SMC Corporation of America
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Both ends tapped(mm) Standard (Through-hole)/CQ2WB, CDQ2WB Bore (mm) O1 R Both ends tapped: CQ2WA 32 40 50 M6 X 1.0 10 O1 thread R R M6 X 1.0 10 M8 X 1.25 14 2-H thread effective depth C (Opposite side, too) 2-P (Port size) U 4-N through Q Q 8-O counter bore 1 2 width across flats K 11 Lead wire minimum bending radius 10 D D 22 Z M E Auto switch K M L B L+ stroke D-A7, A8 E J S A+stroke

Load rate Ea= K E max Ea=1 0.11=0.11 Work mounting coeficient K: Fig.3 Max. allowable kinetic energy Emax: Table 1 < = Possible to use by E=0.09 Ea=0.11 Kinetic energy (E) Allowable kinetic energy (Ea) < = 3 3-1 Load rate of moment Wa=K Wmax Work mounting coeficient K: Fig.3 Allowable load coeficient : Graph 1 Max.

Relief port (10-, 21-) Vacuum port (11-, 22-) Effective thread length FL NA Width across flats B2 G H2 NN Width across flats KA G Width across flats B1 H1 MM NA 20, 25 Eh8 D Standard port 45 Relief port (10-, 21-) Vacuum port (11-, 22-) 1.5 A AL K ZZ + Stroke S + Stroke H F 32, 40 (mm) ZZ H H2 H1 S P I G E D A 12 10 8 6 KA MM NA NN B1 B2 Bore size 13.5 10.5 10.5 10.5 FL K AL F 8 13 0 1/8

Width across flats B1 2-NN MM MM NA 20, 25 2-Eh8 D D Standard port 45 45 Relief port 1.5 AL 1.5 AL A F K K N N F A H + Stroke H S + Stroke ZZ + 2 x Stroke 32, 40 (mm) AL F K MM NA NN ZZ Bore size S P N I G E A 41 32 32 26 B2 H2 22 17 17 13 B1 21 19.5 19.5 15.5 D H H1 8 13 0 14 12 10 8 20-0.033 24 22 22 18 40 32 25 20 M14 x 1.5 M10 x 1.25 M10 x 1.25 M8 x 1.25 42.5 34.5 30 24 21.5 15 15 15

) Bore size: 32, 40, 50 M E J 2 x P (Rc, NPT, G) T 0 0.1 D Q F Z Stroke M E J T 0 0.1 D Width across flats K A + 2 stroke B + Stroke V H + Stroke 2 x P (Rc, NPT, G) E M 4 x N through 8 x O counterbore Q F Z Stroke T 0 0.1 Width across flats K A + 2 stroke B + Stroke V H + Stroke D M E J E M 4 x N through 8 x O counterbore Width across flats K A + 2 stroke B + Stroke V H + Stroke T 0 0.1 D

AL SMC SMC SMC SMC SMC SMC 0.1 0.3 0.2 0.4 0.5 0.6 IS1000 MPa SMC SMC SMC K K K P P P C C C U U U O O O SMC SMC SMC SMC S S S L L L H H H MADE IN JAPAN K K K P P P C C C U U U O O O S S S L L L H H H Mixed manifold Mixed manifold Front handle/Bottom ported Front handle/Top ported Common exhaust type and individual exhaust type can be mounted on the same manifold base.

AL SMC SMC SMC SMC SMC SMC 0.1 0.3 0.2 0.4 0.5 0.6 IS1000 MPa SMC SMC SMC K K K P P P C C C U U U O O O SMC SMC SMC SMC S S S L L L H H H MADE IN JAPAN K K K P P P C C C U U U O O O S S S L L L H H H Mixed manifold Mixed manifold Front handle/Bottom ported Front handle/Top ported Common exhaust type and individual exhaust type can be mounted on the same manifold base.

9200-www.stevenengineering.com 120 K 6cos + 2 (3.4 + Lo) sin 25 CX F: Drive (from slide block to position Lo) resistance force (kg) Lo: Distance from mounting surface to load center of gravity (cm) 210 K 7cos + 2 (4.2 + Lo) sin Angle k to 45 1 to 60 0.9 to 75 0.8 to 90 0.7 32 D400 K 8cos + 2 (5.1 + Lo) sin Angle coefficient (k): k = [to 45 (= )] = 1, [to 60] = 0.9, [to 75] = 0.8, [to

J K Nylon tarpaulin 60C 110C Heat resistant tarpaulin Maximum ambient temp. for the rod boot itself.

TR d d W D E E D TY W TDe8 MA a MA a C NA F K A A K F NA B H S + Stroke H + Stroke TX 0 0.5 ZZ + 2 strokes TZ (mm) Bore size (mm) A B C TR a E D TDe8 d F G GA J K M MA MM NA P R S T H 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 0.032 0.059 0.032 0.059 0.032 0.059 0.040 0.073 0.050 0.089 0.050 0.089 0.050 0.089 40 17 45 R0.5

Brown Brown Load Load Switch 1 Switch 1 Blue Blue Brown Brown Switch 2 Switch 2 Blue Blue Load voltage at OFF = Leakage current x 2 pcs. x Load impedance = 1 mA x 2 pcs. x 3 k = 6 V Example: Load impedance is 3 k.

SW CJ1 D 45 Eh8 CJP NB NB C CJ2 TD H9 TD H9 KK CM2 TW KW 1.5 2-TC TW N FA AM N CG1 KV S + Stroke H MB Band mounting type (B) or non-magnet Rail mounting type (A) ZZ + Stroke MB1 CA2 CS1 C76KF Non-rotating, Piston rod (Rubber cushion only) With rod boot C76 C85 Wh K KK C95 KA CP95 C e NCM Rod cross section NCA AM 9 9 f I Dh -X 20Data (mm) AM 20 24 C 12 14 FA G H HR K KA KK KV 38 50 TDH9 TW

'35 I ,K AA I ,8 ,L 1M IB L (mm) (mm) *Adaptor plate-Provided as standard " > ~;M3 xO.5 E:MsxO.6 ;K ,L y , Model 'PI>; ; B ~t D.

45 CS1 2-Eh8 NB C C76 KK C85 1.5 KW 1.5 4-TC TW N AM N FA C95 KV S + Stroke FB H Rail mounting type (A) Band mounting type (B) or non-magnet CP95 ZZ + Stroke NCM C76KE Non-rotating, Piston rod (Rubber cushion only) Bore Stroke C With rod boot Wh NCA K KK DC e -X KA 20AM 9 9 Rod cross section f I Data h (mm) AM 20 24 BE C 12 14 FA 30 35 K 10 12 KK KV 38 50 TDH9 TW 34.5 42.5 D 37.5 46.5 FB

P R O D U C T S E L E C T O R 4 5 0 M A L E E L B O W : K Q K ( K Q 2 K ) Applicable Thread Model H D1 D2 L1 L2 A M Effective Weight Tube OD R(PT) (Hex) 0rifice (mm2) (g) (mm) Nylon Urethane 4 M5x0.8 KQK04-M5 8 10.4 8 17 14.5 26 16 3.4 3.4 4 4 1/8 KQK04-01S 10 10.4 10 17 20.5 32 16 3.4 3.4 10 4 1/4 KQK04-02S 14 10.4 10 17 24.5 34 16 3.4 3.4 19 6 M5x0.8 KQK06-M5 8 12.8 8 18 14.5 26 17 3.4

T-slot A dimension T-slotBdimension Work piece mounting reference plane 6.5 27.5 T-slot B Cross Section C-C (mm) D 4 4 4 4 6 E 6 6 8 8 8 F 107 112 122 132 112 G 55 65 75 85 65 I 1 1 1 1 2 J 65 75 65 70 75 K 2 2 3 3 3 L 6 6 6 6 8 N 55 65 75 85 65 P 2 2 2 2 3 U 52 47 47 47 47 Model Refer to page 301 for mounting.

Foot: CS2L With rod boot H s + Stroke _ K,.