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Embedded Systems Engineer Jobs in Hoboken, NJ (NOW HIRING)

DR - We're building humanity's defense layer for the AI age and are looking for a Firmware Engineer ... Work directly with the hardware lead across EE, firmware, and embedded systems. * Operate in ...

DR - We're building humanity's defense layer for the AI age and are looking for a Firmware Engineer ... Work directly with the hardware lead across EE, firmware, and embedded systems. * Operate in ...

Experience in the System Design of Embedded System Architectures * Familiarity with Digital Engineering, sysML/Model Based System Engineering (MBSE), and System Simulation Volt is immediately hiring ...

You will oversee feature implementation of the integrated system through testing, debug and customer release, and collaborate across all engineering teams including hardware, embedded software and ...

Lead assessment activities for security and privacy controls in embedded systems using NIST 800-53 ... Support security engineering activities, including basis of estimate development, requirements ...

Showing results 21-40

Embedded Systems Engineer information

See Hoboken, NJ salary details

$68.4K

$150.2K

$210.1K

How much do embedded systems engineer jobs pay per year?

As of Aug 8, 2026, the average yearly pay for embedded systems engineer in Hoboken, NJ is $150,189.00, according to ZipRecruiter salary data. Most workers in this role earn between $122,000.00 and $178,900.00 per year, depending on experience, location, and employer.

What does an embedded systems engineer do?

An embedded systems engineer creates the software to control electronics or machines that are different from regular computers. This software needs to run on the specific hardware it controls. Their duties also include troubleshooting and testing. Essential skills include problem-solving, critical thinking, and communication. Work is typically in an office environment with full-time business hours. Educational qualifications include a bachelor’s or master’s degree in embedded systems engineering or a related field.

What are the key skills and qualifications needed to thrive as an embedded systems engineer, and why are they important?

To thrive as an Embedded Systems Engineer, you need strong proficiency in C/C++ programming, embedded hardware knowledge, and a degree in electrical engineering, computer engineering, or a related field. Familiarity with real-time operating systems (RTOS), microcontroller development platforms, and debugging tools like oscilloscopes and logic analyzers is typically required. Problem-solving, attention to detail, and effective teamwork are critical soft skills for success in this role. These skills and qualities are essential to design reliable embedded solutions that meet strict performance, safety, and efficiency requirements.

Are embedded systems engineers in demand?

Embedded systems engineers are in high demand due to the growth of IoT, automotive, healthcare, and consumer electronics industries. They typically require skills in programming languages like C and C++, and knowledge of hardware integration, with job opportunities expected to increase as embedded technology becomes more widespread.

What is the difference between Embedded Systems Engineer vs Firmware Engineer?

AspectEmbedded Systems EngineerFirmware Engineer
CredentialsBachelor's in Electrical Engineering, Computer Engineering, or related fields; certifications like Certified Embedded Systems EngineerBachelor's in Computer Engineering, Electrical Engineering; certifications like Certified Firmware Engineer
Work EnvironmentDesigning and developing embedded hardware/software for devices like automotive, medical, consumer electronicsWriting low-level code to optimize firmware for microcontrollers and embedded devices
Industry UsageUsed across automotive, aerospace, consumer electronics, industrial automationPrimarily in consumer electronics, IoT devices, and embedded hardware products

Both roles focus on embedded development but differ in scope. Embedded Systems Engineers work on both hardware and software integration, while Firmware Engineers specialize in writing low-level code for device firmware. Understanding these distinctions helps in choosing the right career path or job search focus.

What are some common challenges an embedded systems engineer faces when integrating hardware and software components?

Embedded Systems Engineers often encounter challenges when ensuring that hardware and software components work seamlessly together. These can include dealing with limited memory and processing power, timing constraints, and real-time performance requirements. Troubleshooting issues that arise from hardware-software interactions—such as driver compatibility, signal integrity, or power management—requires strong problem-solving skills and close collaboration with hardware designers and software developers. Engineers must frequently debug at both the hardware and code level, making attention to detail and cross-disciplinary communication essential in this role.

What is an embedded systems engineer?

Embedded Systems Engineers are professionals who design, develop, and maintain embedded systems—specialized computing systems that perform dedicated functions within larger mechanical or electrical systems. These engineers work with both hardware and software, often programming microcontrollers or microprocessors to control devices like automobiles, medical equipment, consumer electronics, and industrial machines. Their expertise ensures devices are efficient, reliable, and optimized for specific tasks, making embedded systems a crucial part of modern technology.
What cities near Hoboken, NJ are hiring for Embedded Systems Engineer jobs? Cities near Hoboken, NJ with the most Embedded Systems Engineer job openings:
Infographic showing various Embedded Systems Engineer job openings in Hoboken, NJ as of July 2026, with employment types broken down into 82% Full Time, 11% Part Time, 6% Contract, and 1% Nights. Highlights an 88% Physical, 3% Hybrid, and 9% Remote job distribution, with an average salary of $150,222 per year, or $72.2 per hour.

Medical Device Systems Engineer

AVTC Group

Parsippany, NJ • On-site, Remote

Full-time

Re-posted 15 days ago


Job description

ob Summary:
Highly experienced, cross-functionally skilled technical leader (electrical/software/mechanical) responsible for the system level architecture/design, implementation and verification of complex systems (e.g. defibrillators, patient monitors, ventilators) in a matrix setting.
Essential Functions:
  • Works with Project/Program management to establish and refine system level requirements for assigned new and enhanced products.
  • Leads development team in translating system level requirements into product architecture and system level design including partitioning functionality into sub-systems, creating specifications for each sub-system and documenting the interface requirements among the sub-system.
  • Ensures that new product architecture meets system level requirements, is appropriately featured, robust and adaptable enough to support product lifecycle plans and objectives.
  • Establishes performance, interface, safety, and cost specifications for each sub- system within the selected architecture in consultation with the functional design leaders. Contributes significantly to the system level risk management activities associated with assigned programs.
  • Under auspices of the Program Manager, leads efforts to allocate system functionality among electronic/software/mechanical subsystems, make hardware/software/mechanical trade-off decisions, cost/time/performance trade-off and safety decisions necessary to meet the product's clinical performance, reliability, manufacturability/serviceability, regulatory and business objectives.
  • Leads efforts during the product implementation phase to develop and refine the system level design, identify and resolve sub-system performance and interface issues, and resolve cross•functional design issues that have system level impacts.
  • Leads/oversees team efforts during the subsystem integration and verification testing phases to ensure that critical sub-systems meet their individual performance, interface and system integration goals and to ensure that the fully integrated system robustly meets its performance, safety and cost requirements.
  • Responsible for documenting the system level design, operating principles and sub-system interface specifications for his/her assigned new and existing products.
  • Researches and documents the relationships between clinical requirements, architectural decisions, performance requirements and product evolution plans.
  • Provides advice and consultation to engineering teams regarding system engineering principles and system level requirements ofproducts. Actively participates in decision making processes that involve changes to the system level design of existing products.

Skills Requirements:
  • Extensive knowledge and experience in the system level design and development of multi•processor based medical instruments containing biomedical signal acquisition and processing electronics and embedded software systems.
  • Demonstrated ability to translate high level product requirements into system and sub- system level specifications and designs.
  • Demonstrated success leading engineering teams in the architecture, system level design, integration and verification of portable, battery operated, multi-processor based measuring and/or patient treatment systems.
  • Working knowledge and experience with low level analog signal acquisition, digital/microprocessor systems design, power supplies, embedded real time software development, digital signal processing, real time operating systems, Analog/digital control systems, displays, batteries, data storage and wireless communications systems.
  • Working knowledge of mechanical engineering issues and processes associated with electronics packaging, small moving mechanisms, molding, and machining processes.
  • Ability to independently analyze and evaluate electronic circuitry, software and mechanical designs using drawings, schematics, source code, technical education, and experience.
  • Thorough understanding of the product development and engineering project management processes.
  • Experience with and sensitivity to human factors issues associated with the use of medical devices.
  • Knowledge and experience developing products under FDA and European Community medical device regulations and standards.
  • Excellent verbal and written communications skills. Demonstrated success in technical decision making and people management/leadership in a matrix environment.
  • Ability to handle confidential information with discretion and skill.
  • Business acumen.

Required/Preferred Education and Experience:
  • Advanced degree in Engineering including training and experience in systems, electronics, software and mechanical engineering.
  • 10+ years' experience developing electronic hardware and embedded software systems/subsystems for complex, real time measuring instruments.
  • 7+ years' experience as a Systems Engineer, leading the architectural design and systems engineering of complex, real time medical measuring instruments.
  • Knowledge of fluid mechanics and/or past experience with ventilators/aspirators is required.
  • Project management experience and training.