Eaton Moeller® series DILMF Contactors for Semiconductor Industries acc. to SEMI F47, 380 V 400 V: 150 A, RAC 24: 24 V 50/60 Hz, Screw terminals
Product Name |
Eaton Moeller® series DILMF contactor for semiconductor industries
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Catalog Number |
104482
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EAN |
4015081042999
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Product Length/Depth |
160 mm
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Product Height |
170 mm
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Product Width |
90 mm
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Product Weight |
2.26 kg
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Certifications |
CSA File No.: 012528
CSA-C22.2 No. 60947-4-1-14 UL Category Control No.: NLDX UL 60947-4-1 CSA CE IEC/EN 60947-4-1 UL UL File No.: E29096 CSA Class No.: 2411-03, 3211-04 |
Catalog Notes |
Also tested according to AC-3e.
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Model Code |
DILMF150(RAC24)
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Fitted with: |
Built-in suppressor circuit
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Number of poles |
Three-pole
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Application |
Contactors for Semiconductor Industries acc. to SEMI F47
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Connection |
Screw terminals
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Product category |
Contactors
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Resistance per pole |
0.56 mΩ
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Suitable for |
Also motors with efficiency class IE3
SEMI F47, Magnet systems |
Utilization category |
AC-4: Normal AC induction motors: starting, plugging, reversing, inching
AC-1: Non-inductive or slightly inductive loads, resistance furnaces AC-3: Normal AC induction motors: starting, switch off during running |
Voltage type |
AC
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Ambient operating temperature - min |
-25 °C
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Ambient operating temperature - max |
60 °C
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Emitted interference |
According to EN 60947-1
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Interference immunity |
According to EN 60947-1
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Rated operational current (Ie) at AC-1, 380 V, 400 V, 415 V |
160 A
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Rated operational current (Ie) at AC-3, 220 V, 230 V, 240 V |
150 A
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Rated operational current (Ie) at AC-3, 380 V, 400 V, 415 V |
150 A
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Rated operational current (Ie) at AC-3, 440 V |
150 A
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Rated operational current (Ie) at AC-3, 500 V |
150 A
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Rated operational current (Ie) at AC-3, 660 V, 690 V |
100 A
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Rated operational current (Ie) at AC-4, 220 V, 230 V, 240 V |
65 A
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Rated operational current (Ie) at AC-4, 400 V |
65 A
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Rated operational current (Ie) at AC-4, 500 V |
65 A
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Rated operational current (Ie) at AC-4, 660 V, 690 V |
50 A
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Rated operational current (Ie) at AC-1, 380 V, 400 V, 415 V |
160 A
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Rated operational power at AC-3, 240 V, 50 Hz |
52 kW
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Rated operational power at AC-3, 380/400 V, 50 Hz |
75 kW
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Rated operational power at AC-3, 415 V, 50 Hz |
91 kW
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Rated operational power at AC-4, 220/230 V, 50 Hz |
20 kW
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Rated operational power at AC-4, 240 V, 50 Hz |
22 kW
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Rated operational power at AC-4, 415 V, 50 Hz |
39 kW
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Rated operational power at AC-4, 440 V, 50 Hz |
41 kW
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Rated operational power at AC-4, 500 V, 50 Hz |
47 kW
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Rated operational power at AC-4, 660/690 V, 50 Hz |
48 kW
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Short-circuit current rating (basic rating) |
600 A, max. CB, SCCR (UL/CSA)
10 kA, SCCR (UL/CSA) 600 A, max. Fuse, SCCR (UL/CSA) |
Short-circuit current rating (high fault at 480 V) |
30/100 kA, Fuse, SCCR (UL/CSA)
65 kA, CB, SCCR (UL/CSA) 300/300 A, Class J, max. Fuse, SCCR (UL/CSA) 250 A, max. CB, SCCR (UL/CSA) |
Short-circuit current rating (high fault at 600 V) |
30/100 kA, Fuse, SCCR (UL/CSA)
300/600 A, Class J, max. Fuse, SCCR (UL/CSA) 350 A, max. CB, SCCR (UL/CSA) 30 kA, CB, SCCR (UL/CSA) |
Conventional thermal current Ith (1-pole, enclosed) |
360 A
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Conventional thermal current Ith (3-pole, enclosed) |
144 A
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Conventional thermal current Ith of main contacts (1-pole, open) |
400 A
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Switching capacity (main contacts, general use) |
225 A, Maximum motor rating (UL/CSA)
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Switching time (AC operated, make contacts, closing delay) - max |
40 ms
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Switching time (AC operated, make contacts, opening delay) - max |
40 ms
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Drop-out voltage |
AC operated: 0.5 - 0.2 x UC, AC operated
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Duty factor |
100 %
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Pick-up voltage |
0.8 - 1.15 V AC x Uc
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Power consumption, pick-up, 50 Hz |
180 VA, Dual-frequency coil in a cold state and 1.0 x Us, at 50 Hz
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Power consumption, sealing, 50 Hz |
3.1 VA, Dual-frequency coil in a cold state and 1.0 x Us, at 50 Hz
2.3 W, Dual-frequency coil in a cold state and 1.0 x Us, at 50 Hz |
Rated control supply voltage (Us) at AC, 50 Hz - min |
24 V
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Rated control supply voltage (Us) at AC, 50 Hz - max |
24 V
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Rated control supply voltage (Us) at AC, 60 Hz - min |
24 V
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Rated control supply voltage (Us) at AC, 60 Hz - max |
24 V
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Rated control supply voltage (Us) at DC - min |
0 V
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Rated control supply voltage (Us) at DC - max |
0 V
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Assigned motor power at 115/120 V, 60 Hz, 1-phase |
10 HP
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Assigned motor power at 200/208 V, 60 Hz, 3-phase |
50 HP
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Assigned motor power at 230/240 V, 60 Hz, 1-phase |
30 HP
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Assigned motor power at 230/240 V, 60 Hz, 3-phase |
60 HP
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Assigned motor power at 460/480 V, 60 Hz, 3-phase |
125 HP
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Assigned motor power at 575/600 V, 60 Hz, 3-phase |
125 HP
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Number of auxiliary contacts (normally closed contacts) |
0
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Number of auxiliary contacts (normally open contacts) |
0
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Special purpose rating of ballast electrical discharge lamps |
160 A (480V 60Hz 3phase, 277V 60Hz 1phase)
160 A (600V 60Hz 3phase, 347V 60Hz 1phase) |
Special purpose rating of definite purpose rating |
150 A, FLA 480 V 60 Hz 3-ph, 100,000 cycles acc. to UL 1995, (UL/CSA)
900 A, LRA 480 V 60 Hz 3-ph, 100,000 cycles acc. to UL 1995, (UL/CSA) |
Special purpose rating of elevator control |
30 HP, 200 V 60 Hz 3-ph, (UL/CSA)
99 A, 600 V 60 Hz 3-ph, (UL/CSA) 92 A, 200 V 60 Hz 3-ph, (UL/CSA) 96 A, 480 V 60 Hz 3-ph, (UL/CSA) 100 HP, 600 V 60 Hz 3-ph, (UL/CSA) 104 A, 240 V 60 Hz 3-ph, (UL/CSA) 40 HP, 240 V 60 Hz 3-ph, (UL/CSA) 75 HP, 480 V 60 Hz 3-ph, (UL/CSA) |
Special purpose rating of refrigeration control (CSA only) |
540 A, LRA 480 V 60 Hz 3phase; (CSA)
540 A, LRA 600 V 60 Hz 3phase; (CSA) 90 A, FLA 600 V 60 Hz 3phase; (CSA) 90 A, FLA 480 V 60 Hz 3phase; (CSA) |
Special purpose rating of resistance air heating |
160 A, 600 V 60 Hz 3phase, 347 V 60 Hz 1phase, (UL/CSA)
160 A, 480 V 60 Hz 3phase, 277 V 60 Hz 1phase, (UL/CSA) |
Special purpose rating of tungsten incandescent lamps |
160 A, 480 V 60 Hz 3phase, 277 V 60 Hz 1phase, (UL/CSA)
160 A, 600 V 60 Hz 3phase, 347 V 60 Hz 1phase, (UL/CSA) |
Equipment heat dissipation, current-dependent Pvid |
32.1 W
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Heat dissipation capacity Pdiss |
0 W
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Rated operational current for specified heat dissipation (In) |
150 A
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10.2.2 Corrosion resistance |
Meets the product standard's requirements.
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10.2.3.1 Verification of thermal stability of enclosures |
Meets the product standard's requirements.
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10.2.3.2 Verification of resistance of insulating materials to normal heat |
Meets the product standard's requirements.
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10.2.3.3 Resist. of insul. mat. to abnormal heat/fire by internal elect. effects |
Meets the product standard's requirements.
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10.2.4 Resistance to ultra-violet (UV) radiation |
Meets the product standard's requirements.
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10.2.5 Lifting |
Does not apply, since the entire switchgear needs to be evaluated.
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10.2.6 Mechanical impact |
Does not apply, since the entire switchgear needs to be evaluated.
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10.2.7 Inscriptions |
Meets the product standard's requirements.
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10.3 Degree of protection of assemblies |
Does not apply, since the entire switchgear needs to be evaluated.
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10.4 Clearances and creepage distances |
Meets the product standard's requirements.
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10.5 Protection against electric shock |
Does not apply, since the entire switchgear needs to be evaluated.
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10.6 Incorporation of switching devices and components |
Does not apply, since the entire switchgear needs to be evaluated.
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10.7 Internal electrical circuits and connections |
Is the panel builder's responsibility.
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10.8 Connections for external conductors |
Is the panel builder's responsibility.
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10.9.2 Power-frequency electric strength |
Is the panel builder's responsibility.
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10.9.3 Impulse withstand voltage |
Is the panel builder's responsibility.
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10.9.4 Testing of enclosures made of insulating material |
Is the panel builder's responsibility.
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10.10 Temperature rise |
The panel builder is responsible for the temperature rise calculation. Eaton will provide heat dissipation data for the devices.
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10.11 Short-circuit rating |
Is the panel builder's responsibility. The specifications for the switchgear must be observed.
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10.12 Electromagnetic compatibility |
Is the panel builder's responsibility. The specifications for the switchgear must be observed.
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10.13 Mechanical function |
The device meets the requirements, provided the information in the instruction leaflet (IL) is observed.
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