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Remote 5G Engineer Jobs in New York (NOW HIRING)

Remote 5G Engineer information

What is a Remote 5G Engineer?

A Remote 5G Engineer is a telecommunications professional who works primarily from a remote location to design, implement, optimize, and maintain 5G wireless networks. Their responsibilities often include network planning, troubleshooting, deploying 5G infrastructure, and ensuring high-speed connectivity for users. They collaborate with teams, use advanced tools to monitor network performance, and may also help integrate 5G with existing technologies. This role typically requires expertise in wireless communications, network protocols, and relevant software or hardware systems.

What are the key skills and qualifications needed to thrive as a Remote 5G Engineer?

To thrive as a Remote 5G Engineer, you need strong expertise in wireless communication systems, network design, and troubleshooting, typically supported by a degree in electrical engineering or computer science. Familiarity with 5G protocols, RF planning tools, simulation software like MATLAB, and industry certifications such as CCNA or 5G-specific credentials are highly valuable. Excellent problem-solving abilities, self-motivation, and effective remote communication skills set top candidates apart. These skills and qualities are crucial to ensuring robust 5G network performance and seamless collaboration across geographically dispersed teams.

What are the main collaboration tools and practices used by remote 5G engineers to work effectively with global teams?

Remote 5G engineers typically rely on a combination of real-time communication platforms (such as Slack or Microsoft Teams), version control systems (like Git), and project management tools (such as Jira) to coordinate with colleagues and stakeholders worldwide. Daily stand-up meetings, regular code reviews, and collaborative design sessions are common practices that help keep projects on track and ensure alignment across distributed teams. These tools and routines foster transparency, streamline issue resolution, and enable effective knowledge sharing, making remote collaboration seamless and productive in 5G engineering projects.

What is the difference between Remote 5G Engineer vs Remote Network Engineer?

AspectRemote 5G EngineerRemote Network Engineer
Required CredentialsBachelor's in Engineering, certifications like Cisco CCNA, 5G-specific trainingBachelor's in Computer Science or related, Cisco CCNA or CCNP certifications
Work EnvironmentDesigning and testing 5G networks, working with telecom equipmentManaging and troubleshooting various network systems, including LAN/WAN
Industry UsageTelecommunications, mobile network providersIT, enterprise networks, service providers

Remote 5G Engineers focus on designing and implementing 5G wireless networks, requiring specialized knowledge of 5G technology. Remote Network Engineers handle broader network infrastructure, including wired and wireless systems. While both roles involve network design and troubleshooting, 5G Engineers specialize in cutting-edge wireless technology, whereas Network Engineers work across various network types.

What are popular job titles related to Remote 5G Engineer jobs in New York?

For Remote 5G Engineer jobs in New York, the most frequently searched job titles are:

What job categories do people searching Remote 5G Engineer jobs in New York look for?

The top searched job categories for Remote 5G Engineer jobs in New York are:

What cities in New York are hiring for Remote 5G Engineer jobs?

Cities in New York with the most Remote 5G Engineer job openings:

Junior Wireless DSP/PHY Algorithm Engineer/Remote

Apetan Consulting llc

Jersey City, NJ • Remote

$80 - $120/hr

Contractor

Re-posted 27 days ago


Job description

Job Description- Junior Wireless DSP/PHY Algorithm EngineerLocation-RemoteJob Summary

We are seeking a Junior Wireless DSP/PHY Algorithm Engineer to support the design, development, simulation, and optimization of wireless communication algorithms at the Physical Layer (PHY). The ideal candidate will have a strong foundation in Digital Signal Processing (DSP), wireless communication systems, and mathematical modeling, with a passion for developing next-generation wireless technologies.

Key Responsibilities
  • Assist in the development and evaluation of PHY layer algorithms for wireless communication systems.
  • Design, implement, and test DSP algorithms for signal processing applications.
  • Support simulation and performance analysis of wireless communication systems.
  • Develop models and prototypes using MATLAB, Python, C/C++, or similar tools.
  • Analyze system performance under various channel conditions and interference scenarios.
  • Participate in link-level and system-level simulations.
  • Support algorithm optimization for performance, complexity, and power efficiency.
  • Collaborate with software, hardware, and systems engineering teams.
  • Document algorithm designs, simulation results, and technical findings.
  • Assist in debugging and validating wireless communication solutions.
Required Skills & Qualifications
  • Bachelor's or Master's degree in Electrical Engineering, Electronics Engineering, Telecommunications, Computer Engineering, or a related field.
  • Strong understanding of Digital Signal Processing (DSP) fundamentals.
  • Knowledge of wireless communication concepts, including:
    • Modulation and demodulation techniques
    • Channel coding and error correction
    • OFDM/OFDMA
    • MIMO systems
    • Synchronization and channel estimation
  • Familiarity with wireless standards such as:
    • 4G LTE
    • 5G NR
    • Wi-Fi (IEEE 802.11)
  • Programming skills in MATLAB, Python, C, or C++.
  • Understanding of probability, statistics, and linear algebra.
  • Strong analytical and problem-solving abilities.
Preferred Qualifications
  • Academic or project experience in wireless communications or signal processing.
  • Experience with simulation tools and communication system modeling.
  • Familiarity with PHY layer design and performance evaluation.
  • Knowledge of SDR (Software Defined Radio) platforms such as USRP or similar tools.
  • Understanding of embedded systems concepts.