-
- News
- Books
Featured Books
- design007 Magazine
Latest Issues
Current IssueRules of Thumb
This month, we delve into rules of thumb—which ones work, which ones should be avoided. Rules of thumb are everywhere, but there may be hundreds of rules of thumb for PCB design. How do we separate the wheat from the chaff, so to speak?
Partial HDI
Our expert contributors provide a complete, detailed view of partial HDI this month. Most experienced PCB designers can start using this approach right away, but you need to know these tips, tricks and techniques first.
Silicon to Systems: From Soup to Nuts
This month, we asked our expert contributors to weigh in on silicon to systems—what it means to PCB designers and design engineers, EDA companies, and the rest of the PCB supply chain... from soup to nuts.
- Articles
- Columns
Search Console
- Links
- Media kit
||| MENU - design007 Magazine
In Medical PCB Design, Innovation Never Stops
December 31, 2018 | Andy Shaughnessy, Design007 MagazineEstimated reading time: 2 minutes
Medical electronics is an exciting field to be working in right now with new ideas coming online almost daily. We last interviewed medical PCB designer Kenneth MacCallum in 2015. Recently, I asked him to give us an update on trends he sees in medical electronics, and some of the challenges in adapting the latest technology to this segment of the industry.
Andy Shaughnessy: Give us a brief background on StarFish Medical and your work there. We don’t see many physicists who are also PCB designers.
Kenneth MacCallum: StarFish is a medical device design, development, and contract manufacturing company. We help medical technology innovators throughout North America overcome challenging technology obstacles to create breakthrough products that improve health and save lives. We’re different from our competitors because we focus on enabling medical device startup companies to dial in their value proposition.
I am an engineering physicist, which means I have a strong mathematics and physics background that I apply through engineering. My deepest skillset is electronic design with a system-level first-principles approach. I believe that to design the best PCBs for a problem, the overall solution will be a balancing act across all disciplines. A tricky set of requirements is rarely optimally addressed without give and take from everyone involved—industrial designers, human factors specialists, mechanical engineers, software developers, optical designers, regulatory specialists, and project managers. This is particularly true when the primary function of a device is fundamentally reliant on some other discipline, like microfluidics or optics. In those cases, the electronics are in a supporting role.
Shaughnessy: A lot has happened with medical technology since our last interview almost three years ago. Can you give us an update on some of the trends you see in medical electronics? Are you working on any wearables, for instance?
MacCallum: There is a growing desire to bring medical devices into the patient’s home. This means that many devices no longer interact primarily with doctors, nurses, and technologists, but with the patient and without direct supervision. These devices often consist of multiple elements—those that are wearable, portable, and even implanted.
Three years ago, there was a growing buzz around connectivity—big data and the cloud. In the medical device industry, these terms collectively lumped into the phrase "digital health," which has now morphed into the concept of "connected health." Since then, it's become clearer how to successfully leverage and implement these ideas practically and economically. We're also learning how to address the associated regulatory hurdles, including the mandated attention to ensuring that identifiable patient data remains protected and secure.
Notwithstanding the trends, the fundamental focus on device safety and efficacy has not changed. If anything, this primary goal of medical device design has strengthened. No matter how cool and progressive technology gets, if we can't ensure that we can control the safety of the patient and operator—or if we cannot demonstrate that the intended use is implemented in a reliably effective manner—then we have not succeeded.
To read this entire interview, which appeared in the November 2018 issue of Design007 Magazine, click here.
Suggested Items
sureCore Now Licensing its CryoMem Range of IP for Quantum Computing
11/26/2024 | sureCoresureCore, the memory specialist, has announced that it is now licensing its CryoMem™ suite of Memory IP that is designed for use at the extremely low temperatures required for Quantum Computing (QC) applications.
Subdued Electronics Industry Sentiment Continues in November
11/25/2024 | IPCIPC releases November 2024 Global Sentiment of the Electronics Manufacturing Supply Chain report
NEOTech Significantly Improves Wire Bond Pull Test Process
11/25/2024 | NEOTechNEOTech, a leading provider of electronic manufacturing services (EMS), design engineering, and supply chain solutions in the high-tech industrial, medical device, and aerospace/defense markets, proudly announces a major advancement in its wire bond pull testing process, reducing manufacturing cycle time by more than 60% while maintaining industry-leading production yields of over 99.99%.
PCB Design Software Market Expected to Hit $9.2B by 2031
11/21/2024 | openPRThis report provides an overview of the PCB design software market, detailing key market drivers, challenges, technological advancements, regional dynamics, and future trends. With a projected compound annual growth rate (CAGR) of 13.4% from 2024 to 2031, the market is expected to grow from USD 3.9 billion in 2024 to USD 9.2 billion by 2031.
IPC Issues Clarion Call for EU to Reclaim Leadership in Electronics Manufacturing
11/21/2024 | IPCIPC released a synopsis of its recent white paper, Securing the European Union’s Electronics Ecosystem. This condensed document presents a comprehensive overview of the current challenges in Europe’s electronics manufacturing industry and shares actionable steps to help the EU achieve a stronger, more autonomous ecosystem.