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Google Rf Engineer Jobs in New Jersey (NOW HIRING)

RF Engineer Duration: 06+ months with a possible extension based on your performance (only W2 ... Google Earth / .kml import FCC ASR and ULS databases Other desired tools (a plus): Geoplan Net ...

RF Design Engineer ( RF Design and Optimization) Location: Bridgewater, NJ Duration: 12+ months ... Google Earth / .kml import FCC ASR and ULS databases Other desired tools (a plus): Geoplan Net ...

Background in RF, spectrum management, spectrum sensing, software defined radios, propagation ... Exposure to cloud environments such as AWS GovCloud, Azure Government, or Google Cloud in a DoD ...

Background in RF, spectrum management, spectrum sensing, software defined radios, propagation ... Exposure to cloud environments such as AWS GovCloud, Azure Government, or Google Cloud in a DoD ...

Full-Stack Software Engineer

Red Bank, NJ · On-site

$104K - $166K/yr

Background in RF, spectrum management, spectrum sensing, software defined radios, propagation ... Exposure to cloud environments such as AWS GovCloud, Azure Government, or Google Cloud in a DoD ...

Background in RF, spectrum management, spectrum sensing, software defined radios, propagation ... Exposure to cloud environments such as AWS GovCloud, Azure Government, or Google Cloud in a DoD ...

Google Rf Engineer information

See New Jersey salary details

$37.6K

$119.5K

$185.8K

How much do google rf engineer jobs pay per year?

As of Jun 27, 2026, the average yearly pay for google rf engineer in New Jersey is $119,473.00, according to ZipRecruiter salary data. Most workers in this role earn between $99,000.00 and $141,100.00 per year, depending on experience, location, and employer.

What does a typical project look like for a Google RF Engineer, and how does the team operate?

A typical project for a Google RF Engineer involves designing, optimizing, and testing wireless system components for products like smartphones, networking devices, or infrastructure solutions. Engineers frequently collaborate with cross-functional teams—including hardware designers, software engineers, and product managers—to ensure optimal performance and compliance with industry standards. The work environment is highly innovative and fast-paced, with an emphasis on creative problem-solving and teamwork. This collaborative atmosphere not only accelerates product development but also offers opportunities for skill growth and career advancement.

What are the key skills and qualifications needed to thrive in the Google Rf Engineer position, and why are they important?

To thrive as a Google RF Engineer, you need a solid background in radio frequency engineering, wireless communications, and signal processing, usually supported by a degree in electrical engineering or a related field. Familiarity with industry-standard RF simulation tools (such as ADS or CST), experience with network analysis equipment, and relevant certifications like FCC licensing are highly valuable. Strong analytical thinking, effective communication, and a collaborative mindset are key soft skills that help engineers work efficiently within interdisciplinary teams. These skills and qualities are crucial for developing robust wireless solutions, meeting project requirements, and ensuring seamless technology integration at scale.

What is a Google RF Engineer job?

A Google RF Engineer is responsible for designing, testing, and optimizing radio frequency (RF) systems to support wireless communication and connectivity. Their work involves improving network performance, ensuring signal integrity, and troubleshooting RF-related issues. They collaborate with hardware and software teams to develop efficient wireless solutions for products like Google Fiber, Nest, and other wireless technologies. The role requires expertise in RF principles, antenna design, and regulatory compliance.

What are the most commonly searched types of Google Rf Engineer jobs in New Jersey? The most popular types of Google Rf Engineer jobs in New Jersey are:
What are popular job titles related to Google Rf Engineer jobs in New Jersey? For Google Rf Engineer jobs in New Jersey, the most frequently searched job titles are:
What job categories do people searching Google Rf Engineer jobs in New Jersey look for? The top searched job categories for Google Rf Engineer jobs in New Jersey are:
Infographic showing various Google Rf Engineer job openings in New Jersey as of June 2026, with employment types broken down into 94% Full Time, 3% Part Time, and 3% Contract. Highlights an 68% Physical, 3% Hybrid, and 29% Remote job distribution, with an average salary of $119,473 per year, or $57.4 per hour.

Other

Posted 16 days ago


Job description

Company Description

Aditi Staffing is an MBE certified, IT Staffing firm in the US offering contract, contract-to-hire & direct hire career opportunities with Fortune Firms. Recently recognized as one of the fastest growing staffing firms and top diversity firm by the Staffing Industry Analysts, Aditi Staffing has been a partner of choice for candidates and clients. 

Visit our website: http://www.aditistaffing.com/

Job Description

Job Title: RF Engineer

Duration: 06+ months with a possible extension based on your performance (only W2)

Location: Little Rock, AR

The RF Engineer is responsible for contributing in the RF Design of the regional wireless network. Responsibilities include but are not limited to: Creates search areas and reviews search area candidates within geographic area by taking into consideration baseline, performance issues, capacity, topography, and population. Working with the performance team to improve Key Performance Indicators within his/her area. Working with traffic and implementation counterparts to understand capacity improvements needed in the network. Create site design RFDS and complete plumbing diagrams. Evaluate antennas and equipment for performance and future growth. Performing radio engineering evaluations for system planning and site acquisition. Evaluating coverage problems and requirements for coverage and capacity cells. Utilizes propagation tools and other RF related equipment such as MapInfo, GeoPlan, ATOLL, Datapro and Nortel Performance Tool for site candidate comparison, propagation and coverage review and selection, zoning and regulatory. Determination of regulatory coverage boundaries for extensions, FAA/FCC filings. Review of cell sites and design for upgrades/modifications. Prepares necessary zoning/regulatory filings for sites ensuring that compliance is met, and attends zoning meetings for assigned area as required. Works closely with real estate team to increase efficiency, minimize cost, and streamline processes related to site acquisition, leasing, and zoning submissions. Review real estate applications for accuracy prior to lease execution. Conduct RFE analysis, generate required reports and documents, and ensure 100% compliance to RFE mitigation standards within the allotted time frame. Generate and evaluate coverage and interference prediction maps. Calculate and evaluate the effects on the received signal of path-related impairments. Develop and analyze sectors, post construction, to optimize coverage and capacity. Determine the required antennas for planned frequencies and their optimal positions. Determine the required cable, antennas, and equipment to implement macro and small cell wireless network clusters. Ensure 100% regulatory requirements are met in every phase of design project. Evaluate site compliance with health, safety, and environmental requirements. Perform intermodulation analyses of antenna systems and components. As needed, calculate link budgets to evaluate system performance and reliability based on received signal level and fade margin. Calculate the efficiency of various multiple-antenna schemes, and analyze the tradeoffs involved in selecting from among them. Evaluate the effects of path loss on the received signal strength in various signal propagation environments (examples might include flat terrain, rolling hills, urbanized areas, and indoor environments [such as buildings or tunnels] with losses caused by walls, ceilings, etc.). Determine parameters related to antennas (examples might include pattern, beam width, gain, distance from an antenna or array at which far field conditions apply, spacing, beam forming, tilt, and sectorization) and analyze the effects of these parameters on coverage and capacity. Generate and evaluate coverage and interference prediction maps. Analyze propagation modeling and "drive test" measurements and make recommendations for site optimizations. Analyze design considerations and perform system design to eliminate coverage holes and to optimize capacity/coverage. Evaluate site design efficiency related to handover/handoff management and inter-technology handover/handoff. PERSONAL QUALITIES DESIRED: Personal integrity Timeliness Self-starter With initial guidance, ability to accomplish tasks with minimal supervision Attention to detail Proactive Works well with others in a team environment Excellent communication skills- written and verbal Goal-oriented / mission focused "Can-do" attitude Flexibility Superior organizational and project planning skills TOOLS EXPERIENCE REQUIRED: ATOLL Siterra MapInfo thematic map creation Microsoft Office suite of products (advanced experience level) Google Earth / .kml import FCC ASR and ULS databases Other desired tools (a plus): Geoplan Net Workflow Actix Ericsson performance tools VBA (macro creation) Roofview Test equipment such as network analyzers and spectrum analyzers DEMONSTRATED KNOWLEDGE: 4G network design and implementation o Tasks and knowledge related to: antennas, RF engineering, transmission, reception, and propagation. o Firm understanding of band performance capabilities and limitations. o Demonstrated understanding of LTE KPI's and impacts of design on them. o Planning factors for data and VoLTE. Frequency planning / de-confliction. Different types of losses and mitigation techniques. Methods to calculate antenna gain and free space path loss. The effects of outdoor terrain and indoor structures such as walls, floors, and ceilings on signal propagation. Understanding and use of topographical maps and digital terrain databases. Antenna system design and use including antenna types (examples might include Hex/Octo port panel, cross-pol array, etc.), antenna patterns, gain and EIRP, ERP, antenna size, antenna polarization, receive and transmit diversity, MIMO antenna systems, and proper antenna installation to provide for coverage and interference mitigation. Macro site design considerations in urban, sub-urban, and rural environments. Small cell design considerations in urban and sub-urban environments.

Additional Information

Thanks & Regards

Arun Kumar

Technical Recruiter 

Email: arunkr(at)aditistaffing(dot)com