Proven experience in microelectronic circuit design (analog, digital, or mixed-signal ... Strong understanding of semiconductor device physics, device modeling, IC fabrication processes ...
Proven experience in microelectronic circuit design (analog, digital, or mixed-signal ... Strong understanding of semiconductor device physics, device modeling, IC fabrication processes ...
Design Engineer
Farmington Hills, MI · On-site
Seeking a talented and self-motivated automotive EE HW Engineer for the Design Engineering group ... Thorough understanding of analog and digital hardware as applied to automotive control systems.
Design Engineer
Farmington Hills, MI · On-site
Seeking a talented and self-motivated automotive EE HW Engineer for the Design Engineering group ... Thorough understanding of analog and digital hardware as applied to automotive control systems.
Design Engineer
Farmington Hills, MI · On-site
Seeking a talented and self-motivated automotive EE HW Engineer for the Design Engineering group ... Thorough understanding of analog and digital hardware as applied to automotive control systems.
Design Engineer
Farmington Hills, MI · On-site
Seeking a talented and self-motivated automotive EE HW Engineer for the Design Engineering group ... Thorough understanding of analog and digital hardware as applied to automotive control systems.
Hardware Design Engineer
Novi, MI · On-site
Hardware Design Engineer Location: Novi, MI 48377, United States (Hybrid with 4 days WFO) Skills ... Design analog, digital, power-supply, communication, sensor-interface, and microcontroller-based ...
Hardware Design Engineer
Novi, MI · On-site
Hardware Design Engineer Location: Novi, MI 48377, United States (Hybrid with 4 days WFO) Skills ... Design analog, digital, power-supply, communication, sensor-interface, and microcontroller-based ...
Power Electronics Research Engineer
Dearborn, MI · On-site
$113K - $190K/yr
... IC design, or semiconductor packaging. 3+ years of research or industry experience in: * Architectural design of power electronic systems or PMIC/ASIC design. * Developing specifications for analog ...
Power Electronics Research Engineer
Dearborn, MI · On-site
$113K - $190K/yr
... IC design, or semiconductor packaging. 3+ years of research or industry experience in: * Architectural design of power electronic systems or PMIC/ASIC design. * Developing specifications for analog ...
Electrical Design Engineer
Ann Arbor, MI · On-site
Electrical Engineer - PCB & Embedded Systems We're looking for a hands-on Electrical Engineer to ... Experience with analog, digital, and mixed-signal circuit design. * Comfortable troubleshooting ...
Electrical Design Engineer
Ann Arbor, MI · On-site
Electrical Engineer - PCB & Embedded Systems We're looking for a hands-on Electrical Engineer to ... Experience with analog, digital, and mixed-signal circuit design. * Comfortable troubleshooting ...
Strong knowledge of analog and digital circuit design, microcontrollers, and sensor integration ... Knowledge of programming languages (e.g., C/C++) is a plus. * Proven ability to analyze electrical ...
Quick apply
Strong knowledge of analog and digital circuit design, microcontrollers, and sensor integration ... Knowledge of programming languages (e.g., C/C++) is a plus. * Proven ability to analyze electrical ...
Strong knowledge of analog and digital circuit design, microcontrollers, and sensor integration ... Knowledge of programming languages (e.g., C/C++) is a plus. * Proven ability to analyze electrical ...
Quick apply
Strong knowledge of analog and digital circuit design, microcontrollers, and sensor integration ... Knowledge of programming languages (e.g., C/C++) is a plus. * Proven ability to analyze electrical ...
Design analog, digital, power management, and microcontroller-based circuits. * Select components ... Collaborate with cross-functional engineering, manufacturing, suppliers, and customers. * Support ...
Design analog, digital, power management, and microcontroller-based circuits. * Select components ... Collaborate with cross-functional engineering, manufacturing, suppliers, and customers. * Support ...
Design analog, digital, power management, and microcontroller-based circuits. * Select components ... Collaborate with cross-functional engineering, manufacturing, suppliers, and customers. * Support ...
Design analog, digital, power management, and microcontroller-based circuits. * Select components ... Collaborate with cross-functional engineering, manufacturing, suppliers, and customers. * Support ...
Design analog, digital, power management, and microcontroller-based circuits. * Select components ... Collaborate with cross-functional engineering, manufacturing, suppliers, and customers. * Support ...
Design analog, digital, power management, and microcontroller-based circuits. * Select components ... Collaborate with cross-functional engineering, manufacturing, suppliers, and customers. * Support ...
Design analog, digital, power management, and microcontroller-based circuits. * Select components ... Collaborate with cross-functional engineering, manufacturing, suppliers, and customers. * Support ...
Design analog, digital, power management, and microcontroller-based circuits. * Select components ... Collaborate with cross-functional engineering, manufacturing, suppliers, and customers. * Support ...
Design analog, digital, power management, and microcontroller-based circuits. * Select components ... Collaborate with cross-functional engineering, manufacturing, suppliers, and customers. * Support ...
Design analog, digital, power management, and microcontroller-based circuits. * Select components ... Collaborate with cross-functional engineering, manufacturing, suppliers, and customers. * Support ...
Design analog, digital, power management, and microcontroller-based circuits. * Select components ... Collaborate with cross-functional engineering, manufacturing, suppliers, and customers. * Support ...
Design analog, digital, power management, and microcontroller-based circuits. * Select components ... Collaborate with cross-functional engineering, manufacturing, suppliers, and customers. * Support ...
Design analog, digital, power management, and microcontroller-based circuits. * Select components ... Collaborate with cross-functional engineering, manufacturing, suppliers, and customers. * Support ...
Design analog, digital, power management, and microcontroller-based circuits. * Select components ... Collaborate with cross-functional engineering, manufacturing, suppliers, and customers. * Support ...
Design analog, digital, power management, and microcontroller-based circuits. * Select components ... Collaborate with cross-functional engineering, manufacturing, suppliers, and customers. * Support ...
Design analog, digital, power management, and microcontroller-based circuits. * Select components ... Collaborate with cross-functional engineering, manufacturing, suppliers, and customers. * Support ...
Design analog, digital, power management, and microcontroller-based circuits. * Select components ... Collaborate with cross-functional engineering, manufacturing, suppliers, and customers. * Support ...
Design analog, digital, power management, and microcontroller-based circuits. * Select components ... Collaborate with cross-functional engineering, manufacturing, suppliers, and customers. * Support ...
Design analog, digital, power management, and microcontroller-based circuits. * Select components ... Collaborate with cross-functional engineering, manufacturing, suppliers, and customers. * Support ...
Design analog, digital, power management, and microcontroller-based circuits. * Select components ... Collaborate with cross-functional engineering, manufacturing, suppliers, and customers. * Support ...
Design analog, digital, power management, and microcontroller-based circuits. * Select components ... Collaborate with cross-functional engineering, manufacturing, suppliers, and customers. * Support ...
Design analog, digital, power management, and microcontroller-based circuits. * Select components ... Collaborate with cross-functional engineering, manufacturing, suppliers, and customers. * Support ...
Design analog, digital, power management, and microcontroller-based circuits. * Select components ... Collaborate with cross-functional engineering, manufacturing, suppliers, and customers. * Support ...
Design analog, digital, power management, and microcontroller-based circuits. * Select components ... Collaborate with cross-functional engineering, manufacturing, suppliers, and customers. * Support ...
Analog Ic Design Engineer information
See Michigan salary details
$87.6K - $97.5K
14% of jobs
$102.2K is the 25th percentile. Wages below this are outliers.
$97.5K - $107.3K
24% of jobs
The median wage is $113.6K / yr.
$107.3K - $117.2K
20% of jobs
$123.6K is the 75th percentile. Wages above this are outliers.
$117.2K - $127.1K
27% of jobs
$127.1K - $136.9K
0% of jobs
$136.9K - $146.8K
0% of jobs
$146.8K - $156.6K
0% of jobs
$156.6K - $166.5K
4% of jobs
$166.5K - $176.4K
4% of jobs
$176.4K - $186.2K
3% of jobs
$186.2K - $196.1K
4% of jobs
$87.6K
$124.1K
$196.1K
How much do analog ic design engineer jobs pay per year?
What is an analog IC design engineer?
An Analog IC Design Engineer is responsible for designing, simulating, and testing analog integrated circuits used in various applications like power management, communication systems, and sensor interfaces. They work with technologies such as CMOS and BiCMOS to develop circuits like amplifiers, oscillators, and voltage regulators. Their role includes schematic design, layout supervision, performance optimization, and ensuring the circuit meets specifications for power, speed, and reliability. Typically, they use simulation tools like SPICE and collaborate with layout engineers and verification teams to bring designs to production.
What are the typical daily responsibilities of an analog IC design engineer?
As an Analog IC Design Engineer, your daily tasks typically involve designing, simulating, and verifying analog and mixed-signal integrated circuit blocks using specialized EDA tools. You may collaborate closely with layout engineers, digital design teams, and test engineers to ensure successful integration and functionality of the overall chip. Responsibilities also include reviewing design specifications, conducting design reviews, and debugging silicon prototypes. Balancing technical tasks with cross-team communication is key to achieving project milestones and delivering robust, high-quality ICs.
What are the key skills and qualifications needed to thrive in the analog IC design engineer position, and why are they important?
To thrive as an Analog IC Design Engineer, you need a deep understanding of analog circuit theory, semiconductor physics, and hands-on experience with IC design tools such as Cadence or Mentor Graphics, typically supported by a degree in electrical engineering. Proficiency with simulation and layout tools, as well as knowledge of design verification methodologies, is essential, and certifications like Professional Engineer (PE) can be beneficial. Strong problem-solving skills, attention to detail, and effective communication are valuable soft skills in this field. These capabilities are critical for developing reliable, high-performance integrated circuits and collaborating efficiently within multidisciplinary engineering teams.
What are popular job titles related to Analog Ic Design Engineer jobs in Michigan?
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What job categories do people searching Analog Ic Design Engineer jobs in Michigan look for?
The top searched job categories for Analog Ic Design Engineer jobs in Michigan are:
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Job description
Job Description
We are seeking a highly skilled and experienced Microelectronic Design Engineer to join our semiconductor design team. You will be responsible for the design, development, simulation, and validation of advanced semiconductor devices and chip-scale systems for next-generation applications. This role requires deep expertise in chip-scale design, microelectronics architecture, and circuit-level implementation, with the ability to collaborate across multidisciplinary engineering teams and work on cutting-edge chip designs.
Responsibilities
- Design and develop microelectronic circuits and systems at the chip scale level, from concept through production, for high-performance applications
- Perform schematic capture, circuit simulations, modeling, and analysis using industry-standard tools
- Execute layout design, place and route, parasitic extraction, and timing analysis of integrated circuits
- Conduct physical design verification (DRC, LVS) and design validation, debugging, and performance optimization
- Collaborate with system architects, device engineers, fabrication teams, verification engineers, manufacturing partners, and test engineers to ensure successful product development
- Optimize designs for performance, power consumption, area, and cost
- Implement design for manufacturability (DFM) and design for testability (DFT) best practices
- Support silicon bring-up, characterization, and failure analysis
- Troubleshoot design issues and implement corrective actions
- Develop and document technical specifications, design schematics, and comprehensive technical reports
- Participate in design reviews and contribute to continuous process improvement
- Stay current with emerging technologies and industry trends in semiconductor design and microfabrication
Required Qualifications
- Bachelor's or Master's degree in Electrical Engineering, Microelectronics, Computer Engineering, or a related field
- 5 years of hands-on, direct experience in chip-scale design and layout
- Proven experience in microelectronic circuit design (analog, digital, or mixed-signal)
- Proficiency with industry-standard EDA tools (e.g., Cadence, Synopsys, Mentor Graphics)
- Strong understanding of semiconductor device physics, device modeling, IC fabrication processes, and circuit theory
- Experience with CMOS design and manufacturing processes
- Strong analytical, debugging, and problem-solving skills
- Excellent written and verbal communication abilities
- Familiarity with verification methodologies and simulation tools
Preferred Qualifications
- Master's degree in Electrical Engineering or related field
- Experience with advanced nodes (e.g., FinFET, CMOS scaling technologies, 5nm or below)
- Knowledge of RF design, high-speed signal integrity, or high-speed interconnect circuits
- Experience working with ASICs, SoCs, or FPGA-based prototyping
- Experience with power delivery network (PDN) design
- Familiarity with packaging and chip integration technologies
- Experience with static and dynamic power analysis
- Prior experience supporting government, defense, or regulated industry programs
About Eccalon
Sourced by ZipRecruiter
We are a cross-functional collective of innovative minds that leverages technology to tackle the most challenging problems of this generation for clients, the nation, and the world. Eccalon fosters creativity, curiosity, and imagination across all departments and divisions to pioneer new ideas, products, and services. We advance innovation.
Industry
Guided missile and space vehicle manufacturing
Company size
11 - 50 Employees
Headquarters location
Hanover, MD, US
Year founded
2017