kg) V: Piston speed (m/s) Maximum drive speed (mm/s) Example) Load limit at rod end when air cylinder 63 is actuated with max. actuating speed 500 mm/s. at a maximum drive speed of 500 mm/s.
ZF Left Right 15 -60 -60 ZP 10 -40 -40 Air consumption ZCU -20 -20 5 S 1 S 2 R U N L HL H S 1 S 2 R U N L HL H S 1 S 2 R U NL HL H S 1 S 2 R U NL HL H S 1 S 2 R U N L HL H S 1 S 2 R U N L HL H S 1 S 2 R U N L HL H S 1 S 2 R U N L HL H kP a M O DE SET1 SET2 kP a M O DE SET1 SET2 kP a M O DE SET1 SET2 kP a M O DE SET1 SET2 kP a M O DE SET1 SET2 kP a M O DE SET1 SET2 kP a M O DE SET1 SET2 kP
L D d m t d H B C l IY-G04 IY-G05 C type 10 for shaft 41.6 50.6 9.6 13.4 36.2 44.2 1.55 2.05 1.15 1.15 M14 x 1.5 M18 x 1.5 8 11 22 27 25.4 31.2 C type 14 for shaft 10 14 -0.040 -0.076 -0.050 -0.093 9-12-19 20 Simple Joint: 32 to 63 Type A Mounting Bracket 2-D T1 T2 M W V U F B E (mm) Joint and Mounting Bracket (Type A, Type B) Part No.
Furthermore, if the cable length exceeds 5 m, then it will decrease by up to 10% for every additional 5 m. (At 15 m: Reduced by up to 20%) 12. When checking the conductivity of the cable, be careful not to deform the connectors mating hole and terminals.
TB W Counter bore depth TC Inner cover holding screw Note) (mm) E 4 6 J M6 x 1 M10 x 1.5 LD 5.6 9.2 L 67 90 K 21 20 JK 10 12 HP 44 73.5 HL 37.6 63.3 HI 23 39 HA 23 39 H 45 75 G 10 9 F 12.5 25 EK 4 6 ED 9.5 13 C 6.4 10.2 B 10.5 16 A 8 12 Model CYV15 CYV32 +0.030 H9 0 +0.030 H9 0 Z 132 165 Y 2.5 3.5 W 69 115 TC 0.5 0.5 TB 15 22 TA 20 22.5 T 30 34 R 45 79.5 QW 48 83 Q 112 147 PC 10 12 PB 60
Also, BBA2 is included when a auto switch alone is shipped. 9-13-10 10 Series MLU Plate Cylinder with Lock Construction !4 !7 !0 !4 @1 u q !3 !2 @6 t @4 w @8 r !1 @5 @3 @2 e !
M IA 25 43 BY Max.Wc 40 Ws 35 13 30 D 36 Width across flats K Width across flats 44 R15 0.050 0.093 +0.027 0 Shaft: 12d9 Clevis width CLK1A: 16.5 F +0.3 0 +0.4 0 Hole: 12H8 Z + Stroke S + Stroke 1.5 27 CLK1B: 19.5 40 57 97 ZZ + Stroke 2 (mm) Symbol BX BY D F GA GB IA K L M N S W Wc Ws Z ZZ Bore size 40 56 54 16 44 77 10 47 14 55 M12 x 1.5 86 112.5 5 39 27.5 114 228 50 64 64 20 55 78.5 10
10-10 0 5 10 t i o o n L DTime [min] Operation cycles -X e e a a l l k k a t e l u w w g a a c 2 e i o o g g 1 O-ring seals separate vacuum and atmosphere. t Employs a magnetically coupled rodless cylinder with no air leakage from moving parts. n 1 r a L L e e e Particulate generation from the linear guide unit has been reduced with the use of a stainless steel linear guide and low particulate