The INP output signal is turned on from 100[mm] 0.5[mm]=99.5[mm] Table Position[mm] c Area2[mm] j Area1[mm] j b Speed[mm/s] 100 0 AREA Output signal ON OFF INP Output conodition INP Output signal ON In pos[mm] k OFF 100.5 99.5 0 10 20 30 40 50 60 70 80 90 100 Stroke [mm] 27 - Example of step data input (2) Positioning operation Relative a b c d e f g h i j k Step data No.
AREA ON 12 INC ABS() No.1 10 22 AREA k INP(IN )ON INP INP ON :LEFS: 0.50,LEFB: 1 No.1 0+0.5 = 0.5 INP -22- IN INPAREA a b c d e f g h i j k No.0 0[mm] 100[mm] )AREA )AREA AREA1 2) No. 1 2 mm/s mm mm/s2 mm/s2 % % mm/s % mm mm mm 0 ABS 100 100.00 3000 3000 0 0 0 100 80.00 90.00 0.50 100[mm]-0.5[mm]=99.5[mm] INPON [mm] c 100 0 [mm/s] b ON OFF INP INP [mm] k 100.5 99.5 0 10 20 30
The INPoutput signal is turned on from 100[mm] 1[mm]=99 [mm] Area 2[mm] j Area 1[mm] j 100 b Speed[mm/s] 0 ON AREA Output signal OFF (INPOutput condition) INP Output signal ON In pos[mm] k OFF 101 99 0 10 20 30 40 50 60 70 80 90 100 Stroke [mm] -19- Example of step data input (2) < Positioning operation Ralative > a b c d e f g h i j k No.
A + Stroke 20Data Common Dimensions: MVGPM/MVGPL B C DA FA FB G GA GB H HA IA IB Extension locking Retraction locking IC Standard stroke (mm) Bore size (mm) ID IE IF IG IH J K L 20 25 32 9.5 10 9 79.5 10 10 12 32.5 8.5 9 9 26.5 36 40 49 M5 x 0.8 6.5 7 8 21.2 18 21 24 10 12 16 36 42 48 10.5 37 83 93 112 6 7.5 9 24 30 34 M5 M5 M6 32 18 21 24 3 20, 30, 40, 50, 75, 100, 125 150, 175, 200,
B + Stroke L M 0.2 A + Stroke E 25, 28 H thread effective depth C 2-Rc 1/8 2 x 4-OB Counterbore depth RB 2 x 4-OA effective depth RA Y Q F E J I 4-N through M 0.2 D W K B + Stroke L A + Stroke M 0.2 E Bore size (mm) Stroke range (mm) F A H B C D E OA I J K L M N OB Q RA W Y RB 10 10 to 40 69.5 M3 x 0.5 61.5 6 6 29 9 M4 x 0.7 38 5 8 20 3.5 6.5 39.5 7 5 4 16 10 to 60 80.5 M4 x 0.7 70.5 8
19 +0.030 0 depth 2.5 3 20 0.05 Prepared hole diameter 3.3 +0.030 0 15 W 0.50.05 B D 2-M5 x 0.8 Piping port M5 x 0.8 Vacuum suction port 28 27 10 4.5 depth 1.5 3 J 6 +0.030 0 10 9.5 4 Section AA Mounting base side B D +0.030 0 Q QL depth 1.5 3 11-/22-MXP10-20 Without magnet and switch rail Max. 2.5 2-M2 x 0.4 depth 3 8 2.5 4.7 15 15 L 6-M3 x 0.5 depth 4 2-M3 x 0.5 depth 3.5 (mm) G H J K
MXW Order Made Rod Boot Materials Standard Stroke Made to Order Specifications Symbol J K Materials Max. ambient temp. MXP Refer to p.5.4-1 for made to order specifications of series CBA1.
C D E F G J K VHK R-01S-01S 13 1 8 1 4 3 8 1 2 1 8 1 4 3 8 1 2 13 17 19 22 VHK R-02S-02S 17 VHK R-03S-03S 19 VHK R-04S-04S 22 5-8-5
K J H G F E D C B A 475 432 512 472 525 482 562 522 L Booster part no. Tank model VBA2100-03 VBA2200-03 VBA4100-04 VBA4200-04 VBA2100-03 VBA2200-03 VBA4100-04 VBA4200-04 394 Rc 3/8 VBAT20 VBAT20S 305 206 674 180 200 100 400 Rc 1/2 430 Rc 1/2 444 Rc 3/8 VBAT38 VBAT38S 355 256 824 205 250 150 500 Rc 3/4 480 Rc 1/2 14-9-9
K M H Caution D 1. Do not apply the blow gun to flammable, explosive or toxic substances such as gas, fuel gas or refrigerant. Such substances may exude from inside the blow gun.
65 kPa Air/Non-corrosive gas/Non-inflammable gas 12 to 24 VDC 10%, Ripple (p-p) 10% or less (With power supply polarity protection) 15 mA or less Analog output 4 to 20 mADC (Within rated differential pressure range) Allowable load impedance: 500 or less (at 24 VDC) 100 or less (at 12 VDC) Analog output 1 to 5 VDC (Within rated differential pressure range) Output impedance: Approx. 1 k
650) 588-9200-Outside Local Area: (800) 258-9200-www.stevenengineering.com ZSP ISA2 IS ZSE F/ISE --62(L)-(M) 50 60 50 60 ZSE F/ISE --70(L)-(M) 50 60 50 60 ZSM With analog output With auto shift input PF2 (Brown) DC (+) 1.2 k (Brown) DC (+) IF (Gray) Analog output (Gray) Auto shift input 6.8 k 1 k 12VDC to 24VDC 12 VDC to 24 VDC (Black) OUT 1 (Black) OUT 1 Data (White) OUT 2 (White) OUT 2
.-230 Ryan Way, South San Francisco, CA 94080-6370-Main Office: (650) 588-9200-Outside Local Area: (800) 258-9200-www.stevenengineering.com VX3 L L VXA K VN K Conduit terminal: T LVC LVA F (Q) 34 LVH LVD LVQ 25 U LQ R C LVN G1/2 TI/ TIL E B A H D 2-P Port size (S) PA 2-M Thread depth N PAX L PB K N.C.
Note 4) VXP2130: Option C, K, Q, S only. 17-3-44 3 Series VXP21/22/23 Pilot Operated 2 Port Solenoid Valve For Air, Gas, Steam and Oil The VX series will be revised shortly. How to Order (Normally Closed) VXP21 0 VXP22 VXP23 Bracket Nil B None With bracket VC Model Thread connection sizes are available from 02 to 10.
C D E F G J K 2(A) 1(P) 1 8 1 4 3 8 1 2 1 8 1 4 3 8 1 2 VHK-B1A 44.5 14.5 1 27 22 16.5 26 VHK-B1A 44.5 14.5 1 27 22 16.5 26 VHK-B2A 49 17 1 30 25 21.5 31 VHK-B2A 49 17 1 30 25 21.5 31 VHKlR-01S-01S 13 13 17 19 22 VHKlR-02S-02S 17 VHKlR-03S-03S 19 3.6-5 VHKlR-04S-04S 22
Note 3) K (High pressure) and Y (Low wattage) are not available. Electrical entry: L/M plug connector only. With (1) Without (1) Coil voltage 100V AC (50/60Hz) 200V AC (50/60Hz) 110V AC (50/60Hz) 220V AC (50/60Hz) 24V DC 12V DC Others (1) With With (Without light) 1 (1) 2 Note 1) DIN is applicable to VQZ 200 and 300.
Note 2) K(High pressure style) and Y(Low wattage style) are not available. L Latcing double Wiring Electrical Circuit VQ Lead wires are connected to the valve as shown below. Connect them with the power supply.
Symbol Specification DC (1.0W) AC With light and surge voltage suppressor. (3) Standard (1) High pressure (Metal seal only) (1.0W) K (0.5W) Y Low wattage (2) R External pilot Note 1) Option Note 2) Refer to p.2.10-38 for details about external pilot specification. Note 3) Refer to p.2.10-26 for power consumption of AC type.
These vortexes are stable under certain conditions, and their frequency is proportional to the flow velocity, resulting the following formula. f = k x v f: Frequency of vortex v: Flow velocity k: Proportional constant (determined by the vortex generator's dimensions and shape). Therefore, the flow rate can be measured by detecting this frequency.
Load Load Load Load Load 1.2 k N.C. 7.3 k Auto shift input (Yellow) DC (+) Sensor input: +1 to 5 VDC DC () CH1_OUT1 (Black) Pressure is applied to a pressure sensor during the reset operation (a zero point adjustment) as follows: When compound pressure is used: 2.5% F.S. or more. When pressure other than compound pressure is used: 5% F.S. or more.