1

Power Management Pmic Jobs (NOW HIRING)

PMIC Architect

San Jose, CA · On-site

$175K - $350K/yr

... power spec, inrush management, and integration requirements for in-package passive components ... or PMIC-focused semiconductor environment • Deep expertise in multi-phase synchronous buck ...

... power spec, inrush management, and integration requirements for in-package passive components ... or PMIC-focused semiconductor environment • Deep expertise in multi-phase synchronous buck ...

Senior Staff Analog Engineer

Suwanee, GA · On-site

$97K - $133K/yr

... Power Management IC (PMIC). Compliant with JEDEC specifications, these products are designed for a variety of memory modules such as RDIMM, LRDIMM, NVDIMM, UDIMM, SODIMM, MRDIMM, etc., to enable high ...

Senior NPI Firmware Engineer

San Diego, CA · On-site

$126K - $167K/yr

Develop power management Firmware: Design, implement, debug, and optimize firmware for battery charging systems, PMIC integration, power sequencing, and charging interfaces across multiple product ...

next page

Showing results 1-20

Power Management Pmic information

See salary details

$81K

$145K

$193K

How much do power management pmic jobs pay per year?

As of Jun 10, 2026, the average yearly pay for power management pmic in the United States is $145,045.00, according to ZipRecruiter salary data. Most workers in this role earn between $132,000.00 and $150,000.00 per year, depending on experience, location, and employer.

What is the difference between Power Management Pmic vs Power Electronics Engineer?

AspectPower Management PmicPower Electronics Engineer
CredentialsTypically requires a degree in electrical engineering, certifications in power management or related fieldsRequires a degree in electrical engineering, often with specialization in power systems or electronics
Work EnvironmentDesign and testing of power management ICs, working in semiconductor or electronics manufacturingDesign and development of power electronic systems, working in electronics or automotive industries
Industry UsageUsed mainly in consumer electronics, mobile devices, and integrated circuitsApplied in industrial equipment, electric vehicles, and power conversion systems

Power Management Pmic professionals focus on designing integrated circuits that regulate power in electronic devices, while Power Electronics Engineers develop larger-scale power systems and converters. Both roles require electrical engineering expertise but differ in scope and application.

What are Power Management PMICs?

Power Management Integrated Circuits (PMICs) are specialized semiconductor devices designed to manage and distribute power efficiently within electronic systems. They integrate multiple power management functions such as voltage regulation, power sequencing, battery charging, and monitoring into a single chip. PMICs are widely used in smartphones, laptops, wearable devices, and automotive electronics to optimize power usage, prolong battery life, and ensure reliable performance. Their integration helps reduce system complexity, size, and cost while improving energy efficiency.

What are common challenges faced by Power Management PMIC engineers when working with cross-functional teams?

Power Management PMIC engineers often collaborate with hardware, software, and system design teams to ensure power solutions meet performance and reliability requirements. A common challenge is balancing differing priorities and constraints, such as optimizing for efficiency while accommodating tight space or cost limitations. Effective communication and a solid understanding of the broader system architecture are essential for resolving these trade-offs and delivering integrated solutions that satisfy all stakeholders.

What are the key skills and qualifications needed to thrive as a Power Management PMIC (Power Management Integrated Circuit) Engineer, and why are they important?

To thrive as a Power Management PMIC Engineer, you need a solid background in electrical engineering, analog/digital circuit design, and semiconductor technology, often with a relevant degree. Proficiency with EDA tools (like Cadence or Mentor Graphics), simulation software (such as SPICE), and familiarity with industry standards is essential. Strong problem-solving, attention to detail, and effective communication skills set outstanding engineers apart. These capabilities ensure the development of reliable, efficient power solutions that meet complex system requirements and industry specifications.

Principal /Sr Principal PMIC Analog Designer

NXP Semiconductors N.V.

Chandler, AZ • On-site

Full-time

Posted 19 days ago


Job description

Job Responsibility:
  • Architect, model, and define sub-system specifications for advanced power management solutions, including: DC-DC converters (inductive and capacitive), LDOs, shunt regulators, and multi-rail PMIC architectures
  • Translate system-level specifications into elegant, robust, and cost-effective silicon solutions Lead end-to-end design of power management circuits, including: High-current power stages and advanced packaging-aware design, Loop stability, transient performance, and efficiency optimization
  • Define architecture and provide detailed design specifications to global teams; lead and mentor junior design engineers
  • Develop system and behavioral models (MATLAB/Simulink, Verilog-A/AMS) to validate architecture, loop stability, and system performance
  • Drive and participate in critical design reviews and ensure design quality, robustness, and manufacturability
  • Serve as the PMIC technical lead and primary interface to Tier-1 customers, driving technical discussions and alignment
  • Collaborate cross-functionally with system, layout, product, test, packaging, and quality teams to ensure successful product execution
  • Provide technical leadership for innovation strategy, including proposing and reviewing long-term roadmap and new architectures
  • Drive differentiated innovation and contribute to patentable solutions for next-generation power management products

Job Qualification:
  • MS in Electrical Engineering with 12+ years of experience, or PhD with 10+ years of experience in power management IC development
  • Proven expertise in power conversion topologies: Buck, boost, buck-boost, charge pumps, LDOs, and multi-phase architectures
  • Strong understanding of control techniques: Current-mode, voltage-mode, hysteretic control, and loop compensation
  • Deep experience in high-current power stage design, including advanced packaging and parasitic-aware design
  • Expertise in power integrity modeling and analysis (frequency/time domain), simulation optimization, and silicon correlation
  • Strong foundation in analog design, control theory, and device physics
  • Demonstrated ability to develop novel architectures and drive innovation, including patent generation
  • Hands-on experience with Cadence IC design tools (Virtuoso, Spectre) and modeling environments (MATLAB/Simulink)
  • Proven track record of delivering products from concept to high-volume manufacturing
  • Excellent communication skills and experience working with global cross-functional teams and Tier-1 customers

More information about NXP in the United States...
NXP is an Equal Opportunity/Affirmative Action Employer regardless of age, color, national origin, race, religion, creed, gender, sex, sexual orientation, gender identity and/or expression, marital status, status as a disabled veteran and/or veteran of the Vietnam Era or any other characteristic protected by federal, state or local law. In addition, NXP will provide reasonable accommodations for otherwise qualified disabled individuals.
#LI-6692