mirSense Lasers
RPMC Lasers is the Exclusive Source for mirSense Lasers in North America
Versatile QCL Laser Technology
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- Compact, lightweight, robust & ITAR-free quantum cascade lasers (QCL)
- 10 years of cutting-edge research on InP- & InAs-based QCLs
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Wavelengths Ranging from 3 to ≈17um
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- Broad spectral range: high-power λ from 3 to 9µm / DFB up to ≈17 µm)
- Narrow linewidth DFB options with wavelength stabilization
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Plug-and-Play and OEM Options
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- HHL, OEM, and Turnkey packaging options
- Custom or standard configurations suitable for your application
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Why Choose mirSense?
Highly versatile Quantum Cascade Laser technology
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- Only QCL manufacturer to exploit two different semiconductor materials:
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- The standard InP-based technology
- The alternative InAs-based technology
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- Useful for applications like defense and security or industrial and sensing
- Can be operated in pulsed or continuous wave (CW) mode
- ITAR free PowerMir line ensures easier global deployment w/out restrictions
- Only QCL manufacturer to exploit two different semiconductor materials:
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Broad Wavelength Coverage & Customizable Configurations
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- Accessible wavelength coverage of QCLs down to 3 µm and up to ≈17 µm
- Temperature controlled wavelength tunability through MWIR for UniMir line
- Built-in thermoelectric cooler for temperature control and stabilization
- High agility and capability to respond to custom demands
- Fully customizable active region, waveguide & DFB design available
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Plug-n-Play turnkey systems, OEM driver + modules, or HHL packages
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- Compact, lightweight, and robust solid-state laser source w/ built-in TEC
- High reproducibility & power/wavelength stability ensured by HHL package
- HHL hermetically sealed, filled with N2 & burned-in to guarantee stability
- OEM & turnkey modules come w/ software or external TTL mod. for quick deployment
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mirSense offers cutting-edge Quantum Cascade Lasers (QCLs), delivering precise, mid-infrared solutions across a broad wavelength range from 3 µm to ≈17 µm. With compact, robust designs, mirSense’s QCLs are trusted for material characterization , defense , industrial, and molecular spectroscopy , offering unmatched performance in both pulsed and continuous wave (CW) modes. Leveraging proprietary InP-based and InAs-based semiconductor technologies, Mirsense’s QCLs are customizable to meet specific wavelength and performance needs, with plug-and-play turnkey systems, OEM modules, and HHL packaging options. Their hermetically sealed HHL packages ensure long-term power and wavelength stability, while built-in thermoelectric cooling provides reliable temperature control. With over 10 years of expertise in advanced quantum semiconductor device development, mirSense delivers high-performance solutions, combining innovation with long-term reliability for demanding applications in gas sensing, spectroscopy, and security.
Let us help find the right solution for you!
| Picture | Part Number | Wavelength (nm) | pa_short_description | Type |
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PowerMir | 4000, 4600, 4800, 9400 | Quantum Cascade Laser (QCL), Spectrally Multimode, QCW, 4-9µm, up to 2W | LD Module, Single Emitter, QCL, Turn-Key System |
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UniMir | Multiple Wavelength Options | Quantum Cascade Laser (QCL), Wavelength Stabilized, 10-19um, up to 20mW | LD Module, Single Emitter, QCL, DFB, Narrow Linewidth |
What sets mirSense apart?
mirSense came into being in 2015 after years of developing the QCL technology, providing mid-infrared (MWIR) and long-infrared (LWIR) range laser sources. The QCLs designed and manufactured by mirSense are high-powered diodes (typically watt-level from ≈ 100 mW up to 1.5 W), emitting in the main transmission bands of the atmosphere (4.0, 4.6, 4.8, 9.x µm), with new options becoming available deep into the LWIR region (≈ 10-18 µm). They are Fabry-Perot laser sources operating in the CW or short-pulsed regime (pulsed operation down to a few tens of nanoseconds and high frequency above MHz) at room temperature. They offer high average power, wall-plug efficiency, and beam quality, making them ideally suited for counter-measures and other defense applications.
To assist the nuclear industry in the detection and monitoring of critical compounds, a new class of Distributed Feedback (DFB) Quantum Cascade Laser (QCL) has been developed. While the standard QCL uses InGaAs and AlInAs on an InP substrate – the basis of the optoelectronics telecom industry – this novel QCL technology is based on InP and InAs. These materials’ specific properties enabled the expansion of the QCL wavelength range from ≈3µm to ≈18µm, which better encompasses the easily discernable absorption peaks of the compounds of interest. By controlling the chip’s operating temperature through the Peltier element inside the laser’s package, customers tune the emission wavelength without mode hopping, while maintaining single longitudinal mode (SLM) operation. The technology’s versatility allows them to address any wavelength between 10 and 18µm in CW / short-pulsed mode, opening the way for high-resolution spectroscopy applications in this spectral range, notably for the detection of BTEX, but also CH3I, HCN and many other compounds.
Let Us Help
With 1000s of fielded units, and over 25 years of experience, providing OEMs, contract manufacturers, and researchers with the best laser solution for their application, our expert team is ready to help! Working with RPMC ensures you are getting trusted advice from our knowledgeable and technical staff on a wide range of laser products. RPMC and our manufacturers are willing and able to provide custom solutions for your unique application.
Check out our Online Store: This page contains In-Stock products and an ever-changing assortment of various types of new lasers at marked-down/discount prices.
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