109 results found Selected 0 items No itemsClear selection Select / deselect all results (all pages, 109 total) Concept Receiver for Indoor Positioning Techniques The capacity of developing navigation algorithms for data fusion are key aspects covered in SCRIPT. Fusion navigation solutions based on ranging, direction of departure (DOD) and direction of arrival (DOA) and GNSS based on single and multiple anchors and peers for outdoor-to-indoor scenarios are developed. Our own concept in the field of data fusion for indoor/outdoor location, based on a Sigma Point Kalman Filter (SKPF), the hybrid filter that combines a particle filter with the classical Kalman filter, is used. The SW Receiver Italy TDE T606-610ES SENER AEROESPACIAL, S.A. 2023 - 2023 Concept Receiver for Indoor Positioning Techniques Multi-scale high accuracy engineering tools for single event effects analysis in modern technologies Although Single Event Effects (SEE) have been known for many years to be a major source of anomalies in spacecraft, problems are multiplying because of technology evolution and the inability of analysis techniques to keep pace. New mechanisms in SEE generation are emerging, and "classical" analysis algorithms and software (such as CREME-96) are becoming rapidly outdated due to their major simplifications in the physics and in the treatment of the sensitive "bit" geometry. France TDE T704-301EE TRAD - TESTS ET RADIATIONS 2018 - 2023 Multi-scale high accuracy engineering tools for single event effects analysis in modern technologies Large-format NIR Avalanche Photodiode Array for Scientific Imaging In recent years, the traditional MCT (Mercury Cadmium Telluride) technology for near-infrared (NIR) sensing has been developed further to manufacture APD (Avalanche Photo-Diode) arrays, which enables sub-electron readout noise measurements. This technology is now routinely used for wave-front sensing on ground-based telescopes using small format devices. Further effort to increase the size of NIR APD sensors as well as improving the MCT material properties (e.g. lower dark current) is needed such that they can be used for future ground and space-based scientific instrumentation. United Kingdom TDE T217-069MM Leonardo MW Ltd 2020 - 2023 Large-format NIR Avalanche Photodiode Array for Scientific Imaging De-risk assessment: MICOR : MICrowave Optical oscilatoR MICOR system was successfully assembled at Menhir Photonics and final tests performed at CSEM. The tests demonstrated the impressive noise performance of the device. The following main results have been achieved: Switzerland GSTP G617-241TAabh Menhir Photonics AG 2022 - 2023 De-risk assessment: MICOR : MICrowave Optical oscilatoR Towards high-performance space-grade frequency-combs This project aim was to make steps towards a demonstrator for a fully stabilized frequency comb, with the ultimate goal of creating a space-grade version. Such a system is essential for advancing timing and frequency distribution in space technology and enhancing Galileo satellites. Transitioning from electronics to photonics promises to significantly boost the accuracy and precision of satellite clocks, leading to heightened data transfer security, improved telecom performance, resistance to jamming, and more accurate greenhouse gases detection. Switzerland Discovery ETD 2022-03-a Menhir Photonics AG 2022 - 2023 Towards high-performance space-grade frequency-combs Estimation of proton induced single event rate in very deep submicron technologies More and more space applications and missions are considering the use of deep submicron technologies. Digital CMOS technologies below 65nm are sensitive to proton induced Single Event Effects (SEE) by direct ionisation mechanism. The consequence is a significant increase of SEE rates in flight (up to several orders of magnitude). This effect will be the dominant cause of SEE in orbit for these technologies. This poses a very significant challenge to SEE mitigation methods used in spacecraft electronics. France TDE T723-605QE ALTER TECHNOLOGY TUV NORD FRANCE SAS 2020 - 2023 Estimation of proton induced single event rate in very deep submicron technologies Estimation of proton induced single event rate in very deep submicron technologies More and more space applications and missions are considering the use of deep submicron technologies. Digital CMOS technologies below 65nm are sensitive to proton induced Single Event Effects (SEE) by direct ionisation mechanism. The consequence is a significant increase of SEE rates in flight (up to several orders of magnitude). This effect will be the dominant cause of SEE in orbit for these technologies. This poses a very significant challenge to SEE mitigation methods used in spacecraft electronics. France TDE T723-605QE IROC TECHNOLOGIES SA 2020 - 2023 Estimation of proton induced single event rate in very deep submicron technologies Faintstar detector industrialisation After the successful evaluation campaign of the component, Faint Star is now used by a number of designs (Star Trackers and Navigation Cameras). The guarantee of supply is vital for the space industry. Following a company?s decision to stop commercialising the component, the proposed contractor is taking over. The manufacturing chain is not affected by this transfer. The design of the component is unchanged for the silicon die (produced at the same foundry), the package and its assembly. Belgium GSTP GT27-119SA CAELESTE CBVA 2022 - 2023 Faintstar detector industrialisation Manufacturing, test development and evaluation of a monolithic, rad-hard ECM LVDS component family The part component family is represented by the SPLVDS032RH and SPLVDS031RH, which are radiation hardened 400 Mbps Quad LVDS line receiver and line driver, correspondingly, and the SPLVDS104RH, which is a radiation hardened 800 Mbps 1:4 LVDS Fanout buffer. All these 3 components are optimised for high-speed, low power, low noise transmission over controlled impedance transmission media (e.g. cables, printed circuit board traces, backplanes). ; Germany GSTP GT17-428MM SPACE IC GMBH 2021 - 2023 Manufacturing, test development and evaluation of a monolithic, rad-hard ECM LVDS component family Optical Cryocooling for Space Applications Almost all types of satellite sensors are actively or passively cooled, in many cases down to cryogenic temperatures. The goal is to suppress thermal noise in order to achieve the highest possible signal-to-noise ratio. Thus, cryocoolers are critical components in satellite systems, and in many cases key enablers. For instance in Earth Observation (EO) systems, mechanical cryocoolers are preferred over passive ones. The reason is that passive radiators induce constraints on satellite orbit and attitude. 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