Imaging Cameras


MEGAPLUS

Princeton Instruments is pleased to offer GigE Vision data interface for the entire line of MEGAPLUS® cameras. These high-resolution Princeton Instruments cameras, whose resolution ranges from 1.6 to 16 megapixels, are used in some of the most demanding vision applications around the world. The GigE Vision interface enhances the versatility of MEGAPLUS cameras, which also feature Camera Link and FireWire (IEEE 1394a) interfaces. 

Visit the GigE Vision Resource page for valuable information.

Renowned for their outstanding image quality, it’s no wonder they are the cameras of choice at leading manufacturers seeking to improve quality and productivity. Whether the application involves industrial inspection, failure analysis, medical imaging or mapping geo-spatial boundaries, MEGAPLUS cameras are the standard for high-performance imaging.

Princeton Instruments’ decades of experience in low-noise electronics and digital camera technology means nothing short of excellence in performance, reliability and value. With the infusion of increased R&D resources and a team of experienced application and sales engineers, MEGAPLUS is positioned to continue at the leading edge of imaging technology.

Color and Monochrome Cameras for High-Resolution Imaging

Whether your application requires ultra-high resolution analysis for scientific imaging or flat-field normalization for remote aerial sensing, MEGAPLUS imaging systems deliver a range of features suited to your needs. These systems are backed by an extensive history as a word-leading designer of high-speed, superior quality cameras.

The MEGAPLUS family provides outstanding image detail with up to 16 megapixels of resolution and maximum frame rates of 30 frames-per-second. The core of the system is a powerful FPGA-based camera controller. The MEGAPLUS controller provides real time intelligence for each camera head such as: pixel defect mapping, flat field correction, gamma control, color space conversion, bit windowing, and more, with a high speed digitized data stream from imaging heads, which minimize heat, noise, and vibration. Typically used in machine vision, medical imaging, and remote sensing,

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