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Marking, Metal Cutting, Welding and other Material Processing Fields
  • AFR 1064 nm 300 mW Bandpass Filter for EDFA, Fiber Lasers
    1064 nm 300 mW Bandpass Filter
    The 1064 nm 300 mW Bandpass Filter is characterized with high isolation and high return loss.
  • AFR 900 - 1000 nm 10 W Multimode Pump Protector for Fiber Lasers, Equipment
    900 - 1000 nm 10 W Multimode Pump Protector
    The 900 - 1000 nm 10 W Multimode Pump Protector features high isolation and high return loss.
  • AFR Dragon 6 kW High Power Laser Cable for Fiber Laser, Fiber Coupling
    Dragon 6 kW High Power Laser Cable
    AFR's Dragon 6 kW Laser Cable provides QBH compatible connector for high power fiber lasers up to 6 kW. Technologies incorporated include cladding mode stripping, indirect water cooling, protective window and safety interlock.
  • AFR Cavity Component for High Power Fiber Lasers
    Cavity Component for Fiber Laser (Backward)
    The Backward pump (6+1)×1 High Power Combiner with ClearCut Fiber Bragg Grating enables highly efficient combining of the powers from up to 6 multimode pump diodes into an FBG with low insertion loss for high power fiber lasers. With AFR's ClearCut design and packaging, the devices can handle 3 kW pump power and 3 kW signal power. Key Features Applications Combiner and FBG Integrated Fiber Laser Low Transmission Loss Exceptional Reliability Specifications      Parameter Unit Value  Operation Wavelength nm 1080 ± 1  Max. Handling Signal Power W 3000  Max. Signal Channel Insertion Loss (Total)1 dB 0.3  Storage Temperature ℃ - 40 to + 85  Operating Temperature ℃ 0 to + 50  Cooling Bottom Plate Temperature ℃ ≤ 25        Parameters for Combiner      Product Type - Backward pump (6+1)×1  Pump Wavelength nm 976  Fiber Type for Input (Pump Channel) - BrightCore MM200/220 DCF, 0.22 NA  Fiber Type for Input (Signal Channel) - 20/400 DCF, 0.065 NA  Fiber Type for Output (Signal Channel) - Customization  Min. Pump Efficiency % 97  Max. Input Signal Power W 3000  Max. Input Pump Power W 6 × 500  Max. Backward Power Handling W 300  Package Dimensions      Pump Power < 3 kW mm 150 (L) × 15 (W) × 10 (H)  Pump Power ≥ 3 kW mm 180 (L) × 15 (W) × 11 (H)        Parameters for FBG (OC)      Fiber Type - 20/400 DCF, 0.065 NA  Peak Reflectivity % (5.0 - 30.0) ± 2.0  Reflection Bandwidth at 50% nm 0.2 - 2.0  Tolerance on Reflection Bandwidth nm 0.1 - 0.2  Min. Side Mode Suppression Ratio dB 10  Max. Wavelength Mismatch (OC Relative HR) nm 0.3 1Test with 1064 nm light source.
  • AFR 2000 nm Mode Field Adaptor for Industrial Lasers, Bio-Medical Equipment
    2000 nm Mode Field Adaptor
    The 2000 nm Mode Field Adapter can effectively expand the mode field of single-mode fiber or LMA fiber, match the LP01 mode field of larger LMA fiber. Available for different fiber types. Key Features Applications Low Insertion Loss Fiber Laser Specifications        Parameter Unit Value  Product Type - MFA  Wavelength nm 2000  Input Fiber - SM1950  Output Fiber - FUD-4070, SM-GDF-10/130-15FA  Signal Insertion Loss dB < 0.60  Min.Extinction Ratio (for PM Fiber Only) dB 18  Power Handling1 W 10 20  Package Dimensions mm P1: 50 (L) × 5 (W) × 5 (H) P2: 70 (L) × 12 (W) × 8 (H)  Operating Temperature ℃ 0 to + 65  Storage Temperature ℃ - 40 to + 85 1If you have other power inquiries, please contact AFR for details.
  • AFR 2 μm Polarization Maintaining Fiber Optic Circulator for Industrial Lasers
    2 μm Polarization Maintaining Fiber Optic Circulator
    The 2 μm Fiber Optic Circulator is a high performance lightwave component that routes incoming signals from Port 1 to Port 2, and incoming Port 2 signals to Port 3. Key Features Applications High Power Handling Fiber Laser Low Insertion Loss Fiber Optic Instruments Specifications        Parameter Unit Value  Operating Wavelength nm 1950 or 2000  Max. Insertion Loss, λc ± 30 nm, 23 ℃ dB 1.5  Min. Isolation, λc ± 30 nm, 23 ℃ dB 16  Min. Crosstalk dB 40  Min. Return Loss dB 50  Min. Extinction Ratio dB 18  Max. Average Optical Power W 0.3, 0.5, 1, 2 or 5  Max. Peak Power (Pulse Width, 10 ns) kW 10  Max. Tensile Load N 5  Fiber Type   - Specified by ordering info.  Operating Temperature ℃ - 5 to + 70  Storage Temperature ℃ - 40 to + 85  Package Dimensions mm 12 × 17 × 39 1IL is 0.3 dB higher, RL is 5 dB lower, and ER is 2 dB lower for each connector added. Connector key is aligned to slow axis. 2The Optical Power is 1 W only for connector added.
  • AFR 2 μm Polarization Beam Combiner/Splitter for Industrial Lasers, Bio-Medical Equipment
    2 μm Polarization Beam Combiner/Splitter
    The 2 μm Polarization Beam Combiner/Splitter is a compact high performance lightwave component that combines two orthogonal polarization signals into one output fiber. The most common application is to combine the light of two pump lasers into one single fiber to double the pump power in EDFA or Raman Amplifier. The 2 μm Polarization Beam Combiner can also be used as a beam splitter. Key Features Applications Low Insertion Loss EDFA Raman Amplifier Specifications        Parameter Unit Value  Grade - Grade P Grade A  Center Wavelength (λc) nm 2000  Operating Wavelength Range nm λc ± 40  Typ. Insertion Loss dB 0.6 0.8  Max. Insertion Loss dB 1.1 1.4  Min. Extinction Ratio, 23 ℃ (for Splitter Only) dB 20 18  Min. Return Loss dB 50  Min. Directivity dB 50  Max. Optical Power (Continuous Wave) mW 500  Fiber Type -  PM 1550 Panda Fiber for Ports 1 & 2   - SMF-28 or PM 1550 Panda Fiber for Port 3  Max. Tensile Load N 5  Operating Temperature ℃ - 5 to + 70  Storage Temperature ℃ - 40 to + 85 1IL is 0.3 dB higher, RL is 5 dB lower, and ER is 2 dB lower for each connector added. Connector key is aligned to slow axis.
  • AFR Isolator Polarization Beam Laser Combiner/Splitter for Industrial Lasers, Bio-Medical Equipment
    Isolator Polarization Beam Combiner/Splitter
    The Isolator Polarization Beam Combiner/Splitter is a compact device that provides both polarization beam combining and optical isolation in one integrated component. The most common application is to combine the light of two pump lasers into one single fiber to double the pump power in EDFA or Raman Amplifier. The Isolator Polarization Beam Combiner/Splitter has extremely low insertion loss, and it can improve the amplifier performance. Key Features Applications Low Insertion Loss EDFA Compact Size  Raman Amplifier Specifications        Parameter Unit Value  Stage - Single Stage Dual Stage  Center Wavelength (λc) nm 2000  Operating Wavelength Range nm λc ± 20  Typ. Insertion Loss dB 0.6 0.7  Max. Insertion Loss dB 1.2 1.3  Min. Isolation, 23℃ dB 20 42  Min. Extinction Ratio, 23℃ (for splitter only) dB 20 20  Min. Return Loss dB 50  Directivity dB 50  Max. Optical Power (Continuous Wave) mW 500  Fiber Type -  PM 1550 Panda Fiber for Ports 1 & 2,   - SMF-28 or PM 1550 Panda Fiber for Port 3  Max. Tensile Load N 5  Operating Temperature ℃ - 5 to + 70  Storage Temperature ℃ - 40 to + 85 1IL is 0.3 dB higher, RL is 5 dB lower, and ER is 2 dB lower for each connector added. Connector key is aligned to slow axis.
  • 1064 nm Polarization Maintaining Filter Coupler
    1064 nm Polarization Maintaining Filter Coupler
    The 1064 nm Polarization Maintaining Filter Coupler is manufactured by using advanced technology to allow the input signal to be split at various ratios with high extinction ratio. Key Features Applications High Extinction Ratio Fiber Lasers Low Polarization Dependent Loss Raman Amplifier   System Monitoring Specifications  Parameter Unit Value  Center Wavelength (λc) nm 1064  Operating Wavelength Range nm λc ± 20  Configuration - 1 × 2 2 × 2  Max. Excess Loss, 23 ℃  dB 0.8 1.1  Tap Ratio % 1 ± 0.5, 5 ± 1, 10 ± 2, 50 ± 5  Min. Return Loss dB 50 50  Min. Extinction Ratio, 23 ℃ dB 20 18  Max. PDL (For SM Fiber Type), 23 ℃ dB 0.1  Max. Optical Power (Continuous Wave) mW 300  Max. Tensile Load N 5  Fiber Type - HI 1060 or PM 980 Panda Fiber for Tap Port   - PM 980 Panda Fiber for input & output ports  Operating Temperature ℃ - 5 to + 70  Storage Temperature ℃ - 40 to + 85 1IL is 0.5 dB higher, RL is 5 dB lower, and ER is 2 dB lower for each connector added. Connector key is aligned to slow axis.
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