VBAT10A1 S Note) A safety valve port is provided only when option R or S is selected.
1 s/2 s Output protection Output mode Response time Note 6) Voltage output Current output Short circuit protection Flow rate Select from hysteresis mode, window comparator mode, accumulated output mode, or accumulated pulse output mode. 0.5 s/1 s/2 s (linked with the switch output) Voltage output: 1 to 5 V Output impedance: 1 k7 Analog output Output current: 4 to 20 mA Max. load impedance
VQ7-8-FG-S-A03 VQ7-6-FG-S-A03 VQ7-8-FG-S-A04 VQ7-6-FG-S-RA02 VQ7-8-FG-S-RA03 VQ7-6-FG-S-RA03 VQ7-8-FG-S-RA04 3-10-5 For details about certified products conforming to international standards, visit us at www.smcworld.com.
Cushion adjustment (relief adjustment) labor is the same as general purpose cylinder adjustment (cushion needle adjustment). 200 150 Cushioning quality (RHCF40-500, load weight 5kg, supply pressure 0.5MPa, horizontal drive) High power cylinder 500 General purpose cylinder Cushioning capacity [J] 100 1000mm/s 3000mm/s 2000mm/s 500mm/s 400 Stroke [mm] 300 50 200 100 50mm/s 20 25 32 40 50 63
1 digit (Ambient temperature of 25 3C) Repeatability 0.2% F .S. 1 digit Analog output accuracy 2.5% F .S.
B C E E H L1 L1 L2 L2 M Min. port size LQ3E2A-S 1/4" 4 6 17 16 16 34.5 33.5 39.5 38.5 20 3.9 LQ3E3A-S 3/8" 5 9 22.5 19.5 21 47.5 44.5 49.5 46.5 25 6.3 LQ3E4A-S 1/2" 6 10 24.5 22.5 24 52.5 50.5 54.5 52.5 29 9.5 LQ3E5A-S 3/4" 7 14 26.5 24 32 64 61.5 66 63.5 37 15.8 LQ3E6A-S 1" 8 18 30 26 41 78 74 80 76 49 22 LQ3E7A-S 1 1/4" 9 22 35 35 50 92.5 92.5 97.5 97.5 64 28 M H Class 7 929 A LQ3 Series
WA WB View E NN F GB GC GA Mounting nut Mounting nut Relief port M5 x 0.8 Rod end nut MM NN F Piping port 2 x M5 x 0.8 Cover surface D LY LB LH LT LZ LX LT S + Stroke H NA A NB Y X Y X 4 x LC Mounting hole LS + Stroke Z + Stroke WW C B 0 0.3 B 0 0.3 Drawing of view (E) (mm) Z S WW WB WA NB NA NN MM H GB GA F D C B A Y X 91.5 92.5 LS LZ 42 42 25 25 LY LX 33 33 2.3 2.3 LT 14 14 LH 5.5 5.5 LC
Maximum piston speed: 1000 mm/s It can be used at 50 to 1000 mm/s provided that it is within the allowable kinetic energy range.
Maximum piston speed: 500 mm/s It can be used at 50 to 500 mm/s provided that it is within the allowable kinetic energy range.
Move the actuator from the origin to a point 100 mm away at 100 mm/s. (Step Data No.1 is used for this operation). From the 100 mm point, the actuator must start a pushing operation of 10 mm/s speed and 50% or less force. (the pushing distance is up to 5 mm).
Graph 1 10 500st 600st 700st 400st 4 5 300st 3 200st 2 Load movement time: t(s) 100st [Example] 1 Example) 0.4 0.5 0.3 0.2 300 0.1 V' 100 200 1000 400 500 Maximum speed: V(mm/s) V W Step 2 Find the cylinder bore size.
/4 115/1/60 1 NPT 232 R134a 17.7 21.3 19.9 3.3 8.3 82 PDE30-S 137 4.4 5.7 1 230/1/60 1 NPT 174 R134a 21.3 26.4 25 3.1 10.2 126 PDE40-S 137 5.1 6.5 1 1/4 230/1/60 1 1/4 NPT 174 R134a 23.2 32.3 31.7 3.5 11.4 168 PDE50-S 168 6.3 8.2 1 1/2 230/1/60 1 1/2 NPT 174 R134a 23.2 32.3 31.7 3.5 11.4 207 PDE60-S 200 7.2 10.4 1 3/4 230/1/60 2 NPT 174 R134a 23.2 32.3 31.7 3.5 11.4 227 PDE75-S 235 7.5 10.7
SU) S AA YB effective depth YC YA 2 View With shock absorber MSQBR (mm) FU Size 70 100 200 55.4 55.5 79.5 (Max. approx.
(a) (b) Actuator effective torque S . Ta (S is 10 times or more) Allowable moment (Nm) Allowable thrust load (N) Allowable radial load (N) Accelerating torque calculation (a) (b) Size .
ERROR Wiring Simplifying System Send unit: SD-120 No. of output points, 16 points Remote I/O (RIO) System No. of output points, 16 points S-LINK System S-LINK Controller: SL-CU1 No. of output points, 16 points (Type SJ1) No. of output points, 8 points (Type SJ2) a) Type T branching multi-drop wiring (S-LINK System) b) Crossover wiring (Sensor Link System) Power supply { 24 V 0 V Transmission
+ Stroke H H + Stroke ZZ + 2 x Stroke Air Cushion: C85WE Bore Stroke C Without magnet, Built-in magnet Cushion Valve WA WA WBWB G1 G1 8 8 to 25 HR N1 N1 Rail mounting type (A) Band mounting type (B) or non-magnet S + Stroke ZZ + 2 x Stroke Wh KK With rod boot C e K 9 9 I f AM h (mm) ND h8 BE KK EE N1 G1 KW NA D F KV HR K ZZ Bore C AM WA SW S WB H WH 12 10 M4 x 0.7 M5 x 0.8 M12 x 1.25 4 16.7
This is the same concept representing the easy to run through as sonic conductance C (effective area). (3) Formula of 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 (
. 1 ) 5 . 5 3 ( 6 1 . 1 ) 5 . 9 2 ( 1 9 . 0 ) 3 2 ( 8 2 . 0 ) 7 ( 4 / 1 S 5 3 1 1 H R K 1 1 / 6 1 ) 6 4 . 7 1 ( 0 8 . 0 ) 3 . 0 2 ( 5 . 2 3 8 / 3 S 6 3 1 1 H R K 2 2 . 1 ) 1 3 ( 6 9 . 0 ) 5 . 4 2 ( 5 . 0 3 8 / 3 2 / 1 S 7 3 1 1 H R K 7/8 ) 3 2 . 2 2 ( 4 1 . 1 ) 9 2 ( 3 8 . 0 ) 1 2 ( 5 . 7 4 5 3 . 0 ) 9 ( 4 4 . 1 ) 5 . 6 3 ( 0 2 . 1 ) 5 . 0 3 ( 4 9 . 0 ) 4 2 ( 4 / 1 S 5 3 3 1 H R K 7/8 )
Z T Nil S Z R U Power saving circuit is not available for W type.