, CA 94080-6370-Main Office: (650) 588-9200-Outside Local Area: (800) 258-9200-www.stevenengineering.com MXQ6-20 MXQ6-20 0.010 0.02 MXQ6-20 MXQ6-20 MXQ6-40 MXQ6-40 0.03 MXQ6-40 MXQ6-40 0.02 MXQ6-10 MXQ6-10 0.01 0.005 MXQ6-10 MXQ6-10 0.01 0 0 40 80 120 10 20 30 10 20 30 0 Load (N) Load (N) Load (N) 8 8 8 Lr = 70 mm MXQ8-75 MXQ8-75 MXQ8-75 MXQ8-10 MXQ8-10 MXQ8-20 MXQ8-20 MXQ8-30 MXQ8-30 MXQ8
Q 26 R 4.5 S 1.6 AMG150C AMG250C AMG350C AMG450C AMG550C 10 99 63 20 63 10 1/8, 1/4 158 14 113 76 20 76 10 190 66 24 8 6 6 12 6 10 40 66 80 28 5 2 1/4, 3/8 172 18 145 90 20 90 10 222 80 28 8 7 7 14 7 12 50 80 95 34 5 2.3 3/8, 1/2 204 20 166 106 20 106 10 246 90 31 10 9 9 18 9 15 55 88 111 50 9 3.2 1/2, 3/4 225 24 200 122 20 122 15 278 100 33 10 9 9 18 9 15 65 102 126 60 10 3.2 3/4, 1 259
LQ1E31-T-R1 3 3-10 LQ1-3N10 LQ1-3B10 8 x 6 LQ1E31-T-R2 3 3-10 LQ1-3N10 LQ1-3B10 6 x 4 LQ1E31-T-R8 3 3-10 LQ1-3N10 LQ1-3B10 12 x 10 LQ1E31-T-R9 3 3-10 LQ1-3N10 LQ1-3B10 19 x 16 LQ1E32-T-R1 3 3-08 LQ1-3N08 LQ1-3B08 6 x 4 LQ1E32-T-R8 3 3-08 LQ1-3N08 LQ1-3B08 10 x 8 LQ1E32-T-R9 3 3-08 LQ1-3N08 LQ1-3B08 12 x 10 LQ1E32-T-R10 3 3-08 LQ1-3N08 LQ1-3B08 19 x 16 LQ1E41-T-R1 4 4-12 LQ1-4N12 LQ1-4B12
/20. 9-1 9.1.2 HRR010-W-10/20. 9-3 9.1.3 Refrigerant with GWP reference . 9-5 9.1.4 Communication specification . 9-5 9.2 Outline dimensions . 9-6 9.2.1 HRR010-A-10/20. 9-6 9.2.2 HRR010-W-10/20. 9-7 9.3 Flow Chart . 9-8 9.3.1 HRR010-A-10/20. 9-8 9.3.2 HRR010-W-10/20. 9-8 HRR Series HRX-OM-X084 Contents 9.4 Cooling capacity . 9-9 9.4.1 HRR010-A -10. 9-9 9.4.2 HRR010-W-10. 9-9 9.4.3 HRR010-
14 8 10 14 12 14 4 10 19 6 12 20 13 21 26 36 38 65 4 4 4 18 10.4 20.7 D1 10 L2 A D2 8 H 6 10 10 19.5 12.8 22.8 Connection threads 10 (R) 8 (R) 15.2 18 26 21.5 12 26.3 Applicable tubing 10 18.5 29 41 24 29.4 M L1 17 17 12 20.9 46 58 25 31.4 22 D1 Reference dimension for R threads after installation Note 1) D1 indicates the maximum diameter.
10 to 16 (Thin section series) 2 to 8 10 to 16 20 to 32 40, 50 2 x 4, 3.5 x 7, 4 x 10 10 to 16 (Thin section series) 2 to 8 10 to 16 20 to 32 40 to 50 4, 6 Nylon tube, 4, 6 Urethane tube Vacuum entry Thread dia.
10 ISO Class 8 10 10 0 L/min (ANR) ISO Class 7 ISO Class 7 10 10 Particle concentration [particles/m3] Particle concentration [particles/m3] ISO Class 6 ISO Class 6 10 10 0 L/min (ANR) 50 L/min (ANR) ISO Class 5 ISO Class 5 10 10 1000 1000 20 L/min (ANR) ISO Class 4 ISO Class 4 100 100 70 L/min (ANR) 30 L/min (ANR) 10 10 1 1 0 0.1 0.2 0.3 0.4 0.5 0.6 0 0.1 0.2 0.3 0.4 0.5 0.6 Particle diameter
B B When D-F8 is used Size: 10 to 200 B A Reed switch Solid state switch Size 10 20 30 50 70 100 200 Rotation A B Actuation range A B Rotation range m Actuation range Rotation range m 36 50 66 68 78 91 115 10 190 90 10 90 40 54 60 72 82 95 19 21 27 31 37 41 48 61 17 23 27 33 37 44 57 190 80 10 80 10 10 65 10 190 65 10 10 50 190 50 10 190 45 10 45 Operating range at proper mounting position
Series 10-/11-/21-/22-CDG1 Series 10-/11-REC Series 10-/11-CDM2X Series Perpendicular entry is unavailable.
50 20 20 10 10 10 5 4 3 2 1 40 30 20 0.2 1 2 3 4 5 0.3 0.4 10 m1max m2max m3max m1max m3max m2max Weight (kg) Weight (kg) 10 Model Selection Series MY3A/3B MY350 w When the external guide is used. 300 400 500 Collision deceleration (m/s2) 200 External guide load factor selection 2300 N 100 External shock absorber Impact force and absorption capacity confirmation 30 40 50 20 10 2 3 4 5 10
40 35 190 190 190 190 190 190 190 10 10 10 10 10 10 10 10 10 10 10 10 10 10 90 80 65 50 45 40 35 60 50 50 40 40 30 20 17 23 27 33 37 44 57 36 50 66 68 78 91 115 40 54 60 72 82 95 19 40 54 60 72 82 95 19 21 27 31 37 41 48 61 21 27 31 37 41 48 61 10 20 30 50 70 100 200 Operating angle m: Value of the operating range Lm of a single auto switch converted to an axial rotation angle.
*10 *10 *10 *10 *10 *7 For pipe thread type: NPT.
20 CY 15 10 MG 0.1 10 CX 0.1 6 6 D-X 0.03 5 5 10 20 30 40 50 100 10 20 30 40 50 100 20Overhang L (mm) Overhang L (mm) Graph (4) V = Up to 800 mm/s (Up to 700 mm/s for 15, 20) Data CXSJM CXSJL Graph (3) V = Up to 600 mm/s CXSJM CXSJL 20 32 0.5 25 1 15 20 0.5 15 Weight m (kg) 10 0.1 10 0.1 6 6 10 20 30 40 50 100 5 10 20 30 40 50 100 5 Overhang L (mm) Overhang L (mm) Note) V = 700 mm/s for 15
10 to 32 Graph (3) V = 200 mm/s Graph (4) V = 400 mm/s 4 20 3 10 32 5 25 1 Weight m (kg) Weight m (kg) 32 20 25 0.5 1 20 15 0.5 15 10 CXSM CXSL CXSM CXSL 10 5 0.1 5 0.1 10 20 30 40 50 100 10 20 30 40 50 100 Overhang l (mm) Overhang l (mm) Graph (5) V = 600 mm/s Graph (6) V = 700 mm/s (800 mm/s for 10) 2 0.6 20 32 25 0.4 1 15 20 Weight m (kg) Weight m (kg) 0.5 15 0.2 10 10 CXSM CXSL CXSM
If there is something you do not know, please contact SMC. 10-12 10-11 10-10 10-9 10-8 10-7 10-6 10-5 10-4 10-3 10-2 10-1 1 10 102 10-12 10-11 10-10 10-9 10-8 10-7 10-6 10-5 10-4 10-3 10-2 10-1 1 101 102 103 104 105 106 107 108 109 Pa Vacuum piping direction: if the system uses a vacuum pump, we ask that you install the vacuum pump on the secondary side.
(10V/10pulse) CCW CCW 10[V] 10[V] 10[pulse] 10[pulse] 0 0 10[pulse] 10[pulse] 10[V] 10[V] CW CW A (124) (10V/1Mpulse) B (124) (10V/10Mpulse) CCW CCW 10[V] 10[V] 1M[pulse] 10M[pulse] 0 0 1M[pulse] 10M[pulse] 10[V] 10[V] CW CW 5 25 5 C (124) (10V/100Mpulse) D (3) CCW 10[V] 8[V] 100M[pulse] 0 100M[pulse] 400[V] 0 10[V] CW E 2(45) CCW 8[V] 0 8[V] CW 1. 2. () 3. 400V8V/800V 4. 5.
Pad diameter (mm) 10 10 Vacuum entry port (Refer to Table (1) for applications.)
0 10 20 30 40 Circulating fluid temperature (C) HRG010-A HRG010-W 12 12 60 [Hz] 60 [Hz] 10 Cooling capacity (kW) Cooling capacity (kW) 10 50 [Hz] 50 [Hz] 8 8 6 6 4 4 2 2 0 0 0 10 20 30 40 40 0 10 20 30 Circulating fluid temperature (C) Circulating fluid temperature (C) HRG015-A HRG015-W 18 16 60 [Hz] 16 60 [Hz] 50 [Hz] 14 Cooling capacity (kW) Cooling capacity (kW) 14 50 [Hz] 12 12 10 10
200 10 125 15 15 + 55(n-2)/2 n = 2, 4, 6, 8 20 20 + 55(n-2)/2 n = 2, 4, 6, 8 20 20 20 + 55(n-2)/2 n = 2, 4, 6, 8 25 25 + 55(n-2)/2 n = 2, 4, 6, 8 10 100 35 100 + 100(n-2) n = 2, 3, 4, 5 35 + 30(n-2) n = 2, 3, 4, 5 10 55 35 55 + 55(n-2) n = 2, 3, 4, 5 35 + 30(n-2) n = 2, 3, 4, 5 10 10 + 40(n-2)/2 n = 2, 4, 6, 8 10 10 + 40(n-2)/2 n = 2, 4, 6, 8 10 10 + 30(n-2)/2 n = 2, 4, 6, 8 15 10 + 45(n
60% Ethylene Glycol Physical property value Temperature Density Specific heat C [kg/m 3] [g/l] ([kcal/kg C]) [J/(kgK)] 1.10 x 10 3 3.02 x 10 3 (0.72) 10C 1.08 x 10 3 3.15 x 10 3 (0.75) 20C 1.06 x 10 3 3.27 x 10 3 (0.78) 50C 1.04 x 10 3 3.40 x 10 3 (0.81) 80C Water Density : 1 x 10 3 [kg/m 3] [g/l] Specific heat C: 4.2 x 10 3 [J/(kgK)] (1.0 [kcal/kg C]) 79 Thermo-chiller Series HRZ Fluorinated