VXS VXS Model/Valve Specifications, Fluid and Ambient Temperature, VXB Valve Leakage Rate P. 219 VXE How to Order P. 220 VXP Other Special Options P. 221 VXR Construction P. 223 VXH Dimensions VXF Body material: C37, Stainless steel P. 224 VX3 Replacement Parts P. 225 VXA Glossary of Terms P. 226 Solenoid Valve Flow Rate Characteristics P. 227 Flow Rate Characteristics P. 232 Specific
8 N 55 65 75 85 65 P 2 2 2 2 3 U 52 47 47 47 47 Model 5.8 LXSHAB50--X LXSHAB75--X LXSHAB-100--X LXSHAB-125--X LXSHAB-150--X 1 3 10.5 6.5 3.3 6.5 T-slot A dimension T-slot B dimension Note) The overall length of an actuator is Stroke + 155 + Motor dimension.
Cushion needle Q + Stroke PG MY1B P P (MY1HG) MY1H MY1H (Hexagon socket head taper plug) 1 (Hexagon socket head taper plug) QQ SS RR YH MY1B PP QQ RR SS A B H NE NH NF MY1M P P (MY1HG) P (Port) P (Port) PP (Hexagon socket head taper plug) (Hexagon socket head taper plug) G G MY1C TTT UU UU TT A N Z + Stroke MY1H P MY1 HT P (Port) (Hexagon socket head taper plug) MY1 W MY2C P P (Port) (Hexagon
Bellows seal Dust free, P.3 cleaned Single acting (N.C.) XLAV-2 New New Bellows seal Dust free, Solenoid valve P.4 cleaned (With solenoid valve) XLC-2 Double acting Bellows seal Dust free, P.7 Air operated cleaned High-speed operation XLF-2 Single acting (N.C.) O-ring seal P.10 High operating cycles Solenoid valve High-speed operation Single acting (N.C.)
VZ 1 (P) 3 (R) VS VFN Latching type (A) 2 1 (P) 3 (R) Clean Series Clean series is available for both standard and option specifications.
Refer to p.2.9-15 for How to Order for DIN rail.
Unit switching Real-time switch output ( ) For air Hysteresis mode Display Real-time flow rate l/min Accumulated flow l ON YES CFM x 10-2, CFM x 10-1 ft3 x 10-1 OFF P-1 P-2 High flow rate CFM=ft3/min "P" Window comparator mode H : Hysteresis High Flow Rate Type (For Air) H H Display Real-time flow rate l/min Accumulated flow l, m3, m3 x 103 ON NO OFF P-1 P-2 ft3, ft3 x 103, ft3 x 106 CFM
4 How to Order p. 5 Specifications p. 6 Lifting Force p. 7 Air Consumption p. 7 Lifting ForceDistance from the Workpiece p. 8 Construction p. 9 Dimensions: 20 p. 11 Dimensions: 30, 40, 60 p. 13 Dimensions: 80 p. 14 Specific Product Precautions p. 15 3 ZNC Series Model Selection Selection Procedure [Basic type] Step 1 Calculate the lifting force.
500 400 300 200 100 100 500 400 300 200 100 CNA Maximum speed: V (mm/s) Maximum speed: V (mm/s) CNS Graph (6) Graph (3) 0.4 MPa P < 0.5 MPa 0.4 MPa P < 0.5 MPa CLS 3000 3000 CLQ 2000 2000 MLGP 160 140 RLQ 1000 1000 Load weight: m (kg) Load weight: m (kg) 700 800 900 700 800 900 125 MLU 600 600 160 500 500 ML1C 400 400 140 320 125 300 300 D200 200 -X 280 20100 100 100 500 400 300 200 100
Unit switching Real-time switch output ( ) For air Hysteresis mode Display Real-time flow rate l/min Accumulated flow l ON YES CFM x 10-2, CFM x 10-1 ft3 x 10-1 OFF P-1 P-2 High flow rate CFM=ft3/min "P" Window comparator mode H : Hysteresis High Flow Rate Type (For Air) H H Display Real-time flow rate l/min Accumulated flow l, m3, m3 x 103 ON NO OFF P-1 P-2 ft3, ft3 x 103, ft3 x 106 CFM
Note 2) Contact P/A regarding manifold type.
, 11 P.12 to P.15 P.1, 2 P.3, 4 P.5 to 9 P.5 to 9 Adsorption is possible even on a slanted surface.
Annual cost reduction effect [Calculation conditions] Electric power cost: 1.55 yen/m3 [Work model] Working hours: 6000 h (250 days/year) Supply pressure: 1.0 MPa Set pressure: 0.2 MPa Comparison between IR3000-A and the current IR3000 Comparison between IR1000-A/IR2000-A and the current IR1000/IR2000 300 300 Annual cost of power consumed by compressor [1000 yen/year] 250 250 When 20 units
285.5 11 142 191 211 237.5 248 16 192 241 261 287.5 298 12 152 201 221 250 260.5 15 182 231 251 275 285.5 L1 L2 (L3) (L4) (L5) *SG Type: L2=10n+68 (L3)=L3(Std.)+25 (L4)=L4(Std.)+25 (L5)=L5(Std.)+25 11 Series VQ100 Non Plug-in Unit Manifold VV3Q12 Phillips/ordinary round head screw M1.74 L1 5 L2 3 Manual override 2-3.2 Mounting hole 10.8 3.5 8.9 P E 28.7 11 P E 26.5 33.8 44.8 4-M5 (P,E port
B Rc(PT)P Rear cylinder port ??C ??
How to find the flow rate for air/ Flow rate formulas based on the air temperature of 20C For subsonic range where P + 0.1013 < 1.89 (P + 0.1013) Q = 226S P(P + 0.1013) For sonic range where P + 0.1013 1.89 (P + 0.1013) Q = 113S (P + 0.1013) Q : Flow rate [l/min(ANR)] S : Effective area (mm) P : Pressure drop P P (MPa) P: Upstream pressure (MPa) P: Downstream pressure (MPa) How to make
t e l a m e F ) T P ( c R 8 / 3 T P N 8 / 3 ) T P ( c R 3 1 M K h c u o t e n O g n i t t i f g n i t t i f h c u o t e n O 3 6 8 0 1 ) T P ( R , 6 8 / 1 ) T P ( R , 6 4 / 1 ) T P ( R , 6 8 / 3 ) T P ( R , 6 8 / 1 ) T P ( R , 6 4 / 1 3 ) T P ( R , 6 8 / ) T P ( R , 6 4 / 1 ) T P ( R , 6 8 / 3 ) T P ( R , 6 4 / 1 KM11 4 1 M K h c u o t e n O g n i t t i f g n i t
3.13 4.88 3.25 1.63 6.63 800 (8") 1.375 1-14 1.63 9.10 2.000 5/8-18 8.50 3/4 NPT 5.13 3.25 6.44 4.25 1.63 6.75 MX1 Tie rod extended both ends (BA) P + Stroke BB BB AA 4-DD 2-EE KK MM B TH LF + Stroke WF TG E ZJ + Stroke A Bore Size (in) MM KK A AA B BB DD E EE LF+ P+ TG TH WF ZJ+ 500 (5") 1.000 3/4-16 1.13 5.80 1.500 1.81 1/2-20 5.50 1/2 NPT 4.50 2.88 4.10 2.75 1.38 5.88 600 (6") 1.375 1
DP (Port) P (Hexagon socket head taper plug) 2-P (Hexagon socket head taper plug) Cushion needle 2-P (Hexagon socket head taper plug) TT UU TT UU 10 G NW -X A GB MW N Z + Stroke 20WW Data WW P (Hexagon socket head taper plug) P XX XX (Hexagon socket head taper plug) P (Port) P (Port) Centralized piping type VV 2-ZZ (Hexagon socket head taper plug) 2-ZZ (Hexagon socket head taper plug) VV