Discontinued

SC7650E

Science-Grade MWIR InSb Infrared Camera

The FLIR SC7000 Series are very flexible cameras, with high sensitivity, accuracy, spatial resolution and speed. The SC7000 Series is specifcally designed for academic and industrial R&D applications as well as integrators who need a very flexible camera at an affordable cost.

The FLIR SC7000 Series is available with a wide range of detectors to address any application in single and multispectral analysis. The researcher has a choice between mid-wave Indium Antimonide (InSb) and Mercury Cadmium Telluride (MCT) detectors. MCT detectors operating in the long-waveband are also available. The FLIR SC7000 series comes standard with a removable, motorized 4 position filter wheel. This allows imaging of events in a select part of the electromagnetic spectrum. The SC7000 series is available in 640 x 512 or 325 x 256 pixel formats with high sensitivity and noise levels as low as 20 mK.
Windowing allows a subset of the total image to be selectively read out with useradjustable window size at a much higher frame rate. The sub-sample window sizes and locations can be arbitrarily chosen and are easily defined using the camera control software. Depending on the model and detector, the FLIR SC7000 series can deliver thermal images up to a speed of 62,000 Hz
Integration time is adjustable in nanosecond increments. The smart external triggering feature allows synchronisation of the image capture to the most fleeting events.

Technische Daten

Highlighted
Pixelauflösung 640x512
Pixelabstand 15µm
Spektralbereich 1.5 - 5.1 µm
Detektortyp Indium Antimonide (InSb)
Thermische Auflösung (NETD) <20mK / <25mK
Bildgebung und optische Daten
Anzeige Snapshot (4 Channel)
Anzeigemodi Asynchronous Integrate While Read; Asynchronous Integrate Then Read
Betriebsfähigkeit >99.8% ( >99.95% typical)
Detektortyp Indium Antimonide (InSb)
Pixelabstand 15µm
Pixelauflösung 640x512
Sensorkühlung Internal Sterling
Spektralbereich 1.5 - 5.1 µm
Thermische Auflösung (NETD) <20mK / <25mK
Well Capacity 6.5 M electrons