SMC Corporation of America
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Search Results "SY3200T-5ZF1-K-NA"

H A A W H H Symbol: A25 Symbol: A26 Symbol: A27 Symbol: A28 Symbol: A29 DA 30 MM DA 30 30 MM DA 30 MM L W MM A L H AL H LB K A AL A H L A H T AL L K H MM Symbol: A30 30 MM W A T H 149 CP96 Series Made to Order Please contact SMC for detailed dimensions, specifications, and lead times.

Stroke A Stroke B Bore size [mm] L8 ZZ NA NB GC ZZ + Stroke (A + B) L8 + Stroke (A + B) NA GC NB 32 198 294 67.8 10 36 40 220 328 75.2 10 38 50 222 360 74 10 38 63 252 390 87.2 10 42 80 270 442 90.8 14 46 100 290 472 99.8 14 50 125 334 572 130 14 52 195 A Made to Order C96 Series Symbol -XC11 Dual Stroke Cylinder/Single Rod Type 6 Two cylinders can be integrated by connecting them in line

Stop 5 Series REA Sine Rodless Cylinder Dimensions (mm) REA 25, 32, 40 1in = 25.4mm Effective thread depth J L 0 0.1 NN G 4-MM H G B 2Port size I X D NB NB T N K W N S + Stroke F NA F R ZZ + Stroke MM x J B D F G H I K L N NA NB NN Model Port size REA25 REA32 REA40 Rc(PT) 1/8 46 27.8 13 8 20.5 34 10 70 M5 x 0.8 x 8 15 30 13 M26 x 1.5 Rc(PT) 1/8 60 35 16 9 22 40 15 80 M6 x 1.0 x 8 17 36 15

x10 12REA 50/63 0 -0.2 L NA 33 2-Rc, NPT, G 1/4 14 14 E(h8) E(h8) X D I 4-TC 14 14 Effective thread depth R 23 22 K W 23 25 2 4-M8 x 1.25 25 8-Q 14.5 C 0.1 + Effective thread depth 12 Effective thread depth R B S + Stroke 2 ZZ + Stroke Q x R S TC x R Model L 122 110 K 38 32 C 70 60 X ZZ NA E D B 72.2 58.2 I 70 60 W 12-REA63 12-REA50 100 86 66 53 30-0.033 69 55 M10 x 1.5 x 16 M8 x 1.25 x

Fittings & Tubing Air Cylinders Rotary Actuators 0 L0.1 4 x MM Thread depth J 2 x P (Piping port) A G E H G B NN Effective thread length T (R) D X Mounting nut Width across flats C F N ZZ + Stroke S + Stroke W K N F I NA TT 6 T Model MM L K J I H G F E D C B A S NN NA 34 N R 12-REA25 12-REA32 12-REA40 8 46 32 26.4 2 13 7.5 20.5 8 10 70 15 M5 x 0.8 18.5 30 M26 x 1.5 111 10 8 60 32 33.6 2 16

Rated sensitivity current 10 {Ig1 Ign Iga K (Ig2 Igm)} [mA] (11.1) K: Constant considering the harmonic contents Cable Leakage current breaker K Type Products Noise NV NV-SP filter Driver M Servo Cable Models provided with harmonic and surge reduction techniques NV-SW amplifier NV-CP 1 NV-CW NV-L BV-C1 Ig1 Ign Iga Ig2 Igm General models NFB 3 NV-L Ig1: Leakage current on the electric channel

32 Angle coefficient (k) : k = [to 45 (= )] = 1, [to 60] = 0.9, [to 75] = 0.8, [to 90] = 0.7 Lo: Distance from mounting surface to load center of gravity (cm) 40 6 10 15 20 Bore size (mm) 2.72 1.6 + Lo 5.55 1.95 + Lo 15.96 2.4 + Lo 41.7 2.8 + Lo Allowable drive resisting force (FA) (kg) 5.

R Mounting nut N W K N F S + Stroke F ZZ + Stroke H B E G Mounting nut NN NA F N 12CY3B15 (mm) L 57 66 70 80 92 J 6 6 8 8 10 K 11 8 10 15 16 I 12 15 18 23 G 5.5 7.5 7.5 8 11 H 13 20 20.5 22 29 F 10 13 13 16 16 E 2 2 2 2 3 NN M10 x 1 M20 x 1.5 M26 x 1.5 M26 x 1.5 M32 x 2 D 16.6 21.6 26.4 33.6 41.6 MM M4 x 0.7 M4 x 0.7 M5 x 0.8 M6 x 1 M6 x 1 B 35 36 46 60 70 N 11 18 18.5 20 26 ZZ 103 132

A = P K T . (10.1) A : Heat dissipation area [m2] P : Loss generated in the control box [W] T : Difference between internal and ambient temperatures [ ] K : Heat dissipation coefficient [5 to 6] When calculating the heat dissipation area with Equation 10.1, assume that P is the sum of all losses generated in the enclosure. Refer to Table 10.1 for heat generated by the driver.

P 2-TC TD D I E 0 -0.05 0 -0.05 E AL TE 2-TC K F TA DL2 TF TG A S + Stroke H NA F ZZ + Stroke Section TA With non-locking type manual override (suffix N) With locking type manual override (suffix L) HN HR MO RF WL WL KA 0.1 C 8-J NA (mm) Stroke range Bore size (mm) A AL B1 C D DL2 E F GA GB H H1 HR HN (max.)

EA) EC ED ND EF 2 x K Hexagon socket head set screw NA 0.5 GC GD NB NC DNote) This component does not exist for 180 type.

EE) GA ND GB EC ED EF 2 x K Hexagon socket head set screw GD GC 0.5 NA NC NB Note) This component does not exist for 180 type.

f C B h + l A K N N H F F ZZ + l + 2 x strokes S + Stroke H + Stroke ZZ + 2 x strokes V W Cushion valve Port 4 x J G G 2 x P (Rc, NPT, G) M Width across flats KA Width across flats KA MM MM With rod boot (Both sides) E E D D e e C B l + Stroke l AL AL C B f f A K N N A K h + l h + l + Stroke S + Stroke ZZ + 2 x l + 2 x strokes (mm) Bore size (mm) Stroke range (mm) P S N MM M K KA W V J G

male thread Width across flats KA MM Width across flats B1 H1 C1 X K L1 A1 + Stroke CJ5 CG5 HY C M Rod End Male Thread (mm) Bore size A1 72 75 MM M6 x 1.0 M8 x 1.25 20 25 B1 10 13 C1 10 12 H1 3.6 5 K 5 5 KA 6 8 L1 22 24 X 12 14 (mm) Bore size A 60 61 H M4 x 0.7 M5 x 0.8 20 25 B 50 51 C 8 10 D 8 10 E 33 40 F 6 6 I 42 50 K 5 5 KA 6 8 L 10 10 M 22 26 N 4.4 5.4 OA M5 x 0.8 M6 x 1.0 Q 14 14 R

C76 Option Compatibility C85 NCM Standard C95 NCM-K NCM-J NCMW NCDM NCMK XB6 XB7 XB9 XC6 Description Note C S T CP95 NCM NCM NCDM NCMW NCMK NCM-J NCM-K S T C XB6 XB7 XB9 XC6 B C E R O O O O O O O O O O O O O O O O Standard Auto switch capable Double rod Non-rotating Nylon rod boot Neoprone rod boot Spring return Spring extend Rubber bumper Heat resistant Cold resistant Low speed Stainless

Stroke Note 1) 50, 63: L 0 0.008 8-V Effective thread length Y H A B G H B G NN (R) NA Q N F I NA F N CC0.1 NCY3B50, 63 NCY3B6 to 15 (inch) Model Symbol L K J I H G F D A B NN C MM CC N NA P NCY3B6 NCY3B10 NCY3B15 NCY3B20 NCY3B25 NCY3B32 NCY3B40 NCY3B50 NCY3B63 1.38 1.50 2.24 2.60 2.76 3.15 3.62 4.50 5.00 0.19 0.19 0.37 0.31 0.38 0.51 0.56 1.00 1.00 0.16 0.18 0.24 0.24 0.31 0.31 0.39 0.47

Dimensions/20 to 100 Basic/CG1YB GA GB 2-P (Port size) (Rc, NPT, G) 2-TC Section TA/TB Width across flats B1 H1 MM 0 -0.05 I 0 -0.05 TD E D E AL A TA TB 4-TC K F F H TE TF TG NA S + Stroke ZZ + Stroke KA C 0.1 8-J NA Section TA/TB (mm) Bore size (mm) 20 25 32 40 50 63 TC TDH9 TE TF TG M5 x 0.8 4 0.5 5.5 +0.08 0 8 +0.08 0 M6 x 0.75 5 1 6.5 10 +0.08 0 M8 x 1.0 5.5 1 7.5 12 +0.08 0 6 1.25 8.5

In accordance with the dissolution method, carry out the quantitative study of Al, Fe, Ni, Na and Ca.

n k ra c oc ra o t cl cl en nt er er e tm m nt nt e is 0 u us t 0 u C w us o o k lo c o C dj C l 19 C 19 dj se c Cl A k A A wi w oc e e dj A ck is ng ng k dj o u wi e Cl st us se ro ra ra m ta ro t m ta ti d e ti n o on e n n e n nt nt en tio tio d ra ra 5 n n g ta e ta 9 g e 5 9 ro ro m m u u im im ax M ax M Note) The drawing shows the rotation range of the positioning pin hole.

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. Leakage current from switch is 1 mA. Power supply Internal Load voltage at ON = voltage voltage drop x 2 pcs. = 24 V 4 V x 2 pcs. = 16 V Example: Power supply is 24 VDC.