surfaces (n = 2, 4, 6, 8, ) Note 1) 20 + 50 (n 2) 2 (n = 4, 8, 12, 16, ) Note 2) 90 + 50 (n 4) 2 100 + 50 (n 4) 2 (n = 4, 8, 12, 16, ) Note 2) 110 + 50 (n 4) 2 (n = 4, 8, 12, 16, ) Note 2) D-B59W n Same surface 75 + 50 (n 2) (n = 2, 3, 4, ) 90 + 50 (n 2) (n = 2, 4, 6, 8, ) Note 1) 100 + 50 (n 2) (n = 2, 4, 6, 8, ) Note 1) 110 + 50 (n 2) (n = 2, 4, 6, 8, ) Note 1) 1 15 90 100 110
8 150 5 In0tilI.5(B) .44 0.50 3-50 250 ?84.000 775 2.0 3.8 250 5 0tnt.0(8) .50 1.00 12.130 650 6n,000 t,000 3.0 6.0 300 l 0 tR0IIt .0(8) .50 1.00 3-50 650 6n.000 1.000 3.0 6.0 450 t0 0tltl.l5xl .63 1.00 l2-130 r,700 670,000 ?.
) 20 75 90 100 110 (Different surfaces) 100 + 50 (n 4) 2 (n = 4, 8, 12, 16, ) Note 2) 110 + 50 (n 4) 2 (n = 4, 8, 12, 16, ) Note 2) (n = 2, 4, 6, 8, ) Note 1) 20 + 50 (n 2) 2 90 + 50 (n = 4, 8, 12, 16, ) Note 2) (n 4) 2 D-B59W 75 + 50 (n 2) (n = 2, 3, 4, ) 90 + 50 (n 2) (n = 2, 4, 6, 8, ) Note 1) 100 + 50 (n 2) (n = 2, 4, 6, 8, ) Note 1) 110 + 50 (n 2) (n = 2, 4, 6, 8, ) Note 1) (
50 60 50 7 15 7 (2) (a) No.
VBA20A VBA40A VBA22A VBA42A Note) When option G (pressure gauge) is selected VBAT38A-Q Material: Carbon steel Connected to VBA20A, 40A Connected to VBA22A, 42A Tank IN port 3/4 Safety valve port 3/8 Booster regulator IN port Booster regulator IN port C C Spare port 2 x 1/2 EXH: C EXH: C 250 (A) (A) D (B) (B) OUT OUT Tank OUT port 3/4 355 256 256 205 4 x 13 4 x 13 50 50 Drain port 1/4 150
I l 50i 70 , iiFl.r* 0 q . . , . 50 6o ' 3 0 3o , , , . 3 0 , : LXPB5SA 40 40 '" .,1 Slide i Screw \ I i LXPB5SB 2D 2A LXSH2BC 100 50 220 High rigidity linear guide Ball LXSH2BD 100 50 90 Screw LXSH5BC 1 0 0 50 1 6 0 LXSH5BD 1 0 0 50 70 LXSH2SA 90 40 60 Slide LXSH2SB 45 20 30 Screw LXSHSSA 60 20 40 LXSH5SB 30 1 0 20 , \ | '-t 'oo"ot| I PLc I ll'i;!:-,?
I l 50i 70 , iiFl.r* 0 q . . , . 50 6o ' 3 0 3o , , , . 3 0 , : LXPB5SA 40 40 '" .,1 i Slide Screw \ I i LXPB5SB 2D 2A LXSH2BC 100 50 220 High rigidity linear guide Ball LXSH2BD 100 50 90 Screw LXSH5BC 1 0 0 50 1 6 0 LXSH5BD 1 0 0 50 70 LXSH2SA 90 40 60 Slide LXSH2SB 45 20 30 Screw LXSHSSA 60 20 40 LXSH5SB 30 1 0 20 , \ | '-t 'oo"ot| I PLc I ll'i;!:-,?
Refer to back page 50 for Safety Instructions. LQ1 LQ3 Tubing O.D. Body class Metric sizes Inch sizes LVN LVN 4 6 8 10 12 1/8" 3/16" 1/4" 3/8" 1/2" Piping 2 3 4 LQHB Caution TL TIL 1. Connect tubing with special tools. Note) Refer to page 910 for information on changing tubing sizes.
50 5000 mm 3 M With lead wire [115 VAC 50/60 Hz] M plug MN Without lead wire 220 VAC 50/60 Hz connector 4 MO Without connector [230 VAC 50/60 Hz] W0 Without connector cable M8 connector For type W, DC voltage is only available.
Normal output Reversed output -100No.PF-OMA1011-A Specifications Model PFG20# series PF2A5 PF3W5 PF2D5 Applicable flow sensor 10 50 11 21 51 04 20 40 11 25 04 20 40 Rated flow range 1 to 10 5 to 50 10 to 100 20 to 200 50 to 500 0.5 to 4 2 to 16 5 to 40 10 to 100 50 to 250 0.4 to 4 1.8 to 20 4 to 40 L/min L/min L/min L/min L/min L/min L/min L/min L/min L/min L/min L/min L/min 0.35 to 1.7 to
Controller version (the time in the bracket indicates the schedule for switching) Function Ver 2.0 Ver2.1 to Ver2.4 Ver2.5 (August 2014) (Sept. 2015) (June 2020) Corresponding card motor 6 types LAT3M-50 LAT3M-50 LAT3F-50 LAT3F-50 Alarm history count 4 points 4 points 20 points Communication speed 19200bps 2,400bps 2,400bps 9,600bps 9,600bps 19,200bps 19,200bps 38,400bps 38,400bps 57,600bps
(n-2) Same 5s+50(n-2) n=1,2,3,4,, 75+so(n-2) n=2,4,6,8.., B0+50(n-2) 1=2,4,6,4... s0+50(n-2) n=2.4.6.8... with 1 1 0 80 90 40 rr3.5 49 55.5 42 50 B I (O) 10(6.5 7 1 . 5 84.1 92.5 't!
(n-2) Same 5s+50(n-2) n=1,2,3,4,, 75+so(n-2) n=2,4,6,8.., B0+50(n-2) 1=2,4,6,4... s0+50(n-2) n=2.4.6.8... with 1 1 0 80 90 40 rr3.5 49 55.5 42 50 B I (O) 10(6.5 7 1 . 5 84.1 92.5 't!
Acid consumption [pH4.8](mgCaCO3/L) 100 or less 50 or less 50 or less Total hardness (mgCaCO3/L) 200 or less 70 or less 70 or less Calcium hardness (mgCaCO3/L) 150 or less 50 or less 50 or less Ionic state silica (mgSiO2/L) 50 or less 30 or less 30 or less Iron (mg/L) 1.0 or less 0.3 or less 1.0 or less Copper (mg/L) 0.3 or less 0.1 or less 1.0 or less Reference items Sulfide ions (mg/L)
100W DC5V,2mA IDF100150F-W 3.7 3 4 IDX-OM-Z004 4 4 4.1 5 310 4.2 4.2.1 (1) (2) JRA-GL-02-1994 2 4.1 IDF100150F-W 4 1 IDX-OM-Z004 4 2 pH [25] 6.58.2 6.08.0 6.88.0 (mS/m) [25] 80 30 40 (mg/L) 200 50 50 (mg/L) 200 50 50 [pH4.8](mgCaCO3/L) 100 50 50 (mgCaCO3/L) 200 70 70 (mgCaCO3/L) 150 50 50 (mgSiO2/L) 50 30 30 (mg/L) 1.0 0.3 1.0 (mg/L) 0.3 0.1 1.0 (mg/L)
/60Hz) 200V AC (50/60Hz) 110V AC (50/60Hz) 220V AC (50/60Hz) 24V DC 12V DC Other (1) : Option Note 1) Except for large flow capacity style.
50 or less 50 or less Total hardness (mgCaCO3/L) 200 or less 70 or less 70 or less Calcium hardness (mgCaCO3/L) 150 or less 50 or less 50 or less Ion state silica (mgSiO2/L) 50 or less 30 or less 30 or less Iron(mg/L) 1.0 or less 0.3 or less 1.0 or less Copper (mg/L) 0.3 or less 0.1 or less 1.0 or less Reference items Sulfide ion (mg/L) Should not be Should not be Should not be inspected
For a 10 orifice (VXS23/Port size 1/4), P 0.05 MPa The optimum size for a pressure differential of P 0.2 MPa and a flow of 50 L/min will be the VXS23 (10 orifice, port size 3/8). 500 400 VXS26 25 Cv = 12 300 VXS25 20 Cv = 9.2 200 VXS24 15 Cv = 5.3 Flow rate Q [L/min] 100 VXS23 Port size 3/8 10 Cv = 2.8 VXS23 Port size 1/4 10 Cv = 2.4 50 40 30 25 20 10 0.01 0.02 0.03 0.04 0.05 0.1 0.2 0.3
MPa Supply pressure: 0.4 MPa 100 90 100 90 ZQ Vacuum pressure (kPa) Vacuum pressure (kPa) 80 80 70 70 ZF 60 60 50 50 ZP 40 40 30 30 ZCU 20 20 10 10 AMJ 0 0 10 20 30 40 50 60 70 80 90 100 110 120 20 60 100 140 180 220 260 300 130 Suction flow rate (/min(ANR)) Suction flow rate (/min(ANR)) Misc.