1

Power Platform Certification Jobs in San Ramon, CA

Head of Engineering, Data Center Power Platform About the Role We are building an integrated PSU ... Support safety certification efforts including: UL 1973 UL 9540A What You Bring Required ...

Relevant certifications are a plus. * Demonstrated experience as an Automation Engineer with expertise in Microsoft Azure-based tools. * Strong understanding of Microsoft Power Platform (especially ...

Experience with Power Platform, Azure DevOps, Foundry, Copilot, Graph API, Logic Apps, Function ... certifications and licenses, and work location. The anticipated pay range for this position is as ...

Showing results 21-40

Power Platform Certification information

See San Ramon, CA salary details

$15

$27

$51

How much do power platform certification jobs pay per hour?

As of Aug 6, 2026, the average hourly pay for power platform certification in San Ramon, CA is $27.39, according to ZipRecruiter salary data. Most workers in this role earn between $20.14 and $31.68 per hour, depending on experience, location, and employer.

What is Power Platform Certification?

Power Platform Certification refers to Microsoft's official credentials that validate an individual's skills and expertise in using the Microsoft Power Platform suite, which includes Power BI, Power Apps, Power Automate, and Power Virtual Agents. These certifications demonstrate proficiency in building apps, automating workflows, analyzing data, and creating virtual agents to solve business challenges. Earning a Power Platform Certification can help professionals advance their careers, as it is recognized by employers worldwide and highlights in-demand technical skills.

What is the difference between Power Platform Certification vs Power BI Developer?

AspectPower Platform CertificationPower BI Developer
Required CredentialsMicrosoft Power Platform Fundamentals or Associate certificationsMicrosoft Certified: Data Analyst Associate or similar
Work EnvironmentLow-code/no-code platform development, automation, app creationData visualization, report/dashboard creation, data analysis
Employer & Industry UsageBusiness process automation across industriesData reporting and analytics in finance, marketing, etc.
Search & Comparison IntentUnderstanding certification scope and career pathSpecializing in Power BI tools and data visualization skills

Power Platform Certification provides a broad understanding of Microsoft's low-code platform, covering app development, automation, and data integration. In contrast, a Power BI Developer focuses specifically on creating data visualizations and reports. Both roles are interconnected but serve different purposes within the data and automation ecosystem.

What are the key skills and qualifications needed to thrive as a Power Platform Specialist, and why are they important?

To thrive as a Power Platform Specialist, you need expertise in Microsoft Power Platform tools (Power BI, Power Apps, Power Automate, and Power Virtual Agents), a background in data analysis, and preferably a relevant certification such as Microsoft Certified: Power Platform Fundamentals or Power Platform Developer Associate. Familiarity with Microsoft 365, Azure services, and connectors, as well as experience with DAX, Power Query, and Common Data Service, are typically required. Strong problem-solving, communication, and stakeholder management skills help you translate business needs into effective solutions. These competencies ensure you can design, implement, and optimize business processes, driving digital transformation and efficiency across organizations.

What types of projects do professionals with a Power Platform Certification typically work on within an organization?

Professionals with a Power Platform Certification are frequently involved in designing, developing, and deploying low-code business solutions that automate processes, analyze data, and improve workflows. They often collaborate closely with business analysts, IT teams, and end-users to understand requirements and deliver custom applications, dashboards, and automation using Power Apps, Power Automate, Power BI, and Power Virtual Agents. This role offers the opportunity to lead digital transformation initiatives, streamline operations, and support data-driven decision-making across various departments.
What job categories do people searching Power Platform Certification jobs in San Ramon, CA look for? The top searched job categories for Power Platform Certification jobs in San Ramon, CA are:
What cities near San Ramon, CA are hiring for Power Platform Certification jobs? Cities near San Ramon, CA with the most Power Platform Certification job openings:
Infographic showing various Power Platform Certification job openings in San Ramon, CA as of August 2026, with employment types broken down into 3% As Needed, 70% Full Time, 18% Part Time, 1% Temporary, and 8% Contract. Highlights an 96% Physical, 1% Hybrid, and 3% Remote job distribution, with an average salary of $56,968 per year, or $27.4 per hour.

Battery Pack Systems

QuantumScape

San Jose, CA โ€ข On-site

Other

Posted 7 days ago


Job description

Battery / Pack Systems Engineer โ€“ Integrated Rack Power Platform


Location: San Jose, CA (On-site)

Reports To: Head of Engineering, Data Center Power Platform


About the Role


We are building an integrated PSU + BBU rack power shelf that combines power conversion and solid-state battery backup into a single high-density platform for hyperscale AI data centers.


This product replaces traditional separate PSU and BBU shelves with a unified architecture that leverages the unique safety and performance characteristics of solid-state battery cells.


As the Battery / Pack Systems Engineer, you will own everything from cell to packโ€”including mechanical integration, Battery Management System (BMS) architecture, thermal management of the battery section, charge/discharge optimization, safety engineering, and cycle life validation. You will serve as the critical bridge between our cell technology and the power platform, translating evolving cell-level specifications into robust pack-level designs in near real-time.


What You'll Do

Design the complete cell-to-pack mechanical assembly, including:

Cell stacking

Compression systems

Electrical interconnects (wire bonding, busbar welding, or flex circuits)

Structural integration within the shared PSU + BBU enclosure

Architect the Battery Management System (BMS) hardware topology, including:

Distributed versus centralized sensing

Passive versus active balancing

Protection FET sizing

Sense line routing

Communication interfaces

Develop and tune State-of-Charge (SOC) and State-of-Health (SOH) estimation algorithms using:

Coulomb counting

Extended Kalman filtering

Impedance-based estimation methods

Solid-state battery electrochemistry models

Co-develop charge and discharge profiles with Firmware Engineering, including:

CC-CV charging curves

Temperature-dependent charge rate limits

Fast-charge protocols

Float and maintenance charging strategies optimized for data center duty cycles

Design thermal interfaces between battery cells and the enclosure using:

Thermal pads

Gap fillers

Heat spreaders

Dedicated thermal pathways

Collaborate closely with the Thermal / Mechanical Engineering team.

Conduct pack-level FMEA and battery safety analysis.

Define and execute abuse testing protocols including:

Nail penetration

Crush testing

Overcharge testing

External short-circuit testing

Validation adapted specifically for solid-state battery behavior

Develop accelerated aging and life-cycle validation protocols for data center applications, including prolonged high-State-of-Charge float conditions with infrequent high-power discharge events.

Serve as the primary liaison with the cell development team, translating pack-level requirements into cell-level specifications and feeding laboratory and field performance data back into future cell development.

Support safety certification efforts including:

UL 1973

UL 9540A

What You Bring

Required Qualifications

8+ years of experience designing battery packs or battery modules, with at least one product successfully validated through prototype testing or production.

Hands-on Battery Management System (BMS) architecture experience. (PCB layout experience is not required, but the ability to define system topology and component selection is essential.)

Strong battery characterization and modeling experience, including:

Impedance spectroscopy

Capacity fade analysis

Thermal characterization

Experience with battery safety standards, particularly:

UL 1973

Exposure to UL 9540A strongly preferred

Proficiency in pack-level mechanical and thermal design using:

SolidWorks

Creo

Equivalent CAD platforms

Thermal simulation experience is a plus.

Comfortable making engineering decisions while working with evolving battery cell specifications and incomplete technical data.

Preferred Qualifications

Experience with solid-state, lithium-metal, or other next-generation battery chemistries, including research environments.

Experience designing battery systems for:

Data centers

Telecom backup power

Stationary energy storage

Understanding of float-then-discharge duty cycles compared to electric vehicle cycling.

Familiarity with electrochemical modeling tools such as:

COMSOL

PyBaMM

AutoLion

Equivalent platforms

Experience with IEC 62619 industrial battery safety standards.

Applications engineering experience at a battery cell manufacturer, translating cell performance into production pack designs.

Knowledge of functional safety principles including:

IEC 61508

Equivalent standards

Why This Role Matters


You sit at the center of the engineering organization. The Power Electronics Lead depends on your voltage windows, current limits, and battery performance requirements. The Firmware Engineer relies on your Battery Management System algorithms and protection strategies. The Thermal / Mechanical Engineer depends on your cell thermal requirements and packaging constraints. The Cell Development Team relies on your pack-level feedback to continuously improve cell performance.


Most importantly, the safety, reliability, and long-term longevity of solid-state batteries deployed in hyperscale AI data center racks will ultimately be defined by your engineering decisions. This role is central to delivering the core technology differentiator of the entire platform.