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Event Based Image Sensors
EVS
Event-based Vision Sensors (EVS) help alleviate this issue by only sending data from pixels who have detected a change in intensity. This allows them to minimize the volume of data that is transmitted over the sensor’s data bus while minimizing the processing resources need to analyze the image. On top of this, individual pixel autonomously responds to illuminance changes allowing the sensor to detect small and/or high frequency changes with lower bandwidth requirements.
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CMOS Image Sensors
Since 1999 ST has been an industry leader in the design and manufacture of imaging sensors. The current product portfolio spans a wide range of traditional image sensors from entry level VGA to 24 Mpixels and will soon offer products with 100’s of millions of pixels.
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2D CMOS Image Sensors
Emerald 67M
Extreme Precision for Enhanced Manufacturing Yield and Long Distance Identification - 67 Megapixels delivers 8k of resolution on each side - Comprehensive ROI features, enable more objects to be captured in a single high resolution shot - High sensitivity with ultra low-noise performance for powerful identification.
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Charge Coupled Device (CCD) Standard Image Sensors
Teledyne e2v is the leading supplier of scientific grade Charge Coupled Device (CCD) image sensors for the most challenging low light imaging and spectroscopy applications.
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2D CMOS Image Sensors
Topaz
The Topaz series of industrial CMOS sensors include 2MP (1920 x 1080) and 1.5MP (1920 x 800) resolution devices. The sensors use state-of-the-art low noise, global-shutter pixel technology to offer powerful solutions and enable compact mobile designs for many applications.
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Charge Coupled Device (CCD) Image Sensors for Space and Ground-Based Astronomy
(CCDs) for Space science, Ground-based Astronomy, and Earth observation applications with an impressive record of successful deliveries to a wide range of customers over 40 years.All Teledyne e2v devices can be supplied partially or fully customised to fit the application and achieve the best possible system performance. CCD image sensor design, manufacture, test and characterisation are carried out in-house enabling control from start to finish. Multi-polysilicon, multi-metal and back-illumination options are available for high resolution, high sensitivity and very low noise.
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2D CMOS Image Sensors
Emerald 36M
Superior 36 Megapixel resolution - 6K square resolution - Multi-ROI feature enabling more objects to be captured in a single high resolution shot - Small global shutter pixel for blur-free images.With its high resolution, Emerald 36M improves inspection accuracy, increases throughput through an optimized inspection system path, and covers wider areas for surveillance or aerial mapping.
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Image Sensors For Broadcasting And Digital Still Camera
Panasonic Industrial Devices Sales Company of America
Image Sensors For Broadcasting And Digital Still Camera
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Consumer Global Shutter Image Sensors
Smart GS Series
SmartSens creatively combines the backside-illuminated (BSI) pixel design process with the Global Shutter image sensor design to provide imaging performance with better signal-to-noise ratio, higher sensitivity and wider dynamic range . The new vitality of intelligent sensing equipment.
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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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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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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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IP Surveillance Camera
ENVIROMUX-IPCAM
View and control the camera from the ENVIROMUX web interface, the camera web interface, included software, or with a compatible cell phone. With the ENVIROMUX-2D/5D/16D, a triggered snapshot can be forwarded in alert e-mails. A snapshot can be triggered by any programmed event (motion detection, door open/close, glass break, smoke, liquid detection, etc.). Image sensor: 1/4" progressive scan CMOS sensor. Video Streaming: simultaneous Motion JPEG and MPEG-4. Frame rate: 30fps at 640x480 (VGA) resolution. Lens: F2.0, 4.0 mm (0.16 in). RJ45 connector. Wireless models: wireless IEEE 802.11 b/g up to 54 Mbps. Regulatory approvals: CE, FCC, RoHS.
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5.0 MP Camera For Rockchip RK3399
E-CAM50_CU96
e-CAM50_CU96 is a 5MP Fixed focus MIPI camera for 96Boards compliant Rock960 developer kit featuring Rockchip RK3399 processor. This 4-lane MIPI Camera for Rock960 board is based on our popular low-light camera module, e-CAM55_CUMI0521_MOD which has 1/2.5" AR0521 CMOS Image sensor from ON Semiconductor® and a built-in Image Signal Processor (ISP). It has S-mount (M12) lens holder which allows customers to choose and use the lens according to their requirement.
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NVIDIA® Jetson™ Xavier NX-based Industrial AI Smart Camera for the Edge
NEON-2000-JNX Series
ADLINK NEON-2000 series is the NVIDIA® Jetson™ based industrial AI cameras, which integrates the Jetson Xavier NX or Jetson™ TX2, Image Sensor, Optimized OS, Rich I/O for vision applications in a compact chassis and verified thermal performance, that saves not only users' TCO (Total Cost Ownership) on the integration and trouble shooting, but also the dimension and cables on the installation.
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8k Wide Aspect Ratio CMOS Image Sensor
Snappy Wide
Snappy Wide is a new 8K wide aspect ratio CMOS image sensor designed specifically for logistics applications where larger conveyor belts are becoming increasingly common. A single Snappy Wide sensor can cover this large field of view successfully, replacing multiple sensors for a more efficient and cost-effective solution.
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Digital Signal Processor
CHAMP-XD2M
Curtiss-Wright Defense Solutions
Imaging sensors, RADAR, and SIGINT provide an overwhelming amount of data that needs to be stored before it can even be processed, but current solutions offer far from enough memory to store it. By providing more memory capacity on a single board, systems can remain SWaP-C optimized and data can be connected and processed with ease.
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3.4 MP Custom Lens Low Light Camera Module
e-CAM30_CUMI0330_MOD
e-CAM30_CUMI0330_MOD is a high performance, small form factor, 3.4 MP pluggable Low Light Camera Module with S-Mount lens holder. It is based on AR0330 - a 3.4MP CMOS Image sensor from ON Semiconductor®. It has a dedicated, high-performance Image Signal Processor chip (ISP) on-board that performs the entire Auto functions (Auto White Balance, Auto Exposure control) in addition to complete image signal processing pipeline that provides best-in-class images, videos and the optional MJPEG compressions.
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3D Imaging Sensor
The GS 3D sensors, can be used in applications such as bin picking, robotic manipulation, sorting products, mold clearance checking, and space monitoring and object recognition. In addition, the 3D technology will aid in determining spatial positions and measurements.The GS 3D images larger objects at longer distances and does so in milliseconds without the cycle time and motion required by scanning-based methods.
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"All Weather" IoT Application Image Sensors
IoT Series
Innovation combined with SmartAEC ® function , ultra-low power consumption design enables "all-weather" application terminals to achieve extremely fast startup.
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13MP Jetson TX2/TX1 Camera Board
E-CAM130_CUTX1
e-CAM130_CUTX1 - 13MP Jetson TX2/TX1 camera board is a 4-lane MIPI CSI-2 camera solution for NVIDIA® Jetson TX2/TX1 developer kit. The e-CAM130_CUTX1 Board uses 13MP custom Lens camera module based on AR1820 CMOS Image sensor from ON Semiconductor. This camera daughter board can be directly interfaced to the NVIDIA® Jetson TX2/TX1 developer kit. The e-CAM130_CUTX1 is a 13MP color camera with the S-mount (also known as M12 board lens) lens holder.
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SWIR Image Sensors
Though NIR and SWIR act similarly to visible light, they are not visible to the human eye. As a result, these spectrums present valuable information which can show artifacts or damage that would otherwise not be seen. Click here to see some examples of how SWIR is being used in existing applications today.
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Global Shutter Image Sensors
Global shutter sensors have a fast and high-resolution capture of the entire field of view. Each pixel on a global shutter sensor completes its exposure simultaneously. This feature allows them to freeze motion in captured images. Each pixel will not only have the same integration time, but they will start their integration at the same time across the entire sensor. This exposure and detection scenario makes this type of sensor easier to synchronize with a flash or other external event.
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CMOS Type Micro Laser Distance Sensor
HG-C
Panasonic Industrial Devices Sales Company of America
Housed in a lightweight but strong die-cast aluminum case, the compact HG-C Series pairs a highly precise CMOS Image Sensor with a newly designed optical system to achieve a smaller Sensor depth, as well as, highly accurate measurements in the order of 1/100 mm (0.0003 In.).
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5.0 MP NVIDIA® Jetson Nano™ Camera
E-CAM50_CUNANO
e-CAM50_CUNANO is a 5.0 MP 2-lane MIPI CSI-2 fixed focus color camera for NVIDIA® Jetson Nano™ developer Kit. This camera is based on 1/2.5" AR0521 CMOS Image sensor from ON Semiconductor® with built-in Image Signal Processor (ISP). This powerful ISP helps to brings out the best image quality from the sensor and making it ideal for next generation of AI devices.
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2MP Global Shutter Camera
See3CAM_20CUG
See3CAM_20CUG is a 2MP global shutter monochrome USB 3.1 Gen1 Camera. This industrial USB camera is based on OmniVision's 1/2.9" OV2311 Image sensor with 3μm x 3μm pixel OmniPixel® 3-GS technology. This monochrome USB camera can capture high frame rate images without any motion blur and its IR sensitivity helps to produce stunning image quality even at the Near Infrared (NIR) regions. It has S-mount (M12) lens holder which allows customers to choose and use the lens according to their requirement. It is a Plug-and-Play camera (UVC compliant) for Windows and Linux.
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1600x1200 Pixel Sapphire CMOS Image Sensor
Sapphire 2M
This 1,600 x 1,200 pixel Sapphire CMOS image sensor, designed on Teledyne e2v’s proprietary Eye-On-Si CMOS imaging technology, is ideal for diverse applications where superior performance is required. The innovative pixel design offers excellent performance in low-light conditions with both electronic rolling shutter and electronic global shutter, with a high-readout speed of 50/60 fps in full resolution. Novel industrial machine vision application features such as multi ROI, histogram outputs and 3D range gating are embedded on-chip.
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Rolling Shutter Image Sensors
Rolling Shutter devices start and then stop their exposure line by line. This means that that each line will be recorded at a slightly different exposure time. This effect is pronounced for short exposures which produces images with distortion due to moving objects and short flashes of light.





























