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Analog Modules Jobs in Enfield, CT (NOW HIRING)

Senior Electrical Engineer

Bloomfield, CT · On-site

$107K - $139K/yr

Strong Electrical Engineering knowledge and aptitude, including, analog / digital design, power ... modules, and various other subsystems. * Fluency with electrical engineering CAD tools such as ...

Analog Modules information

See Enfield, CT salary details

$102K

$144.5K

$228.3K

How much do analog modules jobs pay per year?

As of Sep 9, 2026, the average yearly pay for analog modules in Enfield, CT is $144,461.00, according to ZipRecruiter salary data. Most workers in this role earn between $119,200.00 and $141,000.00 per year, depending on experience, location, and employer.

What is an analog module?

Analog modules are electronic components or devices used to process, convert, or interface analog signals within a larger electronic system. They can amplify, filter, or convert analog signals to digital form (and vice versa), enabling communication between analog sensors, actuators, and digital controllers. Analog modules are commonly found in industrial automation, instrumentation, and control systems, where they play a crucial role in ensuring accurate signal processing and system performance.

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

To thrive as an Analog Design Engineer, you need a solid background in electrical engineering, proficiency in analog circuit design, and a relevant degree such as a BSEE or MSEE. Experience with simulation tools like SPICE, PCB layout software, and familiarity with lab equipment is typically required. Strong problem-solving skills, attention to detail, and effective communication set exceptional candidates apart in this field. These abilities are crucial for developing reliable analog modules that meet performance specifications and integrate seamlessly into larger electronic systems.

What are some common challenges faced by engineers working with analog modules, and how can they be addressed?

Engineers working with analog modules often encounter challenges such as signal noise, component tolerance variations, and thermal drift, which can affect circuit performance. Addressing these issues typically involves careful PCB layout, thorough testing and calibration, and selecting high-quality components. Collaboration with cross-functional teams, including PCB designers and firmware engineers, is also essential to ensure that analog and digital interfaces function seamlessly. Continuous learning about new components and best practices is key to overcoming these challenges and advancing in the field.

What is the difference between Analog Modules vs Digital Signal Processors?

AspectAnalog ModulesDigital Signal Processors
FunctionProcess continuous analog signalsProcess discrete digital signals
Required CredentialsElectronics or electrical engineering certificationsElectronics or electrical engineering certifications
Work EnvironmentLaboratories, manufacturing, field installationsEmbedded systems, software development labs
Industry UsageTelecommunications, audio, instrumentationAudio processing, communications, automation

Analog Modules focus on processing continuous signals in various industries, while Digital Signal Processors handle digital data for complex computations. Both roles often require similar technical credentials and are used in overlapping environments, but their core functions differ significantly in signal type and application.

What cities near Enfield, CT are hiring for Analog Modules jobs?

Cities near Enfield, CT with the most Analog Modules job openings:

Infographic showing various Analog Modules job openings in Enfield, CT as of July 2026, with employment types broken down into 83% Full Time, 12% Part Time, 1% Temporary, and 4% Contract. Highlights an 88% Physical, 3% Hybrid, and 9% Remote job distribution, with an average salary of $144,461 per year, or $69.5 per hour.

Engineering Lab Technician

Northampton, MA • On-site

Full-time

Re-posted 21 days ago


Job description

Engineering Lab Technician

Job Description: 

  • Will require a proven background working with RF and microwave products that operate from DC to 50 GHz. Product background must consist of a strong working knowledge with driver amplifiers, low noise amplifiers, high power amplifiers, buffer amplifiers, digital and analog attenuators both serial and parallel, dividers, detectors, frequency multipliers, VCO's, mixers, modulators/demodulators, multi-function modules, digital and analog phase shifters, switches, PIN diodes, and synthesizers. 
  • Requires tuning/improving/changing the products mentioned to present solutions for desired customer/engineering requirements.
  • Must have understanding and practical knowledge of working with the Smith Chart for impedance matching.
  • Use of lump elements such as capacitors, inductors, and resistors to perform product tuning or enhancement as well as transmission line tuning is desired.
  • The ability to solder small case size components to evaluation boards with use of a microscope is desired.
  • The knowledge in the use of a laser to cut out MMIC circuitry would be desirable.  
  • Thorough understanding of a variety of microwave measurements which include but are not limited to IP3, IP2, P1dB, harmonics, DC and/or RF pulse power, S-Parameters including balanced, noise figure, ACPR, EVM, bit-error rate, jitter (using eye diagrams), switching speed, conversion loss/gain, isolation, group delay, composite triple beat, composite second order, and stability testing.
  • Must have a background and a working knowledge to operate and perform test set-ups using such equipment as spectrum analyzers, network analyzers, mixed signal and sampling oscilloscopes, signal generators, pulse generators, curve tracers, noise figure meters, power supplies, power meters, SMU's,  and multi-meters. Wafer probing and testing on die experience is required for characterizing products.
  • Ability to solve problems independently as well as in a team environment.
  • Troubleshooting both to the component level and test system set-ups, the use of circuit analysis techniques to identify IC failures, and applying solid problem solving techniques to resolve issues in a timely manner are expected.
  • Understanding of IC layouts, circuit schematics, and block diagrams are desired for this position.