D-A90(V) Contact protection box OUT () Brown Reed switch CD-P11 OUT () Blue CD-P12 Unit: g Mass D-A90 D-A90V D-A93 D-A93V D-A96 D-A96V Model D-A93(V) Lead wire length (m) 0.5 6 6 6 6 8 8 LED diode Brown OUT (+) Brown Contact protection box 3 30 30 30 30 41 41 Resistor Dimensions Reed switch Unit: mm Zener diode CD-P11 D-A90/D-A93/D-A96 CD-P12 OUT () Blue Blue 2 2.8 4.5 2.7 4 D-A96(V) 22 (
Flow Rate and Effective Area AS1001F AS2001F AS3001F AS2051F AS4001F Models Metric sizes 10, 12 8 6 6 6 8 12 10 3.2, 4, 6 4 Tubing O.D.
resistant construction. 110 VAC (50/60 Hz) 220 VAC (50/60 Hz) 24 VDC 12 VDC Nil Thread type 6 VDC Rc 5 VDC F N G 3 VDC NPT Please consult with SMC regarding other voltages.
It is already built-in to the rectifier circuit. 2 200 VAC 50/60 Hz 110 VAC 50/60 Hz [115 VAC 50/60 Hz] 3 Electrical entry 4 220 VAC 50/60 Hz [230 VAC 50/60 Hz] D With connector DIN terminal DO Without connector DC specifications of type D and DO is only available with 12 and 24 VDC. Power saving circuit is not available in the case of D or DO type.
2.7 X 10-6 Calculation of weight m2 = d X e X f X Specific gravity = 0.002(kg) Iz2 = {0.002 X (52 + 102)/12} X 10-6 Moment of inertia around Z2 axis = 0.02 X 10-6 (kgm 2) IB = 0.02 X 10-6 + 0.002 X 472 X 10-6 Iz2 = {m2(d 2 + e2)/12} x 10-6 Moment of inertia around Z axis IB = IZ2 + m2r22 x 10-6 = 4.4 X 10-6 (kgm2) I = 9.0 X 10-6 + 4.4 X 10-6 Total moment of inertia I = IA + IB = 13.4 X
MDHR2-20, 30 MDHR2-10, 15 H H L L Auto switches of D-M9NV, D-M9PV and D-M9BV are used. Auto switches of D-M9N, D-M9P and D-M9B are used. Auto switches of D-M9NV, D-M9PV and D-M9BV are used. Max. Protrusion of Auto Switch from Edge of Body: L, H Max.
B B-6 Nil Robotic type B A-6 Black 8 (d) 3 cable Signal name Terminal number S Standard cable Red 4 Lock (+) B-1 Black 5 Lock (-) A-1 Sensor (+) B-3 Brown 1 Sensor (-) A-3 Blue 2 Actuator side Controller side (8) (a) (b) (14.2) B1 A1 2 1 (17.7) (14) (18) B6 5 6 A6 (10.2) B1 A1 B3 A3 (d) 2 1 (5.7) (c) 15 16 L (11) (30.7) 12.6 Actuator cable [For sensor/ with lock (8-20m)] (a) (b) Signal name
ZP 40HB ZP HB ZP HB 40 50 63 80 100 125 F F 4 x 9.5 F 4 x 8 4 x 6 3 x 6.5 4 x 5 G 3 x 4 Y 3.5 Y 6 E E E Y 8 10 6 34 40 18 C C C A B D A A B D B D Dimensions (mm) Dimensions (mm) Dimensions (mm) A B C D E F Y A B C D E F G Y A B C D E F Y Model Model Model ZP40HB ZP63HB ZP100HB 40 41 28 43 20.5 30 13 63 65 46 68 31.5 50 4.5 21.5 100 103 69 107 47.5 80 35.5 ZP125HB ZP50HB ZP80HB 50 52 36 54
-6 = 9.0 x 10-6 (kgm2) Moment of inertia around Z axis IA = IZ1 + m1r12 X 10-6 z r2 Z2 B part r2 = 47(mm) Calculation of weight m2 = d x e x f x Specific gravity m2 = 5 x 10 x 12 x 2.7 x 10-6 = 0.002 (kg) Moment of inertia around Z2 axis IZ2 = {m2 (d2 + e2)/12} x 10-6 IZ2 = {0.002 x (52 + 102)/12} x 10-6 = 0.02 x 10-6 (kgm2) IB = 0.02 x 10-6 + 0.002 x 472 x 10-6 = 4.4 x 10-6 (kgm2) I =
-6 = 9.0 x 10-6 (kgm2) Moment of inertia around Z axis IA = IZ1 + m1r12 X 10-6 z r2 Z2 B part r2 = 47(mm) Calculation of weight m2 = d x e x f x Specific gravity m2 = 5 x 10 x 12 x 2.7 x 10-6 = 0.002 (kg) Moment of inertia around Z2 axis IZ2 = {m2 (d2 + e2)/12} x 10-6 IZ2 = {0.002 x (52 + 102)/12} x 10-6 = 0.02 x 10-6 (kgm2) IB = 0.02 x 10-6 + 0.002 x 472 x 10-6 = 4.4 x 10-6 (kgm2) I =
/s 200 200 300 300 5m/s 2m/s 2m/s 400 400 2) Flow rate : 60L/min 5) Flow rate : 60L/min 75 50 25 0 25 50 75 75 50 25 0 25 50 75 -75 -50 -25 0 25 50 75 -75 -50 -25 0 25 50 75 0 0 mm mm ionizer to workpiece [mm] ionizer to workpiece [mm] Installation distance from Installation distance from 200 200 10m/s 400 400 10m/s 5m/s 600 600 5m/s 800 800 2m/s 2m/s 1000 1000 3) Flow rate : 250L/min 6)
C37 20A 3/4 20 D 200 VAC N.O. Stainless steel E 230 VAC 6 D K L N.C. N.O.
Note C6: With 6 One-touch fitting Supply/exhaust block assembly C6 C8 SZ3000-50-2A1 C8: With 8 One-touch fitting For D side End block assembly SZ3000-53-3A SZ3000-53-4A SZ3000-114-3A SZ3000-114-1A VZ1000-11-12 For U side End block assembly 3 Bushing assembly 4 Bushing assembly 5 DIN rail Refer to page 6. 6 Manifold Station Expansion Station expansion is possible at any position. 1.
H G 5H9 depth 5 +0.030 0 33.5 6 5H9 +0.030 0 depth 5 (mm) N G H NN J M Z ZZ Model MXF20-30 4 29 30 4 57 91 91 104 MXF20-50 4 36 45 4 77 113 113 126 MXF20-75 6 40 45 6 125 162 162 175 MXF20-100 6 59 60 6 175 211 211 224 144 Low Profile Slide Table Series MXF Auto Switch Proper Mounting Position (Detection at Stroke End) Reed Auto Switch: D-A90, D-A93, D-A96, D-A90V, D-A93V, D-A96V (mm) B E
H1 Connection thread KN-R02-600 KN-R03-400 KN-R03-600 KN-R04-400 KN-R04-600 KN-R06-600 KN-R06-800 KN-R10-800 6 4 6 4 6 6 8 8 21.1 25.4 23.7 33.6 31.8 40.1 38 52.3 27 32 30 42 40 50 48 63 14 17 17 22 22 27 27 36 R1/4 R3/8 R3/8 R1/2 R1/2 R3/4 R3/4 R1 D H1 A L1 Reference dimension of "R" thread after installation.
Method of Mounting Two Auto Switches at the Stroke End of a Cylinder for Strokes Less Than 20 mm Auto switch model Applicable strokes 15 mm stroke 20 mm stroke 15 6 3 A 6 A 20 0.5 D-M9m(V) D-M9mW(V) D-M9mA(V) 0.5 3 6 B 6 B The correct mounting position of the D-M9 is 3 mm from the end face of the switch holder (dimensions A and B).
= 9.0 x 10-6 (kgm2) Moment of inertia around Z axis = Z1 m1r12 X 10-6 z r2 z2 B part r2 = 47(mm) Calculation of weight m2 = d x e x f x Specific gravity m2 = 5 x 10 x 12 x 2.7 x 10-6 = 0.002 (kg) Moment of inertia around Z2 axis Z2 = {m2 (d2 + e2)/12} x 10-6 Z2 = {0.002 x (52 + 102)/12} x 10-6 = 0.02 x 10-6 (kgm2) B = 0.02 x 10-6 + 0.002 x 472 x 10-6 = 4.4 x 10-6 (kgm2) = 9.0 x 10-6
Note 4) Refer to page 50 for details on enclosure.
VN Rated voltage 1 2 3 4 5 6 7 8 9 Solenoid valve option Nil Standard 100 VAC 50/60 Hz 200 VAC 50/60 Hz 110 VAC 50/60 Hz 220 VAC 50/60 Hz 24 VDC 12 VDC 240 VAC 50/60 Hz 48 VAC 50/60 Hz Other (Please contact SMC separately.) LVC Select an option mark in page 17-3-10 by Applicable Fluids Check List for special fluids outside of the standard.