high power picosecond lasers are ready for production€¦ · small kerf width (< 20 µm)...
TRANSCRIPT
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Sascha WeilerHigh power picosecond lasers
High power picosecond lasers are ready for production
Dr. Sascha Weiler
TRUMPF Laser GmbH + Co. KG78713 Schramberg
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Sascha WeilerHigh power picosecond lasers 2
Picosecond Lasers: fs Quality with ns Speedns pulses ps pulses fs pulses
C. Momma, B.N. Chichkov, S. Nolte, F. von Alvensleben, A.Tünnermann, H. Welling, B. Wellegehausen, “Short-pulselaser ablation of solid targets”, Opt. Commun. 129, 134 (1996)
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Sascha WeilerHigh power picosecond lasers 3
Micromachining with Picosecond Lasers
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Sascha WeilerHigh power picosecond lasers 4
Drilling with picosecond pulses
Phase 1: „Digging in“(t ≤ 1 ms)
Phase 2: Drilling through(t = 1 ms - 1s)
Phase 3: Forming the Exit Side (t = 0.01 - 10 s)
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Sascha WeilerHigh power picosecond lasers 5
Drilling with high Aspect RatioHelical Drilling of Stainless Steel
No melt or debris
No Heat Affected Zone
Free selection of taper (positive, negative or zero)
Diameters: 50 to 100 µm
Material thickness: up to 1.5 mm
Applications: Injectors, cooling holes, filters
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Sascha WeilerHigh power picosecond lasers 6
Drilling with high Aspect RatioHelical Drilling of Stainless Steel
No melt or debris
No Heat Affected Zone
Free selection of taper (positive, negative or zero)
Diameters: 50 to 100 µm
Material thickness: up to 1.5 mm
Applications: Injectors, cooling holes, filters
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Sascha WeilerHigh power picosecond lasers 7
Drilling with high Aspect RatioHelical Drilling of Titanium
No melt or debris
No Heat Affected Zone
Free selection of taper (positive, negative or zero)
Diameters: 50 to 100 µm
Material thickness: up to 2 mm
Applications: cooling holes forturbine blades
Entrance
Exit
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Sascha WeilerHigh power picosecond lasers 8
Drilling with low Aspect RatioDrilling of Ceramics (AlO, AlN, etc.)
Percussion Drilling / Trepanning withScanner Optics
Diameters < 100 µm – X mm
Low HAZ
No Chipping/Cracking
Applications: Ceramic PCB
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Sascha WeilerHigh power picosecond lasers 9
Drilling with low Aspect RatioDrilling of Silicon
Percussion Drilling / Trepanning withScanner Optics
Diameter < 100 µm – X mm
Low HAZ
High edge quality
Application: Through Silicon Vias for3D packaging
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Sascha WeilerHigh power picosecond lasers 10
Cutting
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Sascha WeilerHigh power picosecond lasers 11
Cutting with picosecond pulsesCutting of Nitinol
Small cutting kerf (< 10-20 µm)
Negligible HAZ
High quality of cutting edge
No electro polishing!
High yield
High productivity due to high averagepower
Application: Cutting of Stents, endoscopes
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Sascha WeilerHigh power picosecond lasers 12
Cutting with picosecond pulsesCutting of Silicon Wafers
Small cutting kerf (< 20 µm)
Negligible HAZ
High quality of cutting edge
High productivity due to high average power
Applications: Waferdicing
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Sascha WeilerHigh power picosecond lasers 13
Cutting with picosecond pulsesCutting of Silicon Wafers
Small cutting kerf (< 20 µm)
Negligible HAZ
High quality of cutting edge
High productivity due to high average power
Applications: Waferdicing
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Sascha WeilerHigh power picosecond lasers 14
Cutting with picosecond pulsesScribing and cutting of Ceramics
Small kerf width (< 20 µm)
Negligible HAZ
High quality of cutting edge
High productivity due to high average power
Applications: Scribing / cutting of ceramic PCBs
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Sascha WeilerHigh power picosecond lasers 15
Cutting with picosecond pulsesScribing and cutting of Ceramics
Small kerf width (< 20 µm)
Negligible HAZ
High quality of cutting edge
High productivity due to high average power
Applications: Scribing / cutting of ceramic PCBs
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Sascha WeilerHigh power picosecond lasers 16
Cutting with picosecond pulsesScribing and cutting of thin glass
Small kerf width (< 20 µm)
Negligible HAZ
High quality of cutting edge
High productivity due to high average power
Application: Scribing/cutting of thinglass for Flat-Panel-Displays
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Sascha WeilerHigh power picosecond lasers 17
Thin Film Ablation with picosecond pulses
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Sascha WeilerHigh power picosecond lasers 18
Thin Film AblationLaser patterning of thin Mo on glass
Burr free
Melt free
No delamination
Isolated channel
Application: P1 step for CIGS cell connection
ns
ps
Cracks
Melt/Delamination
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Sascha WeilerHigh power picosecond lasers 19
Thin Film AblationLaser patterning of thin films on Silicon
Direct patterning of SiO/SiN layers
Thickness of layers: 100 nm
Single shot ablation
Selective removal without affectingbase material (Silicon)
Application: Cell connection for Silicon Solar Cells, low-k dielectric grooving
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Sascha WeilerHigh power picosecond lasers 20
General Demands for Industrial Lasers
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Sascha WeilerHigh power picosecond lasers 21
General Demands for Industrial Lasers
High productivity
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Sascha WeilerHigh power picosecond lasers 22
TruMicro Series 5000
M² < 1.3
200/400 kHz
125 µJ
< 10 ps
515 nm
25 W
TruMicro 5250
343 nm1030 nmWavelength
M ² < 1.3
200/400 kHz
250 µJ
< 10 ps
50 W
TruMicro 5050
M² < 1.3Beam Quality
200/400 kHzRepetition Rate*
> 75 µJMax. Pulse Energy
< 10 psPulse Duration
> 15 WAverage Power
TruMicro 5350
* Higher Repetition Rates upon request
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Sascha WeilerHigh power picosecond lasers 23
General Demands for Industrial Lasers
High productivity AND high duty cycle
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Sascha WeilerHigh power picosecond lasers 24
External Multiplexing
External beam switches for multiplexing
Up to 4 beam switches incl. safetycircuit
Easy integration in TruControl
Maximise Laser-on Time
Maximise Productivity
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Sascha WeilerHigh power picosecond lasers 25
Machine concept for external multiplexing
Absorber/Powermeter
PLC (Integrator)
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Sascha WeilerHigh power picosecond lasers 26
Machine concept for external multiplexing
Absorber/Powermeter
PLC (Integrator)
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Sascha WeilerHigh power picosecond lasers 27
Machine concept for external multiplexing
Absorber/Powermeter
PLC (Integrator)
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Sascha WeilerHigh power picosecond lasers 28
Machine concept for external multiplexing
Absorber/Powermeter
PLC (Integrator)
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Sascha WeilerHigh power picosecond lasers 29
General Demands for Industrial Lasers
High productivity, high duty cycle, high stability
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Sascha WeilerHigh power picosecond lasers 30
TruMicro 5050 - StabilityGuaranteed Power stability < 1,5% for ambient temperatures of 20 – 30 °C
Guaranteed Energy Stability: < 2% (RMS) 2500
2000
1500
1000
500
0
Cou
nts
-2 -1 0 1 2
Energy deviation (%)
20k pulsesRMS 0.30%
Pow
er (W
att)
0
10
20
30
40
50
Time (hours)0 10 20 30 40 50 60 70
Temperature (°C
)
10
15
20
25
30
35
40
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Sascha WeilerHigh power picosecond lasers 31
General Demands for Industrial Lasers
High productivity, high duty cycle, high stability
High availabilty (> 98 % @ 24/7)
Worldwide service and support 24/7 (Telepresence)
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Sascha WeilerHigh power picosecond lasers 32
TelePresence Portal – Facts & FiguresAlmost 100% of the devices are supplied with integrated modem and give the ability to TelePresence
For 70 - 80% of the delivered devices our customers make use of TelePresence
> 90% of all incoming inquiries can be solved without on-site action
80% of the cases are diagnosed within 15 minutes
Only about 50% of the cases are defects – the other 50% are operation-, activation- and integration problems or system calibration
TRUMPF has so far the only remote maintenance solution certified by the Federal Office for Safety in the Information Technology (BSI)!
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Sascha WeilerHigh power picosecond lasers 33
General Demands for Industrial Lasers
High productivity, high stability
High Availabilty (> 98 %)
Worldwide service and support 24/7 (Telepresence)
Long Service Intervals (> 5000 h)
Long Lifetime of Pump Diode (> 20000 h)
Low Total Cost of Ownership (< 10 Euro/hour)
Process development and optimization in-house and on customer site
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Sascha WeilerHigh power picosecond lasers 34
SummaryFor industrial picosecond lasers a only combination of
- Short pulses (< 10 ps)- High average power (> 50 W)- High pulse energy (> 150 - 250 µJ)- High (but not too high for scanner speeds) pulse frequency (200 - 400 kHz)
while GUARANTEEING- Best beam quality (M² < 1,3)- High beam roundness (> 90 %)- High pulse to pulse stability (< 2 %)- High availability (> 98 %) and low TCO
enables for efficient and cost-effective micro machining!
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Sascha WeilerHigh power picosecond lasers
Thank you!
Dr. Sascha WeilerTRUMPF Laser GmbH + Co. KGAichhalder Straße 3978713 [email protected]