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Leap 100

Excimer Lasers

Excimer Lasers

…applications ranging from microstructuring, advanced semiconductor packaging, Pulsed Laser Deposition Laser Lift-Off (LLO) to high power UV LIDAR. LEAP LEAP LEAP excimer lasers deliver a unique combination of high duty-cycle output, outstanding reliability, and low cost of ownership. This makes them…

LEAP

LEAP

…Power (W) LEAP 80K 248 125 650 80 LEAP 80C 308 125 650 80 LEAP 100K 248 100 1000 100 LEAP 100C 308 100 1000 100 LEAP 130K 248 200 650 130 LEAP 130C 308 200 650 130 LEAP 150K 248 150 1000 150 LEAP 150C 308 150 1000 150 LEAP 300K 248 300 1000 300 LEAP 300C 308 300 1000 300 Datasheet LEAP Excimer Laser…

Microelectronics

Microelectronics

…deformation, limiting resolution and/or yields. This problem is no longer an issue with this new, single-step dry process. Related Products LAMBDA SX LEAP Pulsed Laser Deposition Short and intense laser pulses provide unique benefits for many pulsed laser deposition applications. Pulsed laser…

Materials Processing & Industrial Applications

Materials Processing & Industrial Applications

…as well flexible OLED lift-off from all carrier substrates including transparent and colorless polyimide (CPI). Related Products COMPex LAMBDA SX LEAP UVblade Excimer Laser Annealing Demand is rising for high definition and power efficient low temperature polysilicon (LTPS) display backplanes to be…

COHR ExcimerCatalog2019.pdf

COHR ExcimerCatalog2019.pdf

…Front View
ACCESSORIES Description
Part Number 376252
1136303
1320865
1320866
Low-Divergence Resonator Optics, 248 nm, LEAP K-Series
Transformer, 30 kVA, 190 to 480 VAC, LEAP 300C
Upgrade LEAP 80 to LEAP 130
Upgrade LEAP 100 to LEAP 150
LEAP

COHR ExcimerCatalog2020 final lr.pdf

COHR ExcimerCatalog2020 final lr.pdf

…Front View
ACCESSORIES Description
Part Number 376252
1136303
1320865
1320866
Low-Divergence Resonator Optics, 248 nm, LEAP K-Series
Transformer, 30 kVA, 190 to 480 VAC, LEAP 300C
Upgrade LEAP 80 to LEAP 130
Upgrade LEAP 100 to LEAP 150
LEAP

COHR LEAPseries DS 0518 9.pdf

COHR LEAPseries DS 0518 9.pdf

LEAP Datasheet
SPECIFICATIONS LEAP
80K 130K
LEAP
80C 130C
LEAP
100K 150K
LEAP
100C 150C
LEAP
300C
Wavelength (nm) 248 308 248 308 308
Stabilized Energy Range (mJ) 550 to 650 550 to 650 900 to 10001 900 to 1000 900 to 1000
Max.…

COHR LEAPseries DS 0619 3.pdf

COHR LEAPseries DS 0619 3.pdf

LEAP Datasheet
SPECIFICATIONS LEAP
80K 130K
LEAP
80C 130C
LEAP
100K 150K
LEAP
100C 150C
LEAP
300C 300K
Wavelength (nm) 248 308 248 308 308 248
Stabilized Energy Range (mJ) 550 to 650 550 to 650 900 to 10001 900 to 1000 900 to 1000
Max.…

COHR LEAPseries DS 0819 5.pdf

COHR LEAPseries DS 0819 5.pdf

LEAP Datasheet
SPECIFICATIONS LEAP
80K 130K
LEAP
80C 130C
LEAP
100K 150K
LEAP
100C 150C
LEAP
300C 300K
Wavelength (nm) 248 308 248 308 308 248
Stabilized Energy Range (mJ) 550 to 650 550 to 650 900 to 10001 900 to 1000 900 to 1000
Max.…

COHR LEAPseries DS 1119 1.pdf

COHR LEAPseries DS 1119 1.pdf

LEAP Datasheet
SPECIFICATIONS LEAP
80K 130K
LEAP
80C 130C
LEAP
100K 150K
LEAP
100C 150C
LEAP
300C 300K
Wavelength (nm) 248 308 248 308 308 248
Stabilized Energy Range (mJ) 550 to 650 550 to 650 900 to 10001 900 to 1000 900 to 1000
Max.…

CMM 11.5.indd

CMM 11.5.indd

…with beam
homogenising optical systems that
deliver flat-top beam profiles along
both long and short beam axes
with some 100 µm depth of field,
render a large process window,
and a correspondingly high yield
is achieved in mass production. In
addition,…

Microsoft Word - Coherent Whitepaper - Laser Processing of µLED

Microsoft Word - Coherent Whitepaper - Laser Processing of µLED

…a uniformity of better than 2% sigma to ensure
uniform interaction in the process. This setup, in combination with the output power (e.g.
100 W, 248 nm), delivers the highest throughput. Moreover, using a beam that covers the entire
wafer leads to a uniform process: Intrinsic stress…