More 2.5D/3D, Fan-Out Packages Ahead


A new wave of 2.5D/3D, fan-out and other advanced IC packages is expected to flood the market over the next year. The new packages are targeted to address many of the same and challenging applications in the market, such as multi-die integration, memory bandwidth issues and even chip scaling. But the new, advanced IC packages face some technical challenges. And cost remains an issue as advan... » read more

Chasing Reliability In Automotive Electronics


Assuring reliability in automotive electronics has set off a scramble across the semiconductor supply chain and unearthed a list of issues for which there is insufficient data, a lack of well-defined standards, and inconsistent levels of expertise. Reliable functional safety that spans 18 to 20 years of service in harsh environments, or under constant use with autonomous taxis or trucks, is ... » read more

The Next Semiconductor Revolution


What will drive the next semiconductor revolution? When you ask people with decades of experience in semiconductor manufacturing and software development, the answers include everything from AI and materials to neuromorphic architectures. Federico Faggin, designer of the world's first microprocessor; Terry Brewer, president and CEO of Brewer Science; Sanjay Natarajan, corporate vice presi... » read more

IoT Merging Into Data-Driven Design


The Internet of Things is becoming more difficult to define and utilize for an effective business strategy. While an increasing number devices send data to the cloud or some local server, so much data is being generated and moved around that new strategies are being developed to rethink what needs to be processed where. Back in 2013, when the IoT concept really began taking off, connectivity... » read more

Making Autonomous Vehicles Safer


While self-driving vehicles are beta-tested on some public roads in real traffic situations, the semiconductor and automotive industries are still getting a grip on how to test and verify that vehicle electronics systems work as expected. Testing can be high stakes, especially when done in public. Some of the predictions about how humans will interact with autonomous vehicles (AVs) on public... » read more

IoT Device Security Makes Slow Progress


Semiconductor Engineering sat down with Chris Jones, vice president of marketing at Codasip; Martin Croome, vice president of business development at GreenWaves Technologies; Kevin McDermott, vice president of marketing at Imperas; Scot Morrison, general manager, embedded platform technology at Mentor, a Siemens Business; Lauri Koskinen, CTO at Minima; and Mike Borza, principal security technol... » read more

Chip Industry In Rapid Transition


Wally Rhines, CEO Emeritus at Mentor, a Siemens Business, sat down with Semiconductor Engineering to talk about global economics, AI, the growing emphasis on customization, and the impact of security and higher abstraction levels. What follows are excerpts of that conversation. SE: Where do you see the biggest changes happening across the chip industry? Rhines: 2018 was a hot year for fab... » read more

Reducing Advanced Packaging Costs


Semiconductor Engineering sat down with Chenglin Liu, director of package engineering at Marvell; John Hunt, senior director of engineering at ASE; Eric Tosaya, senior director of package manufacturing at eSilicon; and Juan Rey, vice president of engineering for Calibre at Mentor, a Siemens Business. What follows are excerpts of that discussion, which was held in front of a live audience at MEP... » read more

AV Testing Advances Without Standards


The failure of the AV START Act in the United States Senate did more than just delay U.S. federal regulations for self-driving car technology that has yet to progress beyond the pilot-test stage. It delayed discussions that could have narrowed the almost infinite number of choices automated vehicles (AVs) must be prepared to make by creating guidelines defining what constitutes "safe" operat... » read more

Quantum Issues And Progress


Quantum computing is showing significant promise, and research is beginning to move from the earliest stages to a deeper understanding of what works best commercially and why. On paper, quantum computing algorithms are potentially revolutionary. They suggest a way to solve some problems more quickly and more accurately than conventional computers ever could. But out in the real world of prac... » read more

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