SMC Corporation of America
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a guide, use a solenoid valve with a large effective area for the unlocking solenoid.

HRZ001-L-Z HRZ001-L1-Z HRZ002-L-Z HRZ002-L1-Z HRZ004-L-Z HRZ004-L1-Z HRZ004-H-Z HRZ004-H1-Z HRZ008-H-Z HRZ008-H1-Z HRZ001-L2-Z HRZ002-L2-Z HRZ004-L2-Z HRZ008-L2-Z HRZ002-W-Z HRZ002-W1-Z HRZ008-W-Z HRZ008-W1-Z HRZ010-WS-Z HRZ010-W1S-Z HRZ010-W2S-Z HRZ001-H-Z HRZ001-H1-Z HRZ002-H-Z HRZ002-H1-Z HRZ008-L-Z HRZ008-L1-Z Applicable model Circulating fluid recoverable volume Note 1) L 15 16 17 Purge

Option Symbol and Configuration Fluid and Options Option symbol Seal material Coil insulation Body, Shading coil material Option symbol and body material Brass SUS304 F L X F, B L, J B J B J J T A H A H A H D N G, J S Q E P V M Y A H K K A H A H B J V M V M Y D, E N, P B J Fluid(Application) Standard A B C D E F NBR FPM Argon Argon(long life) Ethyl Alcohol Ethylene glycol Ozone(low

5 2 4 3 2 1 2(B) (A)4 (EA) (A) (P) (B) (EB) (EA)5 1 3(EB) (P) (Drawing shows a closed center type.)

Z Y69BZ Note 2) Solid state auto switches marked with a " " are produced upon receipt of order.

acting, Spring return: CVM3D S Bore size Stroke M5 x 0.8 Manual override RE A B CD hole H10 Width across flats B1 Axis d9 REC CX CY MQQ M S + Stroke Z + Stroke ZZ + Stroke RHC MK(2) Single acting, Spring extend: CVM3D T Bore size Stroke RS Q G RS H A RZQ MI W S CEP1 CE1 H + Stroke CE2 Z + 2 x Stroke ZZ + 2 x Stroke ML2B AL D CZ H1 MM NN CX H L U CD HX A B1 Eh8 F I K N NA RR Bore size

However, the valve does not switch with negative COM if a Z type is used.

Also, in order to use it under the optimum state, conduct a regular inspection once a half year. Back page 6

Use 0.3 to 0.7 times the thrust (differs depending on the operating speed) as a guide for actual use. g: Gravitational acceleration Dynamic moment Mounting orientation Dynamic load FE Horizontal Ceiling Wall Vertical Z M1 1.4 100 x a x mn x g 1 3 a a M1E x FE x Z Dynamic moment M2E Dynamic moment M2E does not occur. 1 3 mn x g M1E M3 M3E x FE x Y mn x g M3E FE FE Note) Regardless of the mounting

Z (Example) A80CZ None . N (Example) A80CN Note 2) Solid state auto switches marked with a "" are produced upon receipt of order.

D-A59W Bore size (mm) A B A B A B A B A B A B A B A B A B A B A B 40 50 63 80 9 9 5 5 2.5 2.5 4.5 4.5 2 2 5.5 5.5 3 3 10.5 10.5 0 0 1 1 0 0 9.5 8.5 5.5 4.5 3 2 5 4 2.5 1.5 6 5 3.5 2.5 11 10 0 0 1.5 0.5 0 0 12.5 11.5 8.5 7.5 6 5 3 2.5 5.5 4.5 9 8 6.5 5.5 14 13 2.5 1.5 4.5 3.5 3 2 16.5 13.5 12.5 9.5 10 7 7.5 4 9.5 6.5 13 10 10.5 7.5 18 15 6.5 3.5 8.5 5.5 7 4 100 18 16 14 12 11.5 9.5 9 6.5 11

Fittings & Tubing Air Cylinders Rotary Actuators BMA3-020 (A set of a, b, c, d) BMA3-025 (A set of a, b, c, d) BMA3-032 (A set of a, b, c, d) BMA3-040 (A set of a, b, c, d) BMA3-050 (A set of a, b, c, d) BMA3-063 (A set of a, b, c, d) Switch bracket (Resin) Transparent (Nylon) Note 1) Auto switch a e White (PBT) b Switch holder d Auto switch mounting screw c Auto switch mounting band Band

closed center: VFR630 -F(Z) 3 position exhaust center: VFR640 -F(Z) 3 position pressure center: VFR650 -F(Z) 0 1 0 1 0 1 2 position double: VFR620 -F(Z) 263 3-2.3 146 93 (Electrical entry) 45 117 A B A B 72 90 108 PE EA EB PE P Manual override 170 186 4-9 (Mounting hole) (Non-locking) G 1/2 Light/Surge voltage suppressor (For FZ) Other dimensions are the same as the single type. 3-5-97

Use 0.3 to 0.7 times the thrust (varies depending on the operating speed) as a guide for actual use. g: Gravitational acceleration Dynamic moment M Mounting orientation Dynamic load FE Horizontal Ceiling Wall Vertical Z 1.4 100 x a x mn x g a a 1 3 x FE x Z ME Dynamic moment Dynamic moment ME is not generated.

If using the DRIVERs phase-Z pulse output for a zero point return, rotate the servomotor two or more times before starting a zero point return. If the servomotor cannot be rotated two or more times, perform a zero point return at a motor speed of 600 min-1 or below.

Static moment M1 M1 m1 x g x Y m2 x g x Y m3 x g x Z M2 z y Y Z m3 x g x X m4 x g x Y M3 m4 x g Note) m4 is a mass movable by thrust.

B FB EB H 4-counterbore depth C 4-J depth JK HI S + Stroke HO TT T HP HG MM thread depth M PA H 2-P Hollow shaft for piping HP HG 2-P d D LD A 5.5 NN GP PW PW QW GP PB W HT HT (11) RW HB HS HB HA L G G View A REAL15 HS Z + Stroke Q + Stroke A N N (mm) HP HO HI HG HB HA H GP G FB FA EB EA d D C B Model A REAL15 REAL20 REAL25 REAL32 REAL40 39 38 14 16 4 6.5 40 65 6.5 6 3 13 6 12 16.6 5 9.5

G HC HP NL HG HT HA H HB NT RS H A PS PP N A RZQ Z + Stroke W Square nut for body mounting J MI W S TW CEP1 CE1 CE2 ML2B C J G5-S (mm) Model A EA EB H HA HB HC HG HP HT J LL LW M MM N CV REAHT25 REAHT32 125 28.5 79 63 46 46 61.5 19.5 58.5 35 M6 x 1.0 56 119 M6 x 1.0 10 20.5 132.5 30 90 75 52.5 57.5 72.5 25 69.5 43 M8 x 1.25 63.5 130 M8 x 1.25 12 23 MVGQ CC Model NL NT PA PB PP PS S TW W

MGG (Max.)W1 B DX Z + Stroke MGC DDH10 hole 90 B MGF 4-DT B DS A DH DF CY1 DO DO DC DE DU DU DL DA 4-DR MY1 Rotation angle (mm) Bore (mm) 40 50 63 80 100 Bore (mm) 40 50 63 A B A + B + 90 Part No.

Calculate the load factor for each direction. x = Xc/Lx, y = Yc/Ly, z = Zc/Lz 5. Confirm the total of x, y and z is 1 or less. x + y + z 1 When 1 is exceeded, please consider a reduction of acceleration and work load, or a change of the work load center position and series. Acceleration [mm/s2]: a Work load [kg]: m Work load center position [mm]: Xc/Yc/Zc z y 1. Horizontal 3.