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Load at end of lever + m a + K 3 a1 I = m1 12 4a2 + b I = m1 + m2 12 4a1 + b (Example) When shape of m is a 5 2r sphere refer to 7 and K = m 5. Thin rectangular plate (rectangular parallelopiped) Position of rotational axis: Through the center of gravity and perpendicular to the plate (also the same in case of a thicker plate) 10.

Load at end of lever + m a + K 3 a1 I = m1 12 4a2 + b I = m1 + m2 12 4a1 + b (Example) When shape of m is a 5 2r sphere refer to 7 and K = m 5. Thin rectangular plate (rectangular parallelopiped) Position of rotational axis: Through the center of gravity and perpendicular to the plate (also the same in case of a thicker plate) 10.

C D E G H J K L M N P Q S V Note 1) B Brass/Copper H B Note 1) Stainless steel/Silver High corrosive spec., Oil-free Note 1) Non-leak, Oil-free H Steam (Max. 183C) Brass/Copper Non-leak, Oil-free B Note 1) L, M, V options are for non-lube treatment.

B L A C K L E A D W I R E Connects with minus (-) side of the direct current to actuate the switch.

x 103 Yaw moment M3 = m x g x (L + A) x 103 Roll moment M2 = m x g x (L + B) x 103 (mm) Model CYV15 CYV32 A 16.5 27.0 B 25.5 48.0 L B L B L A M1, 2, 3 : Moment [Nm] m: Load mass [kg] L: Distance to load center of gravity [mm] A, B: Distance to guide shaft [mm] g: Gravitational acceleration [9.8 m/s2] M2 M1 M3 m x g m x g Guide shaft mounting surface m x g Central axis of guide Central

MY-S25 MY-S32 MY-S40 Applicable cylinder A 105 130 145 B 119 148 167 C 35 45 55 D 50 64 80 E 8 11.7 14.8 F 5 6 8.5 G 9.5 11 14 H 5.5 6.6 9 J M6 x 1 M8 x 1.25 M10 x 1.5 A B A B A B MY1H25 MY1H32 MY1H40 MY1 HT Side supports consist of a set of right and left supports.

A Hs 32 to 63 D-P3DWA B A Hs Auto Switch Proper Mounting Position Auto Switch Mounting Height (mm) (mm) D-M9 D-M9V D-M9W D-M9WV D-M9A D-M9AV Auto switch model Auto switch model D-A9V D-P3DWA D-M9V D-M9WV D-M9AV D-A9 D-A9V D-P3DWA Bore size (mm) Bore size (mm) B 11 12.5 13 15 16 20 A 11 10.5 12 14 13.5 16.5 B 7 8.5 9 11 12 16 A 6 7.5 9.5 9 12 B 8 8.5 10.5 11.5 15.5 Hs 24.5 26 29 33 38.5

AS-FM AS-D AS-T ASP ASN AQ Dimensions ASV Universal type AK Applicable tubing O.D. d VCHC Applicable tubing O.D. d Weight (g) T H1 H2 D1 D2 D3 L1 L2 L3 L4 L5 (1) A (2) M1 Max. Min. Max. Min.

0 1 Body PVC 2 Housing PVC LVW LVW q 3 Poppet PTFE w 4 Union end PVC LQ1 5 Union nut PVC 6 O-ring EPDM FKM LQ3 7 O-ring EPDM FKM 8 O-ring EPDM FKM LVN 9 O-ring EPDM FKM 10 O-ring EPDM FKM LQHB OUT TL TIL TLM TILM Dimensions TD TID TH TIH D3 D2 D1 IN L1 L2 L4 L3 L1 2 x Rc1/8 (NPT1/8) Pilot port PA PB Dimensions (mm) Part no.

A R Courtesy of Steven Engineering, Inc.-230 Ryan Way, South San Francisco, CA 94080-6370-Main Office: (650) 588-9200-Outside Local Area: (800) 258-9200-www.stevenengineering.com JS20, 32, 40, 63 Center of sphere M M U U D J F H B E G P R A Max. thread depth P Model Center of sphere R Allowable eccentricity U Max. operating tension and compression force (N) (mm) M A B C D E F G H J JS10-4

x 1.25 6 17 19.6 16.5 JS40 nut M14 x 1.5 8 22 25.4 21 H B JS63 nut M18 x 1.5 11 27 31.2 26 10-19-14

Side support B MY-SB 2 x J MY1B MY1B MY1H E A B MY1B C D MY1M (mm) MY1C A 61 70 87 B C D E F G H J Part no.

. = 16 V Load voltage at OFF = Leakage current x 2 pcs. x Load impedance = 1 mA x 2 pcs. x 3 k = 6 V Example: Power supply is 24 VDC Internal voltage drop in switch is 4 V. Example: Load impedance is 3 k.

A B For details about certified products conforming to international standards, visit us at www.smcworld.com.

. = 16 V Load voltage at OFF = Leakage current x 2 pcs. x Load impedance = 1 mA x 2 pcs. x 3 k = 6 V Example: Power supply is 24 VDC Internal voltage drop in switch is 4 V. Example: Load impedance is 3 k.

. = 16 V Load voltage at OFF = Leakage current x 2 pcs. x Load impedance = 1 mA x 2 pcs. x 3 k = 6 V Example: Power supply is 24 VDC Internal voltage drop in switch is 4 V. Example: Load impedance is 3 k.