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09/08/2026
Location: Tel Aviv-Yafo
Job Type: Full Time
We are now looking for a Senior Chip Design Engineer to join our Switch Silicon team. As a Chip Design Engineer in our Networking business unit, you'll join a group of passionate engineers to design and implement the next generation state-of-the-art Switch Silicon chips. In this position, you'll make a real impact in a dynamic, technology-focused company while developing the industry's best high-speed communication devices, delivering the highest throughput and lowest latency!

What You'll Be Doing:

Work in a design/verification team which develops core units within the Switch silicon as a dynamic verification or RTL design engineer.

Build reference models, verify and simulate chip blocks/entities according to specifications under challenging constraints with high orientation to power, area, and performance.

Design RTL of units/blocks according to Arch. specifications under challenging constraints with high orientation to power, area, and performance.

RTL synthesis, timing, supporting verification, and silicon post TO activities.

Work closely with multiple teams within organizations such as Architecture, u-arch, Full chip Micro-Architecture, BE, and FW.
Requirements:
Electrical Engineering B.Sc. or Computer Engineering B.Sc. graduate with high scores or equivalent experience.

5+ years of experience in chip design.

Knowledge in network protocols and/or HPC and distributed calculations - advantage.

A team player with good communication and interpersonal skills.
This position is open to all candidates.
 
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09/08/2026
Location: Tel Aviv-Yafo
Job Type: Full Time
We are now looking for a Senior Chip Design Engineer to join our Switch Silicon team. As a Chip Design Engineer at NVIDIA's Networking business unit, you'll join a group of passionate engineers to design and implement the next generation state-of-the-art Switch Silicon chips. In this position, you'll make a real impact in a dynamic, technology-focused company while developing the industry's best high-speed communication devices, delivering the highest throughput and lowest latency!

What You'll Be Doing:

Work in a design/verification team which develops core units within the Switch silicon as a dynamic verification or RTL design engineer.

Build reference models, verify and simulate chip blocks/entities according to specifications under challenging constraints with high orientation to power, area, and performance.

Design RTL of units/blocks according to Arch. specifications under challenging constraints with high orientation to power, area, and performance.

RTL synthesis, timing, supporting verification, and silicon post TO activities.

Work closely with multiple teams within organizations such as Architecture, u-arch, Full chip Micro-Architecture, BE, and FW.
Requirements:
Electrical Engineering B.Sc. or Computer Engineering B.Sc. graduate with high scores or equivalent experience.

5+ years of experience in chip design.

Knowledge in network protocols and/or HPC and distributed calculations - advantage.

A team player with good communication and interpersonal skills.
This position is open to all candidates.
 
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09/08/2026
Location: More than one
Job Type: Full Time
We are seeking a highly motivated High-Performance System Architect to join our team of experts and help shape the future of high-performance and ML / AI computing. Our next-generation NVL systems will be at the forefront of connecting and powering the world's most advanced compute clusters, from supercomputers used in AI research to high-performance clusters used at almost every industry today, such as car and Pharmaceutical. As a high-performance system architect, you will have the opportunity to work on some of the most cutting-edge technology and help to drive the innovation of our next generation networks that will be used by top researchers and engineers around the world.

What youll be doing:

Define the NVL system architecture end-to-end, by internal requirements and customers requirements through all product life cycles (post/pre silicon, on deployments).

Research of various solutions to enable the next large-scale-high-performance computing clusters. The position spans over various layers from algorithms, software, firmware, and HW.

Developing models for simulations and performance testing, analysing the results and development of future HW and SW.

Collaborate with cross-functional teams, including other architecture teams, logic design, system software, firmware, and research teams, to ensure the successful execution of the project.
Requirements:
What we need to see:

B.Sc, M.Sc, or Ph. D degree in Computer Science, Computer Engineer, or Electrical Engineer.

At least 5 years of industry or research experience in computer networks.

Excellent understanding of large-scale networks behaviour and the effect of distributed computing workloads effect on the network.

Experience in development of simulation environments.

Possess strong managerial, problem solving and critical thinking skills.

Ability to work and operate in a highly dynamic environment.

Partner with multiple groups in the organization.


Ways to stand out of the crowd:

Strong understanding in network protocols - such as InfiniBand, IP, TCP and RoCE and network topologies.

Good knowledge in Python, C++.

Good knowledge with AI models.

Familiarity with HPC environments, routing algorithms, Omnet++ and NS3 simulation environments.
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
We are looking for a performance modeling engineer to join the team and shape, optimize, and explore our future networking chips and solutions. The role is cross-disciplinary, collaborating with hardware, software, and research teams across the wider company. You will lead workgroups towards technical solutions that will influence the heart of cutting-edge networking products. You will solve complex problems, develop innovative solutions and be instrumental in determining the architecture of our next generation of networking solutions.

What you'll be doing:
Thoroughly understand our networking solutions across all performance related aspects.
Develop a C++ simulation model to define and evaluate architectural options for our next generation of networking products.
Understand different trade-offs related to solving performance bottlenecks.
Collaborate and lead technical solutions within architecture, uarch, hardware and software teams.
Analyze and model the communication patterns of key DL, GAI, inference, and training applications.
Explore innovative ideas to improve and optimize our chip systems performance.
Requirements:
What we need to see:
BSc/MSc in Computer Science, Electrical Engineering, from a known university.
Experience in Chip deign projects, understanding the challenges of HW uarch impelementations.
Excellent verbal and written communication skills, orchestrating cross teams activities.
High level of ownership and the ability to drive solutions and initiatives.
Proficiency in C++ and Python.
5+ years of hands-on experience.
Strong debug skills.

Ways to stand out from the crowd:
Master's degree in Electrical Engineering, Computer Science or related technical field.
Demonstrated ability to innovate and lead new technologies leading to product impact.
Experience with NVLink/Ethernet/IB technologies.
This position is open to all candidates.
 
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09/08/2026
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
As a chip design Engineer in our Networking business unit, you'll join a group of passionate engineers to design and implement the next generation state of the art Switch Silicon chips. In this position, you'll make a real impact in a dynamic, technology-focused company while developing the industry's best high-speed communication devices, delivering the highest throughput and lowest latency!

What you'll be doing:

Work in a combined design and verification team which develops some of the switch silicon core units

Build reference models, verify and simulate chip blocks/entities according to specifications under challenging constraints with high orientation to power, area, and performance.

Work closely with multiple teams within organizations such as Architecture, Micro- Architecture, and FW.
Requirements:
B.Sc. in Electrical/Computer Engineering or equivalent experience.

5+ years of experience in Verification or RTL design.

Knowledge in network protocols and/or HPC.

A team player with good communication and interpersonal skills.
This position is open to all candidates.
 
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09/08/2026
Job Type: Full Time
We are looking for an outstanding Senior Networking Software Architect to join the NIC/DPU Software and Firmware Architecture group. In this role, you will help define the next generation of our datacenter and AI networking platforms, with focus on DPU management, QoS, performance, telemetry, and software architecture across stacks. You will work closely with hardware designers, firmware/kernel driver teams, system engineers, validation, product management and customers. The role spans early architecture definition, pre-silicon design, bring-up, and production readiness for large-scale AI and cloud datacenter deployments.

What Youll Be Doing:

Own software and system architecture for next-generation DPU management, QoS, performance, telemetry, and observability features.

Define end-to-end control and management flows across DOCA, host drivers, embedded firmware, BMC, management controllers and external management systems.

Specify telemetry and observability requirements, including counters, logs, traces, events, health monitoring, debug data, and streaming telemetry.

Define management interfaces and APIs for configuration, provisioning, lifecycle operations, diagnostics, and field serviceability.

Write clear architecture specifications, interface definitions, flow diagrams, and design documents for software, firmware, and system teams.

Partner with R&D teams to translate high-level architecture into implementable designs and guide features through development, validation, silicon bring-up, and production.

Analyze system performance bottlenecks, interoperability issues, telemetry gaps, and customer-reported issues, then feed learnings into future architecture.

Collaborate with system and cluster architects to ensure NIC/DPU features fit end-to-end AI datacenter and cloud networking designs.
Requirements:
What We Need To See:

B.Sc. or M.Sc. in Computer Engineering, Computer Science, Electrical Engineering, or equivalent experience.

9+ years of experience in networking, system software, embedded software, firmware, or datacenter infrastructure.

Proven experience in software architecture, or technical leadership roles.

Deep understanding of networking concepts and protocols such as Ethernet, TCP/IP, RDMA/RoCE, congestion control, QoS, virtualization overlays, and traffic management.

Strong background with DPUs, SmartNICs, or other high-performance networking devices.

Experience with system management, provisioning, monitoring, telemetry, diagnostics, or lifecycle-management flows.

Familiarity with management protocols and frameworks such as Redfish, PLDM, MCTP, IPMI, gNMI, SNMP, Netconf, REST, or gRPC-based APIs.

Ability to lead cross-functional architecture discussions across software, firmware, hardware, validation, product, and customer-facing teams.

Excellent written and verbal communication skills, including the ability to create clear architecture documents and present trade-offs.


Ways To Stand Out From The Crowd:

Experience defining software architecture for DPU products, including management, telemetry, QoS, performance, security, virtualization, or offload features.

Hands-on background with Linux networking, device drivers, firmware, embedded Linux, BMC software, DOCA, DPDK, OVS or Kubernetes networking.

Experience with performance counters, profiling tools, eBPF, Prometheus, Grafana, dashboards, heat maps, or large-scale telemetry systems.

Experience in defining and developing GAI-based analysis tools to extract insights from telemetry data and streams.

Background in RAS, diagnosability, serviceability, field failure analysis, production debug, or customer escalation handling.
This position is open to all candidates.
 
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09/08/2026
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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09/08/2026
Location: More than one
Job Type: Full Time
We are seeking a Senior System Management Architect to lead the management architecture for our advanced SmartNIC cards. You will be the resident expert for SmartNIC system management, ensuring that NIC ASICs, Baseboard Management Controllers (BMCs), MCUs, CPUs, and CPLDs operate in perfect unison. You will own the lifecycle management specifications for SmartNIC platforms-from factory provisioning and day-one deployment to complex orchestrated reset flows and secure recovery. If you are someone who enjoys looking at a high-level system diagram and then immediately diving into the I2C/I3C bus topologies and PLDM command structures required to make it work, this role is for you.

What you'll be doing:

System Architecture & Flow Definition: Define and document comprehensive production, provisioning, update, recovery and reset flows for SmartNIC cards. Crucially, you will ensure that these board-level architectural decisions perfectly align with and support overarching platform-level needs, orchestrating seamless coordination between the NIC ASIC, BMC, CPU, and peripheral components.

Security & Provisioning: Specify security provisioning flows including OTP fusing, secure boot enablement, attestation key injection, certificate chain management, RPMC key derivation, and PQC (Post-Quantum Cryptography) requirements. Define IPN-to-OPN transition and component locking procedures.

Protocol Implementation & Guidance: Specify the use of standard management protocols (MCTP, PLDM, SPDM, NC-SI) across internal board interfaces to achieve secure boot, firmware updates, and telemetry gathering.

Hardware/Software Intersect: Dive deep into device-level hardware and software behaviour. Define CPLD logic requirements, power-sequencing dependencies, and reset orchestration (e.g., handling PCIe PERST#, SBR, and forced resets) for multi-host and standalone SmartNIC environments.

Interface Management: Architect intra-board communication pathways using PCIe, I2C/I3C, USB, and SPI, ensuring robust out-of-band (OOB) and in-band management connectivity.

Cross-Functional Leadership: Collaborate tightly with Production teams, Hardware and Firmware Engineering, NIC FW/Driver teams, and QA to translate your architectural specifications into implementable, testable realities.

Technical Documentation: Author rigorous technical specifications, test plans, and architectural design documents to guide both development and factory production.
Requirements:
What we need to see:

Deep System-Level Perspective: Proven ability to understand complex computing or networking systems top-to-bottom, with a specific background in SmartNIC boards, chassis, or network tray architectures.

Device-Level Expertise: Hands-on experience debugging or architecting flows involving BMCs (e.g., OpenBMC), MCUs, CPUs, and complex networking ASICs.

Protocol Fluency: Strong working knowledge of modern platform management and security protocols, specifically MCTP, PLDM (Type 2, 5, etc.), SPDM, and NC-SI.

Hardware Interface Knowledge: Deep familiarity with board-level communication buses (I2C, I3C, SPI, USB) and system interconnects (PCIe architecture, including link states and reset mechanisms).

Analytical Documentation Skills: Exceptional ability to write clear, unambiguous technical specifications, state-machine descriptions, and sequence diagrams.

Experience Level: Typically requires a BS/MS in Electrical Engineering, Computer Engineering, Computer Science, or a related field, alongside 8+ years of relevant industry experience.

Ways to stand out from the crowd:

Experience with Redfish API definitions and OOB network infrastructure.

Familiarity with hardware root of trust (HRoT / eROT) concepts and secure boot architectures.

Experience with PLDM firmware update bundle packaging and update agent implementation.

Experience with production line tooling, factory provisioning, and manufacturing test flows.
This position is open to all candidates.
 
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09/08/2026
Job Type: Full Time
Join us, the industry leader in high-speed communication devices, as a Physical Design Engineer in our Networking Silicon engineering team. You will develop innovative chips with outstanding efficiency and minimal latency. This opportunity lets you be part of a team leading modern technology, where your contributions will have a meaningful impact in a dynamic and inventive environment. We value collaboration, inclusion, and excellence, ensuring our technology remains world-class and our team members are supported to succeed.

What you'll be doing:

Engaging in the physical build of blocks according to specifications under challenging constraints, targeting efficient power, area, and performance.

Working on a variety of exciting builds, resolving complex timing and congestion issues with precision.

Engaging in all facets of physical chip build development (RTL2GDS), including synthesis, power and clock distribution, place and route, timing closure, power and noise analysis, and physical verification.

Contributing to flow development to improve and innovate our processes.

Collaborating with a team of outstanding engineers to achieve flawless integration and implementation of builds.
Requirements:
B.SC./ M.SC. in Electrical Engineering/Computer Engineering or equivalent experience.

An extensive grasp of all facets related to physical construction and integration.

Relevant experience in physical build engineering.

A great teammate with a passion for innovation and excellence.
This position is open to all candidates.
 
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8773253
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09/08/2026
Location: Tel Aviv-Yafo
Job Type: Full Time
Our Advanced Development Network Engineer role in Israel offers a special chance to contribute to large-scale network simulations for innovative AI datacenter research and development. You will be part of a dynamic team that values creativity and collaboration. If you are enthusiastic about technology and eager to build a significant difference, this is the place for you!

What you'll be doing:

Developing a brand new digital twin powered by CUDA technology for advanced research on data centers.

Collaborating with a team of extraordinary engineers and researchers to develop and implement innovative solutions.

Partnering with diverse teams to ensure smooth integration and deployment of network solutions.

Continuously exploring new technologies and methodologies to improve our network capabilities.
Requirements:
What we need to see:

Bachelors degree in Computer Science, Electrical Engineering, or a related field.

5+ years of experience in computer science, network engineering or related fields.

Excellent problem-solving skills.

Outstanding collaboration and communication skills.


Ways to Stand Out From the Crowd:

Hands-on experience developing CUDA applications

Extensive knowledge of network protocols

Proficient knowledge of extensive network simulations and AI datacenter ecosystems.
This position is open to all candidates.
 
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8773215
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Location: Herzliya
Job Type: Full Time
As a member of our CAD team, you will architect, develop, maintain and improve physical design verification (PDV) flows. The role requires you to work on flow and run-set development for various technology nodes and tool sets. Working alongside the CAD team, you will be collaborating with the custom digital/analog/mixed-signal design, physical design (PD) and chip integration teams. You will need to have a deep understanding of design rule checks (DRC) and layout versus schematic (LVS) runsets, writing from scratch and/or modify existing ones. Also, you should have worked with Dummy Metal Fill generation and Design for Manufacturability (DFM) rules at different technologies.
Responsibilities
Develop, improve and maintain all aspects of physical verification flow and methodology
Coordinate the effort of validating flows, improving for custom checks and data generation
Work with the design and PD teams to facilitate the chip design process
Code custom PDV rule decks such as Electrical rule checks (ERC) and Programmable ERCs
Collaborate with tool vendors and foundries for PDK performance enhancements
Requirements:
Educatio: Minimum requirement of BS + 8 years of relevant industry experience
Key qualifications
Requires experience in Silicon chip design flows, including place-and-route (PnR) implementation flows
Expertise in Calibre/ICV runset coding for DRC/LVS/ERC/MFILL is required. Rule coding in PERC is a plus
Tapeout support and SoC chip-level PDV debug experience in various technology nodes is desirable
Hands-on experience with PnR tools and physical implementation flow is preferred
Knowledge/scripting in programming languages such as Perl, Python, Tcl, Shell, Makefile and/or C++
Deep understanding of Silicon technology and experience with flow development in advanced nodes
This position is open to all candidates.
 
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8772094
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Location: Herzliya
Job Type: Full Time
As a Silicon Validation/Emulation Design Engineer, you will work in a team developing Wireless SoCs with custom hardware accelerators, as well as multiple ARM-based sub-systems. You will be a key contributor in our pre-silicon hardware validation efforts using Cadence Palladium emulation platforms, enabling early system integration and hardware validation. You will work closely with SoC architects, RTL designers, and verification engineers to ensure our designs are thoroughly validated before tape-out. You will help define the processes, methods, and tools for emulation environment development and debug of large complex SoCs.
If you enjoy a fast-paced and ambitious environment, collaborating with people across different functional areas, and thriving during crisis times, we encourage you to apply and join us!
Description
Building and maintaining Palladium emulation environments, including compile flows, netlist preparation, memory modeling, and clock/reset configurations.
System-level debug and root cause analysis of complex hardware issues on the emulation platform.
IP-level debug and validation, working closely with IP owners to isolate and resolve design issues.
Development and implementation of automation aids, flows, and scripts to improve Palladium build efficiency, debug turnaround, and platform utilization.
Performance profiling and optimization of emulation models to maximize execution speed.
Collaboration with multi-disciplinary groups to make sure emulation deliverables are on schedule and support critical program milestones.
Responsibilities
Own and maintain Palladium emulation build flows for SoC and subsystem-level models
Drive debug and triage of emulation model issues, working with RTL designers and verification engineers
Support system-level hardware validation efforts and hardware integration
Develop reusable debug methodologies and collateral to accelerate issue resolution
Optimize emulation model performance through compile tuning, partitioning strategies, and platform configuration
Thoroughly document flows, debug procedures, and best practices
Collaborate with cross-functional teams to define emulation requirements and support prototype hardware validation
Requirements:
Proven experience with Cadence Palladium (or equivalent emulation platforms such as Synopsys ZeBu), including build flows, compile optimization, and platform bring-up
Strong debugging skills with experience in system-level and IP-level debug on emulation platforms
Experience with emulation compile flows, including synthesis for emulation, memory compilation, clock modeling, and I/O abstraction
Proficiency in debug tools and methodologies (waveform analysis, signal probing, assertion-based debug, transactors)
Solid understanding of RTL design concepts, SoC architectures, ARM-based subsystems, and standard bus protocols (AXI, AHB, APB)
Experience developing and maintaining automation scripts (Python, Tcl, Perl, Shell) to streamline emulation workflows
Strong analytical and problem-solving skills with ability to debug complex system-level issues
Experience with Wireless SoC applications (Wi-Fi, Bluetooth, cellular) - strongly preferred
Excellent communication and collaboration skills to work effectively across functional teams
Experience with version control systems (Git, Perforce) and CI/CD integration for emulation flows
This position is open to all candidates.
 
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8772090
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06/08/2026
Location: Rosh Haayin
Job Type: Full Time
We are seeking an experienced and hands-on engineering leader
to drive product quality, reliability, and performance across NPI, manufacturing, and the installed base. The role serves as a technical focal point for complex multidisciplinary issues, leading investigations, task forces, and improvement initiatives that enhance product quality , manufacturing readiness, and customer satisfaction.
What Will You Do?
Product Quality and Reliability:
Own product quality and reliability performance across NPI, manufacturing, and the installed base.
Define, monitor, and analyze quality metrics, reliability indicators, and field performance trends.
Consolidate quality and performance data from internal operations, contract manufacturers, and field systems into actionable insights and management dashboards.
Lead root-cause investigations and corrective/preventive actions (CAPA) for high-impact product and field issues.
Identify systemic issues, prioritize improvement opportunities, and drive cross-functional execution plans to improve product quality, reliability, and customer experience.
NPI, Manufacturing & Installed Base Support:
Drive quality and reliability readiness throughout NPI, validation, and production ramp-up activities.
Lead investigations into complex production, integration, and field failures involving multidisciplinary system interactions.
Partner with Manufacturing, Service, Operations, and Supply Chain teams to improve product stability, serviceability, and operational performance.
Drive implementation of calibration, alignment, validation, and test methodologies that improve quality, consistency, and manufacturing efficiency.
Support contract manufacturers and production teams in resolving critical technical and quality-related challenges.
Continuous Improvement & Change Management:
Lead engineering improvement initiatives based on production performance, customer feedback, reliability data, and field experience.
Drive product robustness, manufacturability, serviceability, and lifecycle performance improvements.
Own execution of Engineering Change Orders (ECOs), product structure management, and change implementation through CCB processes.
Lead periodic product performance reviews and drive closure of improvement actions across functions.
Requirements:
B.Sc. or higher in Mechanical Engineering, Electrical Engineering, Systems Engineering, or a related discipline.
7+ years of experience in Product Engineering, Systems Engineering, Integration Engineering, Reliability Engineering, NPI, Manufacturing Engineering, or related technical leadership roles.
Strong hands-on experience with complex multidisciplinary systems and industrial products.
Proven ability to lead complex technical investigations and drive cross-functional issue resolution to closure.
Deep understanding of system integration, manufacturing processes, field support, and product lifecycle management.
Experience leading root-cause analysis, reliability improvement programs, and corrective/preventive actions.
Strong analytical and data-driven problem-solving skills.
Excellent communication, leadership, and stakeholder management capabilities.
Preferred Skills & Experience:
Experience with industrial printing systems, capital equipment, or other complex electromechanical products.
Strong background in NPI, manufacturing scale-up, and product lifecycle support.
Experience working with contract manufacturers and global operations.
Knowledge of quality and reliability methodologies, statistical analysis, and failure analysis techniques.
Experience leading task forces, engineering reviews, and cross-functional technical initiatives.
Familiarity with PLM, ECO, and configuration management processes.
Experience with AI, data analytics, Python, or similar technologies - significant advantage.
Fluent in written and spoken English.
This position is open to all candidates.
 
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8772042
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