One-touch fitting symbol Applicable tube O.D. mm Bar length mm Single end piping Double ends piping 06 6 340 to 640 340 to 1300 08 8 340 to 1300 340 to 2500 10 10 340 to 2500 340 to 2500 06 6 340 to 1300 340 to 2500 08 8 340 to 2500 340 to 2500 10 10 340 to 2500 340 to 2500 06 6 340 to 2500 340 to 2500 08 8 340 to 2500 340 to 2500 10 10 340 to 2500 340 to 2500 High speed static neutralization
140 2500 325 2500 180 2500 15 300 3000 150 3000 350 3000 200 3000 65 No.
700 2500 225 2500 1140 2500 800 2500 225 2500 15 1200 3000 800 3000 520 3000 1200 3000 1000 3000 300 3000 52 No.JXC-OMU0004-A 10.2 LEH LEH LEHF LEHS,Z [mm/s] 10 2] 2000 [mm/s [mm/s] 5 10 5 2] 1000 [mm/s [mm] 1 1 LEHF 3 5mm/s LEHF10 LEHF20 LEHF32 LEHF40 3 11 48 72 5 19.5 84 126 [N] 7 28 120 180 * LEHF10 30%F.S.LEHF20 25%F.S.LEHF3240 20%F.S.
2500 0 0 0 1 2 3 4 0 2 4 6 8 10 Work load [kg] Work load [kg] LEFS25lV6A/Ball Screw Drive LEFS25lV6A/Ball Screw Drive Horizontal Vertical 20 20 Duty ratio: 50% Duty ratio: 50% Acceleration/Deceleration [mm/s2] Acceleration/Deceleration [mm/s2] 17500 17500 Duty ratio: 75% Duty ratio: 75% 15000 15000 Duty ratio: 100% 12500 12500 10 10 7500 7500 Duty ratio: 100% 5000 5000 2500 2500 0 0 0 2
LEFB40 (100%) 20 0 500 1000 1500 2000 2500 3000 Acceleration/Deceleration [mm/s2] 17500 Stroke [mm] * Cycle time is for when maximum speed. * Maximum stroke: LEFB25: 2000 mm LEFB32: 2500 mm LEFB40: 3000 mm 15000 12500 10 7500 5000 2500 0 0 5 10 15 20 25 30 Work load [kg] These graphs are examples of when the standard motor is mounted.
2500 0 0 0 5 10 15 20 Work load [kg] 0 5 10 15 20 Work load [kg] LEFS25S;A LEFS25/Ball Screw Drive: Vertical LEFS25S;B 20 20 Acceleration/Deceleration [mm/s2] Acceleration/Deceleration [mm/s2] Duty ratio: 50% 17500 17500 Duty ratio: 50% 15000 15000 12500 12500 10 10 7500 7500 Duty ratio: 75% 5000 5000 Duty ratio: 75% 2500 2500 0 0 0 2 4 6 8 Work load [kg] 0 5 10 15 Work load [kg] LEFS32S
Ambient temp. 3500 2500 2500 2500 2500 Ambient temp. Ambient temp. 3500 2500 2500 Ambient temp. Ambient temp. or 2500 or 2500 Ambient temp. Ambient temp. or or Ambient temp. or or Facility water temp. 3000 Facility water temp. or or Facility water temp. 3000 Facility water temp. or Facility water temp. Facility water temp. 2000 2000 2000 2000 Facility water temp.
LEJ 17500 Work load: W [kg] 15000 LEFB32 LEL 15 12500 LEM 10 7500 LEFB25 LEY 5 5000 2500 LES 0 0 1000 2000 2500 0 5 10 0 LEPY LEPS Speed: V [mm/s] Work load [kg] * The shaded area in the graph requires the regeneration option (LEC-MR-RB-032).
C) Ambient temperature 32 (C) Outlet air pressure dew point 10 Power supply voltage (frequency) Note 5) Single-phase/Three-phase: 200 VAC (50 Hz) Note 5) Single-phase/Three-phase: 200/220 VAC (60 Hz) Three-phase: 200 VAC (50 Hz) Three-phase: 200/220 VAC (60 Hz) Single-phase 200 V 810/940 810/940 Power consumption (W) 50/60 Hz Note 6) Three-phase 200 V 850/1070 850/1070 1300/1700 2000/2500
2500 2000 2000 Heating capacity [W] Heating capacity [W] Ambient temperature 35C 1500 1500 Ambient temperature 25C Ambient temperature 25C 1000 1000 Ambient temperature 15C 500 500 0 0 Circulating fluid temperature [C] 0 10 20 30 40 50 60 70 Circulating fluid temperature [C] 0 10 20 30 40 50 60 70 HECR010-A Circulating fluid: Ethylene glycol 20% Circulating fluid: Tap water 2500 2500 Ambient
2500 0 0 0 1 2 3 4 0 2 4 6 8 10 Work load [kg] Work load [kg] LEFS25SlA/Ball Screw Drive LEFS25SlA/Ball Screw Drive Horizontal Vertical 20 20 Duty ratio: 50% Duty ratio: 50% Acceleration/Deceleration [mm/s2] Acceleration/Deceleration [mm/s2] 17500 17500 Duty ratio: 75% Duty ratio: 75% 15000 15000 Duty ratio: 100% 12500 12500 10 10 7500 7500 Duty ratio: 100% 5000 5000 2500 2500 0 0 0 2 4
With 2 pcs. 1660 to 2380 With 2 pcs. 2440 to 2500 With 3 pcs.
Fig 9.4-4 Cooling capacity(HRS018--20) 9.4.5 HRS024--20-(BJMT) 3500 3500 Ambient Ambient 3000 3000 temperature temperature or or Cooling capacity[W] Cooling capacity[W] 2500 2500 facility water facility water temperature temperature 2000 2000 25 32 40 25 32 40 1500 1500 1000 1000 500 500 0 0 0 10 20 30 40 50 0 10 20 30 40 50 Circulating fluid temperature[] Circulating fluid temperature[]
0.5 Series JA 25 M10 x 1.5 2500 2500 2000 0.5 Precautions 32 M10 x 1 2500 2500 2000 0.5 30, 40 M12 x 1.25 4400 4400 4400 0.75 Be sure to read before handling.
JA50-16-150 JA63-16-200 JA80-20-250 JA100-24-300 JA100-27-150 JA125-27-200 JA160-33-200 20 25 32 32, 40 40 32, 40 50 50, 63 80 100 100 125 160 M8 x 1 M10 x 1.5 M10 x 1 M12 x 1.25 M12 x 1.5 M12 x 1.75 M16 x 1.5 M16 x 2 M20 x 2.5 M24 x 3 M27 x 1.5 M27 x 2 M33 x 2 1100 2500 2500 4400 4400 4400 11000 11000 18000 28000 28000 28000 71000 1100 2500 2500 4400 4400 4400 11000 11000 18000 28000 28000
125, 140 M30 x 1.5 54000 36000 3 55000 160 M36 x 1.5 71000 55000 Option/Thread nominal size JA20-8-100 JA25-10-150 JA32-10-100 JA40-12-125 JA40-12-150 JA40-12-175 JA50-16-150 JA63-16-200 JA80-20-250 20 M8 x 1 1100 1100 1000 0.5 Series JA 25 M10 x 1.5 2500 2500 2000 0.5 Precautions 32 M10 x 1 2500 2500 2000 0.5 30, 40 M12 x 1.25 4400 4400 4400 0.75 Be sure to read before handling.
temperature [C] HRR018-A-10 -20, HRR018-W-10 -20 [50 Hz] [60 Hz] 2500 2500 25C 25C 2000 2000 Cooling capacity [W] Cooling capacity [W] 32C 1500 1500 32C 40C 1000 1000 40C 500 500 Ambient temperature or facility water temperature Ambient temperature or facility water temperature Ambient temperature or facility water temperature Ambient temperature or facility water temperature 0 0 0 10 20
Lx = 1000 mm, Ly = 650 mm, Lz = 2500 mm 4.
T1 = V/a1 = 1000/2500 = 0.4 [s], T1 T2 T3 T4 11LEJS T3 = V/a2 = 1000/2500 = 0.4 [s] L: Stroke [mm](Operating condition) V: Speed [mm/s](Operating condition) a1: Acceleration [mm/s2](Operating condition) a2: Deceleration [mm/s2](Operating condition) T = T1 + T2 + T3 + T4 [s] L 0.5V(T1 + T3) V 25AT2 = T1: Acceleration time and T3: Deceleration time can be obtained by the following equation