Teledyne e2v
Teledyne e2v is a global leader in specialised components and subsystems for innovative solutions in medical, science, aerospace, defence, and industrial applications.
- +44 (0) 1245 493493
- 106 Waterhouse Lane
Chelmsford, Essex SM1 2QU
United Kingdom of Great Britain and Northern Ireland
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Microcontrollers
32-bit Qorivva microcontrollers based on PowerArchitecturetm e200 cores, that can run up to 264MHz. These devices include flash and RAM memory, as well as a number of external interfaces making them suitable for Aerospace & Defense of 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 Sensor
Lince11M
Lince 11M has been specifically designed as a high-speed CMOS image sensor that also allows customers to decrease the cost of ownership. The digital circuits of the sensor output images at 715fps in 4K resolution, or 1400fps when windowing in full HD resolution. To facilitate access to affordable optics, Lince11M is compatible with APS-C format in 4K resolution.
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Front Side Illuminated Sensor with Pixel Size of 5.3µm with NIR Spectrum Sensitivity
Ruby Family
The EV76C660 and EV76C661 are members of Teledyne e2v’s Ruby family of CMOS imaging sensors. These breakthrough devices provide sensitivity and performance beyond that considered possible on a front side illuminated sensor with a pixel size of 5.3µm, Quantum Efficiency (QE) of over 80% and excellent sensitivity and performance in the near-infrared (NIR) spectrum (>50% at 850nm). This significantly reduces system illumination costs, or enables very low-light imaging in outdoor camera applications.
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832x600 Pixel High Resolution Time-of-Flight (ToF) CMOS Image Sensor
Hydra3D+
Hydra3D+ is a 832 x 600 pixel resolution Time-of-Flight (ToF) CMOS image sensor, designed with Teledyne e2v’s proprietary CMOS technology, and is tailored for versatile 3D detection and measurement.
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Time-of-Flight CMOS Image Sensor
Hydra3D
Hydra3D is a 832 x 600 pixel resolution Time-of-Flight (ToF) CMOS image sensor, designed with Teledyne e2v’s proprietary CMOS technology, enabling the next generation of 3D vision systems. Hydra3D includes a 10µm three-tap cutting-edge pixel, which provides very fast transfer times for customers seeking the highest levels of 3D imaging performance, including high depth resolution, high speed and flexible operation conditions.
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Digital-To-Analog Converters
Teledyne e2v has been innovating data converter technologies for over 20 years and offers some of the most powerful digital to analog converters on the market that feature:Signal generation of up to 7 GHzLatency as low as 1 nsFull scale step response times as low as 40 psLowest noise vs. performance on the market at microwave frequenciesThe cutting-edge technology packed into Teledyne e2v's data converters allow our customers to significantly simplify designs with licence free, standard and customized solutions.
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Legacy Powerarchitecture Microprocessors
POWERQUICC®
The PowerQUICC® II and III family are based on the scalable 603e and e500 system-on-chip (SoC) platforms and Power ArchitectureTM processor cores.- PowerQUICC® II | 200- 450 MHz | 603e Core Architecture- PowerQUICC® III | 800MHz-1.5GHz | Single & Dual e500 Core
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2D CMOS Image Sensor
Lince6M5
Lince6M5 is a single chip, fully digital, high speed CMOS active pixel sensor which is designed for maximum flexibility. It has excellent performance in a large variety of applications, ranging from low noise, high dynamic range surveillance, to high speed slow motion analysis, including high resolution machine vision applications. Lince6M5 incorporates a high speed 6.5MP CMOS active pixel image sensor providing both global and rolling electronic shutter, as well as High Dynamic Range (HDR) features. The sensor array utilizes active CMOS pixels with pinned photodiodes to deliver high image quality whilst maintaining the size, cost, and integration advantage of the CMOS technology.
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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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RF Systems
With our detailed, end-to-end knowledge of beam generation systems and the way platforms operate in the field, we deliver state-of-the-art radio-frequency and x-ray systems. These integrated and effective systems are built with optimised components and interfaces to achieve the performance, reliability and ease-of-use expected by platform designers, manufacturers and end-users.
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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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MRAMs - Magnetoresistive Random Access Memory
Teledyne e2v’s MRAMs type EV2A16A is an extended-reliability version of the MR2A16A from Everspin. It is the ideal memory solution for applications that must permanently store and retrieve critical data quickly. It perfectly suits the requirements of critical embedded applications such as avionic, aerospace and defence environments.
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High Soeed CMOS System on Chip (SoC) Line Scan Image Sensor
LS4k
The LS4k is a high speed CMOS System on Chip (SoC) line scan image sensor optimized for applications requiring short exposure times and high accuracy line rates. It incorporates on chip two pixel arrays consisting of 2 rows with 4,096 7µm pitch pixels and 4 rows with 2,048 14µm pitch pixels respectively, a high accuracy (12-bit) high speed (84MHz) analog-to-digital conversion (ADC), and sophisticated on chip optical calibration for PRNU, DSNU, and lens shading correction.