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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Scientific Systems
Teledyne e2v has been producing turnkey focal plane arrays, camera systems, electronics and astronomical cameras for over 15 years. As part of our advanced system and instrument group we act as your partner to collaborate and develop the next generation of scientific products and technologies.
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FPGA Support
Teledyne e2v offers technical support for integrating our data converters into FPGA-based systems. To support our data converters, we provide license free design examples for major FPGA vendors.
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Power Efficient Powerarchitecture Based Solutions
QorIQ® T-Series
The QorIQ® PowerPC processor portfolio offers the highest performance for small form factor/power-efficient applications.- 1.4GHz – 2GHz Power PC- Single & Multi-Core Architecture
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Low Light Imagers for Defense
Teledyne Imaging addresses low light imaging applications with a range of standard CMOS and EMCCD image sensors suitable for defense and security surveillance systems, whether for battlefield, vehicle, airborne, CCTV or security day camera’s.
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Magnetrons and Accessories
Teledyne e2v is a leader in cargo scanning technology, delivering products that are integrated into 90% of major systems worldwide.Over 90% of the world’s non-bulk cargo is transported by ship in standardised containers. The containerisation system was developed after World War II and its cost reduction has been a major driver of international trade and globalisation. There are well over half a billion container shipments per annum.
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Electron Multiplication (EM) Standard Image Sensors
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. Examples include life science applications such as single molecule detection, super resolution microscopy and spinning disk confocal microscopy along with physical science applications such as nanotechnology imaging, Bose Einstein condensates and soft X-ray spectroscopy, and astronomy applications such as adaptive optics and lucky imaging. The inclusion of an additional conventional output allows further flexibility for applications such as true 24 hour surveillance.
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3D CMOS Image Sensors
Flash
High-resolution in a rectangular format, specifically designed for 3D laser triangulation - Very high frame rate and throughput combined with high power efficiency, delivering outstanding sampling resolution and speed with a high Gbps/W ratio - HDR feature embedded on-chip, to measure all kinds of surfaces - Feature-rich sensors, to perfectly meet application challenges.
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Medical Thyratrons
Teledyne e2v has been designing and building thyratrons used in Radiotherapy for over 60 years. The healthcare market demands the highest levels of trust, quality and security of supply.Our RF Power products can be found in over 90% of the world's Radiotherapy treatment machines, helping to improve and save people's lives every minute of the day.We have strong long-term relationships with the global manufacturing base for Radiotherapy machines and are the established market leader for the supply of medical thyratrons; generating the microwave power required for the radiation treatment of tumours.More recently, our technical support for Hospital Engineers has extended into online training, technical FAQ support and bespoke conference events.
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Hybrid CMOS Sensor
Elite 4k2k
The ELITE hybrid CMOS sensor has been designed to excel in monochrome and color automatic optical inspection tasks. This includes print inspection, check scanning, electronics manufacturing, food sorting, and medical (OCT, tissue diagnostics etc.).
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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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1.3 Million Pixel CMOS Image Sensor
Sapphire 1.3M
This 1.3 million 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 60 fps in full resolution. Novel industrial machine vision application features such as multi ROI and histogram output are embedded on-chip. Very low power consumption enables this device to be used in battery powered applications.
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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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Quantum Technology
Our understanding of matter has become ever more detailed over time. Starting from the bulk and macroscopic properties of matter, it was a breakthrough when properties on a microscopic level could be readily viewed and understood.Quantum technologies concern an even smaller scale and seek to exploit the special properties of individual atoms or photons.As the science behind these Quantum properties has become better understood we are now close to being able to harness these effects to produce devices that have exciting new applications in the real world.There is a global effort under way by the major industrialised nations to translate quantum science from labs and research institutions into real-life applications that will positively impact industry and commerce.





































































