SMC Corporation of America
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Search Results "ISE20C-L-P-F02L-W"

terminal: D, DIN terminal with indicator light: DL) Model Main port 1(A), 2(B) A B C D E F G H I J K L M N P Q R S T U V W VNB2V-10A VNB2V-15A VNB3V-20A VNB4V-25A 3 8 1 2 3 4 1 72.5 80.5 170.5 173.5 180.5 24.3 2.3 25 34 55 75 87 97 114 126.5 52 26 4.5 63 42 28 14 28.3 33.3 2.3 2.3 30 35 43 49 17.5 20 84 100 92 108 80 81 92 93 102 103 125.5 138 154 182 198 185 201 192 208 62 72 31 36 5.5

Symbol x 50 001 005 010 020 050 075 100 002 004 006 013 q q w w 0.01 0.01 e r e 0.005 0.005 r 0.002 5 10 50 100 0.002 10 50 100 Flow rate l/min (ANR) Flow rate l/min (ANR) Note) The recommended flow rate is the rate for an initial pressure drop of 0.01 to 0.02 MPa. 2 Series FQ1 How to Order Filters Element and Seal Part Numbers 1.

No code 0 FV4 V3 L 1 e w q w q -30in.Hg to 30psig -30in.Hg to 60psig -30in.Hg to 100psig -0.1 to 0.2 MPa -0.1 to 0.4 MPa -0.1 to 0.7 MPa With pressure gauge 2PW 3PW qIN wOUT eGauge port(Outlet) 2) Refer to gauge guide (P.94) for gauge specifications.

Front matter 1 Air Slide Table/Reversible Type Series MXQR Fig. (1) Load Weight: W (kg) Fig. (2) Overhang: Ln (mm), Correction Value of Moment Center Position Distance: An (mm) Fig. (3) Workpiece Mounting Coefficient: K Pitch moment Yaw moment Roll moment Table mounting W W My Mp Mr W W W Static moment Dynamic moment L1 A1 K = 1 L3 A5 L2 A3 End plate mounting Mp Mr W My W W W L3 A6 W L1 A2

) T N M P X Built-in silencer (Option) 3(R) Q S L K R AV5000-A Flow adjustment needle at low speed air supply D D 2 x W 4 x W Y V Y U H H U Dimensions [mm] Standard specifications Port size A B C D E F G H J 1(P) 2(A) 3(R) Model AV2000-m02-1 to 6D/Y(Z)m-A 1/4 1/4 1/4 66 97 47 24.5 40 96 33 Width across flats 22 58 AV3000-m03-1 to 6D/Y(Z)m-A 3/8 3/8 3/8 76 97 50 29.5 40 96 38 Width across

) (6) (7) D 7)VQ100 Ass yP.41 (2)Q2 (3)LO 8)(2)J1,J2Q2 P.8 (3)C 7 - No.ZQ-OM01401-B ZZQ108A-L O C-A (1) (2) (3) (4) (3) (PD) (1) B (: P ) 01 1 2 (: PD ) C 02 2 2) (10) S (4) : 08 8 (2) (PV) 1) 3 A L 3)Assy R 1) V PV PS 1 1) V V (2)PV (3)PD PS PV PD PS PV PD L B C R B C 8 - No.ZQ-OM01401-B 2. 2.1 () (PE) (2 ) (P) (V) (PS) (PV) V 9 - No.ZQ-OM01401-B

V: Power supply voltage Power consumption P: 20 [kW] Q = P = 20 [kW] P Cooling capacity = Considering a safety factor of 20%, 20 [kW] x 1.2 = 24 [kW] Power consumption w Derive the heat generation amount from the power e Derive the heat generation amount from the output. supply output. Output (shaft power etc.)

Connector G59W G5PW K59W G5BA P P P P P P P 3 wire (NPN) K I.C. 5V, 12V Diagnostic indication (2 color) Relay, PLC 3 wire (PNP) K 24V K 12V 2 wire Watrer resistant (2 color) Grommet K With timer 3 wire (NPN) P P K I.C. 5V, 12V G59F Latch w/ diagnostic output (2 color) P K 4 wire (PNP) Latch with diagnostic output (2 color) H7LF P P K 0.5m Ex) B80C 5m Z Ex) B80CZ 3m L Ex) B80CL

How to find the flow rate for water Formula based on Cv factor Q = 14.2 Cv 10.2 P l/min Formula based on effective area (Smm) Q = 0.8 S 10.2 P l/min Q: Flow rate (l/min), P: Pressure differential (P1P2), P1: Upstream pressure (MPa) P2: Downstream pressure (MPa), S: Effective area (mm), Cv: Cv factor 17

port 3 22.5 3 22.5 84 96 e ng e ng ra 3 ra on on ti A port ta 3 ti 90 4 ro ta 7 ro m 1 A port A port u Clockwise m e e m g s 3 u i ni n w im k C ra c l o Mi 6 3 8 ax n o 1 ti M ta ro e m g u m n ni Mi 180 e ra C s l i o w c k n tio ta ro m mu xi Ma Positioning pin hole Positioning pin hole Position of bottom positioning pin hole Position of bottom positioning pin hole With external shock

L [mm] Eccentric distance L [mm] MGPKL32 50 mm stroke or less, V = 400 mm/s Over 50 mm stroke, V = 400 mm/s 30 30 10 10 Load mass m [kg] Load mass m [kg] 1 0.1 1 10 100 100 10 Eccentric distance L [mm] Eccentric distance L [mm] 16 MGPK Series L L Plate Material Carbon Steel /MGPKL Horizontal Mounting m m MGPKL16 L = 50 mm, V = 200 mm/s or less L = 100 mm, V = 200 mm/s or less 10 10 Load

V: Power supply voltage Power consumption P: 7 [kW] Q = P = 7 [kW] P Cooling capacity = Considering a safety factor of 20%, 7 [kW] x 1.2 = 8.4 [kW] Power consumption w Derive the heat generation amount from the power e Derive the heat generation amount from the output. supply output. Output (shaft power etc.)

p p p m m m m m m m p p p p p p p p m m m m m M m M m R p m p p p m m m M m R m p R M p m p p m p m p M m m m m M m p p M m M p p m m m m p m M M m R m m m p m m p m m p p m p m p m p m m R p m m p m p m m M M m m m m p m m p M m p m p m m m m p m M p p m m R p p p p p p p p R p p p m m p m m R p m p m p m m p M p m m m m p p m p p m p m m p R m p p p R m p p p R p p m m p m m p p p p p p

Dimension EVS n: Stations n L 1 50 27 2 69 46 3 88 65 4 107 84 5 126 103 6 145 122 7 164 141 8 183 160 9 202 179 10 221 198 11 240 217 12 259 236 13 278 255 14 297 274 15 316 293 16 335 312 17 354 331 18 373 350 19 392 369 20 411 388 L1 VFN L2 Body ported (Top ported) Type 21 Manifold Grommet: G DIN terminal: D VV5K3-21Station (P port) (P port) n1 = Number of VK3000 n2 = Number of VK300 L

100W DC5V,2mA IDF100150F-W 3.7 3 4 IDX-OM-Z004 4 4 4.1 5 310 4.2 4.2.1 (1) (2) JRA-GL-02-1994 2 4.1 IDF100150F-W 4 1 IDX-OM-Z004 4 2 pH [25] 6.58.2 6.08.0 6.88.0 (mS/m) [25] 80 30 40 (mg/L) 200 50 50 (mg/L) 200 50 50 [pH4.8](mgCaCO3/L) 100 50 50 (mgCaCO3/L) 200 70 70 (mgCaCO3/L) 150 50 50 (mgSiO2/L) 50 30 30 (mg/L) 1.0 0.3 1.0 (mg/L) 0.3 0.1 1.0 (mg/L)

(H1) (H2) 2 x P B C SMC A B E L J B 2 x P 2 x F K Body material: PFA N G A D L K 4 x M Non-locking type Locking type 60 (H1) (H2) C A B SMC E J B 2 x P (mm) Dimensions D G E C M P N L K J H2 F H1 B A Model Body material LVH20 LVH30 LVH40 LVH20 LVH30 LVH40 LVH20 LVH30 LVH40 M5 x 0.8 10 10 54.5 Rc 1/8, 1/4, NPT 1/8, 1/4 27 22 22 76.5 75 33 30 (SUS) Stainless steel 19 13 81 Rc 1/4, 3/8,

D20Port Connection port on 2 sides Port (Nominal size) 10 15 20 30 Auto switch Series Variations MHR2 P. 12-5-4 to P. 12-5-17 2 Finger MDHR2 Rotary actuated air gripper MHR3 P. 12-5-18 to P. 12-5-26 3 Finger MDHR3 12-5-3 4 2 Finger Rotary Actuated Air Gripper Series MHR2/MDHR2 Size: 10, 15, 20, 30 How to Order MHR 2 10 R Without auto switch With auto switch (Built-in magnet) MDHR 2 10 R M9N

V: Power supply voltage Power consumption P: 7 [kW] Q = P = 7 [kW] P Cooling capacity = Considering a safety factor of 20%, 7 [kW] x 1.2 = 8.4 [kW] Power consumption w Derive the heat generation amount from the power e Derive the heat generation amount from the output. supply output. Output (shaft power etc.)