Post job

Circuits engineer vs radio frequency engineer

The differences between circuits engineers and radio frequency engineers can be seen in a few details. Each job has different responsibilities and duties. It typically takes 4-6 years to become both a circuits engineer and a radio frequency engineer. Additionally, a circuits engineer has an average salary of $92,489, which is higher than the $88,301 average annual salary of a radio frequency engineer.

The top three skills for a circuits engineer include PCB, circuit design and analog circuits. The most important skills for a radio frequency engineer are test equipment, antenna, and system performance.

Circuits engineer vs radio frequency engineer overview

Circuits EngineerRadio Frequency Engineer
Yearly salary$92,489$88,301
Hourly rate$44.47$42.45
Growth rate3%3%
Number of jobs16,21235,158
Job satisfaction--
Most common degreeBachelor's Degree, 61%Bachelor's Degree, 67%
Average age4545
Years of experience66

Circuits engineer vs radio frequency engineer salary

Circuits engineers and radio frequency engineers have different pay scales, as shown below.

Circuits EngineerRadio Frequency Engineer
Average salary$92,489$88,301
Salary rangeBetween $67,000 And $126,000Between $67,000 And $115,000
Highest paying CityBerkeley, CACupertino, CA
Highest paying stateWashingtonCalifornia
Best paying companyAppleMeta
Best paying industryTechnologyTechnology

Differences between circuits engineer and radio frequency engineer education

There are a few differences between a circuits engineer and a radio frequency engineer in terms of educational background:

Circuits EngineerRadio Frequency Engineer
Most common degreeBachelor's Degree, 61%Bachelor's Degree, 67%
Most common majorElectrical EngineeringElectrical Engineering
Most common collegeStanford UniversityNortheastern University

Circuits engineer vs radio frequency engineer demographics

Here are the differences between circuits engineers' and radio frequency engineers' demographics:

Circuits EngineerRadio Frequency Engineer
Average age4545
Gender ratioMale, 77.3% Female, 22.7%Male, 91.1% Female, 8.9%
Race ratioBlack or African American, 4.8% Unknown, 4.7% Hispanic or Latino, 11.1% Asian, 14.4% White, 64.7% American Indian and Alaska Native, 0.2%Black or African American, 4.6% Unknown, 4.6% Hispanic or Latino, 10.3% Asian, 20.7% White, 59.6% American Indian and Alaska Native, 0.2%
LGBT Percentage6%6%

Differences between circuits engineer and radio frequency engineer duties and responsibilities

Circuits engineer example responsibilities.

  • Apply technical knowledge in electromagnetic theory and microwave technology to plan and manage projects concern with ground-base radar systems.
  • Perform end-to-end circuit provisioning for networks from DS3 level to OC12, OC48, and OC192 circuits that cover nationwide.
  • Review customer requirements of SONET, Ethernet [] and DS3/DS1 to engineer the most efficient transport for their information.
  • Experience with assigning facilities in DACS, DSLAM, and MUX.
  • Design PCB artwork, deflection circuit, and power supply of monitors.
  • Review LEC and CLEC DLR s and pre-engineer DS-3 s or resolve slot discrepancies.
  • Show more

Radio frequency engineer example responsibilities.

  • Manage joint projects together with Samsung, Motorola, etc.
  • Lead the development of the security layer of Wi-Fi on Sandbridge's proprietary platform.
  • Assist with live broadcasts, update the community calendar, manage WCJW Facebook page.
  • Process improvement efforts and/or other opportunities to automate these processes with computer applications with C++ and/or Java where applicable.
  • Measure stationary test for DL and UL throughput using iPerf.
  • Advance WLAN troubleshooting on WLAN infrastructures, as well as surveying using AirMagnet.
  • Show more

Circuits engineer vs radio frequency engineer skills

Common circuits engineer skills
  • PCB, 25%
  • Circuit Design, 20%
  • Analog Circuits, 16%
  • RF, 8%
  • Mentor Graphics, 5%
  • CAD, 4%
Common radio frequency engineer skills
  • Test Equipment, 9%
  • Antenna, 7%
  • System Performance, 4%
  • System Design, 4%
  • Troubleshoot, 4%
  • Macro, 3%

Browse architecture and engineering jobs