UWB at IPSoC: a perfect reuse case study in-waiting
Developers of UWB products would benefit from strategically planning for IP Reuse
Reuse is often applied retrospectively and that can make it more complex, expensive, and time consuming than it otherwise needs to be. We help customers to benefit from reuse at any stage of product’s evolution and its migration to different technologies, nodes. But the fact is it is easier for you, the developer if it is part of a well-planned IP reuse design strategy and built into a long-term roadmap.
At the #IPSoC event last week, we saw the interest in Ultrawideband (UWB) – not a new technology – it’s been waiting in the wings for many years…but it is now starting to show its true potential. The U1 Apple chip released with some of its iPhones in 2019, includes UWB. And that’s always going to make the rest of the industry wonder if they should follow suit.
UWB is higher-frequency and broad spectrum radio technology. Its spatial awareness capabilities makes the radio ideal for applications in the Internet of Things, but now that the technology is suitable for portable, battery-powered devices, also high-speed large file transfer between devices. Automotive, industry 4.0, track and trace. There are plenty of market opportunities ripe for applying UWB.
To read the full article, click here
Related Semiconductor IP
- NPU IP
- JPEG XL Encoder
- I2C Master/Slave Controller Core
- NVMe Validation Test Suite
- Hybrid Memory Cube Verification IP
Related Blogs
- Case Study: Getting More Functionality from Existing Chips
- Case Study: Choosing the Right Benchmarks for the Job
- Case Study: Choosing the Right Benchmarks for the Job
- Case Study: Choose Your Desert Island Companion Wisely
Latest Blogs
- Tape-Out Readiness Checklist: Engineering Decisions That Prevent Costly Respins
- How Cadence DSPs Put In-Cabin AI Audio On-Chip in SemiDrive's X10
- The Fastest Path to Scalable Photonic Systems: Using Proven IP for both PIC and EIC designs
- Building Trusted AI Agents from the Silicon Root of Trust
- Heterogeneous Computing in Space