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Image Processors
algorithmically enhances image characterization.
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Imaging Processors
Leveraging on more than 10 years’ experience in all key components of the image processing chain, ST offers a wide range of image signal processors (ISP) to address different markets, including high-end smartphones, security/surveillance, gaming, automotive and medical applications. The use of industry standard interfaces and rich set of APIs makes the integration of ST’s image processors a straightforward process and helps to reduce end-product time to market.
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Sensors
Expansive portfolio of CMOS & CCD image sensors, and imaging processors. Expansive portfolio of ambient light & proximity sensors, touch sensors, thermal sensors, and smart passive sensors. #1 Automotive Image Sensor supplier; #1 Security Image Sensor supplier..
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Frame Grabbers
The FPGA-based standardized image acquisition cards for image recording and processing stand out with their high-quality image pre-processing features, which reduce the CPU load to close to zero. The processing core of these cards consists of FPGA processors, which are distinguished by highly synchronizable data processing for high bandwidths. Through the graphic programming of the FPGA with VisualApplets, the cards can be adapted to new system requirements.
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Target Tracking/Image Processing
Our automatic video trackers and image processors are at the heart of a wide range of commercial, military and paramilitary systems where they provide the highest performance solutions in the smallest, fully environmentally proven hardware packages.
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Blackfin Embedded Processors
Blackfin® 16-/32-bit embedded processors offer software flexibility and scalability for convergent applications: multiformat audio, video, voice and image processing, multimode baseband and packet processing, control processing, and real-time security.
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FastCamera
FC1700
The FastCamera FC1700 is a high-speed 17 megapixel digital camera system, using a CMOS imager with an electronic global shutter, or rolling shutter. This camera has a high-speed, scalable, integrated FPGA, image processor, and memory subsystem which enables stand-alone high speed in camera image processing and extended storage. Options include ruggedized, Expanded Camera Link output, Gigabit Ethernet output, and in camera recording. When integrated with a high powered frame grabber /coprocessor board, the resulting system capabilities can be expanded by adding processors and memory on the board according to the needs of the user.
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FRAMOS Sensor Module Ecosystem
Embedded Vision applications have specific vision requirements. Image sensors (IMS) are not only part of stand-alone camera systems anymore. Today, IMS are very tightly integrated with processors into heterogenous “Embedded Systems“. The FRAMOS Ecosystem of Sensor Modules and Adapters provides vision engineers and developers with ready-to-use compositions of hardware, software and reference designs to accelerate time-to-market and optimize resources.
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FastCamera
FC300
The FastCamera 300 is a high-speed 3 megapixel digital camera system, using a CMOS imager with an electronic global shutter. This camera has a the option of a high-speed, scalable, integrated FPGA, image processor, and memory subsystem which enables stand-alone high speed in camera image processing and extended storage. Options include back thinned versions with high QE in the visible and NIR range, ruggedized, Camera Link output. When integrated with a high powered frame grabber /coprocessor board, the resulting system capabilities can be expanded by adding processors and memory on the board according to the needs of the user.
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FastCamera
FC200
The FastCamera 200 is a high-speed 2 megapixel digital camera system, using a CMOS imager with an electronic global shutter. This camera has a the option of a high-speed, scalable, integrated FPGA, image processor, and memory subsystem which enables stand-alone high speed in camera image processing and extended storage. Options include back thinned versions with high QE in the visible and NIR range, ruggedized, Camera Link output. When integrated with a high powered frame grabber /coprocessor board, the resulting system capabilities can be expanded by adding processors and memory on the board according to the needs of the user.
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13MP Camera Board For I.MX8
E-CAM130_iMX8
e-CAM130_iMX8 is a 13MP 4-lane MIPI CSI-2 autofocus color camera board for iMX8 family of processors. The e-CAM130_iMX8 camera board is interfaced directly to the CSI-2 MIPI interface on the Variscite's DART-MX8M/DART-MX8M-MINI Evaluation kit (VAR-DT8McustomBoard). The iHDR (interlaced High Dynamic Range) support helps to capture good quality images in both high and low illumination. e-CAM130_iMX8 also comes with a high-performance Image Signal Processor (ISP) that performs all the Auto functions (autofocus, auto white balance, auto exposure control). Customer who wants to integrate this camera into their end product can directly purchase e-CAM130_MI1335_MOD camera module.
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SMARC Short Size Module with NXP i.MX 8M Plus
LEC-IMX8MP
ADLINK LEC-IMX8MP, based on the powerful NXP i.MX8M Plus (quad core Arm Cortex-A53) processor with an optional Neural Processing Unit (NPU) operating at up to 2.3 TOPS., is the first SMARC revision 2.1 compliant module focusing on machine learning and vision, advanced multimedia, and industrial IoT with high reliability. Additionally, it supports dual Image Signal Processors and two camera inputs for an effective Vision System. The LEC-IMX8MP is suited for applications such as smart home, building, city and industry 4.0.
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I-Pi SMARC Development Kit based on NXP® i.MX 8M Plus Quad Arm® Cortex-A53 Processor
I-Pi SMARC IMX8M Plus
The I-Pi SMARC IMX8M Plus is a SMARC-based smart solution development kit powered by NXP i.MX8M Plus (Quad-core Arm Cortex-A53) processor with a Neural Processing Unit (NPU) at up to 2.3 TOPS.This is the first SMARC R2.1 development kit focused on machine learning, vision, advanced multimedia, and industrial IoT with high reliability. As such, it supports dual image processors and two camera inputs for an effective Vision System, as well as applications beyond, including smart homes, building cities, and industry 4.0.
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Intel® Celeron® N3160/ N3060 SoC Fanless Embedded Computer
MXE-1500 Series
The successor to ADLINK's best-selling MXE-1300 Series, the MXE-1500 offers richer I/O interfaces, and more flexible I/O configurations in the same compact enclosure. Intel® Celeron®(Braswell) processors, Intel’s last generation of CPU to support Windows 7, power the MXE-1500 to a 90% increase in image processing capabilities over the previous generation, and support three independent displays, altogether delivering an unequaled price/performance ratio and making the MXE-1500 an ideal choice for industrial automation applications and mass transit operators.
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Board Cameras
e-CAM & See3CAM Series of Camera Boards. e-CAM camera board is e-con's reference design featuring a board camera interfaced to a processor on its high speed CMOS interface. Board cameras are available for Jetson Developer kits and NXP i.MX6 boards. For processors, that don't have the Camera ISP pipeline, e-con Systems provides the complete software stack for raw image sensors. The software stack has a wide variety of features ranging from color correction, gamma correction, dead pixel correction, color space conversion, sharpen filter etc.
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Framegrabber
FastX-UXGA
The FastX-UXGA frame grabber series is for users who anticipate a demand for extreme I/O requirements or higher bandwidth, complex image processing and real-time fast storage in a cost effective platform. The base Fast-UXGA, is a raw-length PCI board with two (four-muxed) UXGA analog conversion channels using Analog Device's AD9888. The front end data is formatted and preprocessed by a FPGA before being sent to the memory subsection, from zero to four PNX1702 processors before output. Finally, the Fast-UXGA interfaces to the host computer through a 4x PCIe interface for state-of-the-art data acquisition.
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6th Generation Intel® Core™ i7/i5/i3 Processor-Based Automation Control System with EtherCAT & 4CH GigE Vision Support
Talos-2000 Series
ADLINK's Talos-2000 Series ready-to-use automation control system, powered by 6th Generation IntelR Core? i7/i5/i3 processors, provides EtherCAT control and four independent PoE (power over Ethernet) ports, with data transfer rates up to 4.0Gb/s. The Talos-2000 Series offers motion control of up to 64 axes, 10,000 I/O points, and 4CH PoE camera connectivity with minimal footprint. The ideal solution for machinery automation, Talos-2110 integrates complete APIs for multi-dimensional, highly synchronized and time-deterministic event-triggered motion & I/O control, high precision image capture, and data transmission. Field device connectivity in the Talos-2000 Series is provided through RJ45 connection for easy installation, and the latest 6th Generation IntelR Core? i7/i5/i3 processors enable powerful and flexible EtherCAT slave control, broad PoE camera compatibility, and compact size.
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COM Express Compact Size Type 6 Module with Up to Quadcore Intel® Core™ and Celeron® Processors
cExpress-WL
ADLINK introduces its latest COM Express Type 6 modules to fulfill the needs of size, weight, and power (SWaP)-constrained edge computing applications. ADLINK’s cExpress-WL modules feature the 8th generation Intel® Core™ and Celeron® processors (formerly codenamed Whiskey Lake-U) with up to 4 cores and up to 64GB memory capacity, offering edge computing applications uncompromising performance and responsiveness despite SWaP constraints. The cExpress-WL is suited for applications such as data acquisition and analysis, image processing, and 4K video transcoding and streaming at the edge.
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Framegrabber
FastX1703
The FastX1703 framegrabber series is for users who anticipate a demand for extreme I/O requirements and/or higher bandwidth, complex image processing and real-time high-speed storage in a cost effective platform. The base FastX1703, is a two thirds length raw form factor PCI board six basic 85 MHz Camera Link Channels or an extended Camera Link camera interface. An auxilliary I/O connector provides a header for adaptation of other high speed interfaces such as LVDS or high speed analog formats such as UXGA or DVI. The front-end data is formatted and preprocessed by a FPGA before being sent to the memory subsection, up to four PNX1702 500 MHz processors with 256MB memory each. Finally, the FastX1703 interfaces to the host computer through a 4xPCIe interface for state-of-the-art data acquisition.
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Board
Arduino MKR Vidor 4000
The Arduino MKR Vidor 4000 brings Arduino's ease of use to the work with the most powerful reprogrammable chips that exist: FPGAs. With Vidor you can create a board where all pins are PWM signals controlling the speed of motors. You can capture sound in real time and make a sound effect pedal for your guitar. It is possible to create a real-time computer reading sensor information and sending it to a state-of-the-art monitor or capture video and overlay sensor information on the image that will then later be sent over to a screen. You can connect to the Arduino IoT Cloud and control a complex laboratory machine running a large amount of motors. You could even prototype your own processors inside the FPGA and have it to work in parallel to the other microcontroller on the board. Vidor is a device that invites for experimentation, precision, and high speed computation.
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Stream & Video Quality Analysis System
VQTS-300
VQTS-300 is a self-contained solution, combining: HDMI/DVI, Display Port or LVDS grabber - one of Unigraf UFG-04 range capture cards, order option Powerful stream analysis tools - Unigraf UFG-04 software Sophisticated image quality analyzer - VideoQ VQMA3 software Ideal tool for development labs, software developers and high volume manufacturers Easy-to-use tool, instantly revealing your source-sink link status, video camera or other video device performance User-selectable reporting modes: machine-readable file with Pass/Fail marks detailed multi-page PDF document Manual and automated performance measurement of HDM/DPI links, video cameras and/or video processors Via optional SDI-HDMI adapter VQTS-300 measures the performance of 3G-SDI/HD-SDI video processors
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6U VPX FPGA Cards
Curtiss-Wright Defense Solutions
FPGAs have revolutionized the way digital signal processing (DSP) subsystems are configured. With a large number of gates, hardware multipliers, and high-speed serial interfaces, FPGAs enable sophisticated applications, including radar, signal intelligence, and image processing, which rely on repetitive processing that can be expressed in highly parallel form. FPGAs perform exceptionally well in FFTs, pulse compression, filters, and digital up/down converters. In deployed systems, an FPGA's technical advantage translates to smaller, lower power, and lower-cost systems. Our COTS 6U VPX FPGA cards include multiple FPGAs, a wide complement of I/O functionality and are engineered to succeed in the most demanding applications. When supercomputing processing performance is required, HPEC systems meet the most demanding rugged deployed application needs by combining the highest performance FPGAs, GPGPUs, processors, and networking modules available.