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Helios 1064

COHR HELIOS DS 0217 3.pdf

COHR HELIOS DS 0217 3.pdf

HELIOS Datasheet
SPECIFICATIONS HELIOS HELIOS HELIOS
1064-2.5-50 1064-5-50 1064-6-125
Wavelength (nm) 1064
Average Power1 (W) 2.5 5.0 6.0
Pulse Energy1 (at nominal values) (µJ) >50 >100 >45
Pulse Repetition Frequency Range (kHz) Single-shot to 70 Single-shot…

Helios Whitepaper2014.pdf

Helios Whitepaper2014.pdf


stages can deliver 5 W of average power (100 µj at 50
kHz) at 1064 nm. This high peak power also supports
very efficient but economical extra-cavity frequency
doubling. Specifically, Coherent Helios lasers offer up
to 3 W of average power (60 µj at 50 kHz) of output…

compatibility matrix 02

compatibility matrix 02

…(discontinued 2014) 355 nm FieldMaxII-TO PM30X
Flare 355, 532, 1064 nm LabMax-TOP J-10MB-HE
Helios 532, 1064 nm FieldMaxII-TO PM10
HYPER RAPID 25 355, 532, 1064 nm FieldMaxII-TO PM30
HYPER RAPID 50 355, 532, 1064 nm FieldMaxII-TO PM150
Indigo-DUV (discontinued 2010) 193 nm…

COHR MaterialsProcessingBrochure 0816revA 3.pdf

COHR MaterialsProcessingBrochure 0816revA 3.pdf

…operation
over thousands of hours.
The Helios series Q-switch lasers are based on master oscillator
power amplifier (MOPA) architecture and provide the best balance
of cost and power considerations. Helios lasers are available at
1064 nm, and 532 nm at several output powers.…

COHR PowerMax-Pro DS 0917 3.pdf

COHR PowerMax-Pro DS 0917 3.pdf

…<9
Maximum Power Density (kW/cm2) 0.2 (150W)
Maximum Peak Power Density (kW/cm2) 14
Maximum Energy Density (mJ/cm2) 33 (10 ns; 1064 nm)
Rise & Fall Time (µs) 50 10 350 350
Detector Coating BB HD BB HD
Active Area (mm) 30 x 30
Minimum Beam Size (mm) 2.0 (1.0…

COHR PowerMax-Pro USB-RS DS 1017 4.pdf

COHR PowerMax-Pro USB-RS DS 1017 4.pdf

…Mode <16
Maximum Power Density (kW/cm2) 0.2 (150W)
Maximum Peak Power Density (kW/cm2) 14
Maximum Energy Density (J/cm2) 33 (10 ns; 1064 nm)
Rise & Fall Time (µs) 10 350 10 350
Detector Coating HD
Active Area (mm) 30 x 30
Minimum Beam Size (mm) 2.0 (1.0 mm -…

Industrial Photonics - October 2014

Industrial Photonics - October 2014

…difficult to mark by other
means due to its extreme hardness.
Figure 3. Color mark on glass, produced using a 700-ps laser (Coherent, Helios)
operating at 532 nm.
Filament cutting delivers
the requisite speed and
spatial accuracy,
and yields superior edge