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S2 Blinx Digital Sensors
ULP-S2 BLINX
The Universal LightProbe S2 Blinx Digital is designed for the simple ON/OFF test of any color blinking or steady-state LED, for fast results with a digital output. The Universal LightProbe S2 Blinx Digital Sensors check the ON/OFF status of any color LED, whether stable or blinking/pulsed, up to a rate of 15 Hz, and provide a Logic “1” output (5 volts) only if the LED is “ON” and a Logic “0” if the LED is “OFF.”Operating temperature range: 0oC to 70oCPower consumption: Operates from +5, 12, 24 or 28 volts D.C., at 6mA max.Voltage protection: Withstands up to +40 volts, & reverse polarity to -18 voltsSignal Output Load: 20mA max. (Source/Sink). Non-inductiveOutput Pins: 3 gold-plated standard wire-wrap pins (0.025 in. sq.)Sensor Size: 0.560 in. dia x 1.38 in. longOperating Temperature Range: 0hC to 70hCTypical response times: <66mS, shorter for brighter LEDsFiber-Optic Probes: Wide Aperture Fiber-Optic Probe recomended
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Image Sensor Testing
IP750Ex-HD Family
The IP750EX-HD has been the test platform that has enabled the industry to manufacture high quality CCD and CMOS image sensors, and it is the most economical platform to meet the needs of newer technologies such as Time of Flight (ToF) sensors. When you use a smartphone, high performance digital still camera, or in-home security and surveillance system, these applications have image sensors most likely tested by Teradyne’s IP750ExHD.
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3D Image Processing Software
EyeVision
EyeVision is the base for numerous measurement and inspection tasks in image processing. Features are: Creation of inspection programs with drag and drop function. EyeVision supports all hardware platforms such as; Smart Cameras, Vision Sensors, PC & Embedded support.
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Area Scan Camera
Genie Nano-CXP
Introducing Genie Nano-CXP, a camera designed for full-throttle performance. Genie Nano-CXP builds on Nano's proven, industry leading reputation and leverages a CoaXPress 6Gbps interface to deliver the maximum throughput from leading edge high resolution CMOS image sensors.
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ToF Image Sensors
The ability to measure objects at a distance to determine how far away they are and/or their overall dimensions is becoming more popular in Imaging. With this, there are several different techniques and technologies, each with their own advantages and disadvantages. Picking the right one can be daunting without someone in your corner to help decipher your needs and direct you to the best product to meet them.
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Scientific CCD Image Sensors
Our front and backside illuminated (BSI) and backthinned Charge Coupled Devices (CCDs) are seen as the gold standard for scientific and quantum imaging in applications in spectroscopy, microscopy, In vivo, x-ray and astronomy. We understand that every imaging application is unique and requires our engineers and scientists to work closely with our customers providing highly tailored imaging solutions.
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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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ISC-1782, 2 MP, 1.58 GHz Processor, Monochrome/Color Smart Camera
785149-01
The ISC‑1782 is a high-performance smart camera for machine vision and is powered by a 1.58 GHz dual-core Intel Celeron processor. The combination of the onboard processor with a CMOS image sensor provides an easily distributed all-in-one system. In addition to high-performance image acquisition and processing, you can use built-in digital I/O and industrial communication options for dynamic, real-time communication and integration with industrial automation devices including programmable logic controllers (PLCs), human machine interfaces (HMIs), robotics, sensors, and industrial machinery. You can configure NI Smart Cameras with the included Vision Builder for Automated Inspection (AI) software or program the camera with the LabVIEW Real‑Time Module and the Vision Development Module.
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Imaging Modules
Teledyne e2v has developed compact MIPI modules which feature our own high performance CMOS image sensors inside a pre-focused, industrial-grade scanning optic. As a turnkey sensor/optics for imaging systems, these modules offers customers significant reduction in development time and cost savings. Only a few screws are needed to mount the module, with simple connection to the image processing system through an FPC cable connector. Software development efforts can also be reduced by using some limited API-layer Linux software drivers. This enables the module to be seamlessly interfaced to popular ISP platforms.
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Low-Noise DC Bias
Imaging devices, such as CCDs, IR FPAs, and CMOS image sensors, require DC bias with very low electrical noise to prevent contamination of the image. Image quality can also be enhanced by carefully tuning each bias voltage to extract the maximum signal/noise ratio out of an array. Pulse Instruments has decades of experience providing DC bias supplies with the flexibility required tocharacterize and test a variety of devices while maintaining the noise immunity required for satellite and astronomy applications.
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Visible / Infrared / Imaging Test System
System 1808
Testing Low-voltage CCDs and IR FPAs; Military, science-grade and medical CCDs or IR FPAs; CMOS ROICs and multiplexers; CMOS sensors. Whether your application is characterizing a massive mosaic of CCDs for the next great observatory, designing a faster FLIR for a weapons-guidance system, or production-testing a CMOS image sensor for a digital camera, Pulse Instruments can supply you with a fully-integrated test system that allows you to focus on your your device, not on your test system.
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ISC-1781, 1.3 MP, 1.58 GHz Processor, Monochrome/Color Smart Camera
785144-01
The ISC‑1781 is a high-performance smart camera for machine vision and is powered by a 1.58 GHz dual-core Intel Celeron processor. The combination of the onboard processor with a CMOS image sensor provides an easily distributed all‑in‑one system. In addition to high-performance image acquisition and processing, you can use built-in digital I/O and industrial communication options for dynamic, real-time communication and integration with industrial automation devices including programmable logic controllers (PLCs), human machine interfaces (HMIs), robotics, sensors, and industrial machinery. You can configure NI Smart Cameras with the included Vision Builder for Automated Inspection (AI) software or program the camera with the LabVIEW Real‑Time Module and the Vision Development Module.
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Intel® Movidius™ Myriad™-Based Industrial AI Smart Camera for the Edge
NEON-1000-MDX Series
ADLINK's NEON-1000 Series of industrial smart cameras supports the Intel® Movidius™ Myriad™ X VPU and a range of image sensors, providing users the flexibility to handle a wide variety of applications.
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ISC-1782, 2 MP, 1.58 GHz Processor, Monochrome/Color Smart Camera
785150-01
The ISC‑1782 is a high-performance smart camera for machine vision and is powered by a 1.58 GHz dual-core Intel Celeron processor. The combination of the onboard processor with a CMOS image sensor provides an easily distributed all-in-one system. In addition to high-performance image acquisition and processing, you can use built-in digital I/O and industrial communication options for dynamic, real-time communication and integration with industrial automation devices including programmable logic controllers (PLCs), human machine interfaces (HMIs), robotics, sensors, and industrial machinery. You can configure NI Smart Cameras with the included Vision Builder for Automated Inspection (AI) software or program the camera with the LabVIEW Real‑Time Module and the Vision Development Module.
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Camera Option for Nosecone Module
The Point Grey Grasshopper digital camera provides high resolution, high sensitivity sensors, yielding optimal imaging for underwater photography. Housed in the nosecone, the camera takes photos at a rate of up to 3.5 frames per second. Images are stored on a compact flash card and can be viewed through the Gavia Control Centre.
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ISC-1783, 5 MP, 1.58 GHz Processor, Monochrome/Color Smart Camera
785153-01
The ISC‑1783 is a high-performance smart camera for machine vision and is powered by a 1.58 GHz dual-core Intel Celeron processor. The combination of the onboard processor with a CMOS image sensor provides an easily distributed all-in-one system. In addition to high-performance image acquisition and processing, you can use built-in digital I/O and industrial communication options for dynamic, real-time communication and integration with industrial automation devices including programmable logic controllers (PLCs), human machine interfaces (HMIs), robotics, sensors, and industrial machinery. You can configure NI Smart Cameras with the included Vision Builder for Automated Inspection (AI) software or program the camera with the LabVIEW Real‑Time Module and the Vision Development Module.
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CMOS Cameras
Magic series
New Imaging Technologies proposes a broad range of visible products. From sensors to complete camera systems, all of our products integrate our unique NATIVE WDR capabilities. Our NATIVE WDR™ is a new generation of CMOS imaging technology named MAGIC™ (standing in english for Active Matrix with indexed generated contrast ), capable of generating a highly stable image even under very wide intra scene dynamic range (> 120dB) in a single frame time and without multi-exposure, any setting of knee points or external control. Our products are suited for many demanding applications and industries.
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Embedded Vision
In the industrial environment, especially in digitalized, automated production scenarios, more and more so-called embedded systems are being used. Embedded devices are small, with compact dimensions, highly efficient, and generate little waste heat. Therefore, they are also suitable for limited space conditions. Due to often harsh environmental conditions, they must be particularly robust and resistant to external influences like massive dust accumulation, strong vibrations, and high humidity or even direct contact with water. Typically, embedded devices are handhelds, smartphones, tablets, vision sensors, smart cameras, smart sensors and single board computers. If the systems have integrated machine vision software, they can be used for a wide range of image processing applications. This is known as embedded vision.
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Scientific Cameras
Thorlabs' Scientific-Grade Cameras are specifically designed for microscopy and other demanding applications. The Zelux™ CMOS cameras have small footprints and provide cost-effective solutions for general-purpose imaging applications. Kiralux® cameras have CMOS sensors with high quantum efficiency in a compact housing and are offered in monochrome, color, NIR-enhanced, and polarization-sensitive versions. Our polarization-sensitive CMOS camera is ideal for materials inspection, flaw detection, and other advanced techniques using polarization. The Quantalux® monochrome sCMOS cameras are fast frame rate imagers that combine high dynamic range with extremely low read noise for low-light applications. They are available in either a passively cooled compact housing or a hermetically sealed TE-cooled housing. We also offer scientific CCD cameras with a variety of features, including versions optimized for operation at UV, visible, or NIR wavelengths; fast-frame-rate cameras; TE-cooled or non-cooled housings; and versions with the sensor face plate removed. An intuitive software package, API and SDK for developers, and third-party software support provide options for custom system control and image acquisition.
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GMSL3
FRAMOS is the first company in the market to integrate Analog Devices’s new GMSL3 technology into an embedded vision environment. GMSL3 can transmit high frame rates (4K, 90 fps) as far as 14 meters with unprecedented efficiency. This interface is well suited for applications where the MIPI CSI-2 (D-PHY) length restrictions are not sufficient, while at the same time, a highly durable cable with low power consumption and low cost are essential. Camera developers can use the flexible FRAMOS Sensor Module Ecosystem to validate a variety of image sensors in the lab and in the field while taking advantage of the interface’s features.
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Area Scan Sensors
The ams family of pipelined global shutter sensors features high frame rates for a wide range of demanding professional and industrial applications. Their resolutions range from VGA up to 50Mpixels. Rolling shutter image sensors feature high 71Mpixel resolution for use in demanding industrial applications.
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24 TTL Channels, Enhanced, Programmable I/O
TL2
Function module TL2 provides 24 channels of TTL/CMOS transceiver functionality as either inputs or outputs. The transistor-transistor logic (TTL) employs transmitters with multiple emitters in gates having more than one input. TTL offers high switching speed and relative immunity to noisy systems. CMOS sensors provide image sensing technology by converting light waves into signals that are small bursts of current. These waves can be light or other electromagnetic radiation.
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ISC-1781, 1.3 MP, 1.58 GHz Processor, Monochrome/Color Smart Camera
785146-01
The ISC‑1781 is a high-performance smart camera for machine vision and is powered by a 1.58 GHz dual-core Intel Celeron processor. The combination of the onboard processor with a CMOS image sensor provides an easily distributed all‑in‑one system. In addition to high-performance image acquisition and processing, you can use built-in digital I/O and industrial communication options for dynamic, real-time communication and integration with industrial automation devices including programmable logic controllers (PLCs), human machine interfaces (HMIs), robotics, sensors, and industrial machinery. You can configure NI Smart Cameras with the included Vision Builder for Automated Inspection (AI) software or program the camera with the LabVIEW Real‑Time Module and the Vision Development Module.
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Aurora®
The Aurora® electromagnetic tracking solution provides unobstructed real-time tracking of micro sensors that can be embedded into rigid and flexible OEM medical instruments such as ultrasound probes, endoscopes, catheters, guidewires – even at the tip of a needle. With the Aurora® electromagnetic tracking solution, no line-of-sight is needed for in-vivo tracking of instruments through twisting anatomical tracts. When integrated as a component into the workflow of OEM image-guided surgery or interventional systems, the Aurora acts as the link between patient image sets and 3D space, enabling the instruments’ positions and orientations to be instantly localized and visualized within the operative field. It does so with the exceptional speed, accuracy, and precision required by today’s most demanding minimally invasive approaches.
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ISC-1781, 1.3 MP, 1.58 GHz Processor, Monochrome/Color Smart Camera
785147-01
The ISC‑1781 is a high-performance smart camera for machine vision and is powered by a 1.58 GHz dual-core Intel Celeron processor. The combination of the onboard processor with a CMOS image sensor provides an easily distributed all‑in‑one system. In addition to high-performance image acquisition and processing, you can use built-in digital I/O and industrial communication options for dynamic, real-time communication and integration with industrial automation devices including programmable logic controllers (PLCs), human machine interfaces (HMIs), robotics, sensors, and industrial machinery. You can configure NI Smart Cameras with the included Vision Builder for Automated Inspection (AI) software or program the camera with the LabVIEW Real‑Time Module and the Vision Development Module.
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Low-power, High-performance FPGA
iCE40 LP/HX
*Available in three series with LUTs ranging from 384 to 7680: Low power (LP) and high performance (HX)*Integrated hard I2C and SPI cores that enable flexible device configuration through SPI*Match your preferred display to your application processor with interfaces such as RGB, 7:1 LVDS and MIPI DPI/DBI*Multi-source your image sensors by implementing flexible bridges supporting common interfaces such as HiSPi, subLVDS, LVDS and Parallel LVCMOS*Up to 128 kbits sysMEM™ Embedded Block RAM*Industry’s broadest range of 0.35 mm - 0.40 mm pitch BGAs fit in space-constrained applications
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FRAMOS SLVS-EC RX IP CORE
Sony’s SLVS-EC interface standard has emerged as the best high speed interface to Sony’s best image sensors, enabling higher throughput, greater signal integrity, and simpler designs. Engineers developing solutions using Xilinx FPGAs and SoCs can take advantage of FRAMOS’s SLVS-EC RX IP Core, Evaluation Board and tested source code examples. Device builders and camera vendors can de-risk the design while reaping the benefits of Sony’s latest high-speed interface.
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CMOS Image Sensor
CIS
CMOS Image Sensors (CIS) allow multiple camera functions in mobile devices, automobiles and security systems. Nidec SV Probe provides both standard and advanced versions of our CIS cards employing a wide variety of materials ensuring a durable cost-saving solution that can meet the fine pitch and multi-dut challenges of these devices. Other features and benefits include: • Proprietary AC™ Alloy Probes • Reduced Damage Under the Pad • High Frequency Capability • Better Alignment StabilityOur advanced CIS card, the Multiplexer™, is offered specifically for high density and high parallel applications. The Multiplexer™ is built with cantilever needles held into place on one side and shorter AC™ probes on the other which leads to a more stable electrical characterization over other CIS probe card options.Contact your Nidec SV Probe Representative so we can help you find the right CIS product for your testing needs.
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Advanced Imaging CMOS Image Sensors
AI Series
Focusing on high-end imaging series CMOS image sensors for new security applications based on customer needs
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EMCCD Image Sensors for Space and Ground-based Astronomy
EM (Electron Multiplication) is a technology that uses on-chip gain in the charge domain to effectively eliminate read noise from an image sensor. This enables advanced ultra-low light applications that require extreme sensitivity at fast frame rates such as adaptive optics and lucky imaging™.The combination of Teledyne e2v’s back-thinning technology and anti-reflection coatings enables industry leading quantum efficiency that can be optimised for applications in the visible, UV or NIR wavelength ranges.
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ExciPro Femtosecond Transient Absorption Pump-Probe Spectrometer
ExciPro
ExciPro is the first on the market femtosecond transient absorption pump-probe spectrometer. Two linear image sensors are placed in the focal in the focal plane of an imaging spectrograph to measure probe and reference spectra originating from femtosecond white light continuum generator.