Senior RF Design Engineer
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About Array Labs
Array Labs is at the forefront of developing advanced radar systems that revolutionize our understanding of the physical world. Our mission is to create innovative satellite technologies that enable real-time insights, supporting crucial decision-making in various sectors including disaster response and geopolitical intelligence.
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Ricursive Intelligence
Ricursive Intelligence is an innovative AI research laboratory dedicated to revolutionizing the field of self-improving systems, beginning with advanced chip design. Our mission is to transform chip development processes by creating a synergistic link between artificial intelligence and the hardware that supports it, thereby accelerating the journey towards artificial superintelligence.We are seeking top-tier engineers and researchers with substantial expertise in RTL (Register Transfer Level) and design verification for cutting-edge chip design. Your responsibilities will encompass various verification methodologies, simulation practices, and debug/formal/equivalence flows. As part of an extraordinary team, you will leverage your practical experience in specification, RTL development, testbench architecture, regression testing, waveform analysis, and design closure to influence the algorithms and systems that modern chip design teams depend upon.
About VoltaiVoltai is at the forefront of innovation, developing advanced world models and intelligent agents that learn, evaluate, plan, and interact with the physical realm. Our journey begins with hardware: electronic systems and semiconductors where artificial intelligence transcends human cognitive limitations in design and creation.About the TeamSupported by Silicon Valley’s elite investors, Stanford University, and prominent figures including CEOs and Presidents from Google, AMD, Broadcom, and Marvell, our diverse team comprises former Stanford professors, SAIL researchers, Olympiad medalists, former CTOs of major tech companies, and high-ranking officials from the U.S. government.About this RoleAs a Senior Design Verification Engineer, you'll play a pivotal role in shaping the future of silicon design tools by merging deep verification expertise with cutting-edge AI systems. Your responsibility will extend beyond chip verification to revolutionizing how teams approach this critical task. If you're passionate about creating scalable tools that address the complexities of hardware design, this position offers significant ownership and a direct impact on real-world chip development.What You’ll DoDrive the verification strategy for various IP blocks and subsystems, from testbench architecture to signoff.Design and implement AI-assisted workflows to accelerate verification processes, ensuring coverage closure and effective debugging.Create reusable verification frameworks utilizing SystemVerilog, UVM, Python, and bespoke automation tools.Collaborate with machine learning and software teams to seamlessly integrate AI models into existing design verification environments.Influence product direction by investigating how automation can transform verification methodologies.Engage with clients in a proactive manner, translating real-world design challenges into actionable product features.Ensure tapeout readiness by taking full responsibility for quality metrics, regression health, and coverage targets.Mentor junior engineers, establishing best practices for next-generation verification teams.What Makes This Role UniqueThis is an exceptional opportunity to influence the future of tooling and AI-guided verification methodologies.
At SpaceX, our vision is to make humanity a multi-planetary species, with Mars as our ultimate destination. We are pioneering technologies to enable this future, and you can be part of this groundbreaking journey.Join us as a Principal ASIC Design Verification Engineer for Starshield.Starshield utilizes SpaceX's advanced Starlink technology and launch capabilities to bolster national security. While Starlink caters to consumer and commercial markets, Starshield's mission is to serve government needs, focusing initially on earth observation, communications, and hosted payloads. As a pivotal member of the Starshield team, you will engage in the development of next-generation FPGAs and ASICs for deployment in various space and ground infrastructures globally. This position offers a dynamic and collaborative environment where you will tackle complex challenges and push the boundaries of innovation, embodying the SpaceX approach of rapid iteration to transform designs into operational capabilities swiftly.
Space Exploration Technologies Corp.
Join SpaceX as a Senior ASIC Design Verification Engineer, where you will be at the forefront of designing cutting-edge technology for our Starshield program. You will lead the verification efforts for ASIC designs, ensuring they meet the highest standards of performance and reliability.In this role, you will collaborate with cross-functional teams to develop verification strategies, create test plans, and utilize advanced tools to validate complex ASIC designs. Your expertise will be vital in driving innovation and efficiency within the team.
About VoltaiVoltai is at the forefront of developing advanced world models and intelligent agents capable of learning, evaluating, planning, experimenting, and interacting with the physical environment. Our pioneering work begins with a deep understanding of hardware, focusing on electronic systems and semiconductors, where artificial intelligence transcends human cognitive capabilities to design and create.About Our TeamSupported by leading investors from Silicon Valley and esteemed institutions like Stanford University, our team is composed of distinguished professionals, including former Stanford professors, researchers from SAIL, Olympiad medalists, and executives from major corporations such as Google, AMD, Broadcom, and Marvell. Our diverse expertise also includes former high-level government officials and defense advisors.Role OverviewAs a Formal Verification Engineer, you will be responsible for creating formal proofs of design correctness through model checking, property verification, and equivalence analysis. You will work in close collaboration with RTL, verification, and machine learning research teams to develop hybrid formal engines that can reason about AI-generated hardware at scale. Your role will involve defining formal properties, automating assertion synthesis, and constructing systems that verify designs with unprecedented speed and accuracy.
Alten Technology USA
About the Role Alten Technology USA is hiring a Lead Verification & Validation Engineer in Palo Alto, California. This position oversees verification and validation activities for technology products, focusing on quality and reliability throughout the development process. What You Will Do Lead verification and validation efforts for product releases Establish and maintain quality standards across engineering teams Ensure products meet reliability and performance requirements Location Palo Alto, California
Parallel
Parallel is seeking a Design Engineer in San Francisco or Palo Alto. This role centers on creating innovative solutions that align with both industry standards and customer requirements. Role overview As a Design Engineer, collaboration sits at the heart of the work. Expect to work closely with a skilled team to design and implement new products. The position calls for both creative thinking and strong technical skills to ensure each design meets high quality standards. What you will do Work with team members to develop product designs from concept through implementation Apply technical expertise to solve design challenges and refine solutions Ensure all products meet industry benchmarks and customer expectations Requirements Experience in product design and engineering Ability to collaborate effectively with others Strong creative and technical problem-solving skills
Woven by Toyota
Woven by Toyota is at the forefront of Toyota’s monumental transition into a comprehensive mobility company. With a commitment to innovation that prioritizes human experience, our mission is to redefine mobility, making it more accessible and beneficial to society.Our initiatives are anchored in four core pillars: Autonomous Driving / Advanced Driver Assistance Systems (AD/ADAS), Arene (our software development platform for software-defined vehicles), Woven City (a cutting-edge test environment for mobility), and Cloud & AI (the digital backbone of our collaborative efforts). Together, these critical functions propel us towards a visionary objective: achieving zero accidents and enhancing the well-being of everyone.Within the AD/ADAS division, Woven by Toyota is pioneering a scalable, data-centric methodology for autonomous and assisted driving. Our Verification and Validation Team is tasked with crafting strategic testing methodologies and executing them globally for Toyota’s Personally Owned Vehicle (POV) and Mobility as a Service (MaaS) programs. Our team comprises testing professionals who design, conduct, and refine testing protocols across simulation, closed-course, and real-world environments. The data and insights we gather are crucial for expediting vehicle development and delivering production-ready solutions, leveraging the latest in research and development.
Rivian Volkswagen Technologies
Rivian Volkswagen Technologies brings together expertise from two major automotive companies to advance the future of electric vehicles. The team focuses on developing new operating systems, zonal controllers, and cloud connectivity solutions for software-defined vehicles. Role overview This Senior Mechanical Design Engineer position centers on electronic module design and packaging. The work involves treating electronics packaging as a complex challenge, where space, thermal management, rigidity, and cost must be balanced. The role requires thoughtful consideration of engineering trade-offs to reach practical solutions. What you will do Design electronic modules with attention to space constraints, thermal performance, and structural integrity. Apply knowledge of manufacturability, including draft angles and flow rates, to guide design decisions. Tackle engineering problems by identifying root causes and proposing hands-on solutions. Requirements Strong background in mechanical design for electronic modules. Experience balancing competing requirements such as space, thermal, rigidity, and cost. Understanding of manufacturability principles and engineering trade-offs. Problem-solving skills and a practical approach to innovation.
ALTEN Technology USA
Join ALTEN Technology USA, a pioneering engineering firm dedicated to transforming innovative concepts into reality. Our work spans from enhancing space exploration and developing life-saving medical devices to the creation of cutting-edge autonomous electric vehicles. With a workforce of over 3,000 skilled professionals throughout North America, we collaborate with top-tier companies across diverse sectors including aerospace, medical technology, robotics, automotive, commercial vehicles, electric vehicles (EVs), rail, and beyond.As a proud member of the global ALTEN Group, which boasts a community of more than 57,000 engineers in 30 countries, we manage the entire product development lifecycle—from initial consulting to comprehensive project outsourcing.By joining ALTEN Technology USA, you will tackle some of the most challenging engineering problems worldwide, backed by mentorship, ample career advancement opportunities, and a robust benefits package. We are committed to nurturing an environment where our employees feel appreciated, empowered, and motivated to excel.Position Overview:The Electronic Design Release Engineer will lead the technical evaluation and design release of automotive Electronic Control Unit (ECU) components affected by end-of-life or obsolescence issues. This role involves conducting component risk assessments, formulating replacement strategies, and overseeing redesign processes to ensure system compatibility.Key Responsibilities:• Collaborate with hardware design teams and software engineers to align product specifications and ensure seamless integration.• Design and implement architectures that harmonize hardware limitations with software performance.• Create and execute test plans for hardware-software interactions, perform debugging, and validate functionality in real-world scenarios.• Serve as a liaison among mechanical, electrical, and software teams to enhance product development efficiency.• Maintain comprehensive technical documentation, ensuring adherence to industry standards and facilitating certification processes.
About ALSO.At ALSO, we are pioneering electric mobility, originally established under the Rivian umbrella. Our team is composed of passionate innovators and builders dedicated to designing innovative and delightful vertically integrated small electric vehicles (EVs) that address today's and tomorrow's mobility challenges. Our vision is to revolutionize transportation by inspiring individuals to choose ALSO, significantly reducing the reliance on traditional cars, trucks, and SUVs in favor of more affordable, enjoyable, and energy-efficient alternatives.We are seeking a talented Mechanical Engineer to lead our drivetrain structure design engineering efforts.Your ResponsibilitiesCraft and model 3D designs for mechanical components and assemblies, including high-pressure die casting, gravity casting, injection molded plastics, sheet metal, and fasteners.Develop comprehensive drawing packages and manufacturing instructions for parts and assemblies.Implement a Design Verification Process and Report (DVP&R) to ensure compliance with requirements.Optimize topology, balancing strength and NVH objectives to identify the necessary ribbing structures within the designated package space to meet structural and NVH constraints.Conduct sealing analysis with proficiency in hyper-elastic component analysis.Perform NVH analysis (modal, frequency response, mount mobility).Execute linear static stress analyses for complete drive unit systems.Create and maintain program-specific Design Failure Mode and Effects Analyses (DFMEAs).Oversee validation efforts in collaboration with Tier 1 and Tier 2 suppliers.Work closely with mechanical, electrical, control, manufacturing, and test engineers to transition designs from initial concepts through prototypes to mass production.Participate hands-on in engineering prototype builds and component fabrication.Your QualificationsDemonstrated experience in high-volume manufacturing processes, such as injection molding and stamping.Skilled in 3D/2D modeling tools, preferably Catia V5/V6.Proficient in mechanical integration, assembly, troubleshooting, and documentation of mechanical systems.
Bizly, Inc.
About Bizly Bizly, Inc. is building a platform that helps teams create meaningful in-person connections. Our technology makes it simple and affordable to organize immersive events at top venues. We work with some of the world’s largest companies and continue to grow quickly, supported by major distribution partnerships. Role Overview We are looking for a Lead Design Engineer in Palo Alto to bring our vision to life. This role calls for someone who thrives at the intersection of design and engineering, ensuring that the final product reflects the original creative intent, down to the smallest detail. What You Will Do Build the Design System: Develop a scalable system from the ground up, covering color, typography, spacing, motion, iconography, and component structure. Every choice should influence the entire product experience. Design and Ship Quickly: Use Figma to clarify ideas, but focus on delivering real, working code. Move from concept to implementation with speed and clarity. Full Front-End Ownership: Design and develop everything from web apps and landing pages to presentations, with mobile work on the horizon. Perfect the Details: Sweat the small stuff, whether it’s a standout search bar or a transition that feels just right. Micro-interactions should delight users. How You Work This role suits someone who uses AI-assisted development tools to accelerate progress, turning ideas into prototypes and production code in hours. You know that while AI can handle much of the heavy lifting, the last layer of polish, timing, easing, and nuanced details, makes the difference. Engaging with users, testing constantly, and validating ideas are part of your process, but never slow down your pace. Shipping fast and learning fast go hand in hand here.
Rivian and Volkswagen Group Technologies
Rivian and Volkswagen Group Technologies combine the strengths of two established automotive leaders to advance mobility solutions. Their joint efforts focus on developing operating systems, advanced zonal controllers, cloud infrastructure, and connectivity for electric vehicles. The partnership addresses the evolving needs of software-defined vehicles and aims to set new benchmarks for the automotive industry. The team’s expertise covers connectivity, artificial intelligence, and security, all aimed at building smarter and more sustainable vehicles. Role overview This Staff PCB Design Engineer role is based in Palo Alto, California. The position focuses on designing high-performance Printed Circuit Boards (PCBs) for automotive Electronic Control Units (ECUs). Projects include critical systems such as Advanced Driver Assistance Systems (ADAS), infotainment, zonal controllers, and vehicle access. Collaboration with cross-functional teams is central, and occasional travel may be required to support joint initiatives. Expertise in PCB layout, power integrity, signal integrity, and high-speed signal routing is essential for success in this role. What you will do PCB Design: Lead the design and implementation of high-speed and mixed-signal PCB layouts that meet automotive standards. Take responsibility for designs supporting ADAS, Battery Management Systems (BMS), body systems, and infotainment. Apply HDI design practices and work with interfaces such as DDR4, PCIe, CSI, and LVDS. Optimize package layouts to balance space and performance, and maintain the component library. Manufacturing Collaboration: Work with contract manufacturers to establish design rules and incorporate Design for Manufacturability (DFM) feedback, improving durability and performance in automotive applications. Process Development: Help develop workflows and processes between engineering and design teams. Configure ECAD tools to align with organizational design and release standards. Holistic Problem-Solving: Weigh design choices in the context of broader program goals and customer experience. Use data-driven methods to address technical challenges.
At SpaceX, we believe that a future where humanity explores the stars is infinitely more thrilling than one where we remain Earth-bound. We are committed to developing the groundbreaking technologies that will make this vision a reality, with the ultimate aim of facilitating human life on Mars.PRINCIPAL ASIC DESIGN ENGINEER (STARSHIELD)The Starshield program harnesses SpaceX's advanced Starlink technology and launch capabilities to bolster national security initiatives. While Starlink caters to consumer and commercial markets, Starshield is specifically tailored for governmental applications, focusing initially on Earth observation, communications, and hosted payloads. As a Principal ASIC Design Engineer within the Starshield team, you will engage in pioneering development projects that support U.S. National Security. This role involves designing state-of-the-art FPGAs and ASICs intended for deployment in space and terrestrial infrastructures worldwide. You will thrive in a dynamic, collaborative environment where we tackle complex challenges and embrace the SpaceX ethos of rapid iteration to transition from design to operational capability at an extraordinary pace.
Array Labs
Join Array Labs, where we are innovating advanced radar systems aimed at enhancing humanity's understanding and responsiveness to the physical changes occurring on Earth.We are in the process of launching a synchronized fleet of radar satellites designed to produce a high-resolution 3D representation of the Earth, updated in real-time. This initiative will empower government and commercial entities with quicker and more informed decision-making capabilities, particularly in disaster response, infrastructure resilience, and critical geopolitical intelligence.Our end-to-end design and manufacturing of satellites position us at the forefront of Earth observation technology. Our fleet is set to deliver unparalleled accuracy, coverage, and responsiveness, ensuring vital insights are available precisely when needed.As an Electrical Hardware Design Engineer, you will be responsible for the design and validation of digital and mixed-signal electronics integral to our radar payloads and satellite platforms. Your responsibilities will encompass high-speed digital interfaces, precision clocking and timing distribution, power regulation and control circuits, system monitoring, telemetry hardware, and fault-tolerant designs tailored for small satellite constraints. You will be involved in the complete hardware lifecycle from design through prototyping, bring-up, and qualification, collaborating closely with RF, antenna, mechanical, and systems engineers. The hardware you create will have a direct impact on system performance, power efficiency, stability, and overall reliability in orbit.In our rapidly expanding engineering team, your contributions will be crucial in shaping the most sophisticated radar satellite constellation, significantly enhancing our ability to swiftly and comprehensively understand our evolving planet.
Array Labs
Join Array Labs, a pioneering company dedicated to developing cutting-edge radar systems that empower humanity to comprehend and react to transformations in the physical world.We are on the verge of launching an orchestrated fleet of radar satellites aimed at constructing a high-resolution 3D map of the Earth, continuously updated in real-time. This initiative will facilitate more rapid and informed decision-making for governmental and commercial entities engaged in disaster response, infrastructure resilience, and essential geopolitical intelligence.At Array Labs, we are committed to designing and manufacturing our satellites from the ground up, creating the most sophisticated Earth observation satellites globally. Our fleet will provide unparalleled accuracy, coverage, and responsiveness, delivering critical insights exactly where they are needed.As a Power Management Design Engineer, you will take the lead in defining, designing, prototyping, validating, and producing essential power management systems for our radar, communication, and satellite technologies. You will collaborate closely with RF, communications, and radar engineers to seamlessly transition from initial designs to full operational deployment in space.By joining our rapidly expanding engineering team, you will play a pivotal role in crafting the world's most advanced radar satellite constellation, significantly enhancing humanity's capacity to swiftly and thoroughly understand our evolving planet.
Array Labs
Join Array Labs, a pioneering company dedicated to developing cutting-edge radar systems that empower humanity to comprehend and react to the dynamic physical world.We're on the verge of launching an integrated fleet of radar satellites designed to generate a real-time, high-resolution 3D representation of the Earth. This innovative approach will facilitate rapid, informed decision-making for governmental and commercial entities involved in disaster management, infrastructure resilience, and critical geopolitical intelligence.Our team is responsible for the complete design and fabrication of these state-of-the-art satellites, which promise unmatched accuracy, coverage, and responsiveness to deliver essential insights precisely when and where they are needed.Job OverviewAs a Senior RF Design Engineer, you will play a crucial role in designing and validating the RF electronics that drive Array's radar sensors. Your responsibilities will encompass low-noise receive chains, high-power transmit chains, RF switching and protection, bias and control circuitry, as well as the integration of transceiver and timing-sensitive RF subsystems.You will be involved in the entire hardware development lifecycle, from schematic design to prototyping, bring-up, characterization, and qualification. Collaboration with antenna, mixed-signal, mechanical, and systems engineers will be key, as the RF hardware you create will significantly influence signal quality, sensitivity, output power, stability, and overall on-orbit performance.
PsiQuantum
At PsiQuantum, we are on a groundbreaking mission to develop the first practical quantum computers capable of delivering the transformative breakthroughs long anticipated in the quantum field. Since our inception in 2016, our unwavering focus has been on constructing and deploying million-qubit, fault-tolerant quantum systems.Quantum computers leverage the principles of quantum mechanics to solve complex problems that surpass the capabilities of even the most advanced supercomputers and AI systems. The impact of our technology is poised to revolutionize industries such as energy, pharmaceuticals, finance, agriculture, transportation, and materials.Our architecture is rooted in silicon photonics, exploiting advanced semiconductor manufacturing processes in collaboration with partners like GlobalFoundries. This approach allows us to utilize high-volume production techniques that have already yielded billions of chips for telecommunications and consumer electronics. Photonics presents inherent advantages for scalability, including immunity to heat and electromagnetic interference, as well as seamless integration with existing cryogenic cooling systems and standard fiber-optic infrastructure.In 2024, PsiQuantum announced government-backed initiatives to support the establishment of our first utility-scale quantum computers in Brisbane, Australia, and Chicago, Illinois. These projects signify a growing acknowledgment that quantum computing will shape the future strategically and economically, making it imperative to scale our efforts.Moreover, PsiQuantum is dedicated to developing the algorithms and software essential for transforming these systems into commercially viable solutions. Our application, software, and industry teams collaborate closely with leading Fortune 500 companies, including Lockheed Martin, Mercedes-Benz, Boehringer Ingelheim, and Mitsubishi Chemical, to ensure our quantum solutions have a real-world impact.Quantum computing is not merely an extension of classical computing; it represents a fundamental paradigm shift offering pathways to tackle challenges that cannot be resolved through traditional means. The potential is immense, and we have a clear roadmap to make this vision a reality.Join us on this exciting journey!
Stanford Medicine Children's Health
Join Stanford Medicine Children's Health as a Project Engineer specializing in Design & Construction. In this pivotal role, you will collaborate with multidisciplinary teams to oversee the planning and execution of healthcare projects that enhance patient care environments. Your expertise will contribute significantly to our mission of delivering exceptional healthcare services.
PsiQuantum
At PsiQuantum, we are on a groundbreaking mission to create the first practical quantum computers—devices capable of unlocking the monumental advances that the field has long envisioned. Established in 2016, our exclusive commitment is to design and implement million-qubit, fault-tolerant quantum systems.Quantum computers leverage the principles of quantum mechanics to tackle challenges that even the most powerful supercomputers or AI technologies cannot address. Their potential applications span across critical sectors such as energy, pharmaceuticals, finance, agriculture, transportation, materials science, and many more.Our innovative architecture is rooted in silicon photonics. By capitalizing on the sophisticated semiconductor manufacturing processes—collaborating with partners like GlobalFoundries—we are able to utilize the same high-volume techniques that produce billions of chips for telecommunications and consumer electronics. Photonics presents inherent advantages for scalability: photons are unaffected by heat, resistant to electromagnetic interference, and seamlessly integrate with existing cryogenic cooling and standard fiber-optic systems.In 2024, PsiQuantum announced government-supported initiatives aimed at constructing our inaugural utility-scale quantum computers in Brisbane, Australia, and Chicago, Illinois. These projects signify a growing acknowledgment that quantum computing is poised to be strategically and economically transformative—and that the time to scale is now.Additionally, PsiQuantum is dedicated to developing the algorithms and software essential for maximizing the commercial viability of these systems. Our application, software, and industry teams collaborate directly with leading Fortune 500 companies—including Lockheed Martin, Mercedes-Benz, Boehringer Ingelheim, and Mitsubishi Chemical—to prepare quantum solutions for tangible world applications.Quantum computing signifies not a mere extension of classical computing, but a radical transformation—a pathway to overcoming obstacles that cannot be resolved through any other means. The possibilities are vast, and we possess a clear strategy to actualize them.We invite you to join our journey.
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