Unit Series AC10A to 40A Dimensions AC10A/20A A N F E P K C G G IN OUT Q Q F.R.L.
How to OrderValves (With two mounting screws) SY 3 5 1 0 0 1 q w r e t y u i o !0 !1 Base mounted q Series !
Q: Required fluid volume for extension (l/min) Q: Required fluid volume for retraction (l/min) D: Bore size (cm) d: Piston rod diameter (cm) : Piston speed (mm/s) Q = D __ 4 6 _ 1000 Formula (1) Q = (D d) __ 4 6 _ 1000 ..
Standard, Internal pilot specifications External pilot specifications Nil R Internal pilot, Built-in silencer S External pilot, Built-in silencer RS 08 SUNX Corp.: S-LINK system (16 points output) J1 SUNX Corp.: S-LINK system (16 points output) J2 Fuji Electric Co., Ltd.: T Link Mini System K DeviceNet, OMRON Corp.: CompoBus/D Q OMRON Corp.: CompoBus/S (16 points output) R1 OMRON Corp.: CompoBus
Conduit P type Q R S Q R S T Q R Q R 1 2 1/8, 1/4 1/4, 3/8 1/4, 3/8 64.5 67 69.5 69.5 34 45 50 53 52.5 55 57.5 57.5 99.5 102 104.5 104.5 36 47 52 55 68.5 71 73.5 73.5 77 91 96 47.5 50 52.5 52.5 36 47 52 55 23 25.5 28 28 42 53.5 58 61 3 1/2 101.5 23 Series VX2 For Air mm Dimensions/Body Material: Resin Y Y Grommet (with surge voltage suppressor) Grommet W W U U X X U1 U1 X1 X1 z300 Q F D
2.5 V = mm/s V = mm/s V = 100 V = 100 2.0 2.0 Load mass m [kg] Load mass m [kg] 1.5 1.5 1.0 1.0 V = 200 V = 200 0.5 0.5 0.0 0 10 20 30 40 50 60 70 80 90 100 0.0 0 20 40 60 80 100 120 140 L3: Overhang Allowable range: 100 mm L3: Overhang Allowable range: 140 mm Allowable overhang L [mm] Allowable overhang L [mm] MXQ12B-75Z MXQ12B-100, 125Z 2.5 2.5 V = mm/s V = mm/s V = 100 V = 100 2.0 2.0
LVQH50m-1 LVQH60-Vm-1 V S 77 25.5 46 31.5 58 79 12 V S 28.5 57 34.5 69 103 16.5 95 83 (H) V S 28.5 57 34.5 69 108 22 109 95 V S 42 84 48 96 165 25 141 130 42 84 48 96 175 32 150 M N Model J K L M N Q Y LVQH20m-1 LVQH30m-1 LVQH40m-1 LVQH50m-1 LVQH60-Vm-1 V S 21.8 37 5 7 15 21 55 C V S 32 50 6 7 20 25 80 B A V S 37.5 55.5 6 7 20 25 80 D V S 50.2 78.2 10 7 20 38.5 110 60 88 10 7 20 38.5 110
r e w q r e w q VG VP S070 VQ VKF N.C.
EX510-VSS EX510-VSQ L 20 20 L 20 20 2.8 2.8 B C A How to Order EX510-V + 10 S S EX510-VWS EX510-VWQ Output Valve connector L 20 20 L 20 20 S W 1 point 2 points Nil S Q None For SY, SYJ series For VQ, VQZ series Note) Cable length (L) 2.8 2.8 10 30 1 m 3 m B C A + Note) VQ is compatible with the positive common only.
Ultimate pressure P (Pa) is P=Q/S, where the sum of Weight flow rates for outgassing (Qg) and leakage Q(L) is Q(Pam3/s), and the exhaust speed is S(m3/s). The ultimate pressure is measured with Qg, Q(L)S shown as above, and the ultimate pressure of the pump itself. In the case of very low pressure, the exhaust characteristics of the actual pump can be the limiting factor.
Motor type LEYGlMlA Step motor (Servo/24 VDC) Servo motor (24 VDC) 200 mm/s 200 mm/s LEYGlMlB 125 mm/s 200 mm/s LEYGlMlC 75 mm/s 125 mm/s For the specifications below, operate the system at the load mass shown in the graph x 80%.
CDRB2BW40-=S/D CDRB2BW20/30-=S/D CDRB2BW10/15-=S/D A port B port q e t e !2 q o !2 !0 !0 !3 o r !3 w !4 r w !5 !4 !1 !1 y u i Component Parts Description Material Description Material No. No.
119 141 176 18.6 18.6 78.4 78.4 59.8 59.8 24 24 30 30 Conduit terminal Conduit Faston terminal Model Q R U T Q R 99.5 99.5 20 20 196 231 68.5 68.5 47.5 47.5 20 20 VXF25A< VXF26A< Q R U 196 231 23 23 20 20 202 237 U 16 Series VXF2 Dimensions: Flange type VXF25B<<26B<<27B<<28B<<< Grommet Grommet (with surge voltage suppressor) B B A A C C U S S S J J z300 Q R I 1/2 Exhaust port 24.4
This is the same concept representing the easy to run through as sonic conductance C. (3) Formula for flow rate When P2 + 0.1 0.5, choked flow P1 + 0.1 293 Q = 120 x S (P1 + 0.1) (3) 273 + t When P2 + 0.1 > 0.5, subsonic flow P1 + 0.1 293 Q = 240 x S (P2 + 0.1) (P1 P2) (4) 273 + t Conversion with sonic conductance C: S = 5.0 x C(5) Q : Air flow rate[dm3/min(ANR)], dm3 (cubic decimeter
N-04 N-06 L-04 L-06 S-04 S-06 LL-04 LL-06 4 6 N-08 8 N-10 10 N-12 12 4 6 L-08 8 L-10 10 L-12 12 4 6 S-08 8 S-10 10 S-12 12 4 6 LL-08 8 LL-10 10 LL-12 12 Precautions Be sure to read before handling.
The value of the effective area S, like that of sonic conductance C, expresses the ease of flow. (3) Formula for flow rate When P2 + 0.1 0.5, choked flow P1 + 0.1 293 Q = 120 x S (P1 + 0.1) (3) 273 + T When P2 + 0.1 > 0.5, subsonic flow P1 + 0.1 293 Q = 240 x S (P2 + 0.1) (P1 P2) (4) 273 + T Conversion with sonic conductance C: S = 5.0 x C(5) Q : Air flow rate [L/min (ANR)] S : Effective
Dimensions: Without Buffer ZP2-R W-A5 04 06 ZP2-R 20 W-A5 04 06 ZP2-R 30 W-A5 04 06 Width across flat 8 (Hexagon) Width across flat 8 (Hexagon) Width across flat 8 (Hexagon) Width across flat 10 (Hexagon) Q Q Q Width across flat 10 (Hexagon) Width across flat 10 (Hexagon) 4 4 4 4 4 4 21 21 21 M5 x 0.8 M5 x 0.8 M5 x 0.8 P P P (60) (60) (60) S S 31 8 31 S 31 14.9 A 14.9 14.9 R R R 6 6 6 M5
Piston speed (mm/s) Piston speed (mm/s) 1.