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  • Compact 3.0mm plastic aspheric lens with 1.5mm back focal length. Made from PMMA and designed for high-quality collimation across 450–980nm.

  • 3.0mm plastic aspheric lens with 2.0mm BFL, made of PMMA. Designed for compact collimation systems across 450–980nm wavelengths.

  • High-performance 4.3mm plastic aspheric lens with 8.0mm BFL. PMMA construction for visible to NIR collimation in compact laser and optical systems.

  • 5.0mm plastic aspheric lens with 1.7mm back focal length, made from PMMA. Ideal for collimating 450–980nm light in compact optical systems.

  • 5.0mm plastic aspheric lens with 1.1mm BFL, made from COC. Designed for high-precision optical systems operating between 450–980nm.

  • 5.0mm aspheric plastic lens with 1.8mm BFL, made from COC. Ideal for collimating or focusing light in the 450–980nm range with glass-like optical performance.

  • Precision-molded 5.0mm PMMA aspheric lens with 2.0mm BFL. Designed for compact optical systems operating in the 450–980nm wavelength range.

  • 5.0mm plastic aspheric lens with 2.2mm back focal length. PMMA design for compact, high-performance collimation across 450–980nm.

  • 5.0mm aspheric plastic lens with 2.3mm BFL, made from high-clarity COC. Designed for precision optical systems using 450–980nm light.

  • 5.0mm plastic aspheric lens with a 4.0mm back focal length, made from PMMA. Ideal for precision laser collimation and optical systems in the 450–980nm range.

  • 5.0mm COC aspheric lens with 4.35mm BFL. Ideal for precision beam control and laser collimation across the 450–980nm wavelength range.

  • 5.0mm plastic aspheric lens with a long 4.8mm BFL, molded from PMMA. Ideal for visible to NIR light collimation in compact precision optics.

  • 5.0mm PMMA aspheric lens with a long 8.0mm BFL for precision beam shaping in the 450–980nm spectral range.

  • 5.0mm plastic aspheric lens with an extended 9.0mm BFL. Molded in PMMA for precision beam shaping in 450–980nm optical systems.

  • 5.0mm PMMA aspheric lens with a long 10.0mm BFL, ideal for laser collimation and optical alignment in the 450–980nm range.

  • 5.0mm PMMA aspheric lens with 12.0mm back focal length. Designed for precise, long-range beam collimation across 450–980nm wavelengths.

  • 6.0mm plastic aspheric lens with 9.0mm BFL. PMMA construction provides high transmission for precision optics across 450–980nm.

  • 7.0mm PMMA aspheric lens with a 6.9mm back focal length. Ideal for long-range optical collimation from 450–980nm.

  • 7.0mm aspheric lens with 6.5mm BFL and 3.3mm height, molded in PMMA. Ideal for beam shaping across the 450–980nm spectrum.

  • 7.0mm plastic aspheric lens with 5.6mm BFL and 3.3mm height. Precision-molded PMMA for optical systems in the 450–980nm range.

  • 7.0mm PMMA aspheric lens with 13.0mm BFL and 2.3mm height. Ideal for low-divergence collimation in 450–980nm optical systems.

  • 5.0mm plastic aspheric lens with 6.0mm BFL. Precision-molded in PMMA and optimized for 532nm green laser applications.

  • 6.3mm PMMA aspheric lens with a 12.0mm back focal length. Optimized for 532nm green laser collimation and long-range optical applications.

  • 6.3mm PMMA aspheric lens with a 15.0mm BFL, optimized for 532nm. Ideal for long-range green laser collimation and precision optics.

  • 6.3mm PMMA aspheric lens with a 16.0mm back focal length. Ideal for collimating 532nm green laser beams in optical systems.

  • 6.3mm plastic aspheric lens with 17.0mm BFL. Molded PMMA design for precise 532nm green laser beam collimation and low divergence.

  • 4.5mm PMMA aspheric lens with 2.06mm BFL, optimized for 808nm IR lasers. Ideal for compact beam collimation and optical integration.

  • 4.5mm PMMA aspheric lens with 1.5mm BFL. Designed for collimating 808nm IR laser beams in compact optical systems.

  • 5.5mm PMMA aspheric lens with 2.0mm BFL, ideal for collimating 808nm IR laser beams. Compact, precise, and cost-effective.

  • 5.5mm PMMA aspheric lens with 1.5mm BFL. Optimized for 808nm IR laser collimation in compact, high-performance optical systems.

  • High speed 11.3Gb/s InGaAs Photodiode with Transimpedance Amplifier, TO-46 with long cap lens, 50ps Rise Time, 1260-1620nm, 3.3V
  • Lasermate offers 850nm, 8mW, multi-emitter, Vertical Cavity Surface Emitting Laser (VCSEL) chip for sensing
  • The VCC-94A8H is a high-performance 940nm VCSEL chip offering 8mW of output power. Engineered for both optical communication and sensing applications, it delivers stable performance and precision, making it an excellent choice for a wide range of optical systems.
  • The VCC-113A13H is an 1130nm oxide VCSEL emitter providing 13mW optical output with stable performance across wide temperature operating conditions.
  • The VCCAx-85A100G is a 100Gb/s PAM4 (50GBd) 850nm multimode VCSEL array with a dual top contact design, delivering high-performance optical data transmission for advanced communication systems.
  • The VCT-F85A32-SPLM is an 850nm single-mode, polarization-locked VCSEL in TO-46 package with integrated monitor PD and >1GHz bandwidth for consumer electronics and sensing applications.
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