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Nanotechnology Electrical Engineering Jobs (NOW HIRING)

... Electrical Engineering, Physics or related field with at least 5+ years of relevant industry ... nano-probing, etc.Expertise in optical fault isolation techniques such as PEM, LSM and dynamic ...

Research Engineer

New York, NY · On-site

$26.37/hr

... School of Engineering The NYU Nanofabrication Facility (NYU Nanofab) provides open-access ... Qualifications Candidates are expected to hold at least a MS in Materials Engineering, Electrical ...

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D. in Mechanical Engineering, Electrical Engineering, Biomedical Engineering, Materials Science ... Micro- and nano-fluidic device design and prototyping (e.g., PDMS, silicon/glass, polymer devices)

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D. in Mechanical Engineering, Electrical Engineering, Biomedical Engineering, Materials Science ... Micro- and nano-fluidic device design and prototyping (e.g., PDMS, silicon/glass, polymer devices)

... Electrical Engineering, Physics or related field with at least 3+ years of relevant industry ... nano-probing, etc. Expertise in optical fault isolation techniques such as PEM, LSM and dynamic ...

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Nanotechnology Electrical Engineering information

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$50.5K

$111.1K

$168K

How much do nanotechnology electrical engineering jobs pay per year?

As of Jun 15, 2026, the average yearly pay for nanotechnology electrical engineering in the United States is $111,091.00, according to ZipRecruiter salary data. Most workers in this role earn between $83,000.00 and $132,000.00 per year, depending on experience, location, and employer.

What are the key skills and qualifications needed to thrive as a Nanotechnology Electrical Engineer, and why are they important?

To thrive as a Nanotechnology Electrical Engineer, you need a solid background in electrical engineering, nanotechnology principles, and materials science, usually supported by at least a bachelor's or master's degree in a related field. Experience with simulation software (such as COMSOL Multiphysics or MATLAB), cleanroom fabrication tools, and familiarity with characterization systems like SEM or AFM is typically required. Strong analytical thinking, attention to detail, and effective collaboration skills help professionals excel in interdisciplinary and research-driven environments. These competencies are crucial for innovating and advancing nanoscale devices and systems in a rapidly evolving technological landscape.

What are some common challenges faced by Nanotechnology Electrical Engineers when working on interdisciplinary teams?

Nanotechnology Electrical Engineers often collaborate with professionals from diverse backgrounds, such as materials science, chemistry, and biology. One common challenge is bridging communication gaps due to differing technical vocabularies and perspectives. Additionally, aligning project goals and timelines across teams with varied priorities can require strong project management and adaptability. Building effective interdisciplinary relationships and staying open to learning from other fields are key to overcoming these challenges and ensuring project success.

What is nanotechnology in electrical engineering?

Nanotechnology in electrical engineering involves manipulating and designing materials and devices at the nanoscale, typically between 1 and 100 nanometers, to improve electronic components such as transistors, sensors, and energy storage systems. It requires knowledge of materials science, quantum mechanics, and advanced fabrication techniques, often utilizing tools like electron microscopes and cleanroom environments.

What is nanotechnology electrical engineering?

Nanotechnology electrical engineering is a specialized field that combines principles of electrical engineering with nanotechnology, the science of manipulating materials at the atomic or molecular scale (typically less than 100 nanometers). Professionals in this area design and develop nanoscale electronic components, such as transistors, sensors, and circuits, which have applications in medicine, computing, energy, and more. Their work often involves research, fabrication, and testing of devices that exhibit unique electrical properties because of their small size. This field is advancing rapidly and plays a critical role in the development of next-generation technologies.

What is the difference between Nanotechnology Electrical Engineering vs Electrical Engineering?

AspectNanotechnology Electrical EngineeringElectrical Engineering
Required CredentialsBachelor's or Master's in Electrical Engineering or NanotechnologyBachelor's or Master's in Electrical Engineering
Work EnvironmentResearch labs, nanofabrication facilities, R&D departmentsPower plants, manufacturing, consulting firms, R&D
Industry UsageNanotech firms, electronics, biomedical devicesEnergy, telecommunications, electronics, manufacturing

Nanotechnology Electrical Engineering focuses on designing and developing nanoscale electronic devices and systems, often requiring specialized knowledge in nanomaterials and fabrication techniques. Electrical Engineering covers a broader range of electrical systems, power, and electronics. While both roles share foundational skills, Nanotechnology Electrical Engineering emphasizes nanoscale applications, making it more specialized within the electrical field.

Do electrical engineers work on nanotechnology?

Electrical engineers working in nanotechnology design and develop nanoscale electronic devices, sensors, and circuits. They often use tools like electron microscopes and focus on integrating nanomaterials into electronic systems, requiring knowledge of quantum effects and advanced fabrication techniques.

Can you make $500,000 as an electrical engineer?

Electrical engineers, including those working in nanotechnology, can potentially earn $500,000 annually, typically through senior roles, management positions, or specialized consulting. Such high salaries are more common in high-cost living areas, large corporations, or with extensive experience and advanced skills in areas like circuit design, research, or project management.

What engineers make $500,000?

Senior engineers in specialized fields such as aerospace, petroleum, or certain software engineering roles can earn $500,000 or more annually, often through a combination of base salary, bonuses, and stock options. High-level positions typically require extensive experience, advanced skills, and sometimes leadership responsibilities or certifications.
Infographic showing various Nanotechnology Electrical Engineering job openings in the United States as of June 2026, with employment types broken down into 98% Full Time, 1% Contract, and 1% Nights. Highlights an 87% Physical, 4% Hybrid, and 9% Remote job distribution, with an average salary of $111,091 per year, or $53.4 per hour.
Silicon Failure Analysis Engineer

Silicon Failure Analysis Engineer

Apple

Austin, TX • On-site

Full-time

Posted 22 days ago


Apple rating

8.1

Company rating: 8.1 out of 10

Based on 661 frontline employees who took The Breakroom Quiz

6th of 30 rated technology retailers


Job description

In this role, you will perform failure analysis, characterization and validation of various analog and mixed signal embedded circuits; and collaborate with multi-functional teams to launch the world's most premiere products...At Apple, we work every single day to craft products that enrich people's lives. Do you love working on challenges that no one has solved yet? Do you like changing the game? We have an opportunity for a forward-thinking and especially motivated Silicon Failure Analysis Engineer! As a member of our dynamic group, you will have the rare and great opportunity to work on upcoming products that will delight and encourage millions of Apple's customers every day!
In this role, you will be responsible for performing hands-on physical and electrical failure analysis at silicon level, and accountable for recommending corrective actions, conveying results to the team and upper management to find out a solution. Your expert knowledge and analysis will be indispensable in guaranteeing our beloved Apple products to be delivered to the world on time.
BS in Electrical Engineering, Physics or related field with at least 5+ years of relevant industry experience in Silicon Failure Analysis for advanced technology nodesDeep understanding of fundamental failure analysis methodologyHands-on proficiency in performing physical and electrical failure analysis at the silicon levelIn-depth knowledge of semiconductor, IC, and PCB designKnowledge of semiconductor physics and advanced fabrication processesDeep understanding of analog and mixed signal design/debugProficiency in transistor device physics, Silicon device analysis, sophisticated CMOS processes and circuit analysisStrong technical writing and communication skills Ability to work effectively across engineering organizations and functions
MS, or PhD in Electrical Engineering, Physics or related field with at least 3+ years of relevant industry experience in Silicon Failure Analysis for advanced technology nodesHands on experience with multiple EFA tools and techniques such as LIT, FIB, SEM, TDR, VNA, SAM/CSAM, Curve Tracer, Oscilloscope, sample preparation, laser decapsulation, emission microscopy, nano-probing, etc.Expertise in optical fault isolation techniques such as PEM, LSM and dynamic laser-based techniques like OBIRCH, DLS/LADA, LVP, and LVIAdvanced knowledge and hands-on experience in silicon de-processing and transistor characterization using various e-beam-based techniques like EBIRCH, EBAC, and EBIC in nano-probingKnowledge of DFT and ATPG debug isolation techniques using PXIEFamiliarity with DFT concepts, JTAG, and ASIC design flows desiredSome linux command line and scripting skills desired

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About Apple

Sourced by ZipRecruiter

Imagine what you could do here! At Apple, new ideas have a way of becoming extraordinary products, services, and customer experiences very quickly. Bring passion and dedication to your job and there's no telling what you could accomplish. Dynamic, intelligent people and inspiring, innovative technologies are the norm here. The people who work here have reinvented entire industries with all Apple Hardware products. The same real passion for innovation that goes into our products also applies to our practices strengthening our dedication to leave the world better than we found it.

Industry

Computer and electronic product manufacturing

Company size

10,000+ Employees

Headquarters location

Cupertino, CA, US

Year founded

1976