For critical applications use A at 2 PSI P . A 10 PSI P will save money and mounting space. Method 2: Chart Index Cv against Bore Size vs. Inches of stroke per second. Assuming 80 PSI and P = 80%.
For critical applications use A at 2 PSI P . A 10 PSI P will save money and mounting space. Method 2: Chart Index Cv against Bore Size vs. Inches of stroke per second. Assuming 80 PSI and P = 80%.
back direction [mm] 150 100 50 0 50 100 150 150 100 50 0 50 100 150 250 200 150 100 50 0 50 100 150 200 250 0 0 50 50 0.5 s 100 100 0.5 s 150 150 1 s 200 200 2 s 1 s 250 250 5 s 2 s 5 s 300 300 3) With energy saving type de-ionizing cartridge, Supply pressure: 0.3 MPa Installation distance in height from ionizer to workpiece (Charged object location) [mm] Installation distance in height
Please contact P/A regarding their availability.
225 48 200 213 4 175 188 15 150 163 313 125 138 288 23 100 113 263 36 75 100 238 54 12.5 37.5 50 88 75 250 225 54 200 213 4 175 188 17 150 163 313 125 138 288 23 100 113 263 36 75 100 238 54 12.5 25 37.5 50 88 87 250 225 69 200 225 5 175 200 24 150 175 325 125 150 300 25 100 125 275 51 75 112 250 64 12.5 25 37.5 50 100 87 250 225 69 200 225 5 175 200 24 150 175 325 125 150 300 25 100 125
Operating pressure P (MPa) P 0.7 MPa MTS 4.
L2 + (3 x P) L2 + (3 x P) K axis (T axis) J axis Q1 = M L1 = L1 + (3 x P) L2 = The maximum dimension L1 is, as a rule, twice the thread size. (Example) For M3: L1 = 6 mm The maximum dimension L2 is, as a rule, twice the thread size. (Example) For M3: L2 = 6 mm However, for M5 with T shaft, the maximum dimension L2 is 1.5 times the thread size.
p>. .-~ --_1 124 (5000) ,/ /. / --/./-.P: 2 ;;; 900 (4000) !
MSU CRJ L1 + (3 x P) L1 + (3 x P) Q1 = M Q1 = M CRA1 L2 + (3 x P) L2 + (3 x P) L1 = L1 = CRQ2 L2 = L2 = Q2 = M Q2 = M MSQ Size 10, 15 Size 20, 30, 40 Size 10, 15 Size 20, 30, 40 MSZ (mm) (mm) Q1 M3 M3, M4 M3, M4 M3, M4, M5 M4, M5, M6 Q2 M3 M3, M4 M3, M4 M3, M4, M5 M4, M5, M6 Size 10 15 20 30 40 Size 10 15 20 30 40 CRQ2X MSQX CRQ2X MSQX MRQ Symbol: A4 Symbol: A5 Symbol: A3 The long shaft can
With Rod Boot (mm) Item h KK 1 to 50 AM C e f K Stroke 51 to 100 101 to 150 151 to 200 201 to 300 301 to 400 401 to 500 Bore 20 20 8 36 20 6 M8 x 1.25 71 84 96 134 159 109 25 22 10 36 20 8 M10 x 1.25 74 87 99 137 162 112 187 Item Wh I Stroke 1 to 50 51 to 100 101 to 150 151 to 200 201 to 300 301 to 400 401 to 500 1 to 50 51 to 100 101 to 150 151 to 200 201 to 300 301 to 400 401 to 500 Bore
50 50 50 50 50 50 201 to 300 100 100 100 100 100 100 301 to 400 125 125 125 125 125 125 401 to 500 150 150 150 150 501 to 600 175 175 601 to 700 200 200 701 to 800 73 81 89 89 101 101 1 to 50 86 94 102 102 114 114 51 to 100 98 106 114 114 126 126 101 to 150 111 119 127 127 139 139 201 to 300 161 169 177 177 189 189 301 to 400 186 194 202 202 214 214 401 to 500 227 227 239 239 501 to
50 50 50 50 50 50 201 to 300 100 100 100 100 100 100 301 to 400 125 125 125 125 125 125 401 to 500 150 150 150 150 501 to 600 175 175 601 to 700 200 200 701 to 800 73 81 89 89 101 101 1 to 50 86 94 102 102 114 114 51 to 100 98 106 114 114 126 126 101 to 150 111 119 127 127 139 139 201 to 300 161 169 177 177 189 189 301 to 400 186 194 202 202 214 214 401 to 500 227 227 239 239 501 to
-LD Piping port P Operating direction A 7 Piping port P Operating direction B W K G With switch rail Q + Stroke Z + Stroke Piping port P (plug) Operating direction B HS CR HR Plug 22 8 Piping port P Operating direction B Piping port P (plug) Operating direction B 8 Piping port P Operating direction A 16 19.5 16 Plug REBR15 REBR15 (mm) A B C CB CR D F G GP GW H HA HB HC HP HR HS HT Model REBR15
Up to 700 25 150 Up to 700 1500 32 150 Up to 1000 40 200 Up to 1000 Note 1) The cylinder performance may not as expected when stroke is longer than recommended stroke even they are available.
Up to 700 25 150 Up to 700 1500 32 150 Up to 1000 40 200 Up to 1000 Note 1) The cylinder performance may not as expected when stroke is longer than recommended stroke even they are available.
9 Specifications p. 10 Flow Range p. 11 Analog Output p. 11 Pressure Loss p. 11 IN Side Straight Section and Accuracy p. 12 Internal Circuits and Wiring Examples p. 12 Construction: Parts in Contact with Fluid p. 13 Dimensions p. 13 3-Screen Display Digital Flow Monitor PFG300 Series How to Order p. 14 Specifications p. 15 Internal Circuits and Wiring Examples p. 16
Without brake C section details Cross section BB l\rodel D F L 1 5 4 231 LXPB B-50 L X P B B . 7 5 173 256 52 L X P B _ B _ 1 0 0 204 281 246 323 LXPB B -.125 L X P B B 1 5 0 271 348 120 90 L X P B _ B _ 1 7 5 296 373 LXPB_B_-200 321 394 ?$rc zs S8[i8$ [10 Camraclnectl' 0i|llomiom $lift $crExi tlE LXPB S With brake I I shows the localion at which origin point swiich operates.
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150 0.3MPa 0.3MPa 200 200 0.3MPa 100 100 0.2MPa 0.2MPa 0.2MPa 0.2MPa 100 100 50 50 0.1MPa 0.1MPa 0.1MPa 0.1MPa 50 100 150 200 50 100 150 200 0 0 40 80 120 160 200 40 80 120 160 200 0 0 Holding point R (mm) Holding point R (mm) Holding point R (mm) Holding point R (mm) 2.2-3 Wide Opening Air Gripper Series MHL2 Example of Model Selection Procedures Check conditions Select possible points
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