-X430 High temperature 5 to 80 -X440 Low temperature 30 to 60 Environment Ambient temperature (C) Fluid temperature (C) Made-to-order part no. -X425 Proof pressure (MPa) 3.0 5 to 60 (with no freezing) Maximum operating pressure (MPa) 2.0 Rubber parts Main parts Special NBR FKM Material Set pressure range (MPa) 0.1 to 1.6 Metal (Aluminum die-cast), etc.
3C < 92 5C \ 124 7C | 29 1D GS 61 3D = 93 5D ] 125 7D } 30 1E RS 62 3E > 94 5E ^ 126 7E ~ 31 1F US 63 3F ?
fluid outlet 0.6 60 Pressure [MPa] 0.5 50 Lifting head [m] Usable flow rate range 0.4 40 0.3 30 Circulating fluid return 0.2 20 0.1 10 0 0 0 20 40 60 80 100 120 140 160 180 Circulating fluid flow[L/min] Fig. 8-11 Pump capacity(HRL300-A-20 CH1) 8.5.4 HRL-A-20CH2 0.6 60 0.5 50 Lifting head [m] Pressure [MPa] 0.4 40 Usable flow rate range Circulating fluid outlet 0.3 30 0.2 20 Chiller display
Fig. 9-22 Cooling Capacity (HRL100/200-W-40-T2 CH2) HRL Series 9.4 Cooling Capacity 9-19 HRX-OM-X037 Chapter 9 Documents 9.5 Pump Capacity 9.5.1 HRL100-A/W-40 CH1 0.6 60 0.5 50 Circulating fluid outlet Lifting head [m] Pressure [MPa] 0.4 40 0.3 30 Usable flow rate range 0.2 20 Circulating fluid return 0.1 10 0 0 0 10 20 30 40 50 60 70 80 90 100 110 120 Circulating fluid flow [L/min] Fig.
70 60 70 Gripping point L (mm) Gripping point L (mm) MHR2-30/MDHR2-30 MHR2-30/MDHR2-30 80 80 Pressure 0.6 MPa 0.6 MPa Pressure 70 70 F F 0.5 MPa 0.5 MPa Gripping force (N) Gripping force (N) 60 60 50 50 0.4 MPa 0.4 MPa 40 40 0.3 MPa 0.3 MPa 30 30 0.2 MPa 0.2 MPa 20 20 10 10 0 10 30 50 0 10 30 50 70 90 90 70 Gripping point L (mm) Gripping point L (mm) 12-5-7 8 Series MHR2/MDHR2 Construction
0.5MPa 0.5MPa 60 60 Holding force (N) Holding force (N) 50 50 0.4MPa 0.4MPa 40 40 0.3MPa 0.3MPa 30 30 0.2MPa 0.2MPa 20 20 10 10 0 10 30 50 0 10 30 50 70 90 90 70 Holding point L (mm) Holding point L (mm) 2.3-6 Series MHR2/MDHR2 Construction MHR2 !
-100 M8 x 60L x 135L 60 135 15 CVQB405 x 65L M5 x 45L 65 45 20 10 x 70L x 50L 70 50 25 15 x 75L x 55L 75 55 30 20 x 80L x 60L 80 60 35 25 14.5 x 85L x 65L 85 65 40 30 x 90L x 70L 90 70 7.5 45 35 x 95L x 75L 95 75 50 40 x 100L x 80L 100 80 75 45 x 125L x 85L 125 85 -100 50 x 150L x 90L 150 90 75 x 115L 115 -100 x 140L 140 3 Series CVQ Allowable Kinetic Energy Rod End Allowable Lateral Load
Rod type / LEY Series 2.1 Specification LEY63 (Top/Parallel) LEY32 LEY32D Model LEY25 (Top/Parallel) / LEY25D(in-line) (Top/Parallel) (in-line) LEY63D (in-line) 30, 50, 100, 150, 200, 30, 50, 100, 150, 200, 30, 50, 100, 150, 200, 100, 200, 300, 400, 500, 600, 250, 250, 250, Stroke[mm] 700, 800 300, 350, 400, 500 300, 350, 400, 500 300, 350, 400 Horizontal Note 1) 18 50 50 30 60 60 30 60 60
60 60 60 60 60 Air consumption Air consumption 40 40 40 40 40 40 Suction flow rate Suction flow rate 20 20 20 20 20 20 0 0 0.1 0.2 0.3 0.4 0.5 0.6 0 0 0.1 0.2 0.3 0.4 0.5 0.6 0 0 0 0 0 0 10 20 30 40 50 5 10 15 20 25 Supply pressure (MPa) Suction flow rate (l/min(ANR)) Supply pressure (MPa) Suction flow rate (l/min(ANR)) How to Read Flow Characteristics Graph The flow rate characteristics
Station n L1 L2 Station 2 77 49 Station 20 419 391 3 96 68 4 115 87 5 134 106 6 153 125 7 172 144 8 191 163 9 210 182 10 229 201 11 248 220 12 267 239 13 286 258 14 305 277 15 324 296 16 343 315 17 362 334 18 381 353 19 400 372 1-5-69
Example using a 20[mm] Lead Actuator with target travel speed of 500[mm/sec] Rotations per second Travel distance per second Travel distance per rotation Rotation Speed (rpm) = {Speed (mm/s) Lead (mm) }60 (S) = {500 (mm/s) 20 (mm) }60 (s) =1500 (rpm) The rotation speed must be a value between 0 and the allowable actuator speed. The actuator will not operate if set to 0.
Exhaust Characteristics Flow Characteristics -100 -100 -100 -100 Suction flow rate (l/min(ANR)) Air consumption flow rate (l/min(ANR)) Suction flow rate (l/min(ANR)) Air consumption flow rate (l/min(ANR)) -80 -80 -80 -80 Vacuum pressure (kPa) Vacuum pressure (kPa) Vacuum pressure (kPa) Vacuum pressure (kPa) Vacuum pressure Vacuum pressure -60 -60 60 -60 60 -60 Air consumption -40 -40 Air
160 50 140 Lateral load N 40 120 Lateral load N Point of application L 30 100 20 80 Lateral load F 10 60 40 80 70 60 50 40 30 30 20 Point of application L mm 80 60 40 120 100 Point of application L mm 4 Escapements Series MIW/MIS 12, 20 How to Order Finger options Nil: Basic type (Standard type) 1: Tapped on upper and lower faces 2: Tapped on all faces (5 surfaces including end surface)
Electrical entry G Body Coil voltage Lead wire length 0.6 m 5: Plug lead sub-plate 1 2 3 4 5 6 100 VAC (50/60 Hz) 200 VAC (50/60 Hz) 110 VAC (50/60 Hz) 220 VAC (50/60 Hz) 24 VDC 12 VDC Lead wire length 1.5 m Grommet H Function Nil Y(1) R(2) Standard type (1 W) Low wattage type (0.5 W) External pilot Seal 0 1 Metal seal Rubber seal Note 1) Note 2) Applicable to DC specifications.
160 50 140 Lateral load N 40 120 Lateral load N Point of application L 30 100 20 80 Lateral load F 10 60 40 80 70 60 50 40 30 30 20 Point of application L mm 80 60 40 120 100 Point of application L mm 4 Escapements Series MIW/MIS 12, 20 How to Order Finger options Nil: Basic type (Standard type) 1: Tapped on upper and lower faces 2: Tapped on all faces (5 surfaces including end surface)
Refer to the Made to Order specifications on page 21 for details. 2 Series MY1W Theoretical Output Unit: N Operating pressure (MPa) Bore size (mm) Piston area (mm) 0.3 0.4 0.5 0.6 0.2 0.7 0.8 16 200 40 60 80 100 120 140 160 20 314 62 94 125 157 188 219 251 25 490 98 147 196 245 294 343 392 32 804 161 241 322 402 483 563 643 40 1256 251 377 502 628 754 879 1005 50 1962 392 588 784 981 1177
/4B) 0 50 342 87 435 255 125 65 124 19.8 180 4 x M12 x 1.75 22 40 (1 1/2B) 50 (2B) 0 60 450 94 545 356 145 75 29 144 200 4 x M12 x 1.75 22 Note) Tapered female thread conforming to JIS B 0203 is compatible.
Initial value Recommended value Number of command input pulses per revolution *3 PA05 0 0 Electronic gear numerator *3 PA06 1 32768 Electronic gear denominator *3 PA07 1 250 150 75 300 200 100 375 250 125 Regenerative option PA02 0 0(Non) / 0002(LEC-MR-RB-032) Rotation direction selection PA14 0 1(+Counter motors side) Adaptive tuning mode PB01 0 0 Load to motor inertia moment ratio PB06
dE, Lr MM R, v, dND NX NZ 0 4 7 + 0 0 0 3 1 0 6 M 1 8 x 1 5 2 3 6 1 0 6 1 1 0 1 5 0 v v v + 0 m 3 q (16j3i) 50mfr Y-O5A (38) (27) ( 1 2 + 0 0 7 0 ) (1 5) (27] (60) (28) 0 6 3 o 0 1 2 o @39 3ir ( 1 6 1 5 0 0 4 7 + 0 0 0 3 1 0 6 1 1 0 M 1 8 x 1 5 0.59 1 0 6 236 63mr Y-O5A (27\ (28) (1 5) (27\ ( 1 2 + 0 0 7 0 ) (38) (60) 0 6 3 a o 1 2 0 @39 M22x1 5 o75 1 1 0 0 7 1 + 0 0 0 3 2 1 7 1 4 6 1 4 2