Advanced Computational Image Processing Software

Prism™ ISP

Model: Boson Plus 320, 12° (HFOV) 18 mm

Prism ISP is a collection of image signal processing (ISP) software libraries that include super-resolution, electronic image stabilization, image fusion, turbulence mitigation, noise reduction, and more. Compiled to run on low-power embedded processors from Qualcomm and NVIDIA, enabling developers to bring computational imaging to the edge while improving performance, lowering development costs, and shortening time to market.

Overview

Product

Datasheet

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Prism AI Datasheet

Prism ISP Datasheet

Industry-leading thermal performance

High-value image quality enhancements improve operator viewing and perception software pre-processing

Leverage algorithm ecosystem to shorten time to market

Flexible software library lowers investment for integrating thermal-camera-computational imaging

Built for developers with the Teledyne FLIR brand promise

Trusted global leader in thermal infrared sensing and solutions

Teal 2 sUAS Overview feat. Hadron 640R
THE TELEDYNE FLIR ADVANTAGE

Integrating Teledyne FLIR thermal camera modules is now easier with our library of how-to-videos, application notes, and our comprehensive support center with product drawings, datasheets, and more!

INNOVATE WITH THE INDUSTRY'S BEST CORES

With industry-leading reliability, performance, size, weight, and power, they are ideal for defense, commercial, and security applications.

Prism

The end-to-end computational imaging ecosystem that supports various AI-powered object detection and tracking capabilities and advanced image processing.

Camera Model Selector

Sorting through more than 100+ models can be tricky. Try our “Camera Model Selector” to find the right solution.

Specifications

PARAMETERS DESCRIPTION

General

Part Number 110-0200-01

Software Features

Authentication Camera to ECU key handshake with 256-bit challenge/response
Cross Modality Image Registration Automatic alignment of thermal and EO to compensate for parallax and time sync differences
Deblurring Blind and semi blind (motion known) methods supported to restore MTF (thermal video)
Dewarping Radial and tangential lens dewarping
Haze Penetration Locally adaptive compesnation for atmosperic dispertion (thermal)
Motion Compensated Temporal Noise Reduction Advanced, mutiframe noise reduction (thermal video)
Pseudo-Color Multiple color pallets available (thermal video)
Rectification Visible & thermal camera calibration process with pixel-accurate registration of visible & thermal
Scene Based Non-Uniformity Correction Fixed pattern nosie removal (thermal video)
Super Resolution Multiframe SR on full image or crop (e-zoom), 2X, 3X and 4X modes supported
Supported Hardware Qualcomm: Snapdragon 8 gen 1 (RB5/QRB5165) & Snapdragon 8 gen 2 (QCS8550)
NVIDIA: Jetson Xavier & Jetson Orin
Other Qualcomm and NVIDA HW on request
Supported Operating Systems Linux (18.04 and 20.04) verification done on Ubuntu distribution(s). Windows by request.
Supported Video Formats 16b monochrome for LWIR/MWIR, 24b RGB/BGR for visible
Tone Mapping Global and locally adaptive methods supported, optimized for highly dynamic scenes
Turbulance Mitigation (De-Scintillation) Reduced video distortion from turbulent air and compensate for MTF loss (thermal and EO)
Video Fusion MSX and Color Night Vision fusion modes supported
Video Stabilization Removal of high temporal frequency jitter (thermal and EO)

Accessories

Media gallery

Deploying AI Object Detection, Target Tracking, and Computational Imaging on Embedded Processors
FLIR AVP Launch – The AI Advanced Video Processor for Enhanced Thermal Imaging | SPIE DCS 2024
Maximize Perception with Prism ISP and AI Tools for Enhanced Thermal Imaging | SPIE DCS 2024
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