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Contract Rf Filter Design Engineer Jobs in Oregon

RF Engineer

Hillsboro, OR

$141.91K - $269.10K/yr

Reviews system specifications and design plans to ensure that designs meet customer needs and is ... RF/mmWave circuits (PA, LNA, VCO) and/or AMS (DAC/ADC) Job Type:Experienced Hire Shift:Shift 1 ...

RF Engineer

Hillsboro, OR · On-site

$122.44K - $232.19K/yr

Reviews system specifications and design plans to ensure that designs meet customer needs and is ... Experience with Analog/RF circuit simulation and running drc/lvs/ext/fill flows in custom CMOS ...

S. citizens are authorized to access information under this program/contract. Security Clearance ... Communicate design status, technical risks, and schedule impacts with engineering stakeholders and ...

The Impact You'll Make The RF Engineer designs, develops, modifies, and evaluates electronic ... Responsibilities include determining design approaches and parameters, analyzing equipment to ...

The Impact You'll Make The RF Engineer designs, develops, modifies, and evaluates electronic parts ... Determines design approaches and parameters. Analyzes equipment to establish operating data ...

OR

$170K - $250K/yr

The Role We are seeking a Senior ASIC Design Verification Engineer whose role will be to verify the ... Experience in space, telecom, or RF/digital mixed systems is a plus. Compensation and Benefits:

Skilled at breaking down AC circuit analysis, filter design, and control system stability analysis ... Varsity Tutors does not contract in: Alaska, California, Colorado, Delaware, Hawaii, Maine, New ...

Skilled at breaking down AC circuit analysis, filter design, and control system stability analysis ... Varsity Tutors does not contract in: Alaska, California, Colorado, Delaware, Hawaii, Maine, New ...

Skilled at breaking down AC circuit analysis, filter design, and control system stability analysis ... Varsity Tutors does not contract in: Alaska, California, Colorado, Delaware, Hawaii, Maine, New ...

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Contract Rf Filter Design Engineer information

What are the key skills and qualifications needed to thrive as a Contract RF Filter Design Engineer, and why are they important?

To excel as a Contract RF Filter Design Engineer, you need a solid background in electrical engineering, expertise in RF/microwave filter theory, and experience with circuit simulation and design, typically supported by a relevant engineering degree. Proficiency with design and simulation tools such as ADS, HFSS, CST, and familiarity with network analyzers and CAD software is essential. Strong problem-solving skills, attention to detail, and effective communication are valuable soft skills that set top engineers apart. These capabilities ensure the development of high-performance, reliable RF filters that meet stringent client and project requirements.

What are some typical challenges faced by a Contract RF Filter Design Engineer when joining a new project team?

As a Contract RF Filter Design Engineer, one common challenge is quickly adapting to different design methodologies and toolsets used by various clients. You may also encounter tight project timelines that require efficient problem-solving and rapid prototyping. Additionally, integrating your designs with existing system architectures and collaborating with cross-functional teams—such as hardware, testing, and manufacturing—can require strong communication skills to ensure all requirements are met. Being proactive in understanding client expectations and documentation standards is key to a smooth onboarding process.

What are Contract RF Filter Design Engineers?

Contract RF Filter Design Engineers are professionals who specialize in designing radio frequency (RF) filters on a contractual basis, rather than as permanent employees. They work with clients or companies to develop, analyze, and optimize electronic filters that control signal frequencies in RF systems, such as those found in wireless communications, radar, and broadcasting. Their work may involve using simulation software, prototyping, and testing to ensure filters meet specific performance criteria. These engineers often have expertise in electrical engineering, signal processing, and practical experience with various filter topologies. Contract roles can range from short-term projects to longer engagements, depending on the client's needs.

What is the difference between Contract Rf Filter Design Engineer vs Contract RF Circuit Design Engineer?

AspectContract Rf Filter Design EngineerContract RF Circuit Design Engineer
Primary FocusDesigning RF filters for signal integrity and frequency selectionDesigning RF circuits including amplifiers, mixers, and oscillators
Skills & CertificationsRF filter theory, simulation tools, relevant certificationsRF circuit design, PCB layout, simulation tools
Work EnvironmentElectronics manufacturing, telecommunications, aerospaceWireless devices, telecommunications, defense

While both roles involve RF design, the Contract Rf Filter Design Engineer specializes in creating filters to shape signal spectra, whereas the Contract RF Circuit Design Engineer focuses on broader RF circuit components. The choice depends on whether the project emphasizes filter performance or overall RF circuitry development.

What are the most commonly searched types of Rf Filter Design Engineer jobs in Oregon? The most popular types of Rf Filter Design Engineer jobs in Oregon are:
What are popular job titles related to Contract Rf Filter Design Engineer jobs in Oregon? For Contract Rf Filter Design Engineer jobs in Oregon, the most frequently searched job titles are:
What job categories do people searching Contract Rf Filter Design Engineer jobs in Oregon look for? The top searched job categories for Contract Rf Filter Design Engineer jobs in Oregon are:
What cities in Oregon are hiring for Contract Rf Filter Design Engineer jobs? Cities in Oregon with the most Contract Rf Filter Design Engineer job openings:
Principal IC Design Engineer, Analog

Principal IC Design Engineer, Analog

Gateway Recruiting

Happy Valley, OR

$212.40K/yr

Full-time

Posted 16 days ago


Job description

The Principal Analog IC Design Engineer will lead and personally contribute to the innovation, design, and development of ultra-low-power analog and mixed-signal integrated circuits used in life-critical implantable medical devices.

This role will provide technical leadership and hands-on contributions across all phases of product development, from early market and clinical definition through design, release, and long-term maintenance. This person will bring broad, cross-disciplinary expertise beyond IC design, working closely with research, manufacturing, quality, testing, and clinical teams to deliver highly reliable silicon that meets stringent medical and regulatory requirements.

The success of this role will be measured by the on-time delivery of product-specific integrated circuits that address key clinical and business needs while exceeding industry standards for performance, reliability, and quality. Using state-of-the-art CAD and simulation tools, this position will design, integrate, and verify complex circuits and systems, influencing architecture decisions and critical design tradeoffs.

The Principal Engineer will collaborate directly with system hardware, software, and clinical engineering teams, medical consultants, and IC design, test, and layout engineers across U.S. and international design centers, playing a pivotal role in bringing advanced implantable technologies from concept to production.

PRIMARY RESPONSIBILITIES:

  • Design and development of high-performance and high-reliability ultra-low power analog but also mixed signal integrated circuits for implantable medical products.
  • Active involvement in all aspects of IC design, including the development of functional concepts and specifications, top-level design architecture, design partitioning and block level design, detailed circuit design and simulation, layout floor-planning and transistor level layout, bench verification and testing, test-vector development, and documentation.
  • Design of novel, robust, ultra-low power, low-voltage analog/mixed-signal IC functional blocks including but not limited to voltage/current references, operational amplifiers, comparators, switched-capacitor circuits (amplifiers, filters, charge pumps, etc.), ADCs and DACs, oscillators, switching power circuits, communication circuits, etc.
  • Design of ultra-low power digital functional blocks (combinatorial, sequential, synchronous, asynchronous, state machines, etc.) for timing, control, interfacing and signal processing.
  • Create behavioral models for modules and system level verification models for circuits.
  • Perform pre-silicon verification and post-silicon validation of circuits.
  • Collaborate with IC Test group to define production vectors.
  • Consult with physicians, clinical research, published literature, and technology leaders on new and existing technologies, trends, and requirements for their uses.

QUALIFICATIONS AND EXPERIENCE:

  • Advanced degree in Electrical Engineering (MS / PhD) with additional background in business principles with demonstrated expertise in fundamental electrical engineering, circuit, and systems principles and closed form analytical approaches.
  • The candidate should be a self-motivated independent thinker able to apply industry research and personal experience to design proposals combined with strong verbal communications skills and strong technical document writing skills.
  • 8+ years of experience in analog/mixed-signal IC design for very low power portable and/or implantable applications, with a strong grasp of the tradeoffs involved in using various analog and digital circuit design techniques (RTL or schematic based) to optimally implement system functions.
    • Preferred: 5+ years implantable medical device industry experience including FDA regulated design controls and product approval process.
  • Deep understanding of CMOS processes, device characteristics and models, transistor level circuit analysis and design concepts and trade-offs: BW, noise, power, feedback analysis, stability etc., worst case process corners, margin and Monte Carlo analysis, and design-for-test.
    • Knowledge of low power flows, including voltage/power domains, power shutoff, retention is desired
  • Solid understanding of circuit building blocks (op-amps, comparators, voltage and current references, DACs, ADCs,) and layout techniques for ultra-low power design to deliver robust, production quality silicon designs.
    • Preferred: Experience with medical domain specific designs such as neuromodulation, charging, low noise biomedical signal measurement and processing, battery energy conversion techniques, and very low power RF communication circuits.
  • Extensive working knowledge and use of Cadence mixed signal Design tools, Virtuoso XL, Spectre, Xcelium/AMS simulators along with Maestro, and other mixed signal signoff tools for analog regression testing.
    • Preferred: Knowledge of scripting/language (perl, shell, tcl, python) along with C/C++, as well Matlab is desirable
  • Experience in lab bench characterization and test-vector generation for pre-silicon and post-silicon verification, design-for-manufacturing test vector generation, production support, fault isolation and failure analysis, and pre-clinical and clinical testing environments.
  • The candidate would demonstrate industry recognition of technical accomplishments in the form of patents and/or published articles.
    • Preferred: Experience with international teams and a working knowledge of German would be highly desirable.