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dimensions Note 2) Reference dimensions of threads after installation 558 Speed Controller with One-touch Fitting For M5, 10-32UNF AS Series Dimensions/ Universal type Seal method: Gasket seal For M5, 10-32UNF Applicable tubing O.D. d D3 D1 AS-F AS-F TMH L4 L3 M ASD AS D2 AS-FE L5 A KE AS-FG H T AS-FP L1 L2 AS-FM AS-D Metric Size [mm] AS-T Model d T H D1 D2 D3 L1 L2 L3 L4 L5 Note 1) A Note

20 L2 (mm) Mer m Rolling Yawing 10 L2 0 1 2 3 4 5 Mer Transfer load m (kg) m 30 a = 1000 a = 500 20 L3 (mm) a = 2000 L3 10 m Mey a 0 1 2 3 4 5 Transfer load m (kg) Refer to page 145 for deflection data. 88 Standard Motor/Horizontal Mount Specification Series LJ1S10 Dimensions/LJ1S101SC Scale: 15% 10 6 Work piece mounting reference plane 80 5H10 depth 8 8-M5 x 0.8 thread depth 8 45 20 Cable

152 17 6 198 187.5 168 15 7 210.5 200 184 13.5 9 248 237.5 216 16 10 260.5 250 232 14 (mm) (mm) 17 373 362.5 344 14.5 Stations L1 L2 L3 L4 11 273 262.5 248 12.5 12 298 287.5 264 17 13 310.5 300 280 15.5 14 323 312.5 296 13.5 15 335.5 325 312 12 16 360.5 350 328 16.5 18 385.5 375 360 13 19 398 387.5 376 11 20 423 412.5 392 15.5 8 210.5 200 184 13.5 Stations L1 L2 L3 L4 10 248 237.5 216 16

Station 2 52 43 Station 20 340 331 Station n L1 L2 3 68 59 4 84 75 5 100 91 6 116 107 7 132 123 8 148 139 9 164 155 10 180 171 11 196 187 12 212 203 13 228 219 14 244 235 15 260 251 16 276 267 17 292 283 18 308 299 19 324 315 43 Series SYJ5000 Flat Ribbon Cable Manifold [ ]: AC SS5YJ5-20PStations -00 For (Built-in one-touch fitting) N3 N7 C4 C6 Manual override L1 L2 M5 x 0.8 (A, B port)

Y: 4.5 to 7 D: 6 to 8 78.3 2(A) 2(A) 63 19 (A port) Rc1/2 Stations L L1 L2 Formula L1 = 41 x n + 33 L2 = 41 x n + 17 9 402 386 10 443 427 2 115 99 3 156 140 4 197 181 5 238 222 6 279 263 7 320 304 8 361 345 : With light/surge voltage suppressor ( ): Dimensions for external pilot 4-8-15

Note 1) P Model Weight (g) W L1 L2 P M1 M2 (mm) 4 6 8 10 12 KQGU04-00 KQGU06-00 KQGU08-00 KQGU10-00 KQGU12-00 4.2 10.6 21.2 41 16.8 10.6 18 17 35 L2 M1 10.6 13 26 42.9 17 13 18.8 17.8 54 L1 25.6 15 30 47.7 18.7 15 20.9 19.9 75 18 40 36 52.8 20.5 18 23 22 114 M2 N 57.4 20.8 41.6 57.8 21.9 21 24.8 23.8 175 Note 1) D is maximum diameter.

200 200 200 200 L2 [mm] L2 [mm] L2 [mm] L2 [mm] m Y 100 100 100 100 0 0 2 4 6 8 10 0 0 2 4 6 8 10 0 0 2 4 6 8 10 0 0 2 4 6 8 10 Work load [kg] Work load [kg] Work load [kg] Work load [kg] 500 500 500 500 400 400 400 400 m L3 [mm] L3 [mm] L3 [mm] L3 [mm] 300 300 300 300 L3 Z 200 200 200 200 100 100 100 100 0 0 0 0 0 2 4 6 8 10 0 2 4 6 8 10 0 2 4 6 8 10 0 2 4 6 8 10 Work load [kg] Work load

6 11.5 Note 1) Reference dimensions Note 2) Reference dimensions of threads after installation 673 AS-FG Series For R, NPT thread Dimensions/ Elbow type Seal method: Sealant For R, NPT thread D3 Applicable tubing O.D. d D1 A L4 L3 M T L1 H (Width across flats) L2 Metric Size [mm] Model d T H D1 D3 L1 L2 L3 L4 Note 1) A Note 1) M Weight [g] Unlocked Locked Unlocked Locked AS22l1FG-01-23(S)

Type Seal method: Sealant For R, NPT thread Indicator window direction: 0 Indicator window direction: 180 D3 W1 W2 X Y Applicable tubing O.D. d A L4 D1 L3 M L2 L1 T H (Width across flats) Metric Size [mm] Model d T (R, NPT) H D1 D3 L1 L2 L3 L4 Note 1) A Note 2) M W1 W2 X Y Weight [g] Unlocked Locked Unlocked Locked AS221FS-01-23 (S) 3.2 7.2 13 (13) AS221FS-01-04 (S) 4 8.2 AS221FS-01-06 (

: Elbow Type Seal method: Sealant For R, NPT thread Indicator window direction: 0 Indicator window direction: 180 D3 W1 W2 X Y Applicable tubing O.D. d A L4 D1 L3 M L2 L1 T H (Width across flats) Metric Size [mm] Model d T (R, NPT) H D1 D3 L1 L2 L3 L4 Note 1) A Note 2) M W1 W2 X Y Weight [g] Unlocked Locked Unlocked Locked AS221FSG-01-23 (S) 3.2 7.2 13 (13) AS221FSG-01-04 (S) 4 8.2 AS221FSG

port side) / SS3YJ3-S41Stations -M3 26.1 L1 + + + + + 3.5 L2 (Light/surge voltage suppressor) 11 P R P R 26.6 22 48.8 [51] Approx. 300 (Lead wire length) L1 2-3.5 (For mounting) L2 3.5 Manual override Manual override (Pitch) P=10.5 12.5 Approx. 300 (Lead wire length) 5 M5 x 0.8 (P, R port) 2-3.5 (For mounting) 48.8 [51] P R 26.6 P R 13 22 (Station n) (Station 1) 11 (Pitch) P=10.5 12.5 4.5

L1 L2 L3 L4 2 148 137.5 116 16 3 160.5 150 135 13 4 185.5 175 154 16 5 198 187.5 173 12.5 6 223 212.5 192 15.5 7 235.5 225 211 12.5 8 260.5 250 230 15.5 9 273 262.5 249 12 10 298 287.5 268 15 (mm) Stations L1 L2 L3 L4 11 310.5 300 287 12 12 335.5 325 306 15 13 348 337.5 325 11.5 14 373 362.5 344 14.5 15 385.5 375 363 11.5 16 410.5 400 382 14.5 17 423 412.5 401 11 18 448 437.5 420 14 19 473

L1 L2 L3 L4 2 148 137.5 116 16 3 160.5 150 135 13 4 185.5 175 154 16 5 198 187.5 173 12.5 6 223 212.5 192 15.5 7 235.5 225 211 12.5 8 260.5 250 230 15.5 9 273 262.5 249 12 10 298 287.5 268 15 (mm) Stations L1 L2 L3 L4 11 310.5 300 287 12 12 335.5 325 306 15 13 348 337.5 325 11.5 14 373 362.5 344 14.5 15 385.5 375 363 11.5 16 410.5 400 382 14.5 17 423 412.5 401 11 18 448 437.5 420 14 19 473

M1E m x g FE M3E = 1/3 x FE x L2 (FE = 1.4/100 x a x g x m) = 0.05 x a x m x L2 = 0.05 x 300 x 0.5 x 0.04 = 0.3 [Nm] 3B = M3E/M3E max = 0.3/1.07 = 0.28 Investigate M3E. a From above, find the value of M3E max at 420mm/s in Graph 3. M3 M3E m x g FE L2 From above, n = 1 + 2 + 3A + 3B = 0.1 + 0.082 + 0.35 + 0.28 = 0.812.

5 (R) port] 4 x 7 (For mounting) 1/8 (Pilot port: Upward) 30 (Pitch) P=33 VPA4 Breathing hole SYJA (Station n) (Station 1) 1/8 [Pilot port: Lateral (-P)] VZA VTA 76 53.5 29.5 VGA VPA Dimensions n: Stations 2 3 n L 10 9 8 7 6 5 4 357 VPA3 L1 L2 93 126 159 192 225 258 291 324 80 113 146 179 212 245 278 311 344 Type 21: VV5FA5-21-1-: Common exhaust L2 L1 17.5 20 15 3 P R R 66 2B 2B 2B 2B 2B

-L 53-SY9120-LL 53-SY9120-TT 104 15 L1 120.8 40 118.2 L2 18 135 148.3 42 23 165.1 L2 Flow-rate Characteristics Flow-rate characteristics 14/2 (PA/B) 4/25/3 (A/BEA/EB) Series C [dm3/(sbar)] C [dm3/(sbar)] Cv 0.61 0.81 2.0 0.66 1.0 2.6 Cv 0.49 0.93 1.7 0.64 1.1 2.0 b 0.39 0.33 0.35 0.29 0.29 0.43 b 0.35 0.23 0.33 0.41 0.41 0.34 53-SY520 53-SY720 53-SY920 53-SY540 53-SY740 53-SY940 1.9 4.1 7.0

CY1F CY1F M1E m x g FE CYP M3E = 1/3 x FE x L2 (FE = 1.4/100 x a x g x m) = 0.05 x a x m x L2 = 0.05 x 300 x 0.5 x 0.04 = 0.3 [Nm] 3B = M3E/M3E max = 0.3/1.07 = 0.28 Investigate M3E. a From above, find the value of M3E max at 420 mm/s in Graph (3). M3 M3E m x g FE L2 DFrom above, n = 1 + 2 + 3A + 3B = 0.1 + 0.082 + 0.35 + 0.28 = 0.812 From n = 0.812 1, it is applicable.