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Rated power (W)
1500
Effective peak power (W)
2400
Power stability (long term)
±5%
Wavelength (μm)
10.6 ± 0.4
Polarization
linear (perpendicular to base)
Beam diameter (1/e² at the exit)
9.0 ± 0.5
Beam divergence (1/e² full angle) (mrad)
2.0 ± 0.1
Maximum pulse frequency (kHz)
100
Pulse width range (μs)
2 ÷ 150
Maximum duty cycle
60%
Mode quality (M²)
< 1.2
Beam ellipticity
1.2 : 1
Optical pulse rise/fall time (μs)
< 50
Typical gas mix consumption (NL/year)
65 (almost 1 cartridge per year)
Operating ambient temperature range (°C)
5 ÷ 35
Storage Temperature range (°C)
5 ÷ 50
Maximum humidity
Non condensing at inlet water temperature
Rated power (W)
1200
Effective peak power (W)
2400
Power stability (long term)
±5%
Wavelength (μm)
10.6 ± 0.4
Polarization
linear (perpendicular to base)
Beam diameter (1/e² at the exit)
9.0 ± 0.5
Beam divergence (1/e² full angle) (mrad)
2.0 ± 0.1
Maximum pulse frequency (kHz)
100
Pulse width range (μs)
2 ÷ 150
Maximum duty cycle
60%
Mode quality (M²)
< 1.2
Beam ellipticity
1.2 : 1
Optical pulse rise/fall time (μs)
< 50
Typical gas mix consumption (NL/year)
65 (almost 1 cartridge per year)
Operating ambient temperature range (°C)
5 ÷ 35
Storage Temperature range (°C)
5 ÷ 50
Maximum humidity
Non condensing at inlet water temperature
High reliability and stability thanks to Self Refilling technology with optimal laser beam parameters
Rated power (W)
850
Effective peak power (W)
1800
Power stability (long term)
±5%
Wavelength (μm)
10.6 ± 0.4
Polarization
linear (perpendicular to base)
Beam diameter (1/e² at the exit)
10.5 ± 0.5
Beam divergence (1/e² full angle) (mrad)
0.8 ± 0.1
Maximum pulse frequency (kHz)
100
Pulse width range (μs)
2 ÷ 150
Maximum duty cycle
60%
Mode quality (M²)
< 1.1
Beam ellipticity
1.2 : 1
Optical pulse rise/fall time (μs)
< 50
Typical gas mix consumption (NL/year)
24/36 (2/3 cartridges per year)
Operating ambient temperature range (°C)
5 ÷ 35
Storage Temperature range (°C)
5 ÷ 50
Maximum humidity
Non condensing at inlet water temperature
High reliability and stability thanks to Self Refilling technology with optimal laser beam parameters
High reliability and stability thanks to Self Refilling technology with 850W average power
Rated power (W)
850
Effective peak power (W)
1800
Power stability (long term)
±5%
Wavelength (μm)
10.6 ± 0.4
Polarization
linear (perpendicular to base)
Beam diameter (1/e² at the exit)
11.8 ± 0.5
Beam divergence (1/e² full angle) (mrad)
1.0 ± 0.1
Maximum pulse frequency (kHz)
100
Pulse width range (μs)
2 ÷ 150
Maximum duty cycle
60%
Mode quality (M²)
< 1.2
Beam ellipticity
1.2 : 1
Optical pulse rise/fall time (μs)
< 50
Typical gas mix consumption (NL/year)
24/36 (2/3 cartridges per year)
Operating ambient temperature range (°C)
5 ÷ 35
Storage Temperature range (°C)
5 ÷ 50
Maximum humidity
Non condensing at inlet water temperature
High reliability and stability thanks to Self Refilling technology with 850W average power
High reliability and stability thanks to Self Refilling technology with 750W average power
Rated power (W)
750
Effective peak power (W)
1750
Power stability (long term)
±5%
Wavelength (μm)
10.6 ± 0.4
Polarization
linear (perpendicular to base)
Beam diameter (1/e² at the exit)
11.5 ± 0.5
Beam divergence (1/e² full angle) (mrad)
0.9 ± 0.1
Maximum pulse frequency (kHz)
100
Pulse width range (μs)
2 ÷ 150
Maximum duty cycle
70%
Mode quality (M²)
< 1.2
Beam ellipticity
1.2 : 1
Optical pulse rise/fall time (μs)
< 50
Typical gas mix consumption (NL/year)
24 (2 cartridges per year)
Operating ambient temperature range (°C)
5 ÷ 35
Storage Temperature range (°C)
5 ÷ 50
Maximum humidity
Non condensing at inlet water temperature
High reliability and stability thanks to Self Refilling technology with 750W average power
Stable and Robust thanks to Self Refillng technology, countless installations around the world prove its reliability
Rated power (W)
550
Effective peak power (W)
1650
Power stability (long term)
±5%
Wavelength (μm)
10.6 ± 0.4
Polarization
linear (perpendicular to base)
Beam diameter (1/e² at the exit)
11.5 ± 0.5
Beam divergence (1/e² full angle) (mrad)
0.9 ± 0.1
Maximum pulse frequency (kHz)
100
Pulse width range (μs)
2 ÷ 150
Maximum duty cycle
60%
Mode quality (M²)
< 1.2
Beam ellipticity
1.2 : 1
Optical pulse rise/fall time (μs)
< 50
Typical gas mix consumption (NL/year)
24 (2 cartridges per year)
Operating ambient temperature range (°C)
5 ÷ 35
Storage Temperature range (°C)
5 ÷ 50
Maximum humidity
Non condensing at inlet water temperature
Stable and Robust thanks to Self Refillng technology, countless installations around the world prove its reliability
High reliability and stability thanks to Self Refilling technology with wide range of wavelengths
Rated power (W)
320 ÷ 350
Effective peak power (W)
750
Power stability (long term)
±5%
Wavelength (μm)
10.2 ± 0.2
Polarization
linear (parallel to base)
Beam diameter (1/e² at the exit)
7.0 ± 0.5
Beam divergence (1/e² full angle) (mrad)
2.0 ± 0.2
Maximum pulse frequency (kHz)
100
Pulse width range (μs)
2 ÷ 150
Maximum duty cycle
60%
Mode quality (M²)
< 1.1
Beam ellipticity
1.1 : 1
Optical pulse rise/fall time (μs)
< 50
Typical gas mix consumption (NL/year)
24 (2 cartridges per year)
Operating ambient temperature range (°C)
5 ÷ 35
Storage Temperature range (°C)
5 ÷ 50
Maximum humidity
Non condensing at inlet water temperature
High reliability and stability thanks to Self Refilling technology with wide range of wavelengths
High reliability and stability thanks to Self Refillng technology with wide range of wavelengths
Rated power (W)
320 ÷ 350
Effective peak power (W)
850
Power stability (long term)
±5%
Wavelength (μm)
10.6 ± 0.4
Polarization
linear (parallel to base)
Beam diameter (1/e² at the exit)
7.0 ± 0.5
Beam divergence (1/e² full angle) (mrad)
2.0 ± 0.2
Maximum pulse frequency (kHz)
100
Pulse width range (μs)
2 ÷ 150
Maximum duty cycle
60%
Mode quality (M²)
< 1.1
Beam ellipticity
1.1 : 1
Optical pulse rise/fall time (μs)
< 50
Typical gas mix consumption (NL/year)
24 (2 cartridges per year)
Operating ambient temperature range (°C)
5 ÷ 35
Storage Temperature range (°C)
5 ÷ 50
Maximum humidity
Non condensing at inlet water temperature
High reliability and stability thanks to Self Refillng technology with wide range of wavelengths
Rated power (W)
600
Effective peak power (W)
1650
Power stability (long term)
±5%
Wavelength (μm)
10.6 ± 0.4
Polarization
Linear (perpendicular to base)
Beam diameter (1/e² at the exit)
10 ± 1
Beam divergence (1/e² full angle) (mrad)
≤2
Maximum pulse frequency (kHz)
100
Pulse width range (μs)
2 ÷ 150
Maximum duty cycle
60%
Mode quality (M²)
< 1.2
Beam ellipticity
<1.2 : 1
Optical pulse rise/fall time (μs)
≤50
Typical gas mix consumption (NL/year)
NA
Operating ambient temperature range (°C)
5 ÷ 35
Storage Temperature range (°C)
5 ÷ 50
Maximum humidity
Non condensing at inlet water temperature
Rated power (W)
500
Effective peak power (W)
1650
Power stability (long term)
±5%
Wavelength (μm)
10.6 ± 0.4
Polarization
Linear (perpendicular to base)
Beam diameter (1/e² at the exit)
10 ± 1
Beam divergence (1/e² full angle) (mrad)
≤2
Maximum pulse frequency (kHz)
100
Pulse width range (μs)
2 ÷ 150
Maximum duty cycle
60%
Mode quality (M²)
< 1.2
Beam ellipticity
<1.2 : 1
Optical pulse rise/fall time (μs)
≤50
Typical gas mix consumption (NL/year)
NA
Operating ambient temperature range (°C)
5 ÷ 35
Storage Temperature range (°C)
5 ÷ 50
Maximum humidity
Non condensing at inlet water temperature
Rated power (W)
400
Effective peak power (W)
>1200
Power stability (long term)
±5%
Wavelength (μm)
9.3 ± 0.1
Polarization
linear (perpendicular to base)
Beam diameter (1/e² at the exit)
8.0 ± 0.5
Beam divergence (1/e² full angle) (mrad)
≤3.0
Maximum pulse frequency (kHz)
100
Pulse width range (μs)
2 ÷ 150
Maximum duty cycle
60%
Mode quality (M²)
< 1.2
Beam ellipticity
<1.2 : 1
Optical pulse rise/fall time (μs)
≤60 / ≤80
Typical gas mix consumption (NL/year)
NA
Operating ambient temperature range (°C)
5 ÷ 35
Storage Temperature range (°C)
5 ÷ 50
Maximum humidity
Non condensing at inlet water temperature
Rated power (W)
400
Effective peak power (W)
>1200
Power stability (long term)
±5%
Wavelength (μm)
10.6 ± 0.4
Polarization
linear (perpendicular to base)
Beam diameter (1/e² at the exit)
8.0 ± 0.5
Beam divergence (1/e² full angle) (mrad)
≤3.0
Maximum pulse frequency (kHz)
100
Pulse width range (μs)
2 ÷ 150
Maximum duty cycle
60%
Mode quality (M²)
< 1.2
Beam ellipticity
<1.2 : 1
Optical pulse rise/fall time (μs)
≤60 / ≤100
Typical gas mix consumption (NL/year)
NA
Operating ambient temperature range (°C)
5 ÷ 35
Storage Temperature range (°C)
5 ÷ 50
Maximum humidity
Non condensing at inlet water temperature
Low Power RF Sealed Off Pulsed Laser high peak power and wide range of wavelengths
Rated power (W)
300
Effective peak power (W)
1100
Power stability (long term)
±5%
Wavelength (μm)
10.2 ± 0.2
Polarization
linear (perpendicular to base)
Beam diameter (1/e² at the exit)
8.0 ± 0.5
Beam divergence (1/e² full angle) (mrad)
≤2.0 ± 0.1
Maximum pulse frequency (kHz)
100
Pulse width range (μs)
2 ÷ 150
Maximum duty cycle
50%
Mode quality (M²)
< 1.2
Beam ellipticity
1.2 : 1
Optical pulse rise/fall time (μs)
< 50
Typical gas mix consumption (NL/year)
NA
Operating ambient temperature range (°C)
5 ÷ 35
Storage Temperature range (°C)
5 ÷ 50
Maximum humidity
Non condensing at inlet water temperature
Low Power RF Sealed Off Pulsed Laser high peak power and wide range of wavelengths
Low Power RF Sealed Off Pulsed Laser high peak power and wide range of wavelengths
Rated power (W)
300
Effective peak power (W)
1100
Power stability (long term)
±5%
Wavelength (μm)
9.3 ± 0.2
Polarization
linear (perpendicular to base)
Beam diameter (1/e² at the exit)
8.0 ± 0.5
Beam divergence (1/e² full angle) (mrad)
≤2.0 ± 0.1
Maximum pulse frequency (kHz)
100
Pulse width range (μs)
2 ÷ 150
Maximum duty cycle
50%
Mode quality (M²)
< 1.2
Beam ellipticity
1.2 : 1
Optical pulse rise/fall time (μs)
< 50
Typical gas mix consumption (NL/year)
NA
Operating ambient temperature range (°C)
5 ÷ 35
Storage Temperature range (°C)
5 ÷ 50
Maximum humidity
Non condensing at inlet water temperature
Low Power RF Sealed Off Pulsed Laser high peak power and wide range of wavelengths
Low Power RF Sealed Off Pulsed Laser high peak power and wide range of wavelengths
Rated power (W)
300
Effective peak power (W)
1100
Power stability (long term)
±5%
Wavelength (μm)
10.6 ± 0.4
Polarization
linear (perpendicular to base)
Beam diameter (1/e² at the exit)
8.0 ± 0.5
Beam divergence (1/e² full angle) (mrad)
≤2.0 ± 0.1
Maximum pulse frequency (kHz)
100
Pulse width range (μs)
2 ÷ 150
Maximum duty cycle
50%
Mode quality (M²)
< 1.2
Beam ellipticity
1.2 : 1
Optical pulse rise/fall time (μs)
< 50
Typical gas mix consumption (NL/year)
NA
Operating ambient temperature range (°C)
5 ÷ 35
Storage Temperature range (°C)
5 ÷ 50
Maximum humidity
Non condensing at inlet water temperature
Low Power RF Sealed Off Pulsed Laser high peak power and wide range of wavelengths
Low Power RF Sealed Off Pulsed Laser, high peak power and wide range of wavelengths
Rated power (W)
150
Effective peak power (W)
600
Power stability (long term)
±5%
Wavelength (μm)
10.6 ± 0.4
Polarization
linear (perpendicular to base)
Beam diameter (1/e² at the exit)
6.0 ± 0.5
Beam divergence (1/e² full angle) (mrad)
3.0 ± 0.3
Maximum pulse frequency (kHz)
100
Pulse width range (μs)
2 ÷ 1000
Maximum duty cycle
50%
Mode quality (M²)
< 1.15
Beam ellipticity
1.15 : 1
Optical pulse rise/fall time (μs)
< 50
Typical gas mix consumption (NL/year)
NA
Operating ambient temperature range (°C)
5 ÷ 35
Storage Temperature range (°C)
5 ÷ 50
Maximum humidity
Non condensing at inlet water temperature
Low Power RF Sealed Off Pulsed Laser, high peak power and wide range of wavelengths
Rated power (W)
80
Effective peak power (W)
200
Power stability (long term)
±5%
Wavelength (μm)
10.6 ± 0.4
Polarization
linear (parallel to base)
Beam diameter (1/e² at the exit)
9.4 ± 0.5
Beam divergence (1/e² full angle) (mrad)
3.0 ± 0.3
Maximum pulse frequency (kHz)
50
Pulse width range (μs)
2 ÷ 1000
Maximum duty cycle
60%
Mode quality (M²)
< 1.2
Beam ellipticity
1.2 : 1
Optical pulse rise/fall time (μs)
< 50
Typical gas mix consumption (NL/year)
NA
Operating ambient temperature range (°C)
5 ÷ 35
Storage Temperature range (°C)
5 ÷ 50
Maximum humidity
Non condensing at inlet water temperature
Working Area (mm)
from 100×100 to 300×300 mm
Description
3-axis triple scanning head
Working area (mm)
770×390
Working distance (mm)
535
Wavelength (μm)
10.6 ± 0.4
Dimensions (mm)
939x816x372
Weight (kg)
133
Description
3-axis scanning head
Working area (mm)
from 500x500mm to 1800x1800mm
Working distance (mm)
depending on working area (***)
Wavelength (μm)
10.6 ± 0.4
Dimensions (mm)
750x405x381.5
Weight (kg)
46,5
Description
3-axis scanning head
Working area (mm)
from 150x150mm to 800x800mm
Working distance (mm)
depending on working area (**)
Wavelength (μm)
10.6 ± 0.4
Dimensions (mm)
382x220x222
Weight (kg)
10,5
Description
2-axis scanning head
Working area (mm)
from 50x50mm to 300x300mm
Working distance (mm)
depending on f-theta
Wavelength (μm)
10.6 ± 0.4
Dimensions (mm)
220x148x203
Weight (kg)
6
Description
2-axis scanning head
Working area (mm)
from 50x50mm to 300x300mm
Working distance (mm)
depending on f-theta
Wavelength (μm)
10.6 ± 0.4
Dimensions (mm)
220x148x203
Weight (kg)
6

Rated excursion rotor (°mech.)
40
Note
42° mechanically limited
Rotor inertia (g•cm²)
55
Note
± 10%
Recommended aperture size (mm)
40 ÷ 100
Torque constant (mN•m/A)
103
Note
± 10%
Back EMF (mV/(rad/s))
103
Note
± 10%
Coil resistance (Ohm)
2
Note
± 10%
Coil inductance (μH)
1.1
Note
± 10%
Thermal resistance coil to case (°K/W)
0.3
Note
Max
RMS Coil current (A)
10
Note
Max Stator’s temperature 60°C
RMS Power (W)
200
Note
Max Stator’s temperature 60°C
Peak Coil current (A)
35
Note
10 ms @ 20 Hz
Weight (g)
1400
Linearity (%)
99.9
99.8
Note
Min over +/-15° mecc excursion
Min over +/-20° mecc excursion
Scale drift (ppm/K)
+/-50
Note
Max, over 20 to 60°C case temperature
Zero drift (μrad/°K)
+/-15
Note
Max, over 20 to 60°C case temperature
Long term drift (% f.s./year)
0.1
Repeatibility (μrad)
15
Note
Short term, no temperature change
Output signal, differential mode (μA/°mech)
6*
Output signal, common mode (μA)
150
Note
Recommended
Sensor power requirements (V ; mA)
4.5-7
15-30
Rated excursion rotor (°mech.)
40
Note
42° mechanically limited
Rotor inertia (g•cm²)
9
Note
± 10%
Recommended aperture size (mm)
15 ÷ 40
Torque constant (mN•m/A)
48
Note
± 10%
Back EMF (mV/(rad/s))
48
Note
± 10%
Coil resistance (Ohm)
2.8
Note
± 10%
Coil inductance (μH)
650
Note
± 10%
Thermal resistance coil to case (°K/W)
0.65
Note
Max
RMS Coil current (A)
6
Note
Max Stator’s temperature 60°C
RMS Power (W)
90
Note
Max Stator’s temperature 60°C
Peak Coil current (A)
20
Note
10 ms @ 20 Hz
Weight (g)
330
Linearity (%)
99.95
99.9
Note
Min over +/-15° mecc excursion
Min over +/-20° mecc excursion
Scale drift (ppm/K)
+10/-35
Note
Max, over 20 to 60°C case temperature
Zero drift (μrad/°K)
±8
Note
Max, over 20 to 60°C case temperature
Long term drift (% f.s./year)
0.05
Repeatibility (μrad)
10
Note
Short term, no temperature change
Output signal, differential mode (μA/°mech)
21.5
Output signal, common mode (μA)
280
Note
Recommended
Sensor power requirements (V ; mA)
20
25
Rated excursion rotor (°mech.)
40
Note
42° mechanically limited
Rotor inertia (g•cm²)
1.9
Note
± 10%
Recommended aperture size (mm)
8 ÷ 30
Torque constant (mN•m/A)
17.2
Note
± 10%
Back EMF (mV/(rad/s))
17.2
Note
± 10%
Coil resistance (Ohm)
1.6
Note
± 10%
Coil inductance (μH)
270
Note
± 10%
Thermal resistance coil to case (°K/W)
0.9
Note
Max
RMS Coil current (A)
5
Note
Max Stator’s temperature 60°C
RMS Power (W)
50
Note
Max Stator’s temperature 60°C
Peak Coil current (A)
20
Note
10 ms @ 20 Hz
Weight (g)
210
Linearity (%)
99.9
99.8
Note
Min over +/-15° mecc excursion
Min over +/-20° mecc excursion
Scale drift (ppm/K)
+/-50
Note
Max, over 20 to 60°C case temperature
Zero drift (μrad/°K)
+/-15
Note
Max, over 20 to 60°C case temperature
Long term drift (% f.s./year)
0.1
Repeatibility (μrad)
15
Note
Short term, no temperature change
Output signal, differential mode (μA/°mech)
6*
Output signal, common mode (μA)
150
Note
Recommended
Sensor power requirements (V ; mA)
4.5-7
15-30
Rated excursion rotor (°mech.)
40
Note
42° mechanically limited
Rotor inertia (g•cm²)
0.015
Note
± 10%
Recommended aperture size (mm)
3 ÷ 8
Torque constant (mN•m/A)
2.2
Note
± 10%
Back EMF (mV/(rad/s))
2.2
Note
± 10%
Coil resistance (Ohm)
3.6
Note
± 10%
Coil inductance (μH)
100
Note
± 10%
Thermal resistance coil to case (°K/W)
4
Note
Max
RMS Coil current (A)
1.6
Note
Max Stator’s temperature 60°C
RMS Power (W)
10
Note
Max Stator’s temperature 60°C
Peak Coil current (A)
5
Note
10 ms @ 20 Hz
Weight (g)
27
Linearity (%)
99.9
99.8
Note
Min over +/-15° mecc excursion
Min over +/-20° mecc excursion
Scale drift (ppm/K)
+/-50
Note
Max, over 20 to 60°C case temperature
Zero drift (μrad/°K)
+/-15
Note
Max, over 20 to 60°C case temperature
Long term drift (% f.s./year)
0.1
Repeatibility (μrad)
15
Note
Short term, no temperature change
Output signal, differential mode (μA/°mech)
6
Output signal, common mode (μA)
150
Note
Recommended
Sensor power requirements (V ; mA)
4.5-7
15-30
Optical aperture (mm)
24
Linearity (%)
99.9% min
over 20mm
Scale drift (ppm/K)
100 max
Zero drift (μrad/°K)
10 max
Long term drift (% f.s./year)
200 max
Repeatibility (μrad)
5 max
Moving trolley excursion (mm)
20 Typical / 21 Max
Moving lens housing
Ø 1” * 4mm thickness Max
Moving trolley speed (mm/s)
1400 Max
Moving trolley acceleration (G)
25 Max
Setting time (ms)
3.6 @ Dx = 2mm Max
15 @ Dx = 20mm Max
Weight (g)
510 ± 10%
Moving trolley excursion (mm)
20 Typical / 21 Max
Moving lens housing
Ø ¾” * 3mm thickness Max
Optical aperture (mm)
18
Moving trolley mass (g)
20 ± 10% (without lens)
Moving trolley speed (mm/s)
1600 Max
Moving trolley acceleration (G)
35 Max
Setting time (ms)
3.4 @ Dx = 2mm Max
12 @ Dx = 20mm Max
Static friction (N)
0.08 Max
Coupling Constant (N/A)
2 ± 20%
Coil current (A)
1.6 RMS Max
8 Peak (10 ms @ 10 Hz) Max
Coil Resistance (Ohm)
2.8 ± 10%
Coil inductance (μH)
800 ± 10%
Back EMF Voltage (mV/ (mm*s))
2.3 ± 10%
Thermal Resistance, coil to stator (K/W)
9 Max
Coil Temperature (°C)
120 Max
Scanner Weight (g)
460 ± 10%