Yag Mirror

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Erbium YAG Er:YAG 2.94um Rear Mirror (HR) for Sharplan / Lumenis Laser 0.5
Erbium YAG Er:YAG 2.94um Rear Mirror (HR) for Sharplan / Lumenis Laser 0.5" Dia
Paypal   US $79.00
Laser galvo scanner replacement  mirror 7.5mm x 13mm x 0.7mm X Y Yag RGB DT40
Laser galvo scanner replacement mirror 7.5mm x 13mm x 0.7mm X Y Yag RGB DT40
Paypal   US $39.95
2 pieces of Nd:YAG laser reflect output mirror (1064nm)
2 pieces of Nd:YAG laser reflect output mirror (1064nm)
Paypal   US $56.00
Nd:YAG HR laser mirror 1064nm  40 mm diameter
Nd:YAG HR laser mirror 1064nm 40 mm diameter
Paypal   US $35.00
Laser galvo scanner replacement  mirror 6mm x 11mm x 0.7mm Yag RGB DT40
Laser galvo scanner replacement mirror 6mm x 11mm x 0.7mm Yag RGB DT40
Paypal   US $24.99
Laser reflective mirror/lens φ20mm HR@1064nm for YAG/Diode/fiber laser mark/cut
Laser reflective mirror/lens φ20mm HR@1064nm for YAG/Diode/fiber laser mark/cut
Paypal   US $30.00
Laser output coupler reflective mirror/lens φ20mm T=20%@1064nm for YAG/Diode
Laser output coupler reflective mirror/lens φ20mm T=20%@1064nm for YAG/Diode
Paypal   US $30.00
Φ20mm 1064nm YAG Laser T=20% Output Coupler + Total Reflector/Reflective Mirror
Φ20mm 1064nm YAG Laser T=20% Output Coupler + Total Reflector/Reflective Mirror
Paypal   US $49.86
Multiwavelength laser reflective mirror/coupler HR912nm & HT808nm for YAG/Diode
Multiwavelength laser reflective mirror/coupler HR912nm & HT808nm for YAG/Diode
Paypal   US $46.00
Multiwavelength laser reflective mirror/coupler HR@1064+532nm for YAG/Diode
Multiwavelength laser reflective mirror/coupler HR@1064+532nm for YAG/Diode
Paypal   US $42.99
Multiwavelength laser reflective mirror/coupler HR1064nm & HT532nm for YAG/Diode
Multiwavelength laser reflective mirror/coupler HR1064nm & HT532nm for YAG/Diode
Paypal   US $42.99
Multiwavelength laser reflective mirror/coupler HT1064nm & HR532nm for YAG/Diode
Multiwavelength laser reflective mirror/coupler HT1064nm & HR532nm for YAG/Diode
Paypal   US $42.99
Laser reflective mirror/lens φ30mm 45°HR@1064nm for YAG/Diode/fiber laser
Laser reflective mirror/lens φ30mm 45°HR@1064nm for YAG/Diode/fiber laser
Paypal   US $36.00
Laser output coupler reflective mirror/lens φ20mm T=15%@1064nm for YAG/Diode
Laser output coupler reflective mirror/lens φ20mm T=15%@1064nm for YAG/Diode
Paypal   US $30.00
Laser output coupler reflective mirror/lens φ20mm T=10%@1064nm for YAG/Diode
Laser output coupler reflective mirror/lens φ20mm T=10%@1064nm for YAG/Diode
Paypal   US $30.00
Nd:YAG + HeNe/Diode Mirror 1 inch diameter
Nd:YAG + HeNe/Diode Mirror 1 inch diameter
Paypal   US $79.95
Φ20mm 1064nm YAG Laser Reflective Mirror Lens Coupler for Marker Engraver Cutter
Φ20mm 1064nm YAG Laser Reflective Mirror Lens Coupler for Marker Engraver Cutter
Paypal   US $29.50
Φ20mm 1064nm YAG Laser Output Mirror/Coupler for Marking/Engraving/Cutting
Φ20mm 1064nm YAG Laser Output Mirror/Coupler for Marking/Engraving/Cutting
Paypal   US $29.47
Φ20mm 1064nm YAG Laser T=15% Output Coupler + Total Reflector/Reflective Mirror
Φ20mm 1064nm YAG Laser T=15% Output Coupler + Total Reflector/Reflective Mirror
Paypal   US $49.86
CVI   Nd:YAG, High Energy Laser Mirror      NEW!!
CVI Nd:YAG, High Energy Laser Mirror NEW!!
Paypal   US $340.00
CVI   Nd:YAG, High Energy Laser Mirror      NEW!!
CVI Nd:YAG, High Energy Laser Mirror NEW!!
Paypal   US $340.00
Virgo Optics 1064nm YAG mirrors 1/2 inch dia. 2* wedge
Virgo Optics 1064nm YAG mirrors 1/2 inch dia. 2* wedge
Paypal   US $24.95
X+Y Scan Galvo Mirror for YAG 1064nm Laser Scanner Scanning AR Coated Plated
X+Y Scan Galvo Mirror for YAG 1064nm Laser Scanner Scanning AR Coated Plated
Paypal   US $189.45
Two NEW silicon mirrors for IR lasers (CO2, YAG) CNC
Two NEW silicon mirrors for IR lasers (CO2, YAG) CNC
Paypal   US $49.00
NRC Optical Mirror Nd:Yag 1064nm Spectra Physics
NRC Optical Mirror Nd:Yag 1064nm Spectra Physics
Paypal   US $75.00
Yag  MIRROR  REV B 0.251''/ 6.4mm
Yag MIRROR REV B 0.251''/ 6.4mm
Paypal   US $80.00
 HO HCT:Yag HR MIRROR REV B 0.133''/ 3.38mm
HO HCT:Yag HR MIRROR REV B 0.133''/ 3.38mm
Paypal   US $60.00
Beam Expandry Telescope Nd:Yag Laser Optical NRC Mirror
Beam Expandry Telescope Nd:Yag Laser Optical NRC Mirror
Paypal   US $350.00
Coherent ND:YAG Laser Relay Silicon Mirror .875x3mm
Coherent ND:YAG Laser Relay Silicon Mirror .875x3mm
Paypal   US $69.99
New Focus: 1
New Focus: 1" Nd:YAG Mirror Model # 5104, 1064 nm
Paypal   US $65.00
CVI / Melles: 1
CVI / Melles: 1" Nd:YAG Laser Mirror Part # Y1-1037-0-1.50cx ($258) Very Nice!
Paypal   US $105.00
CVI / Melles: 1
CVI / Melles: 1" Nd:YAG Laser Mirror Part # Y1-1037-0-3.00CX ($258) Very Nice!
Paypal   US $105.00
MIRROR HIGH REFLECTOR OLD YAG LASER BK-7
MIRROR HIGH REFLECTOR OLD YAG LASER BK-7
Paypal   US $49.00
NEW Nd:YAG Nd YAG Laser Mirror 1064nm 1.06um Oval shaped, 25.4mm x 20mm
NEW Nd:YAG Nd YAG Laser Mirror 1064nm 1.06um Oval shaped, 25.4mm x 20mm
Paypal   US $39.00
Nd:Yag High Power Laser Mirror Set Optical Photonics
Nd:Yag High Power Laser Mirror Set Optical Photonics
Paypal   US $195.00
New Focus /Newport 1
New Focus /Newport 1" Nd: YAG Mirror Part # 5104 - used Laser Optic Mirror
Paypal   US $75.00
NEW Nd:YAG Nd YAG Curved Laser Mirror 1064nm 1.06um 12mm Dia, 3.5mm FL
NEW Nd:YAG Nd YAG Curved Laser Mirror 1064nm 1.06um 12mm Dia, 3.5mm FL
Paypal   US $29.00
NEW Holmium YAG Ho:YAG 2.1um Folding Mirror for Sharplan / Lumenis Laser 25mm
NEW Holmium YAG Ho:YAG 2.1um Folding Mirror for Sharplan / Lumenis Laser 25mm
Paypal   US $99.00
Nd:YAG Nd YAG Laser Mirror 1064nm 1.06um 1.5
Nd:YAG Nd YAG Laser Mirror 1064nm 1.06um 1.5" Dia x 0.125" thick
Paypal   US $49.00
CVI Laser Optics: YAG Folding Mirror: 25mm  Part # 88845
CVI Laser Optics: YAG Folding Mirror: 25mm Part # 88845
Paypal   US $45.00
Newport 10QM20HM.70 High Power YAG Laser Mirror
Newport 10QM20HM.70 High Power YAG Laser Mirror
Paypal   US $250.00
NEW Nd:YAG Nd YAG Laser Mirror 1064nm 1.06um 15mm Dia x 3mm thick
NEW Nd:YAG Nd YAG Laser Mirror 1064nm 1.06um 15mm Dia x 3mm thick
Paypal   US $49.00
NEW Nd:YAG Nd YAG Laser OC Front Cavity Mirror  1064nm 0.5
NEW Nd:YAG Nd YAG Laser OC Front Cavity Mirror 1064nm 0.5" Dia x 0.38" thk 88%R
Paypal   US $49.00
Coherent Laser Optics: Nd: YAG / YLF Mirror 12.7mm BK7 NEW - VERY NICE!
Coherent Laser Optics: Nd: YAG / YLF Mirror 12.7mm BK7 NEW - VERY NICE!
Paypal   US $60.00
NEW CVI LENS 0800-00025 YAG FOLDING MIRROR
NEW CVI LENS 0800-00025 YAG FOLDING MIRROR
Paypal   US $50.00
Coherent ND:YAG Laser Relay Silicon Mirror 1064nm 160cm
Coherent ND:YAG Laser Relay Silicon Mirror 1064nm 160cm
Paypal   US $69.99
Multiwavelength laser reflective mirror/coupler HR795nm & HT398nm for YAG/Diode
Multiwavelength laser reflective mirror/coupler HR795nm & HT398nm for YAG/Diode
Paypal   US $46.00
Laser output coupler reflective mirror/lens φ20mm T=80%@1064nm for YAG/Diode
Laser output coupler reflective mirror/lens φ20mm T=80%@1064nm for YAG/Diode
Paypal   US $30.00
Laser reflective mirror/lens φ30mm HR@1064nm for YAG/Diode/fiber laser
Laser reflective mirror/lens φ30mm HR@1064nm for YAG/Diode/fiber laser
Paypal   US $35.00
Multiwavelength laser reflective mirror/coupler HR1064nm & HT808nm for YAG/Diode
Multiwavelength laser reflective mirror/coupler HR1064nm & HT808nm for YAG/Diode
Paypal   US $46.00
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Yag Mirror

Beginners Guide to Laser Engraving

With so many options on laser marking systems available today it is not surprising that many people get confused with which is the most suitable to their application. Many people don’t even know that the term “laser”, is actually an acronym – Light amplification by stimulated emission of radiation – which explains the process by which a laser beam is created. The basic theory of this is simple. A gain medium (the material that is used to create the laser light), is excited using either light or electrical energy to generate photons (the laser light). All of this is happening in a closed cavity, with a completely reflective mirror at one end, and a semi reflective one at the other. When the light bouncing around inside gains enough energy, it escapes through the semi-reflective mirror.

These high energy photons are then focused to a small spot (much like you did at school when you used a magnifying glass to focus the sunlight to burn things!). If it is a vector laser, this beam is deflected and directed using a pair of mirrors (X and Y deflection). This guide will help you understand the capabilities of the 3 most common lasers available in the market today:

  • A CO2 laser: the Carbon Dioxide gas sealed inside the laser (along with some other gases – most commonly nitrogen, and helium) is pumped (excited / heated up) using electrical energy (DC, AC or RF) which creates the stream of photons.
  • An Nd:YAG laser: the neodymium-doped yttrium aluminium garnet (Nd:Y3Al5O12) is pumped using a lamp or diode to emit the stream of photons.
  • A Fiber laser: a glass fiber doped with a rare earth ion – most commonly ytterbium (Yb3+) – is diode pumped and the photons generated are reflected down the fiber towards the deflecting mirrors.

What are the differences?

The basic differences between the nd:YAG / Fiber and CO2 Lasers is the wavelength of the beam that it produces. The light emitted from a laser sits within the Invisible Light - Infrared region of the electromagnetic spectrum.

The light of the YAG and fiber lasers are emitted at a wavelength that is precisely 10 times smaller (1.064 µm) than that of a CO2 laser(10.6 µm).

This smaller wavelength also means that if the Nd:YAG/Fiber and CO2 lasers were used in the same application (with the same set-up). The Nd:YAG/Fiber would have a much smaller spot size and consequently, mark with a better resolution.

What difference does this make?

These wavelengths determine which laser should be used for each application, as the material to be marked will have different absorption capabilities (of the light at different wavelengths). If a material can absorb the light, then it can be affected by it.

Which one should I use for metal?

Most metals are highly reflective and therefore, an Nd:YAG or Fiber laser would be most suited.The wavelength being much shorter means there will be less reflection of the beam on the surface, therefore less loss of energy and consequently easier working of the metal. The metal absorbs more of the light energy that changes its physical properties.

Which one should I use for non – metal?

Organic materials such as wood, acrylics, plastics, fabrics, and transparent objects are better suited to the CO2 as the wavelength is longer and has more latitude. However the Nd:YAG and Fiber lasers can be used to mark some non-metals too. But if the object is transparent (eg. glass) then the YAG / Fiber laser light will pass through it without marking it.

Laser markers can produce alpha-numeric characters, bar codes, serial numbers, logo's, artwork and other graphic images using a non-contact thermal process.

Is there an easy way of knowing which would be most suitable?

Ideally, a sample of the material would have to be tested , but generally think of CO2 for Organic and YAG and its derivatives (Fiber, nd:YAG .. etc) for Non Organic materials.

Okay, I have decided to go for either an nd:YAG or Fiber laser, what are the differences??

  • The nd:YAG uses a lamp or a diode pack (array) to excite the gain medium - these require more electrical power and wear out (and are very costly to replace). They, also produce a lot of heat and require more heat dissipation (some water cooled – most now use heat-sinks and thermo-electric cooling systems)
  • The fiber lasers use many single emitter diodes that are cheaper to run, and will last the lifetime of the fiber. The mean time before failure is greater than 50,000hrs
  • The fiber laser is more stable at all power levels.
  • The light source with a fiber is completely sealed all the way to the marking head. This stops dust and particle contamination and enables longer working distances between the control unit and marking head. It also reduces any leakage and therefore increases the efficiency of the laser beam.
  • The fiber laser “boots up” a lot quicker.
  • The fiber laser has less replacement parts (such as resonator mirrors, crystals, fluids and filters)

About the Author

Laith is the sales and business development manager for Identisys Ltd, based in Northamptonshire they are experts in Laser Engraving

LGBT: If homosexuals are called *gay* then why aren't heterosexuals called?

LGBT: If homosexuals are called *gay* the why aren't heterosexuals called *yag*? And if opposites attract, then what's the problem?

Mirror_rorriM on the wall, who indeed is the unfairest of them all?

Omega

Straight? lol

Mirror_rorriM on the wall who is the Fairest of them all- it answers with you.
Unfairest- i don't know..

What Do You Need to Make Cold Atoms? Part 2: Lasers and Optics [Uncertain Principles]
Following on yesterday's discussion of the vacuum hardware needed for cooling atoms , let's talk about the other main component of the apparatus: the optical system. The primary technique used for making cold atoms is laser cooling , and I'm sure it will come as no surprise that this requires lasers, and where there are lasers, there must also be optics. There are lots of different types of ...

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