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1 - 10 of 10 Search Results for argon 457

1pdf document  AnalyticalArticleRev2 Best match in this PDF  |  All matches in this PDF
…packaging, ease of use, functionality and reliability of many analytical instruments. Whether the choice was an air-cooled argon-ion, HeNe or HeCd laser, or a watercooled argon-ion, Kr or mixed-gas laser, each brought significant drawbacks to analytical instrument design. Some applications required several…
Related Searches: diode-pumped solid-state | 488nm | raman | he-ne laser

2pdf document  Diodes and OPSL vs HeCd Best match in this PDF  |  All matches in this PDF
…to power Table 1. Most commonly applied wavelengths (in nm) of ion, HeCd, diode lasers and OPSLs. UV Violet Blue Green Yellow Orange Red IR Argon 351 364 457 477 488 514 HeNe 543 a 594 b 612 c 633 d HeCd 322 354 442 Laser Diode 375 405 445 488 635 640 660 685 730 785 OPSL 355 458 460 480 488 514 532…
Related Searches: he-cd | 473 nm | 635 nm diode lasers | 355 nm diode

3103_Coherent Reprint.qxd  (PAGE 1 OF 5)
…ease of use, functionality and reliability of many analytical instruments.
Whether the choice was an air-cooled
argon-ion, HeNe or HeCd laser, or a watercooled argon-ion, Kr or mixed-gas laser,
each brought significant drawbacks to analytical instrument design. Some applications required…
Related Searches: diode-pumped solid-state

4Advances in Diode Lasers and OPSLs  (PAGE 1 OF 5)
…Most commonly applied wavelengths (in nm) of ion, HeCd, diode lasers and OPSLs.
UV Violet Blue Green Yellow Orange Red IR
Argon
351
364
457
477
488
514
HeNe 543
a
594
b
612
c
633
d
HeCd
322
354
442

Related Searches: he-cd laser

5Advances in Diode Lasers and OPSLs  (PAGE 1 OF 5)
…Most commonly applied wavelengths (in nm) of ion, HeCd, diode lasers and OPSLs.
UV Violet Blue Green Yellow Orange Red IR
Argon
351
364
457
477
488
514
HeNe 543
a
594
b
612
c
633
d
HeCd
322
354
442

6pdf document  OPSL effRev2 Best match in this PDF  |  All matches in this PDF
…wavelengths and low-amplitude noise properties. For example, in the rapidly growing market for digital photofinishing, traditional methods employ argon-ion lasers at 457 nm, but 460 nm more perfectly matches the absorption of photo emulsions. Low-noise performance could also translate into a distortion-free…
Related Searches: fiber coupler | 980nm laser diode | diode-pumped solid-state | molecular beam epitaxy

7pdf document  OPSL eff Best match in this PDF  |  All matches in this PDF
…wavelengths and low-amplitude noise properties. For example, in the rapidly growing market for digital photofinishing, traditional methods employ argon-ion lasers at 457 nm, but 460 nm more perfectly matches the absorption of photo emulsions. Low-noise performance could also translate into a distortion-free…
Related Searches: sapphire 488-20 | 488nm | molecular beam epitaxy | 488 nm laser

8Coherent Laser.QXD  (PAGE 2 OF 2)
…-amplitude noise properties.
For example, in the rapidly growing
market for digital photofinishing, traditional methods employ argon-ion
lasers at 457 nm, but 460 nm more
perfectly matches the absorption of
photo emulsions. Low-noise performance could also translate into a

Related Searches: sapphire 488-20

9Coherent Laser.QXD  (PAGE 2 OF 2)
…-amplitude noise properties.
For example, in the rapidly growing
market for digital photofinishing, traditional methods employ argon-ion
lasers at 457 nm, but 460 nm more
perfectly matches the absorption of
photo emulsions. Low-noise performance could also translate into a

Related Searches: 488 nm laser | sapphire 488-20

10Coherent Laser.QXD  (PAGE 2 OF 2)
…-amplitude noise properties.
For example, in the rapidly growing
market for digital photofinishing, traditional methods employ argon-ion
lasers at 457 nm, but 460 nm more
perfectly matches the absorption of
photo emulsions. Low-noise performance could also translate into a




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