ADVANCE YOUR CAREER. ADVANCE THE WORLD. At AMD, we believe technology has the power to solve the world’s most important challenges. From advancing healthcare and scientific discovery to powering AI and the technologies people rely on every day, innovation at AMD is shaping the future. Whether you’re designing next-gen processors, enabling AI breakthroughs, or bringing leading edge products to market, every role at AMD contributes to something bigger — technology that moves the world forward. Join us and, together, we’ll advance your career. THE ROLE: This technical role is for Client Sensor Fusion Hub (SFH) solution FET (Feature Enablement Team) leader. The individual will be responsible for SFH solution enablement and successful delivery on AMD client APU products. SFH (Sensor Fusion Hub) is AMD's on-die low-power MCU sub-system that manages and intelligently fuses data from multiple sensors — motion (accelerometer, gyroscope, magnetometer), environmental (ambient light, ambient color) and human presence detection — to deliver a holistic, always-on awareness of the platform and user context. The individual will primarily collaborate with cross-functional teams including SFH FW / driver, BIOS, IP, PMF/ASM, SW / Validation and OEM teams, driving the solution end-to-end through post-silicon, with pre-silicon involvement where applicable. PMF/ASM integration experience and AI (e.g. on-device AI inference, human-presence-driven experiences, Copilot+ PC AI features) experience are both a good plus. THE PERSON: The person needs to be self-motivated for deliveries and innovation, a quick learner with a strong sense of ownership. Strong problem-resolving mindset, cross-team driving capability and good communication skills are essential for this leadership role. KEY RESPONSIBILITIES: Drive post-silicon Sensor Fusion Hub (SFH) solution enablement from bring-up to product for AMD's newest client APU products. Work with cross-functional teams to deliver high-quality solutions covering sensor functionality, accuracy, power, performance and stability. Predict execution risks and provide mitigation plans. As the FET (Feature Enablement Team) leader, drive solution delivery across IP, BIOS, SFH FW, driver and OEM customer engagements. Pre-Silicon: SFH sensor feature list and BU functional test plan development (accelerometer, gyrometer, magnetometer, ambient light / color, human presence detect, ToF). Review and approve IP and System validation test plans; coordinate overall platform sensor test coverage and strategy across I2C / I3C interfaces and ACPI power states. Collaborating with emulation team for emulation task to reduce post silicon risks if applies. Post-Silicon: Bring-up and collaborate with cross-functional teams (HW, BIOS, SFH FW, SFH / SFI / SPB-I2C driver, diag, SW, OEM) for sensor enablement and SFH solution delivery. End-to-end debug and drive of SFH / sensor / SFH FW / driver issues as FET leader, owning the issue from triage through closure. Own sensor accuracy and reliability validation using robotic-arm / gyro-table / motion-simulation infrastructure, and drive ACPI stress (S0i3/S3/S4/S5/Reboot/Z-state) and HLK / certification readiness. Customer technical support: engage OEM partners on sensor selection (AVL), calibration, integration, tuning and field issues. Drive platform-level sensor power / responsiveness tuning; partner with PMF/ASM, PPL and P&P attainment teams to leverage sensor context in platform policy. REQUIRED EXPERIENCE: Knowledge of x86 client computer hardware architecture and APU sub-systems. Strong knowledge of Windows; Linux exposure a plus. Hands-on experience with platform Sensor solutions (e.g. accelerometer, gyroscope, magnetometer, ambient light / color sensor, human presence detection, time-of-flight) — sensor hub / MCU firmware, ACPI / HID integration, sensor driver stack (KMDF / UMDF, SPB-I2C, I3C). Understanding of sensor bus / interface protocols (I2C, I3C, MIPI) and sensor calibration / fusion concepts (orientation, motion, HPD). Experience developing and executing bring-up and feature validation test plans; strong debug skills across HW / FW / driver / OS layers. Proven cross-team driving ability — able to align IP design, BIOS, FW, driver, validation and OEM stakeholders toward a common delivery milestone. Excellent verbal and written English communication skills. Team leader / Project leader experience required. PREFERRED EXPERIENCE: Pre-silicon experience for Sensor / SFH Hands-on experience with robotic-arm / gyro-table / motion-simulation validation infrastructure and automated sensor validation. Forward thinker who continuously improves process and drives innovation. Scripting and automation tool development skills. Familiarity with PMF / ASM platform management framework and telemetry-driven dynamic tuning. AI development or AI deployment experience — hands-on with on-device AI inference, human-presence-driven experiences, or Copilot+ PC AI features (Windows Studio Effects, adaptive dimming / Wake-on-Approach, etc.) — strongly preferred. Hands-on experience with Image Signal Processor (ISP) / camera pipeline — sensor tuning, IQ, MIPI / CSI, camera driver and FW integration — a good plus. Familiarity with OEM Windows platform certification / WHCK-HLK / Modern Standby tuning a plus. ACADEMIC CREDENTIALS: Bachelor’s or Master's degree in electrical engineering, Mathematics, Computer Science, Engineering, or an equivalent #LI-EH1 Benefits offered are described: AMD benefits at a glance. AMD does not accept unsolicited resumes from headhunters, recruitment agencies, or fee-based recruitment services. AMD and its subsidiaries are equal opportunity, inclusive employers and will consider all applicants without regard to age, ancestry, color, marital status, medical condition, mental or physical disability, national origin, race, religion, political and/or third-party affiliation, sex, pregnancy, sexual orientation, gender identity, military or veteran status, or any other characteristic protected by law. We encourage applications from all qualified candidates and will accommodate applicants’ needs under the respective laws throughout all stages of the recruitment and selection process. AMD may use Artificial Intelligence to help screen, assess or select applicants for this position. AMD’s “Responsible AI Policy” is available here. This posting is for an existing vacancy.
THE ROLE: This technical role is for Client Sensor Fusion Hub (SFH) solution FET (Feature Enablement Team) leader. The individual will be responsible for SFH solution enablement and successful delivery on AMD client APU products. SFH (Sensor Fusion Hub) is AMD's on-die low-power MCU sub-system that manages and intelligently fuses data from multiple sensors — motion (accelerometer, gyroscope, magnetometer), environmental (ambient light, ambient color) and human presence detection — to deliver a holistic, always-on awareness of the platform and user context. The individual will primarily collaborate with cross-functional teams including SFH FW / driver, BIOS, IP, PMF/ASM, SW / Validation and OEM teams, driving the solution end-to-end through post-silicon, with pre-silicon involvement where applicable. PMF/ASM integration experience and AI (e.g. on-device AI inference, human-presence-driven experiences, Copilot+ PC AI features) experience are both a good plus. THE PERSON: The person needs to be self-motivated for deliveries and innovation, a quick learner with a strong sense of ownership. Strong problem-resolving mindset, cross-team driving capability and good communication skills are essential for this leadership role. KEY RESPONSIBILITIES: Drive post-silicon Sensor Fusion Hub (SFH) solution enablement from bring-up to product for AMD's newest client APU products. Work with cross-functional teams to deliver high-quality solutions covering sensor functionality, accuracy, power, performance and stability. Predict execution risks and provide mitigation plans. As the FET (Feature Enablement Team) leader, drive solution delivery across IP, BIOS, SFH FW, driver and OEM customer engagements. Pre-Silicon: SFH sensor feature list and BU functional test plan development (accelerometer, gyrometer, magnetometer, ambient light / color, human presence detect, ToF). Review and approve IP and System validation test plans; coordinate overall platform sensor test coverage and strategy across I2C / I3C interfaces and ACPI power states. Collaborating with emulation team for emulation task to reduce post silicon risks if applies. Post-Silicon: Bring-up and collaborate with cross-functional teams (HW, BIOS, SFH FW, SFH / SFI / SPB-I2C driver, diag, SW, OEM) for sensor enablement and SFH solution delivery. End-to-end debug and drive of SFH / sensor / SFH FW / driver issues as FET leader, owning the issue from triage through closure. Own sensor accuracy and reliability validation using robotic-arm / gyro-table / motion-simulation infrastructure, and drive ACPI stress (S0i3/S3/S4/S5/Reboot/Z-state) and HLK / certification readiness. Customer technical support: engage OEM partners on sensor selection (AVL), calibration, integration, tuning and field issues. Drive platform-level sensor power / responsiveness tuning; partner with PMF/ASM, PPL and P&P attainment teams to leverage sensor context in platform policy. REQUIRED EXPERIENCE: Knowledge of x86 client computer hardware architecture and APU sub-systems. Strong knowledge of Windows; Linux exposure a plus. Hands-on experience with platform Sensor solutions (e.g. accelerometer, gyroscope, magnetometer, ambient light / color sensor, human presence detection, time-of-flight) — sensor hub / MCU firmware, ACPI / HID integration, sensor driver stack (KMDF / UMDF, SPB-I2C, I3C). Understanding of sensor bus / interface protocols (I2C, I3C, MIPI) and sensor calibration / fusion concepts (orientation, motion, HPD). Experience developing and executing bring-up and feature validation test plans; strong debug skills across HW / FW / driver / OS layers. Proven cross-team driving ability — able to align IP design, BIOS, FW, driver, validation and OEM stakeholders toward a common delivery milestone. Excellent verbal and written English communication skills. Team leader / Project leader experience required. PREFERRED EXPERIENCE: Pre-silicon experience for Sensor / SFH Hands-on experience with robotic-arm / gyro-table / motion-simulation validation infrastructure and automated sensor validation. Forward thinker who continuously improves process and drives innovation. Scripting and automation tool development skills. Familiarity with PMF / ASM platform management framework and telemetry-driven dynamic tuning. AI development or AI deployment experience — hands-on with on-device AI inference, human-presence-driven experiences, or Copilot+ PC AI features (Windows Studio Effects, adaptive dimming / Wake-on-Approach, etc.) — strongly preferred. Hands-on experience with Image Signal Processor (ISP) / camera pipeline — sensor tuning, IQ, MIPI / CSI, camera driver and FW integration — a good plus. Familiarity with OEM Windows platform certification / WHCK-HLK / Modern Standby tuning a plus. ACADEMIC CREDENTIALS: Bachelor’s or Master's degree in electrical engineering, Mathematics, Computer Science, Engineering, or an equivalent #LI-EH1
Benefits offered are described: AMD benefits at a glance. AMD does not accept unsolicited resumes from headhunters, recruitment agencies, or fee-based recruitment services. AMD and its subsidiaries are equal opportunity, inclusive employers and will consider all applicants without regard to age, ancestry, color, marital status, medical condition, mental or physical disability, national origin, race, religion, political and/or third-party affiliation, sex, pregnancy, sexual orientation, gender identity, military or veteran status, or any other characteristic protected by law. We encourage applications from all qualified candidates and will accommodate applicants’ needs under the respective laws throughout all stages of the recruitment and selection process. AMD may use Artificial Intelligence to help screen, assess or select applicants for this position. AMD’s “Responsible AI Policy” is available here. This posting is for an existing vacancy.
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