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Vision Systems

Optically discern environments.


Showing results: 316 - 330 of 335 items found.

  • High Speed And High Resolution Cameras (PCI Cameras)

    XiB - XIMEA GmbH

    *High speed interface with bandwidth of 20 GBit up to 64 Gbit / sec*CMOSIS / ams sensors: CMV12000, CMV20000, CMV50000*High image resolution and high throughput with 12 Mpix, 20 and 50 Megapixel*Speed of 133 - 333 Fps, 33 and 30 Fps respectively*Fast speed models with 1 Mpix at 3500 and HD at 2500 Fps*Robust PCI Express and Power/GPIO connectors*Integrated Canon EF-mount control with dynamic aperture and focus control*Support for Windows, macOS, Linux, ARM*Suitable for OEM customization and Embedded vision systems*Distances up to 300m over fiberoptic cable*Compact housing: 60 x 60 x 38 mm

  • Radius Radiation Probe

    Hawk Radius® - International Medcom

    The Hawk® Radius is a ruggedized solution for monitoring both ambient and elevated levels of ionizing radiation. Like a Hawk with its remarkable vision, the Hawk Radius Probe “sees” things that other probes cannot. The high sensitivity weatherized pancake sensor can provide early warning of changing ambient radiation conditions, while the energy compensated detector can accurately report penetrating gamma radiation dose rate at elevated levels. Radius probes are typically deployed as part of an environmental radiation monitoring program, or for safety and security systems. In its standard configuration the probe detects beta, low energy gamma and x-radiation with one channel and energy compensated penetrating gamma radiation levels with a second channel. It can be configured to detect alpha radiation as well. The Hawk® Radius has been deployed worldwide in demanding conditions for protecting communities and collecting environmental radiation data. It can be deployed easily and requires minimum maintenance. The Radius is compatible with Medcomʻs GeigerLink adapter and the IMI Gateway App for use with personal computers. It can also be used with most data loggers including popular Campbell Scientific models.

  • SWIR Linear Array

    1024L1 - Princeton Infrared Technologies, Inc.

    The 1024L1 is a 1024x1 state of the art InGaAs linear array imager on 12.5 µm pitch that was built for both spectroscopy and machine vision in the short wave infrared band. The 1024L1-12.5-T is an advanced digital array with the lowest read noise available <110e- for a 250 μm tall pixel. Our new advanced SWIR On-chip Noise Suppression Circuit will enable some spectroscopic applications to see read noise levels <80e-. A single ROIC chip is used thus minimizing variation from output to output found on linear arrays with multiple ROICs. The chips have built in 14bit A/Ds that are designed for the system thus maximizing dynamic range and minimizing the noise while enabling 34k lines/s at 1024 elements. Multiple full well capacities from 75ke- to 100Me- with 128 steps are available to optimize the array for the signal levels. On chip optical pixel binning (where every other detector is disconnected from the ROIC thus signal is captured by neighboring pixels) is available by command to trade spectral resolution for increased signal level. Pixel skipping or binning is also available allowing for 48k lines/s at 512 resolution on the same imager.

  • Software

    B&W Tek, Inc.

    We offer a full suite of software for spectroscopic data collection and analysis designed for users at all levels, and varying applications. Our standard BWSpec® spectral data acquisition software allows for easy collection of data from our Raman systems and modular spectrometers. It includes tools for instrument control for data collection and spectral manipulation. The raw data and corrected data are stored and can be easily viewed. Data manipulation tools include smoothing, baseline correction and derivatives. Data can be saved in different formats for use in additional application software. For spectral identification against Raman spectral libraries with a simple interface for immediate identification for verification with a pass/fail result, our BWID® software provides qualitative analysis. Users of BWID software can create their own Raman spectral libraries, or select from our numerous ready to use libraries. For identification with portable Raman in regulated environments, the US FDA 21 CFR part 11- complaint version of BWID can be used. B&W Tek’s unique see-through identification using the STRam® can also be done using the BWID software operating on the embedded tablet computer of the STRam system. For quantitative analysis, data collected with BWSpec or other packages can be imported into the BWIQ® multivariate data analysis software, offering a full suite of data preprocessing, regression and classification analysis algorithms. PLS regression models from the BWIQ software an be used in rel-time in our BWAnalyst software, for use with the QTRam , as well as in Metrohm’s Vision® software. The i-Raman series portable Raman instruments can also be operated for single acquisition, or for real-time analysis in the Routine Analysis mode of the Vision software.

  • Machine Vision Camera - 0.4 MP, 291 FPS, Sony IMX287, Color

    Blackfly S GigE - Teledyne FLIR

    The Blackfly® S leverages the industry’s most advanced sensors in an ice-cube form factor. It is packed with powerful features enabling you to easily produce the exact images you need and accelerate your application development. This includes both automatic and precise manual control over image capture and on-camera pre-processing. On-camera features including IEEE1588 clock synchronization and full compatibility with popular third-party software supporting GigE Vision, gives system designers the tools to quickly develop innovative solutions. GigE models featuring Lossless Compression (LLC) are also available with higher maximum frame rates and lower bandwidth requirements, helping maximize output without compromising image quality. The Blackfly S is available in GigE, USB3, cased, and board-level versions.

  • High-Speed Video Camera

    Hyper Vision HPV-X2 - Shimadzu Corp.

    Medical science and engineering have made dramatic progress thanks to visualization technology. Examples include the invention of microscopes capable of enlarged observations of phenomena occurring in the microscopic domain, invisible to the human eye, X-ray inspection systems, which enable the observation of images utilizing light at imperceptible wavelengths, and infrared cameras. Our eyes are incapable of capturing phenomena occurring at times shorter than 50 to 100 ms. As a result, high-speed video cameras have become necessary in order to record phenomena occurring at intervals that cannot be seen with the human eye, and then replay them at a slower rate so that they can be visualized. As the standard tool for visualizing ultra high-speed domains, the Hyper Vision high-speed video camera contributes to our understanding of ultra high-speed phenomena in a variety of fields.

  • PXIe-1486, 8 Input, 8 Output, or 4 Input/4 Output PXI FlexRIO FPD-Link™ Interface Module

    787455-01 - NI

    The PXIe-1486 combines the Texas Instruments Flat Panel Display Link™ (FPD-Link™) interface with the Xilinx FPGA for high-throughput vision and imaging applications. This module provides a high-speed digital interface for using and testing modern advanced driver assistance systems (ADAS) and autonomous drive (AD) camera sensors and electronic control units (ECUs). Additionally, the PXIe-1486 makes use of a combination of FPD-Link™ serializers and deserializers with a Xilinx FPGA to provide a high-throughput and customizable FPD-Link™ interface on PXI. The included FlexRIO driver, with LabVIEW FPGA examples, provides access and control for power-over-coax, I²C back-channel communication, and general-purpose input/output (GPIO) communication on the FPD-Link™ channels. The PXIe-1486 is ideal for applications such as in-vehicle data logging, lab-based playback, or hardware-in-the-loop (HIL). FPD-Link is a trademark of Texas Instruments.

  • PXIe-1486, 8 Input, 8 Output, or 4 Input/4 Output PXI FlexRIO FPD-Link™ Interface Module

    787454-01 - NI

    The PXIe-1486 combines the Texas Instruments Flat Panel Display Link™ (FPD-Link™) interface with the Xilinx FPGA for high-throughput vision and imaging applications. This module provides a high-speed digital interface for using and testing modern advanced driver assistance systems (ADAS) and autonomous drive (AD) camera sensors and electronic control units (ECUs). Additionally, the PXIe-1486 makes use of a combination of FPD-Link™ serializers and deserializers with a Xilinx FPGA to provide a high-throughput and customizable FPD-Link™ interface on PXI. The included FlexRIO driver, with LabVIEW FPGA examples, provides access and control for power-over-coax, I²C back-channel communication, and general-purpose input/output (GPIO) communication on the FPD-Link™ channels. The PXIe-1486 is ideal for applications such as in-vehicle data logging, lab-based playback, or hardware-in-the-loop (HIL). FPD-Link is a trademark of Texas Instruments.

  • PXIe-1486, 8 Input, 8 Output, or 4 Input/4 Output PXI FlexRIO FPD-Link™ Interface Module

    787453-01 - NI

    The PXIe-1486 combines the Texas Instruments Flat Panel Display Link™ (FPD-Link™) interface with the Xilinx FPGA for high-throughput vision and imaging applications. This module provides a … high-speed digital interface for using and testing modern advanced driver assistance systems (ADAS) and autonomous drive (AD) camera sensors and electronic control units (ECUs). Additionally, the PXIe-1486 makes use of a combination of FPD-Link™ serializers and deserializers with a Xilinx FPGA to provide a high-throughput and customizable FPD-Link™ interface on PXI. The included FlexRIO driver, with LabVIEW FPGA examples, provides access and control for power-over-coax, I²C back-channel communication, and general-purpose input/output (GPIO) communication on the FPD-Link™ channels. The PXIe-1486 is ideal for applications such as in-vehicle data logging, lab-based playback, or hardware-in-the-loop (HIL). FPD-Link is a trademark of Texas Instruments.

  • Fanless Edge AI System With NVIDIA® JETSON™ TX2 Series SoM, 1 HDMI, 2 GbE LAN, 2 USB, 2 COM Or 2 CAN And 12 Or 24 VDC

    AIE500-901-FL - Axiomtek Co., Ltd.

    The AIE500-901-FL is an advanced Artificial Intelligence embedded system for edge AI computing and deep learning applications. The high-performance embedded system employs an NVIDIA Jetson™ TX2 module which has a powerful 64-bit ARM® A57 processor; NVIDIA® Pascal™ GPU with 256 CUDA cores; and 8GB of 128-bit LPDDR4 memory. To withstand the rigors of day-to-day operation, the AIE500-901-FL has an extended operating temperature range of -30°C to +60°C and vibration of up to 3 Grms with its strong construction. This fanless Artificial Intelligence edge system is dedicated to achieving operational excellence, efficiency, reliability in smart manufacturing and intelligent edge applications. The edge computing device provides solutions as Edge AI embedded system, specifically designed for video analysis, object classification, computer vision, quality control and more.  Under the ultra-compact enclosure design, the AIE500-901-FL comes with 32GB eMMC onboard and is equipped with one M.2 Key M 2280 SSD slot with PCIe and SATA signal and one Micro SD slot for massive data processing and AI applications. Besides, this reliable embedded system has one full-size PCI Express Mini Card slot and one SIM slot for 3G/4G, GPS, Wi-Fi and Bluetooth connections.

  • PXIe-1487, 8 Input, 8 Output, or 4 Input/4 Output PXI FlexRIO GMSL™ Interface Module

    787457-01 - NI

    The PXIe-1487 combines the Maxim Integrated Gigabit Multimedia Serial Link™ (GMSL™) interface with the Xilinx FPGA for high-throughput vision and imaging applications. This module provides a high-speed digital interface for using and testing modern advanced driver assistance systems (ADAS) and autonomous drive (AD) camera sensors and electronic control units (ECUs). Additionally, the PXIe-1487 makes use of a combination of GMSL™ serializers and deserializers with a Xilinx FPGA to provide a high-throughput and customizable GMSL™ interface on PXI. The included FlexRIO driver, with LabVIEW FPGA examples, provides access and control for power-over-coax, I²C back-channel communication, and general-purpose input/output (GPIO) communication on the GMSL™ channels. The PXIe-1487 is ideal for applications such as in-vehicle data logging, lab-based playback, or hardware-in-the-loop (HIL). GMSL is a trademark of Maxim Integrated Products, Inc.

  • PXIe-1487, 8 Input, 8 Output, or 4 Input/4 Output PXI FlexRIO GMSL™ Interface Module

    787456-01 - NI

    The PXIe-1487 combines the Maxim Integrated Gigabit Multimedia Serial Link™ (GMSL™) interface with the Xilinx FPGA for high-throughput vision and imaging applications. This module provides a … high-speed digital interface for using and testing modern advanced driver assistance systems (ADAS) and autonomous drive (AD) camera sensors and electronic control units (ECUs). Additionally, the PXIe-1487 makes use of a combination of GMSL™ serializers and deserializers with a Xilinx FPGA to provide a high-throughput and customizable GMSL™ interface on PXI. The included FlexRIO driver, with LabVIEW FPGA examples, provides access and control for power-over-coax, I²C back-channel communication, and general-purpose input/output (GPIO) communication on the GMSL™ channels. The PXIe-1487 is ideal for applications such as in-vehicle data logging, lab-based playback, or hardware-in-the-loop (HIL). GMSL is a trademark of Maxim Integrated Products, Inc.

  • PXIe-1487, 8 Input, 8 Output, or 4 Input/4 Output PXI FlexRIO GMSL™ Interface Module

    787458-01 - NI

    The PXIe-1487 combines the Maxim Integrated Gigabit Multimedia Serial Link™ (GMSL™) interface with the Xilinx FPGA for high-throughput vision and imaging applications. This module provides a high-speed digital interface for using and testing modern advanced driver assistance systems (ADAS) and autonomous drive (AD) camera sensors and electronic control units (ECUs). Additionally, the PXIe-1487 makes use of a combination of GMSL™ serializers and deserializers with a Xilinx FPGA to provide a high-throughput and customizable GMSL™ interface on PXI. The included FlexRIO driver, with LabVIEW FPGA examples, provides access and control for power-over-coax, I²C back-channel communication, and general-purpose input/output (GPIO) communication on the GMSL™ channels. The PXIe-1487 is ideal for applications such as in-vehicle data logging, lab-based playback, or hardware-in-the-loop (HIL). GMSL is a trademark of Maxim Integrated Products, Inc.

  • Fanless Embedded System With LGA1151 Socket 7th/6th Gen Intel® Core™ I7/i5/i3 & Celeron® Processor, Intel® H110, 2 HDMI, DisplayPort, 4 GbE LAN, 6 USB, PCIe X4/PCI Slot And 9 To 36 VDC

    eBOX700-891-FL - Axiomtek Co., Ltd.

    The eBOX700-891-FL is an expansion-rich fanless embedded system powered by the 7th generation Intel® Core™ i7/i5/i3 and Celeron® processors (codename: Kaby Lake) with the Intel® H110 chipset. It supports dual DDR4-2133 SO-DIMM slots with up to 32GB system memory. This embedded box PC comes with a user-friendly mechanism design and offers great flexibility, reliability, and scalability, well suited for vision inspection (USB/PoE), motion control, security surveillance and industrial automation. The eBOX700-891-FL is designed with user friendliness in mind. Its heatsink top cover can simply be opened by unfastening the four screws for the access to the processor and DRAM. Moreover, its bottom cover adopts a convenient flip lid design along with easy-to-access brackets for securing the USB dongle and hard drive. Axiomtek has obtained patents, No. M511183 and No. M531115, for the special chassis design of the eBOX700-891-FL. Easy maintenance is one of the advantages we are offering to our customers and one of the main focuses of our product development. We will continue pursuing excellence and innovation in design and manufacturing.

  • Rugged IP67-rated Fanless Edge System With NVIDIA® Jetson™ TX2, HDMI, GbE LAN, 1-CH PoE, USB 2.0 And 100 To 240 VAC Power Input

    eBOX800-900-FL - Axiomtek Co., Ltd.

    The Artificial Intelligence (AI) embedded system, eBOX800-900-FL, adopts a full IP67-rated extruded aluminum and heavy-duty steel case for dust protection and water resistance. Moreover, the AI embedded system comes with a wide operating temperature range of -30°C to 60°C (-22°F to +140°F) and a vibration endurance for up to 3Grms. The embedded system is powered by the NVIDIA Jetson™ TX2 module which has a powerful 64-bit ARM A57 processor and 256-core NVIDIA® Pascal GPU. It features M12 type I/O connectors and four N-jack waterproof antenna openings for operational stability in rugged environments. The eBOX800-900-FL is ideal for AI edge computing and deep learning applications, such as smart city, smart manufacturing, smart transportation, and much more. The eBOX800-900-FL has 8GB of LPDDR4 memory and 32GB eMMC onboard. It comes with a wide range of 100 to 240 VAC power input with 10kV surge protection. The rugged edge computer also features one M.2 SSD PCIe 2.0 x4 socket which supports high-performance NVM Express interface for extensive storage needs. Furthermore, the embedded box PC is equipped with a PoE port to support the applications that require the use of IP cameras or any PoE device, i.e., traffic flow monitoring, license plate recognition, vehicle recognition, machine vision.

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