דרושים » חשמל ואלקטרוניקה » SoC Clocks Design Automation Engineer

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04/08/2026
Location: More than one
Job Type: Full Time
We are looking for a dedicated SoC Clocks Design Automation Engineer to join our Networking Silicon team. In this role, youll focus on developing and supporting clock-related design flows and methodologies for SoC and networking chips, ensuring efficient and high-quality design implementation. Youll also chip in to SoC top-level automation and integration activities, building on existing flow infrastructure to improve efficiency and consistency across projects. Introduction

What you'll be doing:

Develop and maintain design automation and methodologies for SoC and networking clock flows.

Collaborate with design, STA, and project teams to ensure timely and high-quality design closure.

Develop and improve SoC top-level automation scripts and flows built upon existing infrastructure and tools.

Support SoC integration and construction flow activities across multiple projects.

Assist in timing, power, and noise analysis to ensure efficient performance.
Requirements:
What we need to see:

B.Sc. or M.Sc. in Electrical or Computer Engineering, or relevant professional experience.

At least 2 years of confirmed experience in SoC design, design automation, or methodology development.

Strong programming or scripting skills in at least one language (Python preferred; Perl, Tcl, or Make are advantages).

Understanding of physical design concepts including placement, routing, timing closure, and ECO implementation.

Familiarity with EDA tools for synthesis, place-and-route, and timing analysis (Synopsys or Cadence flows).

Strong analytical, problem-solving, and soft skills.


Way to stand out from the crowd:

Experience developing or maintaining SoC design or automation flows.

Knowledge of timing-related analysis (crosstalk, noise, delay).

Background in power or timing optimization techniques.

Collaborative attitude with the ability to work effectively across multi-functional teams.

Self-motivated and eager to learn while improving existing design flows.
This position is open to all candidates.
 
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09/08/2026
חברה חסויה
Location: More than one
Job Type: Full Time
The System-On-Chip (SOC) group is looking for a strong RTL Design Engineer to own the SOC clocking logic for our next-generation networking chips. Clocks are the backbone of the SOC. In this role you will own the clock generation, distribution, and control logic for the entire chip - PLL and reference clock integration, clock muxing and dividers, glitchless switching, clock gating, reset synchronization, and the clock domain crossing infrastructure that every unit on the die depends on.

This is an RTL design role, not a circuit or transistor-level design role. You will translate micro-architecture specifications into high-quality synthesizable RTL, and drive that RTL through to silicon in close partnership with the micro-architecture, Design Verification, and Physical Design (backend) teams. You will also interact with CAD, Package Design, Software, and DFT teams.

What you'll be doing:

Owning the SOC clocking logic end to end: writing synthesizable Verilog/SystemVerilog RTL for clock generation, distribution, muxing, division, glitchless switching, gating, and reset synchronization, from micro-architecture specification through tape-out.

Defining and implementing the SOC clock and reset architecture together with the micro-architecture team - collecting clocking requirements from every unit on the chip and turning them into a coherent, verifiable design.

Owning clock domain crossing infrastructure and CDC closure across the SOC.

Partnering with the micro-architecture team to review specifications, close on design intent, and provide feedback on implementation cost, timing, area, and power.

Working hand-in-hand with the Physical Design (backend) team on clock tree implementation and constraints, partitioning, floorplan and timing feedback, trial synthesis, congestion and timing convergence, and physical design readiness.

Supporting Software and firmware teams on clock programming sequences, DVFS, and low-power/clock-shutdown flows.

Driving design quality: lint, CDC/RDC, formal checks, synthesis QoR, connectivity and structural checks.

Supporting SOC-level chip build and assembly, and developing/deploying automation flows that make RTL integration and design quality checking repeatable and scalable.

Supporting emulation, firmware, and post-silicon bring-up customers of your design.
Requirements:
What we need to see:

B.Sc./M.Sc. in Electrical Engineering or Computer Engineering.

3+ years of relevant experience in RTL/logic design.

Solid hands-on RTL design skills in Verilog/SystemVerilog, with a good understanding of synthesis, timing, and how RTL choices affect the physical implementation.

Experience taking a design from micro-architecture specification through verification and physical implementation.

Solid understanding of clocking and reset concepts: clock gating, clock muxing and dividers, glitchless clock switching, reset synchronization, and clock domain crossing.

Familiarity with design quality tooling (lint, CDC/RDC, formal, synthesis).

Great teammate with strong communication skills across micro-architecture, DV, and backend teams.


Ways to stand out from the crowd:

Passion for quality, and a track record of clean deliveries to physical design, DV, emulation, firmware, and other downstream customers.

Prior ownership of SOC-level clocking or reset architecture on a taped-out chip.

Experience with PLL/clock generator integration and clock tree constraint development with backend teams.
This position is open to all candidates.
 
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09/08/2026
Location: Tel Aviv-Yafo and Yokne`am
Job Type: Full Time
The System-On-Chip (SOC) group is looking for a Senior RTL Design Engineer to serve as the technical lead for clocks development on our next-generation networking chips. Clocks are the backbone of the SOC. In this role you will lead the development of the chip's clocking logic - PLL and reference clock integration, clock generation, distribution, muxing and dividers, glitchless switching, clock gating, reset synchronization, and the clock domain crossing infrastructure that every unit on the die depends on.

This is an RTL design and technical leadership role, not a circuit or transistor-level design role. Working from the clock architecture defined with the architecture and micro-architecture teams, you will lead its implementation in RTL, guide other engineers contributing to it, and drive it through to silicon in close partnership with Design Verification and Physical Design (backend). You will also interact regularly with CAD, Package Design, Software, and DFT teams.

What you'll be doing:

Acting as the technical lead for SOC clocks development - leading the implementation of the clocking logic from specification through tape-out and bring-up.

Working with the architecture and micro-architecture teams on the SOC clock and reset scheme: collecting clocking requirements from units across the chip, feeding back implementation and timing considerations, and translating the agreed scheme into a verifiable design.

Writing and reviewing synthesizable Verilog/SystemVerilog RTL for clock generation, distribution, muxing, division, glitchless switching, gating, and reset synchronization.

Leading and mentoring other RTL engineers working on clocking: reviewing designs, setting coding and quality standards, and distributing work across the team.

Working hand-in-hand with the Physical Design (backend) team on clock tree implementation, SDC/timing constraints, partitioning, floorplan feedback, trial synthesis, and timing convergence.

Partnering with Design Verification on clocking testplans, functional and gate-level debug, and coverage closure.

Supporting Software and firmware teams on clock programming sequences, DVFS, and low-power/clock-shutdown flows.

Representing clocking implementation in cross-functional design reviews with architecture, PD, DV, DFT, and CAD stakeholders.
Requirements:
What we need to see:

B.Sc./M.Sc. in Electrical Engineering or Computer Engineering.

8+ years of relevant experience in RTL/logic design, with multiple chips taken to tape-out.

Demonstrated technical leadership: leading a design area through implementation and tape-out, mentoring engineers, and coordinating across teams.

Expert hands-on RTL design skills in Verilog/SystemVerilog, with strong understanding of how RTL choices affect synthesis results, timing, area, and power.

Deep understanding of clocking and reset design: clock gating, clock muxing and dividers, glitchless clock switching, reset synchronization, and clock domain crossing.

Proficiency with design quality tooling - lint, CDC/RDC, formal verification, synthesis, and static timing analysis (STA) - including the ability to interpret results and drive fixes back into the RTL.

Experience taking a design from architecture and micro-architecture specification through verification, physical implementation, and silicon bring-up.

Great teammate with strong communication skills across micro-architecture, DV, backend, DFT, and software teams.


Ways to stand out from the crowd:

Prior hands-on experience with SOC-level clocking or reset logic on a taped-out chip.

Experience with PLL/clock generator integration and clock tree constraint development with backend teams.

Experience with high-speed networking, interconnect, or fabric designs.

Background with low-power design techniques (clock gating, DVFS, power domains, UPF).

Experience building automation for RTL integration, chip assembly, or design quality flows.
This position is open to all candidates.
 
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09/08/2026
Location: Tel Aviv-Yafo
Job Type: Full Time
we are establishing a strategic R&D center in Israel to drive the development of complex semiconductor chips that solve the critical 'data bottlenecks' enabling the future of AI at scale. As we expand our presence in Israel, We are looking for a Physical Design CAD Engineer with at least 3 years of hands-on experience in digital implementation flows. The ideal candidate is highly technical, curious, and eager to drive innovation by combining strong physical design knowledge with modern automation and GenAI-based methodologies.
This is a unique opportunity to take on meaningful technical ownership in a new site, implementing the parasitic extraction (PEX) methodologies and flows for chips that power the world's largest AI clusters. As a foundational member of the team, you will be responsible for the accuracy and efficiency of our extraction environment, ensuring that our high-speed designs are modeled with the highest precision from RTL to GDSII.
Key Responsibilities
The Engineer will develop, maintain, and improve CAD flows and methodologies for physical design teams, supporting advanced implementation stages from synthesis through place and route, timing closure, power optimization, and signoff readiness.
Key responsibilities include:
Develop and support physical design CAD flows using industry-standard EDA tools
Build automation infrastructure for implementation, analysis, reporting, and debug
Support design teams in areas such as synthesis, floorplanning, placement, CTS, routing, timing, power, and physical verification
Create scripts and utilities to improve productivity, quality of results, and flow robustness
Support and enhance flows based on Synopsys Fusion Compiler
Explore and integrate GenAI solutions to accelerate debug, automate repetitive tasks, improve reporting, and enhance engineering productivity
Analyze tool results, logs, QoR metrics, timing reports, congestion, utilization, power, and design-rule issues.
Requirements:
At least 3 years of experience in Physical Design, CAD, or implementation methodology
Strong understanding of digital physical design concepts, including synthesis, placement, CTS, routing, timing closure, and physical verification
Hands-on experience with Synopsys Fusion Compiler
Experience with scripting languages such as Tcl, Python
Ability to develop automation around EDA tools and large-scale design flows
Good understanding of timing, power, congestion, floorplanning, and QoR analysis
Strong debugging and problem-solving skills
Ability to work closely with multiple engineering teams and support complex design environments
High motivation to learn and apply GenAI technologies in semiconductor design flows.
Preferred Experience
Experience with additional tools such as PrimeTime, StarRC, ICC2, Innovus, Voltus, RedHawk, Calibre, or similar
Knowledge of STA, low-power design, UPF, EM/IR, extraction, or signoff flows
Experience building dashboards, regression systems, flow checkers, or automated report analyzers
Familiarity with LLMs, prompt engineering, AI agents, or GenAI-based coding/debug tools
Experience with Git, CI/CD, databases, or cloud-based compute environments.
This position is open to all candidates.
 
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09/08/2026
Location: Tel Aviv-Yafo
Job Type: Full Time
we are establishing a strategic R&D center in Israel to drive the development of complex semiconductor chips that solve the critical 'data bottlenecks' enabling the future of AI at scale. As we expand our presence in Israel, we're seeking a highly skilled Static Timing Analysis (STA) Engineer to join our local engineering powerhouse from the ground up.
This is a unique opportunity to take on meaningful technical ownership in a new site, executing the sign-off methodology for chips that power the world's most advanced AI clusters. As an STA Engineer, you will be deeply involved in the STA activities from chip partition and time budgeting through to final sign-off. You will bridge the gap between Architecture, Design, DFT, and Physical Design to ensure our high-performance silicon meets the aggressive timing targets required for next-generation connectivity.
Key Responsibilities
Execute the STA flow and sign-off methodologies, ensuring our products meet rigorous timing criteria for the most demanding data center environments
Collaborate closely with Architecture, Design, DFT, and Backend teams, participating in timing reviews and working with block owners to navigate the path to sign-off convergence
Develop, optimize, and manage complex SDC constraints, ensuring they are accurate and robust across multi-scenario environments
Analyze and resolve challenges related to cross-chip clock distribution networks and apply sophisticated margining techniques to ensure robust silicon across all process corners
Participate in design methodology improvements and tool automation, utilizing both industry-standard EDA tools and custom scripts to make our sign-off process faster and more efficient.
Requirements:
B.Sc. in Electrical Engineering or Computer Engineering
6+ years of hands-on experience in Static Timing Analysis (STA) at semiconductor companies, specifically working on advanced process technologies. (Note: Adjust years of experience based on the exact level you are targeting)
Deep expertise in multi-scenario STA, as well as timing and SDC constraint development and verification at the block and subsystem levels
Solid understanding of advanced margining methodologies, including OCV, AOCV, and POCV, from synthesis through to final sign-off
Solid knowledge of physical design flows (Synthesis, P&R, Physical Verification) and how they intersect with timing closure
Preferred Experience
Experience developing and validating constraints using industry-standard tools like Timing Constraints Manager (Synopsys) or TimeVision (Ausdia)
Proven track record of executing STA on complex Macro-level designs and supporting Full-Chip timing integration
Strong background in scripting (Tcl, Python, Perl) and automation to enhance timing closure efficiency.
This position is open to all candidates.
 
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06/08/2026
Location: Tel Aviv-Yafo and Yokne`am
Job Type: Full Time
We are looking for best-in-class Physical Design Engineers to join our outstanding Networking Silicon engineering team, developing the industry's best high-speed communication devices, delivering the highest throughput and lowest latency! Come and take a part in designing our groundbreaking and innovating chips, enjoy working in a meaningful, growing and highly professional environment where you make a significant impact in a technology-focused company.

What you'll be doing:

You will be in charge of developing full-chip physical design methodologies, Physical Verification development and support through all the projects, Tapeout activities for implementation of networking chips and SOCs.

Work closely with Full Chip Layout owners and block owners, project managers to assure high quality and timely convergence.

Come up with unique and creative solutions to the state of the art FCL physical design problems that are needed for our chips.

We expect you to run, debug, and approve Physical Verification flows across multiple projects, ensuring strict adherence to our high standards.

Participating and developing flow and tool methodologies for fullchip, physical design verification across multiple projects.
Requirements:
What we need to see:

B.SC./ M.SC. in Electrical Engineering/Computer Engineering (or equivalent experience).

You should have at least 5+ years of hands-on Full-chip layout and Physical Verification experience, demonstrating your proven expertise.

A strong background in Physical Verification methodology, including DRC / LVS / ANT / ERC / DFM in advanced process nodes is necessary.

Proficiency using Python, Tcl, Shell, Make scripting.

Experience in Linux environments.

AI tools orientation or alternatively a desire to learn.

Familiarity with physical build EDA tools, including Synopsys (ICC2/FC) and Cadence (Innovus).

Familiarity with Physical Verification tools: Synopsys (ICV), Siemens (Calibre)

Self-motivation, attention to detail, and good interpersonal skills.


Ways to stand out from the crowd:

Experience with data collection and analysis

Experience in methodology definition / flow owner of Full-chip / Place and Route

Great teammate.

Ownership, self-learning skills, and ability to work autonomously.
This position is open to all candidates.
 
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10/08/2026
חברה חסויה
Location: Tel Aviv-Yafo
Job Type: Full Time
we are establishing a strategic R&D center in Israel to drive the development of complex semiconductor chips that solve the critical 'data bottlenecks' enabling the future of AI at scale. As we expand our presence in Israel, we're seeking a visionary Principal DFT Engineer to help build our local engineering powerhouse from the ground up. This is a unique opportunity to take on meaningful product ownership in a new site, ensuring the reliability and testability of chips that power the world's largest AI clusters.
As a Principal DFT Engineer, you will provide technical leadership across the full DFT lifecycle-from architecture and specification through implementation, verification, and silicon bring-up. You will define and drive DFT strategy, establish robust methodologies, and lead execution to ensure high test quality and manufacturability. This role requires deep expertise, cross-functional influence, and the ability to drive DFT excellence across projects and teams.
This is a critical leadership position with high impact on first-pass silicon success and production quality for next-generation AI connectivity solutions.
Key Responsibilities
DFT Architecture & Technical Leadership
Define and own DFT architecture for complex SoCs, including Scan, MBIST, LBIST, JTAG/iJTAG, and ATPG strategies
Lead DFT planning, specification, and quality tracking across the project lifecycle
Provide technical leadership and drive DFT sign-off readiness to ensure successful tapeout
Execution Across the Full Lifecycle
Lead DFT implementation, integration, and verification at block, full-chip and chiplet levels
Own end-to-end DFT activities from specification through silicon bring-up and production support
Ensure high test coverage, robust pattern generation, and alignment with manufacturing requirements
Methodology & Cross-Functional Impact
Develop and drive scalable DFT methodologies, flows, and automation frameworks
Collaborate closely with RTL, Physical Design, STA, and Test Engineering teams to ensure design-for-test readiness
Optimize DFT integration across front-end and backend flows to improve quality, PPA, and turnaround time.
Requirements:
Bachelors degree in Electrical Engineering or related technical field (Masters preferred)
12+ years of experience in DFT design, implementation, and verification for complex ASIC/SoC designs
Proven experience in leading DFT activities across full chip development cycles
Deep expertise in DFT techniques including Scan, MBIST, LBIST, JTAG/iJTAG, and ATPG
Strong understanding of DFT and Physical Design flows, including timing implications and integration challenges
Experience with industry-standard DFT tools (Siemens Tessent, Synopsys TestMAX or equivalent)
Solid experience with DFT verification methodologies and coverage analysis
Strong scripting skills (Tcl, Python, or Perl) for automation and flow development
Preferred Qualifications
Experience with advanced process nodes (7nm and below)
Background in high-speed connectivity designs (PCIe, Ethernet, CXL, or similar)
Experience with hierarchical DFT methodologies and large multi-die or chiplet-based systems
Knowledge of silicon bring-up, production test flows, and yield optimization
Familiarity with STA, low-power design, and CDC as it relates to DFT integration
Strong leadership and communication skills, with ability to influence cross-functional teams globally.
This position is open to all candidates.
 
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09/08/2026
חברה חסויה
Location: Tel Aviv-Yafo
Job Type: Full Time
We are looking for best-in-class Physical Design Engineers to join our outstanding Networking Silicon engineering team, developing the industry's best high-speed communication devices, delivering the highest throughput and lowest latency! Come and take a part in designing our groundbreaking and innovating chips, enjoy working in a meaningful, growing and highly professional environment where you make a significant impact in a technology-focused company.

What you'll be doing:

Physical design of blocks according to specifications under challenging constraints targeting for the best power, area, and performance.

Be exposed and work on a variety of challenging designs (including high cell count and HS blocks). Resolving complex timing and congestion problems.

Daily work involves all aspects of physical design chip development (RTL2GDS) - synthesis, power and clock distribution, place and route, timing closure, power and noise analysis, and physical verification.

Taking part inflows development.
Requirements:
B.SC./ M.SC. in Electrical Engineering/Computer Engineering or equivalent experience.

1+ years of relevant experience.

Proven experience in RTL2GDS flows and methodologies.

Knowledge in physical design flows and methodologies (PNR, STA, physical verification).

Deep understanding of all aspects of Physical construction and Integration.

Knowledge in Physical Design Verification methodology LVS/DRC.

Familiarity with physical design EDA tools (such as Synopsys, Cadence, etc.).

Great teammate.
This position is open to all candidates.
 
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Location: Tel Aviv-Yafo and Haifa
Job Type: Full Time
Required Physical Design Engineer, SoC Static Timing Analysis
About the job
In this role, youll work to shape the future of AI/ML hardware acceleration. You will have an opportunity to drive cutting-edge TPU (Tensor Processing Unit) technology that powers our most demanding AI/ML applications. Youll be part of a team that pushes boundaries, developing custom silicon solutions that power the future of our TPU. You'll contribute to the innovation behind products loved by millions worldwide, and leverage your design and verification expertise to verify complex digital designs, with a specific focus on TPU architecture and its integration within AI/ML-driven systems.
Be part of a team that pushes boundaries, developing custom silicon solutions that power the future of our direct-to-consumer products. In this role, you will contribute to the innovation behind products loved by millions worldwide. Your expertise will shape the next generation of hardware experiences, delivering exceptional performance, efficiency, and integration.
We're the driving force behind our groundbreaking innovations, empowering the development of our cutting-edge AI models, delivering unparalleled computing power to global services, and providing the essential platforms that enable developers to build the future. From software to hardware our teams are shaping the future of world-leading hyperscale computing, with key teams working on the development of our TPUs, Vertex AI for Cloud, Global Networking, Data Center operations, systems research, and much more.
Responsibilities
Drive the sign-off timing convergence for high-performance designs.
Set up the timing constraints, define the overall static timing analysis (STA) methodology, set up the STA infrastructure and sign-off convergence flows, and work closely with block owners throughout the project for sign-off timing convergence.
Work with logic designers to drive architectural feasibility studies, develop timing, and explore RTL/design trade-offs for physical design closure.
Requirements:
Minimum qualifications:
Bachelor's degree in Electrical Engineering, a related technical field, or equivalent practical experience.
8 years of Physical Design experience including 2 years of experience with Static Timing Analysis (STA), including sign-off corner definitions, process margining, interface timing constraints, timing convergence, and setting frequency goals with technology scaling.
Experience in constraints development for subsystems or full System-on-Chip (SoC) architectures.
Preferred qualifications:
Proficiency with scripting languages commonly used in hardware automation (e.g., Tcl, Python, or Perl).
Deep familiarity with ASIC physical design flows and methodologies, including synthesis, place and route (P&R), formal verification, and clock domain crossing (CDC).
Solid fundamental knowledge of semiconductor device physics and transistor characteristics.
This position is open to all candidates.
 
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10/08/2026
חברה חסויה
Location: Tel Aviv-Yafo
Job Type: Full Time
we are establishing a strategic R&D center in Israel to drive the development of complex semiconductor chips that solve the critical 'data bottlenecks' enabling the future of AI at scale. As we expand our presence in Israel, we're seeking a visionary Junior Physical Design Engineer to help build our local engineering powerhouse from the ground up. This is a unique opportunity to take on meaningful product ownership in a new site, defining the backend execution and methodologies for chips that power the world's largest AI clusters.
As a Junior Physical Design Engineer, you will be a key architect of our silicon's physical reality. You won't just execute a flow-you will help establish our local execution culture and technical standards, owning the transformation of complex logic into high-performance silicon. You will drive the physical implementation journey from synthesis through signoff, ensuring our connectivity solutions meet the extreme performance, power, and area targets required for next-generation AI infrastructure. If you thrive on solving complex challenges in deep-submicron processes and want to shape the backend methodology for AI infrastructure connectivity, this is your opportunity.
Key Responsibilities
Physical Implementation & Execution
Be part of the founding Backend team in Israel, playing a critical role in establishing local execution culture and technical standards
Take full responsibility for physical implementation journey including Synthesis, Floorplanning, Place & Route, and Clock-Tree Synthesis (CTS)
Own macro-level implementation with deep hands-on experience in floorplanning and complex routing
Signoff & Design Integrity
Drive final stages of design integrity, owning Timing signoff (STA), Physical Verification (DRC/LVS), and Reliability analysis (EMIR)
Ensure first-pass silicon success through rigorous signoff flows and analysis
Apply Logic Equivalence Checking (LEC) and other verification techniques to guarantee design correctness
Methodology Development & Cross-Functional Collaboration
Participate in defining and refining Backend methodologies with autonomy to improve workflows and tool automation
Work closely with Architecture, Design, and DFT teams to navigate challenges of advanced process nodes and high-speed connectivity
Leverage scripting and automation to make engineering environment faster and more robust.
Requirements:
Bachelors degree in Electrical Engineering or a related technical field
Foundational understanding of the RTL-to-GDS flow, with academic or internship exposure to areas such as floorplanning, placement, and routing
Familiarity with advanced process technologies (e.g., 7nm and below) through coursework or hands-on projects
Basic experience with signoff methodologies and tools, including STA, Logic Equivalence Checking (LEC), DRC, and EMIR analysis
Working knowledge of TCL or Python scripting for simple automation and support of EDA tool flows
Preferred Qualifications
Experience with full-chip level implementation and integration
Knowledge of Power and Noise analysis (SI/PI) to optimize high-performance silicon
Familiarity with Design-for-Test (DFT) requirements and their impact on physical layout
Experience with industry-standard EDA tools (Synopsys Fusion Compiler/ICC2, Cadence Innovus)
Background in high-speed interface designs or connectivity protocols.
This position is open to all candidates.
 
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דיווח על תוכן לא הולם או מפלה
מה השם שלך?
תיאור
שליחה
סגור
v נשלח
תודה על שיתוף הפעולה
מודים לך שלקחת חלק בשיפור התוכן שלנו :)
09/08/2026
Location: Tel Aviv-Yafo and Yokne`am
Job Type: Full Time
We are looking for best-in-class Physical Design Engineers to join our outstanding Networking Silicon engineering team, developing the industry's best high-speed communication devices, delivering the highest throughput and lowest latency! Come and take a part in designing our groundbreaking and innovating chips, enjoy working in a meaningful, growing and highly professional environment where you make a significant impact in a technology-focused company.

What you'll be doing:

Physical design of blocks according to specifications under challenging constraints targeting for the best power, area, and performance.
Be exposed and work on a variety of challenging designs (including high cell count and HS blocks). Resolving complex timing and congestion problems.
Daily work involves all aspects of physical design chip development (RTL2GDS) - synthesis, power and clock distribution, place and route, timing closure, power and noise analysis, and physical verification.
Taking part inflows development.
Requirements:
B.SC./ M.SC. in Electrical Engineering/Computer Engineering or equivalent experience.
2+ years of relevant experience.
Proven experience in RTL2GDS flows and methodologies.
Knowledge in physical design flows and methodologies (PNR, STA, physical verification).
Deep understanding of all aspects of Physical construction and Integration.
Knowledge in Physical Design Verification methodology LVS/DRC.
Familiarity with physical design EDA tools (such as Synopsys, Cadence, etc.).
Great teammate.
This position is open to all candidates.
 
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הגשת מועמדותהגש מועמדות
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עדכון קורות החיים לפני שליחה
8773912
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