(Ms) | ieries I{VZ 3-port dirct operated I solenoidvahre I NVZ100 | -EEffi rfl|/h afirF I P F P F II I 3-pod pilot operated I solenoid valrre I NVZ300 I @ Internal dlot type I T di**t* | ,oli*,n,* oiJ I K4 q I l-f " " ' n * | {im#h I P F P F II I I tlffi;lI l&*;" 3-port pilotoperated I solenoad Yalve I NVZSOO I @ Inlerml dlol type I "t" ^"" I ilF a{Zl;lh I exrllar pirot ty"pi I l " i I w
(Ms) | ieries I{VZ 3-port dirct operated I solenoidvahre I NVZ100 | -EEffi rfl|/h afirF I P F P F II I 3-pod pilot operated I solenoid valrre I NVZ300 I @ Internal dlot type I T di**t* | ,oli*,n,* oiJ I K4 q I l-f " " ' n * | {im#h I P F P F II I I tlffi;lI l&*;" 3-port pilotoperated I solenoad Yalve I NVZSOO I @ Inlerml dlol type I "t" ^"" I ilF a{Zl;lh I exrllar pirot ty"pi I l " i I w
Dynamic moment Me3 We W L2 = 1/3 14.7 (50 + 27) 103 Review Me3. = 0.38 [Nm] 3 = Me3/Me3 max = 0.38/3 = 0.13 Guide central axis A Me1 W We Me1 = 1/3 We (L1 + B) 103 = 1/3 14.7 (50 + 48) 103 L1 B = 0.48 [Nm] 4 = Me1 /Me1 max = 0.48/3 = 0.16 Review Me1.
Dynamic moment Me3 We W L2 = 1/3 14.7 (50 + 27) 103 Review Me3. = 0.38 [Nm] 3 = Me3/Me3 max = 0.38/3 = 0.13 Guide central axis A Me1 W We Me1 = 1/3 We (L1 + B) 103 = 1/3 14.7 (50 + 48) 103 L1 B = 0.48 [Nm] 4 = Me1 /Me1 max = 0.48/3 = 0.16 Review Me1.
Right Plug [P (port h)] HI HP H HL HG HT HS HB HA HB HA HG HT HI WB 4-J Depth JK Plug [P (port f)] WB WA TA TA WA R TB Plug TB R W [P (port d)] Inner cover Note 3) holding screw (mm) C 5.4 8.6 A 8 12 B 9.5 14 E 4H9 6H9 ED 9.5 13 EK 4 6 F 12.5 25 G 6.5 8.5 H 45 75 HA 19.5 39 HB 8.5 19 HG 8.5 19 HI 23 39 HL 38.6 64.9 HP 44 73.5 HS 27 49.5 HT 19.5 39 J M6 x 1 M10 x 1.5 JK 10 12 K 21 20 Model
3, 4, 5) 20 + 35 D-M9V 5 20 35 CHS (n = 2, 4, 6) Note 3) (n 2) 2 25 + 35 (n 2) (n = 2, 3, 4, 5) 15 + 35 D-A9V 5 15 25 CH2 (n = 2, 4, 6) Note 3) (n 2) 2 D-M9WV D-M9AV 35 + 35 (n 2) (n = 2, 3, 4, 5) 20 + 35 10 20 35 CHA (n = 2, 4, 6) Note 3) (n = 2, 4, 6) Note 3) 15 + 45 (n 2) 2 D-H7/H7W D-H7NF/H7BA 60 + 45 (n 2) (n = 2, 3, 4, 5) 10 15 60 Related Products (n = 2, 4, 6) Note 3) 15 + 45
(port h)] HI HP H HL HG HT HS HB HA HB HA HG HT HI WB 4-J Depth JK Plug [P (port f)] WB WA TA TA WA R TB Plug TB R W [P (port d)] Inner cover Note 3) holding screw (mm) K 21 20 JK 10 12 J M6 x 1 M10 x 1.5 HT 19.5 39 HS 27 49.5 HP 44 73.5 HL 38.6 64.9 HI 23 39 HG 8.5 19 HB 8.5 19 HA 19.5 39 H 45 75 G 6.5 8.5 F 12.5 25 EK 4 6 ED 9.5 13 E 4H9 6H9 B 9.5 14 A 8 12 C 5.4 8.6 Model +0.030 0 +0.030
Thread type Rc G NPT NPTF Nil F N T Stations 02 : 10 2 stations : 10 stations D side U side 1 2 3 4 5 How to Order Valves (VCA30/40) VC A 5 1 G 3 4 03 For air Thread type Rc G NPT NPTF Nil F N T Series 3 4 Class 3 Class 4 Port size (OUT) 5 N.C. for manifold Valve type Symbol 03 04 06 Class 3 Port size 3/8 (10A) 1/2 (15A) 3/4 (20A) Class 4 Fluid General air Dry air Nil A Orifice size Orifice
Valve type Thread type (for single unit only) Rc G NPT NPTF Nil F N T OUT(2) 1 IN(1) Port size Fluid Symbol 02 03 04 06 Class 3 Class 2 Port size 1/4 (8A) 3/8(10A) 1/2(15A) 3/4(20A) Class 4 General air Dry air Nil A Voltage 1 2 3 4 5 6 36 100 VAC 200 VAC 110 VAC 220 VAC 24 VDC 12 VDC 230 VAC Orifice size Orifice size (mm) 3 4 5 7 10 Class 3 Class 2 Class 4 Symbol 3 4 5 7 10 Please consult
See page 3 for details. Example: Nut for JS40 2 Series JS Dimensions JS10, 16 M M U D J U F B G H C E P A Use a 4mm precision watch wrench to attach the JS10 male threads.
A F NB NC K H S + Stroke ZZ + Stroke NA I 3 (mm) Effective thread length (mm) IA (tolerance) Bore size (mm) Stroke range (mm) A B1 B2 D F GA GB H H1 H2 I K MM P S NN N NA NB NC ZZ -0.020 -0.053 -0.020 -0.053 -0.025 -0.064 -0.025 -0.064 20 18 13 26 10 16 12 8 41 5 8 30 5 M8 x 1.25 1/8 81 M22 x 1.5 13 26 19 15 138 23 f8 15.5 to 800 25 22 17 32 12 16 12 8 46 6 8 32 5.5 M10 x 1.25 1/8 81 M24
Pin description PF2A7H-(-M) 68 69 1 DC(+) 2 Analog output 3 DC() Accumulated pulse output wiring examples 4 OUT1 4-I thread with depth J 40 Max. 30V 80mA or less OUT1 Black Load H 0V Blue 50msec PF2A7H-(-M) 28 29 B C D E F G H I J A Model Brown PF2A703H PF2A706H PF2A712H 55 160 40 92 67 55 Rc 1, NPT 1, G 1 36 M5 x 0.8 8 OUT1 80mA Load Black 65 180 45 104 79 65 Rc 11/2, NPT 11/2, G 11/2 Rc
G Rear flange F Front flange L Foot C Male rear clevis D Female rear clevis 1.8-29
Nil N F Rc NPT G OUT 1 IN Port size Symbol 01 02 03 04 06 Class 3 Class 2 Port size 1/8 (6A) 1/4 (8A) 3/8 (10A) 1/2 (15A) 3/4 (20A) Class 4 Voltage 1 2 3 4 36 100VAC 200VAC 110VAC 220VAC 230VAC Orifice size Consult SMC regarding other voltages.
(A) 4 (B) 2 2 M5: M5 x 0.5 5 (EA) 1 (P) 3 (EB) 3 position closed center (A) 4 (B) 2 A 4 3 2 B 5 (EA) 1 (P) 3 (EB) D: Slotted locking type Screw driver operated J: With switch 3 position exhaust center Elbow fitting assembly (upward) L4: 4 elbow fitting assembly L6: 6 elbow fitting assembly (A) 4 (B) 2 4 5 (EA) 1 (P) 3 (EB) A 4 ON 3 position pressure center OFF B 2 SMC (A) 4 (B) 2 5 Refer
4-G C 1.5 B D E L 4-H Valve mounting hole F Bracket Mounting Dimensions/Bracket Material: Stainless Steel (mm) A B C D E F G H J L Valve model Bracket part no.
CE1 Series/ 1. / 1 1.5 *3) *3)1 1 () 1. 2. 3. a. b. c. 4. a. b. c. 6. 1. 7. a.060 b.2585%RH c. d. e. 8. ,, f. g.( 9. ) h. i. j. k. l. 2. 1. 2. 1. 3 2. 1. 3. 4. 1. 12:0.071.0MPa 2063:0.051.0MPa :060 5. 2. 1. 5m 1. 2. 2. 3.
Accelerating torque calculation (Example) (Example) Friction coefficient Ta = I x (Nm) Mass m F = mg Clamp F F I : Inertial moment Static torque calculation Movement Load Refer to features page 5. : Angular acceleration = (rad/s) Tf = F x l (Nm) g = 9.8m / s F: Pressing force (N) l l Static torque calculation 2 Load t2 Ts = F x l (Nm) Lever : Rotation angle (rad) t : Rotation time
5"5 VVXA211-stations VVXA212-stations VVXA221-stations VVXA222-stations 7 %1 % = > = > 3 1 VXA21 -00 . ; < Construction/ Principal Parts Material 3 1 VXA22 -00 ; Common SUP type Solenoid Valve for Manifold " 5 '* #5 5 # I ,+!J ! #5 " 0"8 1 E F 4 " 4 % " 4 4 4 4 7 %1 % 3 VXA212-00 VXA213-00 VXA223-00 VXA224-00 = < .G < < * 4.5 . >< * < * 6 < * $ /H"3 % .