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Complementary Metal-Oxide-Semiconductor is a low power and heat integrated circuit.

See Also: Image Sensors


Showing results: 331 - 345 of 394 items found.

  • Sony IMX290 Synchronized Multi-Camera System

    SurveilsQUAD - e-con Systems Inc.

    SurveilsQUAD (e-CAM20_CUXVR) is a synchronized multiple camera solution for NVIDIA® Jetson AGX Xavier™ Developer Kit that consists of four 2MP camera board and a base board to interface with the NVIDIA® Jetson AGX Xavier™ Developer Kit. Each camera is based on the camera module e-CAM21_CUMI290_MOD, a SONY® Starvis IMX290 color CMOS image sensor. This camera uses NVIDIA® on-board Jetson Xavier Image Signal Processor (ISP) to perform all the Auto functions (Auto White Balance, Auto Exposure control) and significantly, improved image quality. It has S-mount (M12) lens holder which allows customers to choose and use the lens according to their requirement.

  • 24 TTL Channels, Enhanced, Programmable I/O

    TL2 - North Atlantic Industries

    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.

  • 24 TTL Channels, Programmable I/O

    TL1 - North Atlantic Industries

    Function module TL1 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.

  • Multiple Camera Board For NVIDIA® Jetson AGX Xavier™

    E-CAM130_CUXVR - e-con Systems Inc.

    e-CAM130_CUXVR is a synchronized multiple 4K camera solution for NVIDIA® Jetson AGX Xavier™ development kit that has up to four 13 MP 4-Lane MIPI CSI-2 camera boards. Each camera is based on the camera module e-CAM137_CUMI1335_MOD, 1/3.2" AR1335 color CMOS image sensor from ON Semiconductor® and integrated high performance Image Signal Processor (ISP). All these four cameras are connected to the base board using 30 cm micro-coaxial cable. These four 4-lane MIPI camera modules can be synchronously streamed in 4K resolution, which will be best fit for high end multi camera solution. Customers can opt to purchase anything between single camera to four cameras as according to their requirement.

  • Pulser / Sampler Core

    Furaxa, Inc.

    Furaxa has researched, developed, and characterized a novel monolithic arrayable pulse and sample aperture generation technology. Recent results include demonstration of sub-10ps pulse/aperture generation at repetition rates up to 3 Billion Pulses/Samples Per Second (BPPS) with jitter that is estimated at sub-10fs. Further, simulations in a number of InP DHBT processes exhibit sub-3ps 20BPPS performance. The IP is process-independent, and has been achieved in CMOS SOI, InP HBT, SiGe and GaAs so far. Please contact us regarding your specific foundry and technical requirements: The company currently licenses the sampler/pulser technology for use by application and market, and is interested in discussing how the technology can enable our partners' applications. A short list of characterized Pulser/Sampler Cores is given below.

  • 2MP Sony STARVIS IMX290 Ultra-low Light Jetson TX2 Camera

    E-CAM21_CUTX2 - e-con Systems Inc.

    e-CAM21_CUTX2 is a 2MP Ultra-Lowlight 4-lane MIPI CSI-2 camera board for NVIDIA® Jetson TX2 developer kit. This camera is based on 1/2.8" SONY IMX290 CMOS Sensor, one of the most popular Sony's STARVIS® sensor. Its effective pixel back-illuminated technology with improved sensitivity in the visible-light and near infrared light enables customers to capture images even in absolute darkness. This Starlight Camera uses NVIDIA® on-board Jetson TX2 Image Signal Processor (ISP) to perform all the Auto functions (Auto White Balance, Auto Exposure control) and significantly, improved image quality. It has S-mount (M12) lens holder which allows customers to choose and use the lens according to their requirement.

  • 3.4 MP Autofocus (Liquid Lens) Low Light Camera Module

    e-CAM31_MI0330_MOD - e-con Systems Inc.

    e-CAM31_MI0330_MOD is a high performance, small form factor, 3.4 MP Autofocus Low Light Camera Module with Liquid Lens. It is based on AR0330 CMOS Image sensor from ON Semiconductor®. This Autofocus Liquid Lens Camera Module has slave mode for precise frame-rate control and for synchronizing two sensors. e-CAM31_MI0330_MOD – Liquid lens camera module has superior low light performance. It supports Full HD @ 60fps for maximum video performance. It also has a support for external mechanical shutter and an on-chip phase-locked loop (PLL) oscillator. The dedicated ISP performs the entire Auto functions like auto white balance, auto exposure control in addition to complete image signal processing pipeline.

  • 4 MP OV4682 RGB IR Camera Module

    e-CAM40_CUMI4682_MOD - e-con Systems Inc.

    The e-CAM40_CUMI4682_MOD is a 4 MP RAW RGB-IR MIPI OV4682 camera module with the M12 S-mount lens holder. The e-CAM40_CUMI4682_MOD RGB IR camera module is based on OmniVision's OV4682 1/3" Optical format CMOS Image sensor, that captures high-resolution images and videos as well as IR information. Its dual RGB-IR Camera capabilities allow it to bring a host of additional features to machine vision applications and by combining RGB - IR in a single camera module reduces the total cost and saves space. Customers can evaluate e-CAM40_CUMI4682_MOD with See3CAM_CU40 over USB 3.0 interface and e-CAM40_CUTK1 over MIPI interface. e-CAM40_CUMI4682_MOD camera module can stream the 4MP(2688x1520) unprocessed 10-bit RAW data video upto 40 fps.

  • 5MP MIPI Camera Module

    E-CAM55_CUMI0521_MOD - e-con Systems Inc.

    e-CAM55_CUMI0521_MOD is a small form factor, 5 MP fixed focus camera module based on AR0521 CMOS image sensor from ON Semiconductor® has a dedicated, high-performance Image Signal Processor chip (ISP) on-board that performs all the Auto functions (Auto White Balance, Auto Exposure control) in addition to complete image signal processing pipeline that provides best-in-class images and video. This low light camera module can stream uncompressed VGA (640 x 480) at 75 fps, HD (1280 x 720) at 100 fps, 1280 x 960 at 75 fps, FHD (1920 x 1080) at 65 fps, 2560 x 1440 at 38fps, 2592 x 1944 at 28 fps.

  • Ultrasound Pulser ICs And HV Multiplexers

    STMicroelectronics

    ST's Ultrasound Imaging IC Solutions offer a complete range of integrated high-voltage transmitters from quad and octal, to the latest device, the state-of-the art STHV1600 ultrasound pulser IC,  to high-voltage multiplexer IC, the STHV64SW, a 64-channel, high voltage analog independent switches. ST’s proprietary BCD6s-SOI and BCD8sSOI process technologies enable the combination of low-voltage CMOS logic, precise analog circuitry, and robust power stages on the same chip, offering unprecedented level of integration.

  • Isolation and Power Solutions

    Silicon Labs

    Silicon Labs' innovative digital isolation and power product portfolio includes CMOS digital isolators, isolated gate drivers, isolated current sensors, isolated system products and Power over Ethernet (PoE) families. These mixed-signal IC solutions leverage Silicon Labs' superior isolation and high voltage expertise to enhance power system performance, flexibility and reliability while reducing system size and cost. The entire isolation portfolio supports isolation voltages up to 5 kV.

  • photonSPECTRAL

    Photonfocus ag

    Photonfocus has developed outstanding solutions for numerous fields of application in order to meet the growing demand for imaging applications in invisible light spectra. The photonSPECTRAL platform offers highly sensitive cameras with wavelengths ranging from deep UV to short-wavelength infrared light (SWIR), as well as innovative systems for the hyperspectral range. Our vast expertise in this area is also reflected in our leading market position: Photonfocus launched a UV-suitable CMOS camera with global shutter for machine vision applications.

  • Low-Noise DC Bias

    Pulse Instruments

    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.

  • Machine Vision Camera - 1.6 MP, 78 FPS, Sony IMX273, Color

    Blackfly S Board Level - Teledyne FLIR

    The FLIR Blackfly Board Level variants are high performance, machine vision, area scan cameras designed for embedding into tight spaces. Unlike many board level cameras, it boasts a rich feature set applied to the latest CMOS sensors; the same feature set as the cased version. It is ready for integration with proven compatibility with popular SBCs and SOMs. The Blackfly S board level models enable OEMs to develop smaller, lighter, and lower cost solutions with embedded system connectivity and rich features.

  • General Purpose Low-side MOSFET Drivers

    Renesas Electronics Corp.

    Renesas' family of low-side FET drivers are very high-speed matched dual-drivers capable of delivering peak currents of 2.0 amps into highly capacitive loads and excellent at driving large capacitive loads with minimal delay and switching times. The high-speed performance is achieved by means of a proprietary "Turbo-Driver" circuit that speeds up input stages by tapping the wider voltage swing at the output. Improved speed and drive capability are enhanced by matched rise and fall delay times. These matched delays maintain the integrity of input-to-output pulse-widths to reduce timing errors and clock skew problems. This improved performance is accompanied by a 10 fold reduction in supply currents over bipolar drivers, yet without the delay time problems commonly associated with CMOS devices. Dynamic switching losses are minimized with non-overlapped drive techniques.

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