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Technical data TruFlow 700-6000
| Technical data
|
TruFlow
700 |
TruFlow
1200 |
TruFlow
1500 |
TruFlow
2000 |
TruFlow
2700 |
TruFlow
3200 |
TruFlow
4000 |
TruFlow
5000 |
TruFlow
6000 |
| Nominal power in watts |
700 |
1200 |
1500 |
2000 |
2700 |
3200 |
4000 |
5000 |
6000 |
| Power distribution
1 |
TEM00 |
TEM01 |
| Beam quality2 K (M2) |
0,6 (1,67) |
0,5 (2,0) |
0,55 (1,82) |
| Power consumption
3 at 100%,
in kW |
23 |
27 |
34 |
36 |
42 |
60 |
64 |
Dimensions beam source
lenght x width x height in mm |
1185 x 1150 x 650 |
| Weight beam source
in kg |
400 |
430 |
450 |
460 |
Dimensions cabinet
width x depth4 x height in mm
|
1420 x 800 x 2000 |
2000 x 800 x 2000 |
Weight cabinet:
in kg
|
970 |
1020 |
1040 |
1060 |
1380 |
1400 |
| Wavelenght |
10,6 µm |
| Output stability dependent on the rated power |
±2% |
Continuously variable output range (modulation mode), dependent on the pulse frequency |
5% - 100% of the nominal power |
| Pulse frequency (HF) |
100
Hz - 100 kHz |
Pulse width
|
10 µs - cw |
| Laser gases in l/h He, N2, CO2 |
13,
6, 1 |
Legend:
1: Predominant share 2: According to ISO 11146, deviation ?5%
3: Laser without chiller unitt
4: 1000 mm in the area of the a/c door
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Technical data TruFlow 8000-15000
| Technical data |
TruFlow
8000 |
TruFlow
12000 |
TruFlow
15000 |
| Nominal power in watts |
8000 |
12000 |
15000 |
| Power distribution |
low
order |
| Beam qualitiy1 K (M2) |
0,26 (3,8) |
0,24 (4,2) |
| Power consumption2 at 100%,
in kW |
84 |
120 |
155 |
| Pulse frequency |
310 Hz - 100 kHz |
100 Hz - 100 kHz |
310 Hz - 100 kHz |
Dimensions beam source:
lenght x width x height in mm |
1665
x 1524 x 1100 |
| Weight beam source in kg |
1400 |
1500 |
Dimensions cabinet:
width x depth3 x height in mm
|
2200 x 800 x 2000 |
3000
x 800 x 2000 |
Weight cabinet:
in kg
|
1470 |
2220 |
2300 |
| Wavelenght |
10,6
µm |
| Output stability dependent on the rated power |
±2% |
Continuously variable output range (modulation mode), dependent on the
Pulse frequency (HF)
|
5%
- 100% of the nominal power |
Pulse width
|
10 µs - cw |
| Laser gases in l/h He, N2, CO2 |
48,
10, 2 |
Legend:
1: According to ISO 11146, deviation ?5% 2: Laser without chiller unit 3: 1000 mm in the area of the a/c door
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Technical data TruFlow 1800-3500
| Technical data |
TruFlow 1800 |
TruFlow 2500 |
TruFlow 3000 |
TruFlow 3500 |
| Nominal power in watts |
1800 |
2500 |
3000 |
3500 |
| Power distribution |
TEM00 |
| Beam qualitiy1 K (M2) |
0,9 (1,11) |
| Power consumption2 at 100%, in kW |
27 |
34 |
36 |
42 |
Dimensions beam source:
lenght x width x height in mm |
1185 x 1150 x 650 |
| Weight beam source in kg |
400 |
430 |
Dimensions cabinet:
width x depth3 x height in mm
|
1420 x 800 x 2000 |
Weight cabinet:
in kg
|
970 |
1020 |
1040 |
1060 |
| Wave lenght |
10,6
µm |
| Output stability dependent on the rated power |
±2% |
Continuously variable output range (modulation mode), dependent on the pulse frequency |
5% - 100% of the nominal power |
| Pulse frequency (HF) |
100 Hz - 100 kHz |
Pulse width
|
10 µs - cw |
| Laser gases in l/h He, N2, CO2 |
13, 6, 1 |
Legend:
1: According to ISO 11146, deviation ?5%
2: Laser without chiller unit
3: 1000 mm in the area of the a/c door
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Technical data TruFlow 4000-5000
| Technical data |
TruFlow 4000 |
TruFlow
5000 |
| Nominal power in watts |
4000 |
5000 |
| Power distribution1 |
TEM00
/ TEM01* |
| Beam quality2 K (M2) |
0,75 (1,33) / 0,55
(1,82) adaptable |
| Power consumption3 at 100%,
in kW |
42 |
60 |
Dimensions beam source:
length x width x height in mm |
1185 x 1150 x 650 |
| Weight beam source in kg |
440 |
450 |
Dimensions closet:
width x depth4 x height in mm
|
1420 x 800 x 2000 |
2000 x 800 x 2000 |
Weight closet:
in kg
|
1060 |
1380 |
| Wave lenght |
10,6 µm |
| Output stability dependent on the rated power |
±2% |
Continuously variable output range (modulation mode), dependent on the
pulse frequency |
5% - 100% of the nominal power |
| Pulse frequency (HF) |
100
Hz - 100 kHz |
Pulse width
|
10 µs - cw |
| Laser gases in l/h He, N2, CO2 |
13,
6, 1 |
Legend:
1: Predominant share 2: According to ISO 11146, deviation ?5%
3: Laser without chiller unit
4: 1000 mm in the area of the a/c door |
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Technical data TruFlow 1200-3000
| Technical data |
TruFlow
1200 |
TruFlow 1800 |
TruFlow 2400 |
TruFlow 3000 |
| Nominal power in watts |
1200 |
1800 |
2400 |
3000 |
| Power distribution1 |
TEM00 |
| Beam quality2 K (M2) |
0,55 (1,82) |
| Power consumption3 at 100%,
in kW |
27 |
34 |
36 |
Dimensions beam source:
lenght x width x height in mm |
1185 x 1150 x 650 |
| Weight beam source in kg |
400 |
Dimensions closet:
width x depth3 x height in mm
|
1420 x 800 x 2000 |
Weight closet:
in kg
|
970 |
1020 |
1040 |
| Wavelenght |
9,3 µm |
| Output stability dependent on the rated power |
±2% |
Continuously variable output range (modulation mode), dependent on the
Pulse frequency |
5% - 100% of the nominal power |
| Pulse frequency (HF) |
100
Hz - 100 kHz |
Pulse width
|
10 µs - cw |
| Laser gases in l/h He, N2,
CO2 |
13,
6, 1 |
Legend:
1: Predominant share
2: According to ISO 11146, deviation ?5%
3: Laser without chiller unit
4: 1000 mm in the area of the a/c door |
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Technical data TruCoax 2000
| Technical data |
TruCoax 2000 |
| Nominal power in watts |
2000 |
| Power distribution |
TEM00 |
| Beam quality1 K (M2) |
0,9 (1,1) |
| Power consumption2 at 100%,
in kW |
33 |
Dimensions beam source:
length x width x height in mm |
1960 x 510 x 540 |
| Weight beam source in kg3 |
250 |
Dimensions closet:
width x depth x height in mm
|
1420 x 800 x 2000 |
Weight closet:
in kg
|
970 |
| Wavelenght |
10,6 µm |
| Output stability dependent on the rated power |
±2% |
Continuously variable output range (modulation mode), dependent on the
Pulse frequency |
5% - 100% of the nominal power |
| Pulse frequency (HF) |
10
Hz - 100 kHz |
Pulse width
|
0,01 µs - cw |
| Laser gases in l/h, Premix He, N2, CO2 |
=
0,01 = ca. 250 Gas change intervals every 72 hours with integrated Premix bottle
= approx. 2 years continuous operation, in 3 shifts. |
Legend:
1: According to ISO 11146, deviation ?5%
2: Laser without chiller unit
3: Specifications without ground plate and additional optics
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