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// Contract Engineering Services

Video System Design

MTSI empowers our clients with end-to-end video system design based on experience with generations of image fusion systems and dozens of thermal, IR and DVR/cameras.

We meticulously engineer video systems to capture stunning visuals with unparalleled clarity, color accuracy, and dynamic range — merging technologies with intuitive usability.

Aware Assembled Image

Designed for situations where capabilities matter.

Case Study: 

DARPA’s Advanced Wide FOV Architectures for Image Reconstruction and Exploitation (AWARE)

Challenge: 

The ability to see farther, with higher clarity, and through darkness and/or obscurants, is vital to nearly all military operations. The goal of one project advanced by the Defense Advanced Research Project Agency (DARPA) was to create a 50-gigapixel live video camera that could support multiple users each viewing independently selectable regions of the entire image array at 15-30fps.

The initial system called for 3,600 14 Megapixel image sensors to operate simultaneously.

Solution:

An initial monochrome system was developed for Phase I proof-of-concept and was successful.  MTSI developed the system architecture that could process 1.5 trillion pixels-per-second.  The initial prototype was a 1.1 giga-pixel system that used an array of over 90 14-Megapixel micro-cameras. MTSI developed the FPGA, circuits, PCB layouts, and code that ran on large FPGAs to read, process, store, and transmit the image data.  MTSI also developed the higher speed Phase II system which supports a cluster of eight color micro-cameras per FPGA. 

MTSI manufactured all of the electronics (camera and water-cooled video data collector assemblies) for both Phase I and Phase II using state of the art 3D-printed circuit board technology utilizing complex production fixtures. 

DARPA officials compared the concept behind gigapixel-class cameras to that of a supercomputer, which centralizes the power of multiple processors. They are being pursued to give troops greater resolution in smaller sensor packages.

National Defense

Capable of capturing images with billions of pixels, these cameras have the remarkable ability to focus on astonishing levels of detail, allowing viewers to zoom in and explore even the tiniest elements of a scene with unparalleled clarity.

See it in action →

Learn more about our achievements

Visuals at the edge.

MTSI has designed the architecture, electronics hardware and FPGA firmware for many different low-light level CMOS micro-cameras.

Night vision cameras developed by MTSI integrated into systems have revolutionized the way modern armed forces conduct nighttime operations. These sophisticated devices use advanced technology to amplify available light, making it possible for soldiers to see in the darkest of conditions.

Image processing functions are controllable and consist of AGC, contrast enhancement, image scaling, and OSD functions.  Low-power operation has been achieved at a fast frame rate of 100 frames per second.

One of our modular designs consisted of three boards (Imager, FPGA, and I/O) based around an Altera Cyclone IV FPGA. This modular design allowed the image sensor to be replaced or the I/O interface be changed to support RS-170, Camera-Link, Gig-E, SDI or HDMI.

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