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These lens cameras were made especially for low light microscopy, where a great sensitivity to noise is a crucial factor. For tasks involving fluorescence microscopy, these microscope cameras are perfect.
When fluorescent proteins and dyes are used to identify molecular mechanisms and structures, fluorescence imaging takes pictures of the marked objects.
It enables one to perform an experimental observation of the dynamics of gene, protein, and molecular interactions in a living cell. It basically functions as a precise, quantitative tool for biochemical applications.
The Global Fluorescence camera market accounted for $XX Billion in 2022 and is anticipated to reach $XX Billion by 2030, registering a CAGR of XX% from 2023 to 2030.
For Fluorescence Microscopy, Andar launched the Sona s CMOS Camera Platform. Sona offers the highest level of s CMOS sensitivity with 95% Quantum Efficiency and industry-leading vacuum cooling down to -45 °C.
This allows signal to noise to be optimized under low illumination circumstances, protecting living cells during prolonged measurement periods.
Additionally, Sona offers a unique method for crystal clear imaging of entire embryos or extraordinarily vast fields of cells. The 11 m pixel size of Sona is present in two different forms.
The Sona 4.2B-11, a flagship model with 4.2 Megapixels, uses a novel technology approach to access the complete 2048 x 2048 array while providing an impressive 32mm sensor diagonal and utilizing the full field of view provided by the microscope.
The s CMOS QE profile delivered by Sona is the highest and broadest currently accessible, maximizing at 95%, and is perfectly suited to a variety of widely used fluorophores.
Sona is the most sensitive back-illuminated s CMOS platform on the market thanks to a combination of back-illuminated QE, minimal read noise, and Andar’s ground-breaking Ultra Vac TM vacuum cooling approach, which enables -45 °C sensor temperature. As for quantitative assessment, Sona excels as well.
In order to achieve a market-leading response linearity of > 99.7%, a broad dynamic range of 53,000:1, which is excellent for bright-weak samples like neurons, is combined with improved on-head intelligence.
In vibration-sensitive setups like super-resolution and electrophysiology, the Sona platform also has extremely low fan vibration, ensuring that measurement accuracy is not affected.