SMC Corporation of America
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Search Results "ZA1051-K15M-B-M2"

L1 M2 = m g (L1 + B) 103 2. Static moment m x g = 1 9.8 (50 + 48) 103 Review M2. Since M1 & M3 are not generated, review is unnecessary. = 0.96 [Nm] 2 = M2/M2 max = 0.96/4 = 0.24 M Guide shaft mounting surface L1 B We = 5 x 103 m g U = 5 x 103 1 9.8 300 = 14.7 [N] Me3 = 1/3 We (L2 + A) 103 3.

M2 M2 L2 L2 Plug-in Reducer: KQB2R Applicable tube O.D.

(except for 50 and 63) b C CY1B6 -SCY1B, #1 CY1B10 -SCY1B, #2 CY1B15 -SCY1B, #3 CY1B20 -SCY1B20, #1 CY1B25 -SCY1B, #4 CY1B32 -SCY1B, #5 CY1B40 -SCY1B, #6 CY1B50 -SCY1B, #7 CY1B63 -SCY1B, #8 H B d M10 x 1.0 M20 x 1.5 M26 x 1.5 M32 x 2.0 H 4 8 8 10 B 14 26 32 41 C 16.2 30 37 47.3 Part No.

(mm) a b Effective area (mm2) Weight (g) D L M2 Model 3.2 4 KJH02-23 KJH02-04 8.4 9.3 26.6 26.6 8.8 8.8 12.7 12.7 0.9 0.9 2.4 3.2 2 M1 M2 D D L Applicable tubing a Applicable tubing b Male elbow: KJL T H A Applicable tubing O.D.

Static moment M2 = m g (L1 + B) 103 m x g = 1 9.8 (50 + 48) 103 Review M2. Since M1 and M3 are not generated, review is unnecessary. = 0.96 [Nm] 2 = M2/M2 max = 0.96/4 = 0.24 M Guide shaft mounting surface L1 B We = 5 x 103m g U = 5 x 103 1 9.8 300 = 14.7 [N] Me3 = 1/3 We(L2 + A) 103 3.

A B A B A B C D Normally closed (NC = b contact), solid state switch (D-F9G/F9H type) are also available.

Static moment M2 = m g (L1 + B) 103 m x g = 1 9.8 (50 + 48) 103 Review M2. Since M1 and M3 are not generated, review is unnecessary. = 0.96 [Nm] 2 = M2/M2 max = 0.96/4 = 0.24 M Guide shaft mounting surface L1 B We = 5 x 103m g U = 5 x 103 1 9.8 300 = 14.7 [N] Me3 = 1/3 We(L2 + A) 103 3.

Static moment M2 = m g (L1 + B) 103 m x g = 1 9.8 (50 + 48) 103 Review M2. Since M1 and M3 are not generated, review is unnecessary. = 0.96 [Nm] 2 = M2/M2 max = 0.96/4 = 0.24 M Guide shaft mounting surface L1 B We = 5 x 103m g U = 5 x 103 1 9.8 300 = 14.7 [N] Me3 = 1/3 We(L2 + A) 103 3.

Static moment M2 = m g (L1 + B) 103 m x g = 1 9.8 (50 + 48) 103 Review M2. Since M1 and M3 are not generated, review is unnecessary. = 0.96 [Nm] 2 = M2/M2 max = 0.96/4 = 0.24 M Guide shaft mounting surface L1 B We = 5 x 103m g U = 5 x 103 1 9.8 300 = 14.7 [N] Me3 = 1/3 We(L2 + A) 103 3.

A B A B COM PWR A A A A B B B B Cable with M12 connectors EX500-ACP. 15 Connection of sensors with M8, M12 connectors (auto switch, pressure switch, etc. A B A B COM PWR A A A A B B B B Cable with M12 connectors EX500-ACP. 15 Connection of sensors with M8, M12 connectors (auto switch, pressure switch, etc.

5 A-A t y @2 C B e @1 !0 C B r w C-C B-B !4 !2 Body Table !3 Component Parts No. Description Material Note No.

connector (M): SX7 20-MC8 C10 C8 C10 128.6 300 141.1 99.2 99.2 19 42.9 (Lead wire length) 19 42.9 Polarity indication 13.6 13.6 A B A B B A A COM B + A B A B A B A Manual override (Push and turn for locking type) 42 31.4 Manual override (Press and turn for the locking type) 42 31.4 84.9 B: Green A: Orange 2-4.2 84.9 B: Green A: Orange 2-4.2 2-One-touch fittings (Mounting holes for manifold

-LD Piping port P Operating direction A 7 Piping port P Operating direction B W K G With switch rail Q + Stroke Z + Stroke Piping port P (plug) Operating direction B HS CR HR Plug 22 8 Piping port P Operating direction B Piping port P (plug) Operating direction B 8 Piping port P Operating direction A 16 19.5 16 Plug REBR15 REBR15 (mm) A B C CB CR D F G GP GW H HA HB HC HP HR HS HT Model REBR15

Width across flats 12 A M8 x 1 12.5 H MA 5.3 14.4 7 6.5 40.8 11 8.5 17.8 21 20 4-M4 x 0.7 Piping port 2-M5 x 0.8 (Plug: M-5P) 19 0.5 A 15 Prepared hole dia. 3.3 4-M3 x 0.5 depth 4 20 0.05 W 8 0.05 28 D B Piping port 2-M5 x 0.8 10 J 6 10 9.5 Section AA Mounting reference planes B D MXP10-20B Max. 5 Without magnet and switch rail 2-M2 x 0.4 depth 3 2-M3 x 0.5 depth 3.5 For rail mounting

(ZP)[1][2][8][0]17bit 14 37 14 (5) ON/OFF((DO)) ON/OFF [9][0] (a) DO [8][B][0][0]0004DO 0 0 0 4 4 DO (b) ON/OFF [9][2] [A][0] b31 b 1 b 0 1 ON 0 OFF bit 16 bit CN6 bit CN6 bit CN6 bit CN6 0 14 8 16 24 1 15 9 17 25 2 16 10 18 26 3 11 19 27 4 12 20 28 5 13 21 29 6 14 22 30 7 15 23 31 (c) DO DO[8][B][0][0] [8][B] [0][0] 0 DO 14 38 14 (6) (a) [8][B][0][0]0003 0 0 0 3 3 (b) ([8][B]

part and is parallel to Z Z2 MHF kgm2 Total inertial moment of attachment I kgm2 Inertial moment around Z1 axis of attachment A part IZ1 MHL kgm2 Inertial moment around Z2 axis of attachment B part IZ2 kgm2 Inertial moment around Z axis of attachment A part IA MHR kgm2 Inertial moment around Z axis of attachment B part IB m1 m2 r1 r2 Weight of attachment A part kg MHK Weight of attachment

part and is parallel to Z Z2 MHF kgm2 Total inertial moment of attachment I kgm2 Inertial moment around Z1 axis of attachment A part IZ1 MHL kgm2 Inertial moment around Z2 axis of attachment B part IZ2 kgm2 Inertial moment around Z axis of attachment A part IA MHR kgm2 Inertial moment around Z axis of attachment B part IB m1 m2 r1 r2 Weight of attachment A part kg MHK Courtesy of Steven Engineering

Series LQ3 Dimensions Union reducing: LQ3U-R Metric Size B side A side H1 B side A side W H2 M2 K E1 E1 E2 E2 L L H1 M1 H2 M2 W Model Applicable tubing O.D.

part and is parallel to Z Z2 kgm2 Total inertial moment of attachment I kgm2 Inertial moment around Z1 axis of attachment A part IZ1 kgm2 Inertial moment around Z2 axis of attachment B part IZ2 kgm2 Inertial moment around Z axis of attachment A part IA kgm2 Inertial moment around Z axis of attachment B part IB m1 m2 r1 r2 Weight of attachment A part kg Weight of attachment B part kg Distance