🚀 See you at SmallSat 2026! From precision timing and synchronization to imaging and motion control, we'll be showcasing semiconductor solutions designed to help simplify satellite architectures and accelerate development. Visit us at Booth #113. 📅 August 23–26, 2026 📍 Salt Lake City, Utah More info: https://lnkd.in/e5SzkChA #SmallSat2026 #SatelliteSystems #SpaceTech #Semiconductors #Magics
Magics Technologies
Semiconductor Manufacturing
Geel, Antwerpen 3,471 followers
Unmatched Performance for World’s Toughest Environments
About us
Magics is a European fabless semiconductor company developing high-reliability, radiation-hardened microelectronics for space and nuclear applications. Its integrated circuit solutions enable reliable operation in harsh and mission-critical environments, supporting applications such as satellite communications, robotics, industrial inspection, instrumentation, and autonomous systems. Through its Time, Motion, Vision, and AI Series, Magics helps customers reduce system complexity and improve long-term reliability.
- Website
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http://www.magics.tech
External link for Magics Technologies
- Industry
- Semiconductor Manufacturing
- Company size
- 11-50 employees
- Headquarters
- Geel, Antwerpen
- Type
- Privately Held
- Founded
- 2015
- Specialties
- ASIC development, Rad-hard IC design, Machine Learning, Intelligent sensing, Smart robotics, Closed-loop control, Artificial intelligence, and Deep learning
Locations
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Primary
Get directions
Cipalstraat 3
Geel, Antwerpen 2440, BE
Employees at Magics Technologies
Updates
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Magics Technologies reposted this
𝗘𝘅𝗽𝗲𝗿𝘁 𝗽𝗲𝗿𝘀𝗽𝗲𝗰𝘁𝗶𝘃𝗲 🔹Radiation-Hardened by Design: Building Interfaces for Space and Nuclear on #TSMC CMOS By Emil B. Hågan and Wouter Faelens (SOFICS), in collaboration with Magics Technologies https://lnkd.in/d3aJKs7D Most chips live an easy life with room temperature, clean power and a steady supply. The chips in this article do not. They sit inside nuclear reactors, ride on satellites and work next to particle beams, where a single stray particle can corrupt data or destroy a device. In those places radiation is the enemy and standard electronics do not last. This talk is about how two Belgian companies solve that together. Read more at https://lnkd.in/d3aJKs7D #semiIP #IPcores #semiconductor
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Magics will be sponsoring, exhibiting, and presenting at IEEE SMC-IT/SCC 2026 in Pasadena, California. At Booth #8, we’ll share our Time Series portfolio: space-graded timing ICs built on scalable standard CMOS technology for mission-critical space architectures. Our Time Series supports critical functions such as clock generation, synchronization, frequency synthesis, time measurement, and delay and timing correction, enabling applications in satellite communications, navigation and positioning, scientific instrumentation, distributed sensing, and timing networks. As part of the sponsorship program, @Anton Quiroz will present a Magics product update with a focus on Time Series. https://lnkd.in/e5RQ47ru 📅 August 3–7, 2026 📍 Pasadena, California 📌 Booth #8 If you’re working on space computing, mission-critical electronics, or reliable systems for harsh environments, let’s connect. #SpaceComputing #SpaceElectronics #Semiconductors #RadiationTolerant #Magics
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How do you measure ions with picosecond precision in space? As space missions become smaller and more distributed, scientific instruments must deliver high-performance measurements while meeting strict Size, Weight and Power (SWaP) constraints. One example is ion mass spectrometry, used to study plasma composition, ionospheric outflow and magnetosphere-ionosphere interactions. These instruments rely on extremely precise timing to reconstruct where and when each particle is detected. In our latest in-depth article, we explore how Time-to-Digital Converters (TDCs) enable this capability, following the signal chain from particle detection through to digital data acquisition. Using the Compact Ion Mass Spectrometer (CIMS) presented by Los Alamos National Laboratory as a reference, we discuss: ✅ How timing-based detector readout works ✅ Why Time-to-Digital Converters are well suited for Cross-Delay Line (XDL) detectors ✅ The role of MCPs, analog front-end electronics and FPGA processing ✅ How precise timing enables compact, high-performance scientific instrumentation for next-generation space missions The article also explains why measuring information directly in the time domain can simplify system architecture while supporting high-resolution particle detection. Credits to Bjorn Van Bockel for his technical review and valuable contributions throughout the development of this article. Read the full article here: https://lnkd.in/e7CiWH_p #SpaceElectronics #SpaceInstrumentation #MassSpectrometry #TimeToDigitalConverter #TDC #ScientificInstrumentation #CubeSat #SpaceTechnology #RadiationHardened #MagicsTechnologies
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We're heading to NSREC 2026 in San Juan, Puerto Rico 🇵🇷. As one of the leading conferences dedicated to radiation effects in electronics and systems, NSREC brings together the community advancing reliable technologies for space and other harsh environments. Visit us at Booth #10 to discuss radiation-tolerant ICs for timing, imaging, motor control, and AI applications. 📅 July 20 - 24, 2026 📍 San Juan, Puerto Rico More info: https://lnkd.in/ewk6hw8q #NSREC2026 #RadiationEffects #SpaceElectronics #Semiconductors #Magics
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Thank you to everyone who joined the Military & Aerospace Electronics webinar, Engineering for Extreme Environments: The Future of Radiation-Hardened Electronics. The session brought together a strong audience around a critical topic: how to design electronics that remain reliable under radiation exposure while meeting the performance and integration needs of mission-critical systems. Our CEO, Jens Verbeeck, joined the panel to share Magics’ perspective on radiation-tolerant ICs, IC-level integration, and the role of scalable CMOS technology in the future of space and defense electronics. Thanks to the Military & Aerospace Electronics and fellow speakers for the discussion. 🟢 The webinar is now available on demand: https://lnkd.in/e26Uuxkx #RadiationHardened #SpaceElectronics #DefenseElectronics #Semiconductors #Magics
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🗓️ Our agenda for the second half of 2026 is taking shape. From radiation effects and satellite systems to onboard AI and critical space infrastructure, we’ll be joining key conversations across the industry, online and in person. Upcoming stops include webinars, technical presentations, international conferences, and exhibitions where we’ll share our latest developments in radiation-tolerant ICs built on scalable CMOS technology. If you’re attending any of these events, let’s connect. #SpaceElectronics #Semiconductors #RadiationTolerant #SpaceTech #Magics
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Last week, our engineering team completed a new Single Event Effects (SEE) test campaign for the MAG-PLL00002 ⏱️, including an overnight beam session running from 22:30 until 07:00. The results continue to build confidence: ✔️ No Single Event Latch-up (SEL) observed ✔️ Spotless Single Event Upset (SEU) performance ✔️ An improved functional design showing even greater robustness against Single Event Transients (SETs) than our already successful A-silicon One of the highlights of this campaign was the measurement setup itself. Using our own MAG-TDC00002 as a high-precision timing instrument, we were able to characterize transient behaviour down to the picosecond range, providing deeper insight into the device's performance under radiation. A big thank you to Maarten Strackx, Dries Wouters and @Sébastien Trocherie for another successful campaign. Validation like this is what turns engineering into flight-ready technology. #RadiationTesting #SpaceElectronics #PLL #Semiconductors #Magics
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Europe is taking another step towards sovereign, high-performance space computing. We are proud to contribute to the #ULISSE project, bringing together European partners to develop technologies that will enable the next generation of autonomous space systems. At Magics Technologies, we are leading the development of what will become the first 7 nm radiation-tolerant AI processor for space applications. This technology is designed to deliver high-performance, on-board AI processing for applications such as autonomous lunar and Martian robotics, next-generation Earth observation payloads, intelligent SATCOM systems, and future space-based data centres. By combining advanced semiconductor design with European collaboration, ULISSE is helping strengthen Europe's technological sovereignty in critical space infrastructure. As part of this initiative, we're working alongside imec, NanoXplore SAS, BELSPO, and the rest of the consortium to help develop the next generation of European AI hardware for space applications. A special thanks to our CTO, Ying Cao, for representing us throughout this collaboration. Together, we're helping build the technologies that will enable Europe's next generation of intelligent space systems. #EuropeanSpace #Semiconductors #ArtificialIntelligence #SpaceTech #Magics
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Magics Technologies reposted this
🚨 Discover what's next in radiation-hardened electronics. Join Military & Aerospace Electronics on July 8 for a free webinar featuring industry leaders. Hear from experts at Magics Technologies, Trusted Strategic Solutions, LLC, and Microchip Technology Inc. as they discuss the technologies shaping the next generation of resilient #aerospace and defense electronics. Register to join us! #RadiationHardening #SpaceElectronics #DefenseElectronics #EmbeddedSystems #Semiconductors #SpaceTech https://lnkd.in/e9xrpRU6