O.D.: 4, 5/32" : 6, 1/4" (2.3) L plug connector (L): SYJ5120-L-M5(-F) M plug connector (M): SYJ5120-M-M5(-F) DIN terminal (D): SYJ5120-D-M5(-F) M8 connector (W0): SYJ5120-W0-M5(-F) Approx. 300 (Lead wire length) Applicable cable O.D. 3.5 to 7 82.1 Max. 10 60.9 28.1 [35.1] 53.4 12.7 42.1 32.6 M8 x 1 15.1 39.2 [46.2] Approx. 300 (Lead wire length) Pg7 73 [75.2] (2.3) 63.2 [65.4] 83 72.1 3
With grease needle 3 Oil-proof 1 Cylinder bore X5 F 2 D 1 L D 1 F L MHK 2 MHK Cylinder bore X39 Finger material Dust cover material Finger material Action Action The packing class has been revised to adopt oil-proof materials for use in an environment with splashing of cutting oil, etc. Lubrication from grease needle to interior is possible.
CQSKB125D 10D 15D 20D 25D 30D M3 X 30 l X 35 l X 40 l X 45 l X 50 l X 55 l M3 X 30 l X 35 l X 40 l X 45 l X 50 l X 55 l M5 X 30 l X 35 l X 40 l X 45 l X 50 l X 55 l X 60 l X 65 l X 70 l X 75 l M5 X 35 l X 40 l X 45 l X 50 l X 55 l X 60 l X 65 l X 70 l X 75 l X 80 l M3 X 25 l X 30 l X 35 l X 40 l X 45 l X 50 l M3 X 25 l X 30 l X 35 l X 40 l X 45 l X 50 l M5 X 25 l X 30 l X 35 l X 40 l X 45
D ZS-24-D X X X ZS-35-C X X X X X E ZS-35-D X X ZS-35-F X X X X X + F ZS-35-G X X 1/ 1 ZS-24-A A M35 L,M45 L 2 ZS-24-B B M45 L, 2 ZS-24-D D M35 L,M45 L 2 ZS-35-C (01,N01) ZS-35-D (W1,WF1,M5,C4,C6) ZS-35-F +(01,N01) ZS-35-G +(W1,WF1,M5,C4,C6) -10No.PS-OMM0006CN-E M8(3 ) 01 N M L ISE40A 1/ 2 ISE40A -0.11.000 MPa Y ZSE40A 0.0-101.3 kPa K + T + 1 01 R1/8(M5) N01 NPT1/8(M5) A A
A F L=200mm F F L=200mm A L L L L=200mm A MXW8, MXW12, MXW16 MXW8, MXW12, MXW16 MXW8, MXW12, MXW16 0.03 0.03 0.10 MXW12 MXW8 MXW16 MXW12 MXW8 MXW16 0.08 Table deflection quantity mm Table deflection quantity mm Table deflection quantity mm MXW12 MXW8 MXW16 0.02 0.02 0.06 0.04 0.01 0.01 0.02 0 0 0 100 75 50 25 100 20 40 60 75 50 25 Load N 1N = 0.2248 lbf Load N 1N = 0.2248 lbf Load N 1N =
(800) 526-7661 Adapters 1/4 1/4 1/2 9/32 5/32 7/16 Ref 1/4 Hex 5/16 Hex 5/32 5/16 Hex 1/8 NPT M3 x 0.5 M6 x 1 Thd 3/8 M5 x 0.8 10-32 Thd 5 32 9 32 M3 0.5 Thd to 10-32 Thd 1/2 Hex M5 x 0.8 M3 to 10-32 (F) M5 to 1/8 (F) M5 to 10-32 (F) 91 M3 to M6 (F) 9/32 5 __ 32 1/4 1/2 M5 x 0.8 Thd 10-32 Thd 5/16 Hex 1/8 BSPT 1/2 Hex M6 x 1 3 16 1/2 1/2 1/4 9/32 Hex 5 32 5 32 1/8 NPT 1/8 NPT 3/8 3
100st 100st 75st 75st 10 20 30 40 50 60 70 0 0 20 30 40 50 0 0 0 0 20 40 60 80 100 10 Allowable end load F (N) Allowable end load F (N) Allowable end load F (N) MGGM 40Stroke 6 (Slide bearing type) 5 Deflection Y (mm) 800st 4 700st 600st 3 500st 2 300st 400st st: Stroke (mm) 1 200st 100st 0 0 20 40 60 80 100 120 140 160 Allowable end load F (N) MGGM 50Stroke 8 (Slide bearing type) 7 Deflection
NB Bore size (mm) S 73.5 74.5 MM GB GA C A 10 16 15 15 15 18.3 17 20 8 8 5 5 6.5 6.5 11 11 D GC B F H 28 28 NN NDh8 Z 101.5 102.5 45 45 20 20 WW WA WB NA 29.5 29.5 4 5 M4 x 0.7 M10 x 1.0 M12 x 1.0 12-0.027 10-0.022 22.9 22.9 0 13.4 13.4 0 M5 x 0.8 688 Air Cylinder CJ2 10-/1121-/22Single Foot (L): CJ2L, CJ2L 10112122Rubber bumper 6 GC GA F NN MM Piping port 3 x M5 x 0.8 Cover surface CA 9
Nil S 3 n Built-in magnet Mounting bracket Basic type Foot type Flange type B L F Type of auto switch Nil Without auto switch Select an applicable auto switch model from the table below.
h 9 l 16 2 x 4-J N F H + Stroke A K ZZ + 2 strokes S + Stroke H A K F N C B With rod boot In the case of w/o air cushion, it comes with rubber bumper.
MM 2-RcP G G MM D D e e Effective thread Effective thread 13 13 9 A K f N N f h + Stroke K A l + Stroke 9 l ZZ + 2 strokes S + Stroke h Without Air Cushion Stroke range Bore size (mm) Effective thread length Width across flats MB J K MM N P V W S ZZ S ZZ A C B D Ee11 F G H 32 40 50 63 80 100 4 4 5 5 5 5 M6 x 1 6 6 7 7 10 10 M10 x 1.25 26.5 26.5 31 31 37.5 37.5 1/8 1/4 1/4 3/8 3/8 1/2 84
Example: Allowable load F (N) = M (Maximum allowable moment) (Nm) L x 10-3 0.68 30 x 10-3 Allowable load F = Unit conversion factor = 22.7 (N) > 10 Since load F > f, it is operable. 12-11-11 12 Series MRHQ Moment of Inertia and Allowable Kinetic Energy Moment of Inertia Calculation and Allowable Kinetic Energy Graph (Moment of inertia and rotation time) 200 Calculate the moment of inertia
Load weight (kg) Caution The cylinder should be mounted in m1 orientation if maximum dustproofing is required. m m m Moment (Nm) M = F x L F3 M = F x L M = F x L F F2 L2 L1 L3 Maximum load weight Select the load weight from within the range of limits shown in the graphs. Note that the maximum allowable moment value may sometimes exceed even the operating limits shown in the graphs.
300 to 6000 L/min 20 to 2000 L/min 20 to 200 L/min 600 to 12000 L/min 24 VDC 10% 12 to 24 VDC 10% 12 to 24 VDC 10% 12 to 24 VDC 10% 24 VDC 10% Temperature characteristics (25C reference) 3% F .S. (15 to 35C) 5% F .S. (0 to 50C) 2% F .S.
) Note 4) PE (M5 x 0.8) 29.4 3 20.2 P 20.3 9.7 V Exhaust part 0.8 17.7 22.8 87.2 10 Note 1) The above dimensions are for ZQ11U-J2 L-F.
Note) ( ): Denotes the dimensions for long stroke. 726 Air Cylinder CG1-Z 2122CG1-Z/ 1011Rod Flange (F): CG1F, CG1F 10112122With rubber bumper FT F 4 x FD FX0.15 E 0 0.05 B FX0.15 H B (mm) FT 6 7 7 8 50 63 80 100 FD 5.5 5.5 6.6 6.6 FX 28 32 38 46 F 2 2 2 2 E 12 14 18 25 B 40 44 53 61 Bore size 20 25 32 40 30 32 2 2 58 70 9 11 9 9 40 3 82 11 11 50 3 100 14 14 76 92 104 128 Note) End boss is
Mounting Amplifier Single mounting Ho.izontally Q r A vertica,,y F Multiple mounting + -f -t] + -ti n n n h n t t t l t t l t I i u ! L l !
upon receipt of order. 8-9-8 8 Air Slide Table Long Stroke Type Series MXY Table Deflection Table deflection due to pitch moment load Displacement at A when load is applied F Table deflection due to yaw moment load Displacement at A when load is applied F Table deflection due to roll moment load Displacement at A when load is applied F A A F A F F MX MTS L L L MY L dimension mm L dimension
Next, in the required specification example, the viscosity is 100 mPas and the discharge rate is 2.7 l/min. Since this is equivalent to 45% of the discharge rate for fresh water, 2.7 l/min 0.45 = 6 l/min, indicating that a discharge rate of 6 l/min is required for fresh water. 3.