New-Tech Europe Magazine | July 2019 | Digital Edition

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over the previous generation MHM-2010. Building on the MHM-2010’s long service life and cost of ownership legacy, the MHM-2020 offers an upgraded user experience with a colour touch panel display and secure network management port. Hydrogen masers deliver stability by operating on the principle that hydrogen atoms, in the proper environment, emit microwaves at a precise 1420405751 Hertz (Hz) frequency. Phase-locking this extremely small-power and high-purity signal to a very high-performance quartz oscillator delivers a clock output signal with the necessary long-term stability and phase noise to enable precise time keeping. Active hydrogen masers are the most advanced commercially available atomic clocks produced by Microchip, quadrupling the stability of passive hydrogen masers while providing superior short-term stability compared to cesium beam tube atomic clocks. Designed and manufactured in the U.S., the MHM- 2020 maser uses a novel drift-compensation feature to significantly improve long-term clock-drift and aging performance, which is critical for metrology and timekeeping applications. This builds on the legacy of the MHM-2010, which set the industry’s expectations for long service life and low cost of ownership. Its improved performance makes the MHM-2020 the preferred choice of national labs that work with Bureau International des Poids et Mesures (BIPM) standards for maintaining Coordinated Universal Time (UTC) worldwide, enabling users to attain <3E-16/day long-term ageing along with improved temperature stability (tempco) and lower magnetic field sensitivity. The maser’s short-term clock stability performance between 1-100 seconds range meets the stringent requirements of Very Long Baseline Interferometry (VLBI) for radio astronomy research such as studying black holes and other applications that require a low noise, precise frequency and timing reference. The MHM-2020 76001-20X active hydrogen maser and upgrade package for users of applicable legacy MHM-2010 masers are both available. The maser can be specified with an optional low phase noise packaging option. Microchip supports the maser with clock maintenance, on-site repair and consulting services, as well as an extended warranty.

Teledyne e2v’s Emerald 67M, Ultra-high Resolution Image Sensor Now Available Teledyne e2v, a Teledyne Technologies company and global innovator of imaging solutions, and TowerJazz, the global specialty foundry leader, announces that Teledyne e2v’s Emerald™ 67M image sensor, designed for ultra-high resolution electronics inspection, high- end surveillance and microscopy is now available. The sensor is a member of Teledyne e2v’s Emerald family and features TowerJazz’s smallest in the world 2.5µm low-noise global shutter pixel, on TowerJazz’s 65nm platform, in its Uozu, 300mm Japanese manufacturing facility. The pixel is integrated with a unique light pipe technology, offering superb angular response, more than 80dB shutter efficiency, in a significantly small size, and extremely low noise (one electron). This unique pixel architecture provides cutting edge performance that enables improved manufacturing yields, through detection of smaller defects. The Emerald family of sensors, solely manufactured by TowerJazz, provides customers with an unprecedented set of features and are all suitable for high-speed interface systems including 10GigE, CoaXPress, Camera Link, and Camera Link HS. Special features include HDR modes with up to 120dB dynamic range and also a unique Region Of Interest (ROI) mode which allows multiple ROI to be captured under different exposure conditions, further improving the dynamic range of an image. Emerald 67M has a square shape with 8k resolution per side, enabling 95% utilisation of the image area for the next generation of display manufacturing, gen 10.5. The ultra-high resolution optimizes vision system movements in large product inspection, reducing system

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