IL Photonics

@ILPhotonics
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For many processes, #optimization requires accurate #temperature #monitoring. Advanced #thermal #imaging solutions can capture accurate heat anomalies, monitor machinery and electrical systems, support predictive maintenance and enable accurate process temperature monitoring thanks to powerful tools and devices built to meet industrial needs. Learn more: https://ilphotonics.com/predictive-maintenance-with-advanced-thermal-imagers/
Predictive Maintenance with Advanced Thermal Imagers | IL Photonics

Exosens provides advanced thermal imaging solutions that capture accurate heat anomalies, support predictive maintenance, etc.

IL Photonics
Shortwave infrared (#SWIR) #imaging is no longer just for well-funded labs. It is becoming a practical, high-performance tool for clinical and field applications. Recent advancements in detectors, light sources, and optical filters are enabling surgical imaging, drug delivery, non-invasive #diagnostics. Learn more: https://ilphotonics.com/advancements-in-swir-technology-drive-medical-imaging/
Advancements in SWIR Technology Drive Medical Imaging | IL Photonics

Advancements in SWIR technology drive medical imaging for surgery, drug delivery, non-invasive diagnostics, etc.

IL Photonics
The #Pockels effect occurs in specific materials known as electro-optic #crystals. When an electric field is applied to these crystals, their refractive index changes proportionally. This change alters the #polarization state of light passing through the crystal, allowing for precise control over #laser parameters such as intensity and pulse duration. Learn more: https://ilphotonics.com/how-pockels-cells-assist-high-precision-laser-operations/
How Pockels Cells Assist High-Precision Laser Operations | IL Photonics

Pockels cells are a critical component, serving as electro-optic devices that manipulate light in high-precision applications.

IL Photonics
Terrestrial and #Satellite Free Space Optical #Communication system success is predicated on the Pointing, Acquisition, and Tracking (#PAT) mechanisms to align multiple nodes in dynamic spatial/temporal systems. Successful PAT operation in point-to-point transmission is realized through the beacon channel #InGaAs quadrant #photodiodes. Learn more: https://ilphotonics.com/optical-communications-with-ingaas-quadrant-photodiodes/
Optical Communications with InGaAs Quadrant Photodiodes | IL Photonics

Successful PAT operation in point-to-point transmission is realized through the beacon channel InGaAs quadrant photodiodes.

IL Photonics
#Lasers now measured in #petawatts (one quadrillion watts) are now commonly used for high-energy research. Some researchers are planning #exawatt power systems. As lasers become ever more powerful, the demands placed on optical components grow in complexity and scale. The higher the power, the greater the laser damage threshold (#LDT) needed. To some extent new challenges can be mitigated by using large #optics. Learn more: https://ilphotonics.com/what-changes-when-manufacturing-and-using-large-vs-small-optics/
What Changes When Manufacturing and Using Large vs. Small Optics? | IL Photonics

Manx Precision Optics takes a closer look at the scalability issues experienced in the fabrication of large optics for high power lasers.

IL Photonics
Laser-welded screw joints are gaining traction, but guaranteeing their reliability remains a key challenge. A fully automated system for real-time, 100% inspection of laser-welded screws has been developed. By combining LTB’s laser and acoustic technologies with AI-based signal analysis. The team aims to detect defects like pores or cracks immediately after welding — thus ensuring maximum safety and quality. Learn more: https://ilphotonics.com/developing-ai-based-testing-of-laser-welded-screws/
Developing AI-Based Testing of Laser-Welded Screws | IL Photonics

LTB is part of a team developing a fully automated system for real-time, 100% inspection of laser-welded screws.

IL Photonics
Infrared technology has been used for millennia in noncontact #temperature measurements. For example, fire was the target and the eye was the detector, observing how the color emitted by a flame varied based on temperature. Today, #pyrometry is the primary technique of noncontact temperature #measurement. Pyrometry is a method of calculating the temperature of an item remotely, using measurements of a target’s thermal radiation (infrared light). Learn more: https://ilphotonics.com/introduction-to-ingaas-over-ingaas-ratio-pyrometry/
Introduction to InGaAs Over InGaAs Ratio Pyrometry | IL Photonics

GPD Optoelectronics explains the technology behind a ratio pyrometer using two photodiode InGaAs detectors.

IL Photonics
A case study shows how a build-up of debris on optical chamber windows and debris shields was undermining the efficiency and output quality of a client’s #AdditiveManufacturing for aerospace operation. Worse still, ineffective #cleaning techniques were actually making the problem worse. Learn more: https://ilphotonics.com/are-dirty-windows-impairing-your-additive-manufacturing-operation/
Are Dirty Windows Impairing Your Additive Manufacturing Operation? | IL Photonics

Case study shows how a build-up of debris on optical chamber windows and debris shields was undermining the efficiency and output quality.

IL Photonics
A newly developed multiplane structured illumination #microscopy (#SIM) system achieves an 8× increase in volumetric imaging speed, capturing rapid interactions within live cells. Learn more: https://ilphotonics.com/live-cell-super-resolution-imaging-with-fast-3d-sim/
Live-Cell Super-Resolution Imaging with Fast 3D-SIM | IL Photonics

A newly developed multiplane SIM system achieves an 8× increase in volumetric imaging speed, capturing rapid interactions within live cells.

IL Photonics
Wildfires are a growing global problem. The application of Earth observation (#EO) for early remote detection of #wildfires typically offers two key approaches. First, observers can attempt to identify chemical absorption bands of interest, such as potassium, that can be indicative as precursors to wildfire. More common is the use of #ThermalImaging to look for hot spots, or specific heat profiles, in long-wavelength infrared (#LWIR) bands. Learn more: https://ilphotonics.com/fire-detectors-in-orbit/
Fire Detectors in Orbit | IL Photonics

The application of Earth orbit to early remote detection of wildfires typically offers two key approaches.

IL Photonics