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Spectronix

[ Spectronix ]
LFX-15108
266nm 15W Picosecond Laser

사양
Wavelength : 266nm
Output Power > 15W
Rep. Rate : 800kHz ~ 1000kHz
Pulse width < 15ps
Beam dia : φ6.5mm±0.5mm
Data sheet
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Sprectronix

Beam Characteristics

Wavelength    266nm (DUV)
Average Output    > 15W
Repetition Frequency    800kHz ~ 1000kHz
Pulse Width    < 15ps
Beam Diameter    φ6.5mm±0.5mm
Divergence Angle    < 0.5mrad (full-width)
Spatial Mode    TEM00
Polarization Direction    Linear

*Specifications are subject to change without notice. Always verify during purchase.

 

System Configuration

Laser Head    W2000 x D1000 x H350mm 130kg
Laser Controller    W430 x D435 x H213mm 23kg
FHG Controller    W430 x D381 x H210mm 12kg
Purge Gas Module    W430 x D608 x H279mm 25kg
Cooling Method    Laser head (cooled by water), controller (cooled by air)
Power Supply    AC200 ~ 240V±10%, 50/60Hz
Power Consumption    Up to 2.92kW
Warm-up Time    Cold start : 60min. (typ.), warm start : 15min. (typ.)
Temperature Stability Guarantee    15 ~ 30℃ *1
Storage Temperature    0 ~ 50℃
Humidity (For Both Operation and Storage)    10 - 85% RH No condensation

1 Temperature stability guarantee... Within ±1℃ of the operating temperature range.

*Specifications are subject to change without notice. Always verify during purchase.

 

Characteristics & Features

The LFX-15108 is the world's only 15W 266 nm picosecond laser achieved through Spectronix’s proprietary LD-GS technology.

In order to meet the needs for further expansion of applications and high-speed processing, such as Via processing of package substrates for semiconductors, we have developed a model with              increased output power to 15W and long-term stability and output retention time of more than 10,000 hours continuously, thus achieving the world's highest output power and longest output retention  period.

The 266 nm wavelength has a high light absorption rate for all materials, making it suited to processing notoriously difficult transparent materials such as glass and resin as well as composites,            enabling unprecedented high-quality processing.

 

high pulse energy

Pulse split mode

Multipulse mode

 

※ Processing example list 

 

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