Description Material Note q No.
Operating Pressure Particulate Generation Grade Classifications 1.2 104 Average particle concentration Particles/ft3 Max. operating pressure MPa Grade 4 1.0 103 0.8 Grade 3 102 0.6 101 Grade 2 100 0.4 Grade 1 10-1 0.2 0 5 0 20 40 60 1 0.1 0.2 Particle size m or less 0.3 0.5 Operating temperature C 15-17-3 4 Series AS-FPQ/FPG How to Order AS 2 1 1 2 F P Q 01 06 Body size 1 2 3 4 M5 standard
Options J: With drain guide M Mounting Dimensions Model Port Size (Nominal size B) A G F E D C B S 1.6 2.0 2.0 2.3 2.3 3.2 3.2 4.5 4.5 R 4.5 5 5 5 5 9 9 10 12 Q 26 28 28 34 34 50 50 60 76 P 70 84 84 100 100 110 110 130 180 O 54 66 66 80 80 88 88 102 136 N 35 40 40 50 50 55 55 65 85 L 9 12 12 14 14 14 14 16 20 K 5 8 8 8 8 10 10 10 15 J 15 20 17 22 19 25 21 30 40 I 56 66 66 80 80 90 90 100
1 q t !2 !5 e !1 No.
OUT1 31 F2 Setting of OUT2 39 F3 Response time setting 45 F10 Selection of sub screen 46 F20 Setting of external input 50 F22 Setting of analogue output 51 F30 Storing of accumulated flow 53 F80 Setting of power saving mode 54 F81 Setting of security code 55 F82 Input of line names 56 F90 Setting of all functions 57 F98 Output check 58 F99 Reset to the default settings 59 Other Settings 60
Actuating force F1 is applied to the top surface of pressure regulation piston r by the pilot pressure (pilot valve assembly q: VY1D B 00-00), and actuating force F2 is applied to the bottom surface of the piston by the port A pressure that pases through the feedback passage. Thus, the port A pressure that corresponds to the pilot pressure is established.
Q=226S P(P2+0.1013) Sonic flow : P1+0.10131.89(P2+0.1013) Q=113S(P1+0.1013) Q : Flow rate [ /min(ANR)] S : Effective area (mm2) P : Pressure differential (P1-P2) [MPa] P1 : Upstream pressure [MPa] P2 : Downstream pressure [MPa] When the air temperature is different, multiply the flow rate calculated with the above formula by the following coefficient for compensation. -20 1.08 -10 0 10 30
Mounting Amplifier Single mounting Ho.izontally Q r A vertica,,y F Multiple mounting + -f -t] + -ti n n n h n t t t l t t l t I i u ! L l !
SX90/090 Series CAT.ES70-59A Low Profile 2/3-Port Solenoid Valve SX90/090 Series How to Order SX9 1 5 G 2-port valve q SX090 5 G 3-port valve w e r q Type of actuation w Power-saving circuit e Rated voltage r Electrical entry 1 Normally closed 2 Universal Nil Without power-saving circuit Y1 With power-saving circuit 5 24 VDC 6 12 VDC G Grommet (Lead wire length: 300 mm) Specifications Model
105 138 M 6 8 PB 60 100 MM M4 x 0.7 M6 x 1 PA 25 50 LW 69 115 P M5 x 0.8 Rc 1/8 LD 5.6 8.6 Model CYP15 CYP32 Note 1) These dimension drawings indicate the case of piping port location Nil.
No gauge port No pressure gauge No code 0 V3 L 1 H 2 4 Ports -30 in.Hg to 30 psig -30 in.Hg to 60 psig -30 in.Hg to 100 psig -30 in.Hg to 160 psig 0 to 200 psig 0 to 400 psig -0.1 to 0.2 MPa -0.1 to 0.4 MPa -0.1 to 0.7 MPa -0.1 to 1.1 MPa 0 to 1.4 MPa 0 to 3 MPa Code Ports 2 ports 3 ports 2PW 3PW Porting Configuration e w q w q 1) Other range available.
1 Multistage Ejector ZL112A Series 1 DC type only RoHS How to Order ZL112A Without valve M Z D A M L ZL112A K1 5 With valve q t o u i w e r y !0 !1 !
RoHS Desktop Duster Box ZVB Series IZS How to Order IZN A S B ZVB 20 IZF ZVB ZVB q w e r t IZD IZE w Additional air blow B With additional air blow e Photoelectric sensor Nil None Note 1) S With photoelectric sensor Note 2) r AC adapter q Size Note 1) It is necessary to connect an external switch to the external input terminal on the back side of the product.
Actuating force F1 is applied to the top surface of pressure regulation piston r by the pilot pressure (pilot valve assembly q: VY1D B 00-00), and actuating force F2 is applied to the bottom surface of the piston by the port A pressure that pases through the feedback passage. Thus, the port A pressure that corresponds to the pilot pressure is established.
TB W Counter bore depth TC Inner cover holding screw Note) (mm) E 4 6 J M6 x 1 M10 x 1.5 LD 5.6 9.2 L 67 90 K 21 20 JK 10 12 HP 44 73.5 HL 37.6 63.3 HI 23 39 HA 23 39 H 45 75 G 10 9 F 12.5 25 EK 4 6 ED 9.5 13 C 6.4 10.2 B 10.5 16 A 8 12 Model CYV15 CYV32 +0.030 H9 0 +0.030 H9 0 Z 132 165 Y 2.5 3.5 W 69 115 TC 0.5 0.5 TB 15 22 TA 20 22.5 T 30 34 R 45 79.5 QW 48 83 Q 112 147 PC 10 12 PB 60
Mounting Amplifier Single mounting Ho.izontally Q r A vertica,,y F Multiple mounting + -f -t] + -ti n n n h n t t t l t t l t I i u ! L l !
70 12 1.6 Working Principle When the input signal rises, the air supply solenoid valve q turns ON, and the exhaust solenoid valve w turns OFF.
Q=240S P(P1+0.100) Subsonic flow when (P2+0.100)/ (P1+0.100)>0.5 Sonic flow when (P2+0.100)/ (P1+0.100)0.5 Q: Air flow ratedm 3 /min(ANR) Q=120S (P1+0.100) 2 ) P: Differential pressure P1P2MPa P1: Upstream pressureMPa P2: Downstream pressureMPa Correction for different air temperatures Multiply the flow rate calculated with the about formula by a coefficient from the table below.
IC 70 12 1.6 ITVH ITVH ITVX Working Principle PVQ When the input signal rises, the air supply solenoid valve q turns ON, and the exhaust solenoid valve w turns OFF.