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New Products

New Products

  • 4.6μm Low-Power benchtop DFB-QCL Mid-Infrared Quantum Cascade Laser 20mW (Benchtop Light Source)

    4.6μm Low-Power benchtop DFB-QCL Mid-Infrared Quantum Cascade Laser 20mW (Benchtop Light Source)

    MP-QCL-4600-DFB-20-B low-power desktop DFB-QCL mid-infrared quantum cascade laser is a domestically leading ultra-low power QCL-DFB laser developed by Idealphotonics in the first half of 2018. It has a tunable range of over 100nm and an output power greater than 20mW, meeting the industrial needs of customers for gas sensing and other tests. Our laser features stable collimated output power and high temperature-wavelength stability, several orders of magnitude more stable than traditional high-power quantum cascade lasers. It provides excellent test light sources for our mid-infrared testing customers.

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  • 400-1100nm High-speed Silicon-based Bias Photodetector, Active Area Φ250um, Rise Time 150ps

    400-1100nm High-speed Silicon-based Bias Photodetector, Active Area Φ250um, Rise Time 150ps

    IdealPhotonics' high-speed silicon-based bias photodetector has a light sensitivity range covering 400nm to 1100nm. It features extremely low noise, fast response, no gain, and low cost. It is suitable for conventional optoelectronic detection applications, offering excellent performance and high cost-effectiveness. Comprehensive technical support is provided technical support is provided, and it is commonly used for visible and infrared light measurement

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  • 9.06um low power bench top DFB-QCL mid-infrared quantum cascade laser 20mW (benchtop light source)

    9.06um low power bench top DFB-QCL mid-infrared quantum cascade laser 20mW (benchtop light source)

    QCL9060-9.06um Low Power Benchtop DFB-QCL Mid-Infrared Quantum Cascade Laser is an industry-leading ultra-low power QCL-DFB laser developed by Idealphotonics in the first half of 2018. With a tunable range of over 100nm and an output power greater than 20mW, it meets the industrial demands of customers in gas sensing and other applications. Our laser features collimated output with stable power, high temperature and wavelength stability, which is significantly superior to traditional high-power quantum cascade lasers in terms of stability. It provides an excellent test light source for our mid-infrared testing customers.

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  • 10.26um High Power Desktop DFB-QCL Mid-Infrared Quantum Cascade Laser  50mW (Bench top Light Source)

    10.26um High Power Desktop DFB-QCL Mid-Infrared Quantum Cascade Laser 50mW (Bench top Light Source)

    QCL10260-DFB-10.26um High Power Desktop DFB-QCL Mid-Infrared Quantum Cascade Laser is a mid-infrared test laser developed by Idealphotonics in the first half of 2019. Its low loss at the atmospheric window makes it advantageous for space optical communication testing and research. Our Benchtop light source has high power and does not require ITAR review, making it an excellent choice for commercial mid-infrared testing light sources. With a tunable range of over 100nm and an output power greater than 100mW, it meets the industrial testing requirements of our customers. Our laser has an integrated ZnSe collimated output, with stable output power and superior temperature and wavelength stability compared to traditional high-power quantum cascade lasers, offering several orders of magnitude better stability

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  • InGaAs ultra-low Noise balance detector 2.5G

    InGaAs ultra-low Noise balance detector 2.5G

    The UBD series ultra-low noise balanced detector module are upgraded products based on the previous MBD series. Compared to the original MBD series, the background noise is significantly reduced under the same conditions. With the same bandwidth and gain, the background noise of the UBD series is approximately one-third of that of the MBD series modules, resulting in higher sensitivity and better signal-to-noise ratio.

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  • 6.14um high power bench top DFB-QCL mid-infrared quantum cascade laser 100mW (benchtop light source)

    6.14um high power bench top DFB-QCL mid-infrared quantum cascade laser 100mW (benchtop light source)

    The High-Power benchtop DFB-QCL Mid-Infrared Quantum Cascade Laser is a mid-infrared test laser developed by Idealphotonics in the first half of 2019. It operates in the atmospheric window with low loss, which is beneficial for space optical communication testing and research. Our benchtop light source has high power and does not require ITAR approval, making it an excellent choice for commercial mid-infrared test light sources. With a tunable range exceeding 100nm and an output power greater than 100mW, it meets the industrial testing needs of our customers. Our laser features built-in ZnSe collimation, stable output power, and superior temperature and wavelength stability, which is several orders of magnitude higher than traditional high-power quantum cascade lasers

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  • InGaAs ultra-low noise balance detector 1G

    InGaAs ultra-low noise balance detector 1G

    The UBD series ultra-low noise balanced detector module are upgraded products based on the previous MBD series. Compared to the original MBD series, the background noise is significantly reduced under the same conditions. With the same bandwidth and gain, the background noise of the UBD series is approximately one-third of that of the MBD series modules, resulting in higher sensitivity and better signal-to-noise ratio.

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  • 633nm 2x3 PM Coupler Module (Customized Product)
  • 632nm Full Bandwidth Free-Space Acousto-Optic Modulator 100MHz

    632nm Full Bandwidth Free-Space Acousto-Optic Modulator 100MHz

    The Idealphotonics’ acousto-optic modulator allows users to adjust the output light's amplitude, duration, and frequency/period. The insertion loss can be as low as 2 dB, the extinction ratio can be as high as 50 dB, the rise time can be as fast as 5 nanoseconds, and the frequency can reach up to several hundred MHz. Applications include switching, pulse picking, fast attenuation, and more. The wavelength range extends from near ultraviolet to near infrared.

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  • Single-mode optical fiber achromatic collimator 635nm (beam waist spot diameter 0.87mm FC/PC)

    Single-mode optical fiber achromatic collimator 635nm (beam waist spot diameter 0.87mm FC/PC)

    Composed of a large numerical aperture lens system, it can use multimode optical fibers with larger numerical apertures. The beam emitted from the multimode fiber can be shaped, or the spatial plane beam can be coupled into the multimode fiber to achieve good collimation and spot shape over long distances.

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  • Single mode optical fiber achromatic collimator 520nm (beam waist spot diameter 0.92mm)

    Single mode optical fiber achromatic collimator 520nm (beam waist spot diameter 0.92mm)

    Composed of a large numerical aperture lens system, it can use multimode optical fibers with larger numerical apertures. The beam emitted from the multimode fiber can be shaped, or the spatial plane beam can be coupled into the multimode fiber to achieve good collimation and spot shape over long distances.

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  • Single mode optical fiber achromatic collimator 405nm (beam waist spot diameter 0.97mm)

    Single mode optical fiber achromatic collimator 405nm (beam waist spot diameter 0.97mm)

    Composed of a large numerical aperture lens system, it can use multimode optical fibers with larger numerical apertures. The beam emitted from the multimode fiber can be shaped, or the spatial plane beam can be coupled into the multimode fiber to achieve good collimation and spot shape over long distances.

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  • 50 50 + Countries Bussiness
  • 10000 10k + Diodes sold worldwide
  • 30 30+ Invention patent
  • 10 10+ Advanced Optical Solutions