Logga in
Sök med AILogga in
JobbSafariLediga jobbMaster Thesis: Quantitative Characterization of Low-Power RTL Design Patterns

Master Thesis: Quantitative Characterization of Low-Power RTL Design Patterns

Ericsson AB

Sammanfattning

This opportunity involves conducting a thesis project focused on low-power RTL design at Ericsson in Stockholm, Sweden. The role includes characterizing common RTL design patterns for power, performance, and area, utilizing GenAI tools for design exploration, and creating a reusable low-power component library. The project aims to quantify the impact of established design techniques and challenge conventional assumptions with data-driven insights.
Visa hela jobbannonsen

Det här erbjuder vi

Opportunity to work on innovative solutions to complex problems.Collaborative environment with a diverse team of innovators.Encouragement of diverse and inclusive workplace culture.

Stockholm

Ansök senast: Öppet tillsvidare
Publicerad: 2026-09-23

Beskrivning

Join our Team

About this opportunity:

Low-power RTL design often leans on established "best practices" - Gray-coded counters, clock-gated FSMs, RAM-based FIFOs, and more. These techniques are widely accepted, yet their true PPA (Power, Performance, Area) impact is rarely quantified in a controlled, isolated way. Assumptions may break under realistic parameterization, specific conditions, or different technology nodes.

In this thesis, you will deliver quantified, evidence-based characterization of common low-power RTL patterns. Instead of rules of thumb, you will systematically sweep design alternatives for the same function, measure them (including glitch power), and identify the knee points where a technique starts to pay off. You will leverage GenAI tooling to accelerate RTL variant and stimuli generation and enable broad design-space exploration. Deliverables include a reusable low-power component library, a proof-of-concept flow, and an HTML "cookbook" dashboard showing savings and trends. Results will reveal relative trends and knee points between design choices - not replace post-layout, sign-off-quality power analysis.


What you will do:


  • Characterize common RTL design patterns for power (dynamic, static, glitch), performance, and area in an idealized/controlled scope.
  • Build and use an Ericsson-silicon-specific analysis framework based on pre-layout netlist context, gate-level simulation (GLS) for accurate activity annotation, and glitch power analysis to capture secondary glitch contributions often missed by standard methods.
  • Confirm or challenge widely held low-power assumptions with hard numbers.
  • Identify knee points for savings via parametric modules (e.g., as a function of width, depth, activity).
  • Create a reusable low-power RTL component library with documented savings (internal git repo).
  • Cover common IP building blocks with multiple functionally equivalent variants, for example:
    • Muxes (one-hot, AND-OR with registered selects, avoiding cascaded priority chains)
    • Memories (per-bank enable gating, Gray-coded address pointers, validation/quantification of sleep/retention modes, entry/exit energy cost, wake-up latency trade-offs)
    • FIFOs (shift-based vs. RAM-based restructuring, per-entry write gating)
    • Counters (Gray-coded, LFSR, segmented high-bit counters)
    • Control FSMs (clock-gated with registered one-hot selects, Gray state encoding for sequential transitions)
    • Interfaces (clock-gated arbiters, balanced grant trees, crossbars)
  • Package the findings into a proof-of-concept flow and an HTML dashboard "cookbook" that presents measured savings and trends.


The skills you bring:

  • Master's studies in Electrical/Computer Engineering, Computer Science, or similar.
  • Background in computer architecture, ASIC design, RTL HDL coding, and testbench design using SystemVerilog.
  • Working knowledge of UVM and scripting (Tcl/Python) for EDA tools is preferred.
  • Curiosity to validate conventional wisdom with data, and discipline to design controlled experiments.


Why join Ericsson?

At Ericsson, you'll have an outstanding opportunity. The chance to use your skills and imagination to push the boundaries of what's possible. To build solutions never seen before to some of the world's toughest problems. You'll be challenged, but you won't be alone. You'll be joining a team of diverse innovators, all driven to go beyond the status quo to craft what comes next.

What happens once you apply?

Click Here to find all you need to know about what our typical hiring process looks like.Encouraging a diverse and inclusive organization is core to our values at Ericsson, that's why we champion it in everything we do. We truly believe that by collaborating with people with different experiences we drive innovation, which is essential for our future growth. We encourage people from all backgrounds to apply and realize their full potential as part of our Ericsson team. Ericsson is proud to be an Equal Opportunity Employer. learn more.

Primary country and city: Sweden (SE) || Stockholm

Req ID: 791542

Ansök till tjänsten

Master Thesis: Quantitative Characterization of Low-Power RTL Design Patterns

Denna arbetsplats har annonserats på Ericsson-tjänsten den 2026-09-23 och publicerades av Ericsson.
Tillbaka till toppen

OM FÖRETAGET

Ericsson AB
Visa alla jobb för Ericsson AB

Hittade du inte vad du letade efter?

Beskriv med dina egna ord vad du söker, precis som om du skulle förklara det för en kompis. Josi hittar jobb som matchar dig på riktigt.
Testa nu

Sök efter fler liknande jobb

StockholmForskning och utvecklingIngenjörThesis workEngineerBachelor's ThesisMaster's Thesis

Läs också

Jessica på Ericastiftelsen: Ett krävande jobb kräver en generös jobbkultur
Jobbkultur

Jessica på Ericastiftelsen: Ett krävande jobb kräver en generös jobbkultur

Att möta barn och unga i terapi är ett intensivt arbete med stort ansvar. Jessica på Ericastiftelsen berättar om varför handledning, erfarna kollegor och en kultur där det går att be om hjälp är avgörande för att göra jobbet bra.

Lästid 5 min

Liknande jobb

Visa alla lediga jobb
Vattenfall

Thesis Work - Digital Process Bus for Protection Systems in Offshore Wind Farms

Solna
22/9 – tillsvidare

Jobb per stad

Det är enklare än någonsin att söka jobb – men svårare än någonsin att hitta rätt. Det vill vi ändra på. JobbSafari är din guide genom arbetslivet, byggd för att matcha rätt person med rätt möjlighet bland tusentals lediga jobb i Sverige.

JobbSafari är en del av Duunitori Group – Duunitori är Finlands största jobbsökmotor och en betrodd partner inom rekrytering, rekryteringsmarknadsföring och employer branding.

Stockholm, Sweden

JobbSafari AB

Grev Turegatan 11A

114 46 Stockholm, Sweden

info@jobbsafari.se

+46 (0) 8 515 10 774

Helsinki, Finland

Duunitori Oy

Toinen Linja 7

00530 Helsinki, Finland

asiakaspalvelu@duunitori.fi

+358 44 980 3558

Oslo, Norway

JobbSafari AB

c/o Accountor AS

Tangen 75

4608 Kristiansand, Norge

info@jobbsafari.se

+46 70 314 59 79

  • jobbsafari.se
  • duunitori.fi
  • jobbsafari.no
  • allaloner.se
  • jobbland.se