Wireless Systems Software Engineer
Listed on 2026-08-30
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Software Development
Embedded Systems/ Firmware/ IoT, Embedded Software Engineer, Software Engineer, C++ Developer
Senior Wireless Systems Software Engineer
Who We Are
HP IQ is HP’s new AI innovation lab. Combining startup agility with HP’s global scale, we’re building intelligent technologies that redefine how the world works, creates, and collaborates.
We’re assembling a diverse, world-class team—engineers, designers, researchers, and product minds—focused on creating an intelligent ecosystem across HP’s portfolio. Together, we’re developing intuitive, adaptive solutions that spark creativity, boost productivity, and make collaboration seamless.
We create breakthrough solutions that make complex tasks feel effortless, teamwork more natural, and ideas more impactful—always with a human-centric mindset.
By embedding AI advancements into every HP product and service, we’re expanding what’s possible for individuals, organisations, and the future of work.
Join us as we reinvent work, so people everywhere can do their best work.
About The Role
As a Wireless Systems Software Engineer
, you will help build the core software libraries and system infrastructure that power the next generation of wireless experiences at HP IQ. You will work across hardware, firmware, embedded software, operating systems, and product teams to integrate and optimize multiple wireless technologies, including Bluetooth, Ultra‑Wideband (UWB), NFC
, and future connectivity solutions.
You will play a key role in designing scalable software architectures that bridge hardware and software, enabling seamless communication across embedded devices and host platforms. This position offers the opportunity to work on challenging system‑level problems, influence the architecture of a new wireless ecosystem, and help define technologies that will shape the future of work.
What You Might Do
- Serve as a technic al expert across wireless technologies including Bluetooth, UWB, NFC
, and related embedded communication interfaces. - Architect, design, and develop reusable, scalable wireless software libraries with well‑defined APIs that support multiple products and platforms.
- Design and integrate embedded software components that interface with wireless chipsets using industry‑standard buses such as I²C, SPI, UART, and USB
. - Collaborate with hardware, firmware, OS, and application teams to integrate wireless subsystems into new products.
- Drive system‑level debugging, performance optimization, and feature development across embedded and host software layers.
- Perform bring‑up, validation, and troubleshooting of new wireless hardware platforms.
- Analyze system resource utilization, including memory footprint, CPU usage, power consumption, and latency , and optimize software for constrained embedded environments.
- Partner with program management and quality teams to investigate complex field issues, perform root cause analysis, a nd implement robust long‑term solutions.
- Influence system architecture to ensure modularity, scalability, backward compatibility, and long‑term maintainability across multiple product generations.
- Mentor engineers through design reviews, code reviews, and technical leadership while promoting engineering best practices.
- Identify technical risks early and propose architectural improvements that improve reliability, extensibility, and development velocity.
Essential Qualifications
- Bachelor's or Master's degree in Computer Science, Electrical Engineering, or a related field.
- 5+ years of software development experience focused on embedded systems, wireless technologies, or systems software.
- Strong proficiency in modern C++ and embedded or systems software development.
- Experience integrating wireless technologies such as Bluetooth, UWB, NFC , or similar connectivity solutions.
- Strong understanding of embedded communication protocols including I²C, SPI, UART, USB , and GPIO interfaces.
- Experience designing modular software architectures and reusable libraries with stable API boundaries.
- Solid understanding of embedded system design principles, including memory estimation, resource allocation, power management, and performance optimization .
- Experience debugging hardware/software interactions using oscilloscopes, logic analyzers, protocol analyzers, or embedded logging…
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