2 Port for Steam Dimensions (mm) 1in = 25.4mm Grommet: G Conduit: C Q Approx. 300 F D Approx. 280 D Q F C G (PF) 1/2 C R R E E B A H 2-P Port size 2-P A B H 2-M Port size 2-M Thread depth N L L K K Conduit terminal: T F (Q) 34 25 U R C G (PF) 1/2 E B A H D 2-P Port size (S) 2-M L K N.C.
IR How to Order VEX VVEXB 5 01 1 AMR Pilot type 01 Port size Body size ITV Thread type Nil F N T Rc G NPT NPTF 8 1 IC Internal pilot Common external pilot 1 2 Valve stations VBA 2 2 stations VE 10 10 stations VY1 VVEX2 5 02 1 G Pilot type 02 Port size Body size Thread type PPA Nil F N T Rc G NPT NPTF 4 1 AL Internal pilot Common external pilot 1 2 Valve stations 2 2 stations 8 8 stations
Rear plate N C D T A 2 x P (Rc, NPT, G) Q B E W S U M K L R I AP AB J AA A V Y + Stroke X Z + Stroke 8 x AF AC AD AE WH (Max.)
2 Port for Oil Dimensions (mm) (N.C.) 1in = 25.4mm Grommet: G Conduit: C Approx. 300 V D Approx. 280 D F Approx. 300 F Q Q Class H coil Broken line section C C G 1/2 R R E E A H A H B B 2-P Port size 2-P Port size 2-M, thread depth N 2-M, thread depth N L L K K DIN terminal: D Conduit terminal: T Cable 6.8 to 10 F S Q 27.5 (Q) D F 25 C R C (44) R R E G 1/2 E G 1/2 A H D (S) B B A H 2-P Port
Rc 1/8 Body side VZA412-P-01 M5 x 0.8 0.53 0.17 2.2 0.49 0.14 2.0 N.C. Rc 1/8 Body side VZA422-P-01 M5 x 0.8 0.53 0.17 2.2 0.49 0.17 2.0 N.O. Rc 1/8 Body side VZA414-1P-01 VZA414-1P-02 VZA414-2P-01 VZA414-2P-02 VZA424-1P-01 VZA424-1P-02 VZA424-2P-01 VZA424-2P-02 Rc 1/8 Rc 1/4 Rc 1/8 Rc 1/4 Rc 1/8 Rc 1/4 Rc 1/8 Rc 1/4 M5 x 0.8 0.49 0.11 2.2 0.57 0.19 2.4 N.C.
Stroke Against Lateral Load D 17 24 27 29 0.7 W W W 500 82 103 116 127 0.3 Bushing (Bearing) fR U 62 79 89 97 0.5 Lateral load applied to rod end (fR) N 100 52 66 75 81 0.7 50 33 43 49 53 0.3 10 23 31 36 39 T 0.5 REC40 REC32 REC25 REC20 5 18 25 29 31 0.7 2 Rod side flange style: F Head side flange style: G 182 167 148 118 Foot style: L 0.3 1 L 140 128 114 90 0.5 0.5 W W W F REA 117 108 95
Stroke Against Lateral Load D 17 24 27 29 0.7 W W W 500 82 103 116 127 0.3 Bushing (Bearing) fR U 62 79 89 97 0.5 Lateral load applied to rod end (fR) N 100 52 66 75 81 0.7 50 33 43 49 53 0.3 10 23 31 36 39 T 0.5 REC40 REC32 REC25 REC20 5 18 25 29 31 0.7 2 Rod side flange style: F Head side flange style: G 182 167 148 118 Foot style: L 0.3 1 L 140 128 114 90 0.5 0.5 W W W F REA 117 108 95
Stroke Against Lateral Load D 17 24 27 29 0.7 W W W 500 82 103 116 127 0.3 Bushing (Bearing) fR U 62 79 89 97 0.5 Lateral load applied to rod end (fR) N 100 52 66 75 81 0.7 50 33 43 49 53 0.3 10 23 31 36 39 T 0.5 REC40 REC32 REC25 REC20 5 18 25 29 31 0.7 2 Rod side flange style: F Head side flange style: G 182 167 148 118 Foot style: L 0.3 1 L 140 128 114 90 0.5 0.5 W W W F REA 117 108 95
circuit EXH w Exhaust solenoid valve q Air supply solenoid valve u Pressure sensor r Diaphragm EXH e Pilot chamber y Exhaust valve u Pressure sensor t Supply valve r Diaphragm e Pilot chamber EXH t Supply valve SUP SUP OUT OUT EXH ITV1000 ITV2000, 3000 Block diagram Supply pressure q Air supply solenoid valve Input signal Output pressure r Diaphragm i Control circuit Pilot valve w Exhaust
LVC DIN terminal: D Conduit terminal: T Cable 6 to 12 LVA F S Q 27.5 34 F (Q) LVH LVD LVQ LQ R C U 25 LVN C (44) R E R TI/ TIL G1/2 E PA G1/2 A H D (S) B B A H D 2-P Port size 2-P Port size PAX 2-M Thread depth N 2-M Thread depth N PB L L K K N.C.
Pressure release valve e Selector valve r Valve for vacuum (P)1 Vacuum pump Vacuum pad 2(A) P1 (P)1 2(A) (P)1 2(A) (P)1 2(A) (R)3 X (R)3 Plug P2 (R)3 (R)3 Vacuum releasing air Atmospheric pressure or micro pressure t Divider valve u Double-acting cylinder drive y Single-acting cylinder drive i Double-acting cylinder drive (Exhaust center) Tank Tank N.O.
-08 AS2200-02 100 200 50 100 0 0 SV100 ANA1 -C08 T0604 SV200 ANA1 -C10 T0806 200 CM2 32 400 MB 50 300 150 Stroke (mm) Stroke (mm) AS2201F -01-06 AS2200-01 AS3201F -02-08 AS3000-02 200 100 100 50 0 0 200 CM2 40 400 MB 63 150 300 Stroke (mm) Stroke (mm) AS2201F -02-06 AS2200-02 100 AS4000-03 200 50 100 0 0 Solenoid valve Silencer Tubing Speed controller Solenoid valve Silencer Tubing Speed
VE VY The oil that has been pumped from the tank passes through felt q where it is filtered, and is fed into the case through nozzle w. When the volume of oil in the case reaches a certain level, float e ascends, valve t descends via lever r, nozzle w closes, and the feeding of oil stops, thus completing the oil feeding process.
3 Gasket M-5G2 T Electroless nickel plated KK3/4/6
Fig. 10 Control wiring, ND9000F/P, Ex ia for Zone 0 / Division 1 7 ND90 71 en 19 N O I T A C O L S U O D R A Z A H N O I T A C O L S U O D R A Z A H N O N ND9000F/P Valve Positioner FISCO ic Power Supply / Barrier Fieldbus Input X102 Ui (Vmax) = 32 V Ii (Imax) = 380 mA Pi (Pmax) = 5.32 W Li = 10 uH Ci = 5 nF + 1 Uo (Voc) 32 V Io (Isc) 380 mA Po 5.32 W 2 NOTE 1 NOTE 1 NOTE 1 3 SHD Earthing
Type Borc D Type S T y p e ' DC Type ' -T rtpe A B , " , ,.
S : : P R 20 20 stations A A + + + + P, R port thread type R port A port size A port M5 x 0.8, C4 P port R P 1/8 M5 M5 x 0.8 P port Nil Rc A 1/8 1/8 C4 4 one-touch fitting F G R port N3 5/32" one-touch fitting N A port M5 x 0.8, C4 NPT 1/8 T NPTF Note) For more than 8 stations, supply/exhaust air to/from both sides of P port and R port.
Set pressure max. 0.5MPa 3 P P Approx. 133 Set pressure max. 0.9MPa 5 P P Connection Rc(PT) 1/4 02 P P eL-bracket rT-bracket Connection Rc(PT) 3/8 03 P P Connection Rc(PT) 1/2 04 P Bracket B p p Accessories 178 Bracket C p p Connection NPT1/4 N02 p p qAF3000 wAFM3000 eITV2000 Connection NPT3/8 N03 p p Connection NPT1/2 N04 p Connection G(PF) 1/4 F02 p p REGULATOR Connection G(PF) 3/8 F03
HRR050-A-20/40.9-10 HRR Series HRX-OM-X071 Contents 9.3.2 HRR050-W-20/40. 9-10 9.4 Cooling capacity . 9-11 9.4.1 HRR050-A-20. 9-11 9.4.2 HRR050-W-20. 9-11 9.4.3 HRR050-A-40. 9-12 9.4.4 HRR050-W-40. 9-12 9.5 Heating capacity . 9-13 9.5.1 HRR050-A/W-20. 9-13 9.5.2 HRR050-A/W-40. 9-13 9.6 Pump capacity. 9-14 9.6.1 HRR050-A/W-20. 9-14 9.6.2 HRR050-A/W-40. 9-14 9.7 Required facility water flow
(t) is given for 10 l tank by the graph. Then, the charging time (T) for a 100 l tank, T = t x = 49 x = 49 (s). V 10 10 10 T = t x = 110 x = 110 (s). V 10 10 10 T = t x = 2.4 x = 24 (s).