PCM phase changes reveal weak or faulty battery cells under applied load, enabling precise pack monitoring and overheating prevention.
Fault area ratios and impact coefficients quantify photovoltaic module power loss, helping O&M teams assess faults with less manual inspection.
A removable infrared window mount separates camera replacement from vehicle glazing while preserving alignment and reducing vignetting.
A removable outer window and interface part let vehicle IR cameras match glazing angle while reducing edge vignetting and easing maintenance.
A high-conductivity heat dissipation member in the package substrate helps a Peltier-cooled sensor maintain cooling performance in a sealed package.
A lipid coating plus heat treatment keeps polymer sensor windows IR-transmissive despite touch, sebum, and spills, improving reading accuracy.
Multi-wavelength radiant light sensing tracks wafer temperature and dopant activation during laser annealing without offline damage.
Far-infrared reflection and thermal imaging detect sub-100 µm metal debris on battery surfaces while separating it from dust and rough-surface noise.
A small-spot edge pyrometer and alignment jig improve far-edge wafer temperature measurement, helping limit thermal gradients during CVD.
Far-infrared reflection analysis helps detect 30 μm metal debris on curved battery surfaces without microscope complexity.
Heterodyne detection on a photonic integrated circuit sharpens Raman peak separation below 200 MHz while keeping the spectrometer compact.
Multiple camera sets with different focal lengths expand front and side perception, reducing blind spots while limiting sensor power use.
Borosilicate glass replaces sapphire in a Peltier-cooled sensor window to reduce wavelength-specific absorption and improve detection sensitivity.
Combining reflected polarized laser pulses with thermal emission signals improves anneal temperature tracking and detects slight process variations.
Transparent and opaque window regions enable accurate wafer temperature measurement below 600°C while limiting heat-source interference.
Contactless infrared sensing through keyhole apertures measures battery cell temperatures quickly across multiple surfaces to spot hot spots.
Real-time focus detection and high-NA laser ablation enable sub-cellular sampling from live cells with minimal damage and better MS imaging.
A reconfigurable pulse waveform and wavelength-selective attenuation path let one optical setup measure both time response and wavelength dispersion.
A preheated nail penetrates the separator under controlled conditions, enabling uniform heat and pressure application with thermal imaging analysis.