Scientific Lasers

Laser shock peening, LiDAR, Spectroscopy, PIV, LIBS

Products

LAMBER Series high energy pulsed laser

Features:

● 8-50J@1064nm, harmonics from 532nm to 355nm
● 10/5/1Hz / 8-25ns
● Incorporate Gaussian Mirror to provide outstanding Top hat spatial profile
● Compact and rugged industrial laser head design
● Injection seeded single longitudinal mode (SLM) option
● Output Faraday rotation isolator option


Applications:

● Laser shock peening
● Material damage threshold research
● Large area ablation
● Plasma physics
● Silicon annealing


LAMBER Series high energy pulsed laser

  • Product Size Diagram

  • Specification Parameter

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  • Beam characteristics

    Version

    LAMBER-08

    LAMBER-10

    LAMBER-12

    LAMBER-15

    LAMBER-20LAMBER-25

    LAMBER-H30

    LAMBER-H40LAMBER-H50

    Repetition Rate1(Hz)

    1-10Hz

    1-5Hz

    Energy(J)


    1064nm

    8

    10

    12

    15

    2025

    30

    4050

    532nm

    5

    6.5

    8

    10

    12.515

    20

    2530

    355nm

    2

    2.5

    3

    4






    Energy Stability RMS(%)


    1064nm

    <0.7%(over 8 hours)

    532nm

    <1%

    355nm

    <1.7%

    Pulsewidth FWHM2(ns)

    8-25ns @1064nm

    Divergence3(mrad)

    <0.5mrad

    Pointing Stability4(μrad)

    <20μrad

    Timing Jitter RMS5(ns)

    <0.5ns

    Beam Diameter(mm)

    ~20

    ~23

    ~25

    ~27

    ~32~36

    ~40

    ~45~50

    Beam Spatial Profile

    Top hat

    Near Field Fit to Gaussian<1m

    70%

    Far Field Fit to Gaussian(∞)

    95%

    Beam Circularity>95%

    Polarization

    Linear

    Linewidth(cm-1)


    Standar

    1

    Injection Seeded SLm6

    0.005

    General characteristics

    Flashlamp life time>50 million shots

    AC Input

    380 VAC ±5%  50-60Hz

    Power Consumption

    <10kW(typical 12J@5Hz)

    Operating Condition

    Temperature 5-35℃  Humidity <80%

    NOTES

    1.All specifications at 1064nm and maximum repetition rate unless otherwise noted.

    2.Full width at half maximum.

    3.Full angle for 86.5% of energy.

    4.Maximum deviation from beam mean centroid.

    5.With respect to external trigger.

    6.Injection seeded version reduces energy by 10%.