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Remote Rtl Design Jobs in Boston, MA (NOW HIRING)

Hardware Expert - Remote

Boston, MA ยท Remote

$50 - $100/hr

Global, Fully Remote Schedule: Flexible, ~15 hours/week Role Summary We are seeking skilled ... AutoCAD * CAD * Python * RTL * 3D Mechanical Modeling * Computational Geometry Qualifications

Hardware Expert - Remote

Boston, MA ยท Remote

$50 - $100/hr

Global, Fully Remote Schedule: Flexible, ~15 hours/week Role Summary We are seeking skilled ... AutoCAD * CAD * Python * RTL * 3D Mechanical Modeling * Computational Geometry Qualifications

Remote Rtl Design information

See Boston, MA salary details

$87.5K

$151.4K

$198.3K

How much do remote rtl design jobs pay per year?

As of Sep 12, 2026, the average yearly pay for remote rtl design in Boston, MA is $151,409.00, according to ZipRecruiter salary data. Most workers in this role earn between $147,800.00 and $147,800.00 per year, depending on experience, location, and employer.

What is a remote RTL design job?

Remote RTL (Register Transfer Level) Design jobs involve creating and verifying digital circuit designs using hardware description languages like Verilog or VHDL, while working from a remote location. RTL designers translate system requirements into functional hardware blocks, simulate their operation, and ensure they meet performance and power specifications. These roles are common in semiconductor and electronics companies, enabling professionals to collaborate with global teams without being onsite. Remote RTL designers typically use cloud-based tools and platforms to access design environments and communicate with colleagues. Strong knowledge of digital logic, hardware design languages, and industry-standard EDA tools is essential for these positions.

What are the key skills and qualifications needed to thrive as a remote RTL design engineer?

To thrive as a Remote RTL Design Engineer, you need a solid background in digital logic design, Verilog or VHDL programming, and a relevant engineering degree. Familiarity with industry-standard EDA tools such as Synopsys, Cadence, or Mentor Graphics, and knowledge of simulation, synthesis, and timing analysis are typically required. Strong problem-solving, attention to detail, and effective remote communication skills are essential for collaborating with distributed teams. These competencies ensure the creation of reliable, high-performance hardware designs and efficient teamwork in a remote environment.

What are some common challenges faced by remote RTL design engineers, and how can they be addressed?

Remote RTL Design engineers often encounter challenges such as effective communication with cross-functional teams, managing version control for hardware description files, and ensuring timely feedback on design iterations. To address these, many teams utilize collaborative tools like version control systems (e.g., Git), regular video meetings, and shared project management platforms. Establishing clear documentation and proactive communication habits can further minimize misunderstandings and keep projects on track, fostering a productive remote work environment.

What is the difference between Remote Rtl Design vs Remote Digital IC Design?

AspectRemote Rtl DesignRemote Digital IC Design
Required CredentialsBachelor's in Electrical Engineering or related; knowledge of HDL (VHDL/Verilog)Bachelor's in Electrical Engineering or related; knowledge of HDL and circuit design
Work EnvironmentDesigning RTL code, simulation, verification, often in a collaborative team settingDesigning digital integrated circuits, layout, verification, often in a team
Industry UsageSemiconductor, electronics companies, chip design firmsSemiconductor, electronics, and integrated circuit manufacturing

Remote Rtl Design focuses on creating and verifying RTL code for digital circuits, while Remote Digital IC Design involves designing entire integrated circuits. Both roles require similar technical skills and often overlap in the semiconductor industry, but they differ in scope and specific tasks.

What job categories do people searching Remote Rtl Design jobs in Boston, MA look for?

The top searched job categories for Remote Rtl Design jobs in Boston, MA are:

What cities near Boston, MA are hiring for Remote Rtl Design jobs?

Cities near Boston, MA with the most Remote Rtl Design job openings:

Infographic showing various Remote Rtl Design job openings in Boston, MA as of September 2026, with employment types broken down into 77% Full Time, 8% Part Time, and 15% Contract. Highlights an 100% Remote job distribution, with an average salary of $151,409 per year, or $72.8 per hour.

Senior/Principal Physical Design Engineer (remote)

Boston, MA โ€ข Remote

$148K - $152K/yr

Full-time

Posted 3 days ago

New


Job description

Senior/Principal Physical Design Engineer
Job Description:
We are seeking an experienced Physical Design / P&R Engineer to take a key role in delivering complex, high-performance ASICs from RTL/netlist through GDSII and tapeout. You’ll own critical aspects of physical implementation, including floorplanning, placement, CTS, routing, timing closure, and PPA optimization, working with advanced technologies such as RISC-V, DDR, and SerDes. Using industry-leading tools including Synopsys Fusion Compiler and Siemens Calibre, you’ll solve challenging physical design problems and help drive successful silicon outcomes. This is an opportunity to make a significant technical impact while collaborating with a highly experienced, multidisciplinary ASIC engineering team.
Essential Duties and Qualifications:
• Analyze and optimize designs to meet power, performance, and area (PPA) objectives while satisfying timing, signal integrity, reliability, and manufacturability requirements.
• Collaborate closely with RTL design, verification, DFT, analog/mixed-signal, packaging, and other engineering teams to ensure successful chip integration.
• Develop and optimize floorplans incorporating complex IP and high-speed interfaces, including DDR and SerDes.
• Develop, maintain, and improve physical design flows, scripts, methodologies, and automation to increase efficiency and design quality.
• Identify and resolve congestion, routing, timing, power integrity, and physical verification issues throughout the implementation process.
• Participate in design reviews and provide recommendations regarding floorplanning, physical architecture, implementation strategy, and PPA tradeoffs.
• Perform full-chip physical design implementation from synthesized netlist through GDSII, including floorplanning, power planning, placement, clock tree synthesis (CTS), routing, optimization, and timing closure.
• Perform physical verification and signoff activities using Siemens Calibre, including DRC and LVS verification and resolution of physical design violations.
• Perform static timing analysis and drive timing closure across multiple operating modes, process corners, and design constraints.
• Provide technical guidance and mentoring to other engineers and contribute to the continued development of the team's internal physical design capabilities.
• Support final design signoff and tapeout, ensuring all applicable physical design and verification requirements have been satisfied.
• Support integration and physical implementation of third-party and internally developed IP blocks.
• Support the physical implementation and integration of RISC-V processor-based designs and subsystems, including timing, power, and physical design considerations.
• Troubleshoot complex implementation and signoff issues and drive corrective actions through resolution.
• Utilize Synopsys Fusion Compiler for physical implementation, optimization, and design closure.
Qualifications:
• 10+ years of direct industry experience with ASIC and/or SoC design.
• BSEE/MSEE or equivalent
• Excellent problem-solving skills and attention to detail.
• Experience with industry standard development tools and methodologies.
• Familiarity with RISC architectures (e.g., ARM, MIPS).
• Proficiency in Synopsys Design Compiler and other EDA tools.
• Proven track record of first-pass successes.
• Self-starter with the ability to assume leadership roles.
• Strong background in RTL based digital IC design using Verilog/SystemVerilog
• Strong understanding of digital design principles.
• Willingness to mentor and develop less experienced engineers.