SMC Corporation of America
Elite Part Number Search
Search Results "RDLQF32-100-F"

Model N E F LXFHSB _ 25 1 5 1 160 138 60 30 (50) LXFHSB _ 50 176 145 90 60 (50) LXFHSB _. 75 6 201 210 188 90 60 100 LXFHsB _ 100 6 226 235 213 90 60 100 tlsclriD lclltolo 0inffsifls .

safety margin of a=4, which allows for impacts that occur during normal transportation, etc. 2 x F > mg Number of fingers When = 0.2 When = 0.1 mg F = x 4 2 x 0.2 and therefore, mg F > 2 x mg F = x 4 2 x 0.1 = 10 x mg = 20 x mg With "a" representing the extra margin, F is determined by the following formula: 10 x work piece weight 20 x work piece weight Note) Even in cases where the

Bore size Series MB Pressure 0.5 MPa Load factor 50% Stroke 500 mm Series CS1 Pressure 0.5 MPa Load factor 50% Cylinder stroke 1000 mm 40 50 63 80 100 125 140 160 180 200 Average speed Series (mm/s) 1000 Perpendicular, upward actuation 900 800 700 600 500 400 300 200 100 Horizontal actuation VQ7-6-FG-S-A02 0 1000 900 800 700 600 500 400 300 200 100 0 Courtesy of Steven Engineering, Inc.-230

M12 4-pin pre-wired connector (Lead wire length 100 mm) 1 X510 How to Order ZSE30A(F) / ISE30A X510 Output specifications A: NPN open collector 2 outputs B: PNP open collector 2 outputs 42.5 +30 0 100 9.4 15 M12 4 pin connector Option cable ZS-38-4GM12 15.2 29.6 15 14 100 +30 15.2 42.5 0 Connector pin numbers 2 White 1 Brown Pin no.

G3/4, Symbol N: NPT3/4) Tank drain port Rc1/4 (Symbol F: G1/4, Symbol N: NPT1/4) Automatic uid ll system (Standard) Pump capacity Supply side pressure range 29 to 73 psi (0.2 to 0.5 MPa) Supply side uid temperature 41 to 95 F (5 to 35C) Automatic uid ll port Rc1/2 (Symbol F: G1/2, Symbol N: NPT1/2) Overow port Rc1 (Symbol F: G1, Symbol N: NPT1) Fluid contact material Stainless steel, Copper

VQD AXT661-14A-F AXT661-14AN-F AXT661-13A-F AXT661-13AN-F Positive common Single (2-wire) Negative common Positive common Double (latching) (3-wire) Negative common Note) Lead wire length: 300 mm DIN Rail Mounting Each manifold can be mounted on a DIN rail. Order it by indicating an option symbol for DIN rail mounting style, -D.

Table deflection due to yaw moment load Displacement at A when load is applied F Table deflection due to roll moment load Displacement at A when load is applied F A A F A F F MX MTS L L L MY L dimension mm L dimension mm L dimension mm MXY6 MXY6 MXY6 100 100 100 CY MXY8 MXY8 MXY8 100 100 100 MXY12 MXY12 MXY12 140 140 140 MG Courtesy of Steven Engineering, Inc.-230 Ryan Way, South San Francisco

f l h 1 to 50 901 to 1000 32 36 54 23 12.5 25 37.5 50 75 100 125 150 175 200 225 250 75 88 100 113 138 163 188 213 238 263 288 313 40 36 54 23 12.5 25 37.5 50 75 100 125 150 175 200 225 250 75 88 100 113 138 163 188 213 238 263 288 313 50 51 64 25 12.5 25 37.5 50 75 100 125 150 175 200 225 250 87 100 112 125 150 175 200 225 250 275 300 325 63 51 64 25 12.5 25 37.5 50 75 100 125 150 175 200

Pressure range 100 to 100 kPa 30 inHg to 14 psi Scale range (Angular) 230 3-port solenoid valve SYJ500 series Accuracy 3% F.S.

N G 4 6 3 NPT Single phase 100 VAC (50 Hz) 100 to 110 VAC (60 Hz) 10 Note) Hexagonal nipple (R threads) is included as an accessory for the thread symbol F.

Nil V Standard For vacuum X505 Series VPA500 Port size Symbol Port size VPA300 1/8 1/4 3/8 1/2 VPA500 VPA700 01 02 03 04 Bracket Nil F Without bracket With bracket Thread type Type of actuation A B N.C. (Normally closed) N.O. (Normally open) Nil F N T Rc G NPT NPTF Series VPA700 Specifications Fluid Air Type of actuation N.C. or N.O.

2, 4, 6, 8 100 + 30 (n 2) n = 2, 4, 6, 8 110 + 30 (n 2) n = 2, 4, 6, 8 Different sides n 100 + 100 (n 2) n = 2, 4, 6, 8 110 + 100 (n 2) n = 2, 4, 6, 8 100 + 100 (n 2) n = 2, 3, 4 Same side 10 35 55 100 100 110 90 100 110 90 100 110 1 Different sides 2 Same side 35 + 30 (n 2) n = 2, 3, 4 90 + 30 (n 2) n = 2, 4, 6, 8 100 + 30 (n 2) n = 2, 4, 6, 8 110 + 30 (n 2) n = 2, 4, 6, 8 110

I.D. 427 TU0425-100-X3 TU0604-100-X3 TU0805-100-X3 TU1065-100-X3 TU1208-100-X3 4 6 8 10 12 2.5 4 5 6.5 8 285 Max. operating pressure 142 0 4 32 70 105 140 10Clean Series Operating temperature F Only available in 20m rolls.

1.5 M10 x 1.25 0 0.039 32 10 8 16 50 154 16 7 88 M32 x 2 14 24 41 Up to 300 22 21 84.5 46.5 29.8 42.5 21.5 M14 x 1.5 With Rod Boot (mm) l JW JH h B3 e f Bore size (mm) 1 to 50 1 to 50 51 to 100 51 to 100 101 to 150 151 to 200 201 to 300 301 to 400 401 to 500 101 to 150 151 to 200 201 to 300 301 to 400 401 to 500 (Reference) (Reference) 20 25 32 40 30 36 81 93 106 131 156 25 37.5 50 75 100

Model N E F LXFHSB _ 25 1 5 1 160 138 60 30 (50) LXFHSB _ 50 176 145 90 60 (50) LXFHSB _. 75 6 201 210 188 90 60 100 LXFHsB _ 100 6 226 235 213 90 60 100 tlsclriD lclltolo 0inffsifls . $lid8 $crul{ Tyfr LXFHSSfI EE r4iil & *l t30omm) Thread I Deep [ ] shows lhe location at which origin poinl switch operales.

30.5 15 46 12 10 D I M E N S I O N S PA D D I A M E T E R S 10, 13, 16 D I M E N S I O N S PA D D I A M E T E R S 40, 50 F L AT T Y P E F L AT W I T H R I B G:M5x0.8 G:M6x1 Y Model A B C D F L AT T Y P E F L AT W I T H R I B E F E F Flat Flat with rib H:M6x1 H:M8x1 Y ZPT10 U C 10 12 12 17 20 38 25 43 3 1.7 Model A B D E C F G C F G Flat Flat with rib ZPT13 U C 13 15 12 17 20 38 25 43 3 1.8

CJ216 15, 30, 45, 60, 75, 100, 125, 150, 175, 200 16 Air cushion is not available for 21-/22-.

fluid [Ai r] dry air, N2 Page 28 [F 4] [rEF] Reference condition [Anr] Standard condition Page 29 [F 5] [eES] Response time [1.00] 1 second Page 30 [F 6] [dSP] Display mode [inS] Instantaneous flow Page 31 [F 7] [inP] External input [r_ r] Accumulated flow external reset Page 32 [F 8] [drE] Display resolution [1E2] 100-split Page 35 [F 9] [PrS] Auto-preset [oFF] Manual Page 36 [F10] [EEP

Procedure 3: Select Step No.1 You can select anywhere in the row Change of pushing start position Position: 20mm 10mm Change of pushing force Pushing force: 70% 100% No. Move M Speed Position Pushing F TriggLV In pos mm/s mm % % mm 0 Absolute 100 20.00 70 70 25.00 Input 100 Input 10 No. Move M Speed Position Pushing F TriggLV In pos mm/s mm % % mm 0 Absolute 100 10.00 100 70 25.00 No.

T1 = V/a1 = 100/5000 = 0.02 [s], T3 = V/a2 = 100/5000 = 0.02 [s] T2 = = = 1.98 [s] L 0.5 V (T1 + T3) V 200 0.5 100 (0.02 + 0.02) 100 T4 = 0.15 [s] The cycle time can be found as follows.