First Sensor extends its range of optical sensors with innovative solid-state silicon photomultipliers (SiPMs) for the detection of ultra-low light levels down to single photons. Compared to conventional photomultiplier tubes, SiPMs offer low operating voltage, temperature stability, immunity to magnetic fields and a much smaller size for easy system integration. The detectors are optimized for near ultraviolet (Series SiPM-NUV) or red, green and blue (Series SiPM-RGB) light detection with peak sensitivities at 420 nm or 550 nm.
The silicon photomultipliers consist of a matrix of multiple avalanche photodiode (APD) micro-cells operated above their breakdown voltage (Geiger mode). NUV- and RGB-SiPMs from First Sensor have low temperature coefficients of the breakdown voltage and gain. Enhanced materials and semiconductor technology enable low-noise devices with reduced dark count rate and crosstalk. The edgeless SiPM dies ensure high cell fill-factors and maximized active areas in array arrangements. The Chip-Scale-Package (CSP) provides an RoHS compliant solution suitable for reflow soldering. For custom specific applications First Sensor develops and manufactures arrays, modules and complete systems for OEM customers worldwide.
Important features of the SiPM-NUV and SiPM-RGB silicon photomultipliers:
Ultra-low light detection down to single photons
Low operating voltage
High gain and low noise
Immunity to magnetic fields
Typical applications of silicon photomultipliers from First Sensor include high energy physics, medical diagnostics, nuclear medicine, homeland security and analytical instruments. Due to the immunity to external magnetic fields, SiPM detctors are ideal for medical imaging applications such as combined tomography systems using magnetic resonance tomography (MRT) and positron emission tomography (PET) or single photon emission computed tomography (SPECT).