SMC Corporation of America
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Search Results "ZSE20CF-S-M-C01-W"

mm *1 (mm/s) *1 mm/s 2 *1 INP mm mm 0mm 100mm M (0mm) *1 M (100mm) (+) (-) *1 45 - 13 1+(++ 2(+) SW SW 12 SW 1 2 (-) (+) WAREA ON mm W 1W 2 WAREA ON W 1 W 1 *W 1W 2 PARA W 1=W 2=0 WAREA OFF (-) (+) W 2 W 2 * * 1 1 * 11 11 * 12 12 * *1 46 - 11.3 12 1CW [CW] 2CCW [CCW] 12 1[] 2[SW] *1 * *1 *1 * 0[] 1a [a ] 2b [b ] 02 SW * 21 21 * *1 47 - 12 12.1 (

Y M B O L S H O W T O O R D E R L U B R I C AT O R S E R I E S NAL NAL800-N12 (1 14 NPT) NAL800-N14 (1 12 NPT) NAL900-N20 (2 NPT) T E C H N I C A L SPECIFICATIONS D I M E N S I O N S L U B R I C AT O R NAL800 NAL900 Max Supply pressure 1.5MPa / 220PSI Max Operating Pressure 1MPa / 145PSI Operating Temp Range 5~60C /40~140F Recommended lubricant Turbine oil #1 (ISO VG32) Bowl Polycarbonate

(kg) 5.73(2.6) P.T. ln(mm) 0.06 (1.s) O.T. ln(mm) 0.08 (2) T.T.ln(mm) 0.1 38 (3.5) DIUENSIONS A B t c D E F G H J K M N P R 1.38 (35) ).s812.38 '25) 160.s 2.09 t53) 1.42 (36) 0.53 13.5', 0.7',!

San=a1+a2+a31 3.11-10 Air Slide Table Series MXS Allowable load: W (N) Fig.1 Overhang: Ln (mm), Correction value for moment center distance An (mm) Fig.2 Pitch moment Yaw moment Roll moment W My Mp Mr W W W Static moment Dynamic moment L1 A1 L3 A5 L2 A3 CL W Mp Mr My W W MLGC L3 A6 W L1 A2 L2 A4 CNA W Mey Mep CB L2 A4 CV/MVG A2 L3 Work mounting coefficient: K Fig.3 CXW Table mounting CXS

Nm N M1 M M3 W W2 W W4 ML2B25 10.0 1.2 3.0 200.0 58.0 65.0 100.0 ML2B32 20.0 2.4 6.0 300.0 80.0 96.0 150.0 ML2B40 40.0 4.8 12.0 500.0 106.0 140.0 250.0 ML2B25 ML2B32 ML2B40 J 0.43 0.68 1.21 18 ML2B/M1 ML2B/W1 ML2B/W1 0 0 0 Nm 0 0 0 N N 0 m/s m/s m/s ML2B/M2 ML2B/W2 ML2B/W2 N m N N m/s ML2B/M3 m/s m/s 20 ML2B/W3 ML2B/W3 10 Nm 5 3 2 1 N N m/s m/s m/s ML2B/W4 500 N 00 N

CNS CLS CLQ MLGP RLQ MLU Selection Conditions/Table (1) ML1C DVertical Upward facing Downward facing Horizontal -X l1 = Eccentric distance 20l2 = Distance between the plate and load center of gravity m Data Mounting orientation m m l1 = Eccentric distance Maximum load speed V 201 to 400 mm/s 50 to 200 mm/s 50 to 200 mm/s 201 to 400 mm/s 50 to 200 mm/s 201 to 400 mm/s Graph (Slide bearing

CNS CLS CLQ MLGP RLQ MLU Selection Conditions/Table (1) ML1C DVertical Upward facing Downward facing Horizontal -X l1 = Eccentric distance 20l2 = Distance between the plate and load center of gravity m Data Mounting orientation m m l1 = Eccentric distance Maximum load speed V 201 to 400 mm/s 50 to 200 mm/s 50 to 200 mm/s 201 to 400 mm/s 50 to 200 mm/s 201 to 400 mm/s Graph (Slide bearing

Seat AXT 333 PILOI COVEF "8" END Typ "N & O" w/(4) scrws PC 010S1 4B Type "A & B" w/{41 Screws P C 0 1 1 1 1 Screw Pllot Cover (41 6 Spool & Sleeve Ass'y. 440F. S.S. 7 O R i m . S & S ( 6 ) Buna N ARP 568014 oushion Pilol Covers "A & B" (21 AXT 334.5N D Gasket . Pilot Covers (2) Buna N AXT 334.7N-1 PILOT COVERS',f'ENO 10A TYpe "O Alum. D-C. PC 0100-1 108 Typ N" Alum. D.O.

) RZQ MI W S CEP1 Stable operation possible even at a low speed of 5 mm/s (Measurement based on JIS B 8377) Sliding resistance Bi-directional low-friction operation possible.

depth C U 4-N through 8-O counterbore Q F 2-P (Port size) (Rc, NPT, G) MK(2) I RS Q G RS H A 22 D M E Z 11 Lead wire min. bending radius 10 RZQ Auto switch D-A7, A8 MI W S K M E CEP1 S J L B + Stroke A + Stroke CE1 CE2 Rod end male thread ML2B H1 C J G5-S Auto switch D-A9, F9 CV MVGQ Rod end nut C1 X L1 CC RB Rod End Male Thread (mm) Bore size (mm) C1 X H1 L1 J 32 20.5 23.5 28.5 M14 x 1.5

NPTF PodLocallon P A B EA EB sP0101/sP01r r 1/B s S sPot0zsP0112 S sP01m/sP0113 1/6 9B S/B S/B s/B S/B sPoto4/sP0114 1/. B B B sPor05/sP011s la S S S Electrictl Conncllons: Class 1 suFplates provide access of alectri(El solenoid leads from the vatue bass inlothe conduitcavitywithinthe sub-platediecasting.

Max.allowable load W max. : Table 2 1=W/Wa 3-2 Load rate of static moment M=W(Ln+An)/1000 Corrected value for center position distance of moment An : Table 3 Ma=M max. Allowable moment coefficient : Graph 2 Max.allowable moment M max. : Table 4 Calculate static moment M(Nm). Examine for Mr [As Mp and My does not arise, Examination is not needed.]

1 1 C G LJ1 10 S W X10 Guide type Slider guide S X10 Non-standard motor Series Limit switch Series 10 Series 20 Series 30 10 20 30 Cable entry direction Nil None B contact specification 2 pcs.

W U 67 X (mm) Grommet Conduit DIN terminal Electrical entry Mounting dimensions Bracket mounting Port size P Model Orifice size A B C D E F H Conduit terminal J M4 M5 M5 M5 M5 K M Q R 50 60 63 66 70 Q 40 R Q 58 R S 46 Q 95 R S 62 T U 46 56 56 W X 11 13 13 Y Normally closed Normally open VX212 VX222 VX232 VX210 VX220 VX220 VX230 VX230 1/8, 1/4 1/4, 3/8 1/4, 3/8, 1/2 1/4, 3/8 1/4, 3/8

(For Memax, find the value in when U = 500mm/s.) Guide central axis We W L2 A Me1 Me1 = 1 /3WeL1 = 1/3250.2 = 1.6 [Nm] 4 = Me1/Me1 max = 1.6/6 = 0.27 W We Review Me1. (For Memax, find the value in when U = 500mm/s.)

S H Surface finish Seat material Surface finish Ra max 15 in. (0.4 m) Standard 10 in. (0.25 m) 7 in. (0.18 m) 5 in. (0.13 m) Code Code Material PCTFE (Standard) Vespel 2) Face to face dimension 1) No code M V X No code VS Dimension 2.12 inch (53.8 mm) Standard 1.75 inch (44.5mm) Code No code 1.75 2) Not available with H material. 1) Only applies to S material with TW4 connections.

Connections 1/4 NPT (S, C1, C2), converts also ND91_ connections to1/4 NPT. RC03 H127093 Cable assembly remote mount sensor cable 30 m, angle connector D3 D3B As D3 but two pressure gauges with connections 1/4 NPT (S, C2).

0.5 1000 1000 Maximum speed: V(mm/s) Maximum speed: V(mm/s) Graph 6 Graph 3 0.4MPaP<0.5MPa 0.4MPaP<0.5MPa 200 200 100 100 40 32 30 40 50 30 40 50 25 40 20 32 Load weight: m (kg) Load weight: m (kg) 20 20 [Example] 25 10 10 20 5 4 5 4 3 3 2 2 1 1 0.5 0.5 100 500 400 300 200 100 500 400 300 200 1000 1000 Maximum speed: V(mm/s) Maximum speed: V (mm/s) Graph 7 Graph 4 0.5MPaP 0.5MPaP 200 200

acting) 16 20 Bore size: 16, 20 Q S M L A + 2 stroke B + Stroke H + Stroke V W X E G T 0 0.1 D Width across flats K E Workpiece transfer direction 2 x N through 4 x O counterbore 2 x P (Rc, NPT, M thread) F Stroke Y Q S M L A + 2 stroke B + Stroke H + Stroke V G T 0 0.1 D E M L A + 2 stroke B + Stroke H + Stroke V Width across flats K Workpiece transfer direction 2 x P (Rc, NPT, G) F Z X