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Working student: Physics-Based Circuit-Compatible SPICE model for Ferroelectric Tunnel Junction(m/w/x)

Fraunhofer-Gesellschaft
Dresden

You will review and develop models for ferroelectric tunnel junctions, ensuring accurate implementation and integration into circuit simulators while documenting the entire process.

Anforderungen

  • •Bachelor's degree in relevant field
  • •Moderate programming skills in Verilog-A, Python, or MATLAB
  • •Structured and analytical problem-solving approach
  • •Strong communication and assertiveness skills
  • •Ability to document and present findings
  • •Good written and spoken English skills

Deine Aufgaben

  • •Conduct in-depth reviews of ferroelectric tunnel junctions.
  • •Develop compact models for the MTJ.
  • •Extract fitting parameters from experimental data.
  • •Implement the MTJ model using Verilog-A.
  • •Integrate the MTJ model into Cadence Virtuoso.
  • •Prepare detailed documentation for the modeling process.

Deine Vorteile

Exciting tasks and insights
Motivated and dynamic team
Career entry support
Institute support

Original Beschreibung

City: Dresden Date: Aug 14, 2025 # Working student: Physics-Based Circuit-Compatible SPICE model for Ferroelectric Tunnel Junction Developing innovative technology solutions and bringing them to application - that is our goal at the Fraunhofer Institute for Photonic Microsystems IPMS. With our expertise in the development of photonic microsystems, related technologies including nanoelectronics and wireless communication solutions, we create - in flexible and interdisciplinary teams - technologies for innovative products in a wide range of markets such as automotive, industrial and aerospace. The development of new components and integration concepts for semiconductor devices with a wide range of applications is an important field of research at the Center Nanoelectronic Technologies (CNT) of the Fraunhofer IPMS. One research focus is on the development of non-volatile memory technologies based on ferroelectric hafnium oxide. These are used beyond traditional storage applications, including AI applications. To design a full memory array and use it for AI applications, an effective ferroelectric device model is needed. Students will work with our teams to develop a SPICE model for the Ferroelectric Tunnel Junction (FTJ). Further, it will be programmed with Verilog-A language and integrated with Spectra EDA. **What you will do** * **Ferroelectric tunnel junction models review:** Conduct an in-depth review of the various ferroelectric tunnel junction such as ferroelectric and magnetoresistive tunnel junction models, focusing on their theoretical foundations and practical applications. * **Compact/physics-based MTJ modeling:** Develop compact and physics-based models for the MTJ, ensuring accurate representation of its electrical and magnetic behavior. * **Fitting parameter extraction:**Extract the fitting parameters of the MTJ model using experimental measurement data, ensuring alignment with physical characteristics. * **Verilog-A MTJ model implementation:**Implement the MTJ model using Verilog-A, focusing on precision and compatibility with circuit simulators. * **MTJ model integration with Cadence Virtuoso:** Integrate the MTJ model into Cadence Virtuoso for circuit-level simulations, ensuring seamless compatibility and performance. * **Documentation:** Prepare detailed documentation for the MTJ modeling process, including methodologies, results, and integration workflows. **What you bring to the table** * **Academic Background:** You have completed a Bachelor's degree and are ready to pursue a Master's or Diploma degree in Electrical/Electronics Engineering, Physics, Material Sciences, or a related field. You possess a strong foundation in semiconductor device physics and modeling. * **Technical Skills:** You have moderate programming skills and possess knowledge of Verilog-A, Python, or MATLAB, with proficiency in these languages being a plus. * **Analytical and Problem-Solving Skills:**You demonstrate a structured and analytical approach to problem-solving, with the ability to quickly grasp new technical and scientific concepts. * **Communication and Teamwork:** You have strong communication skills, assertiveness, and the ability to work collaboratively in an international research environment. * **Presentation and Documentation Skills:** You are capable of documenting and presenting technical and scientific findings clearly and effectively. * **Language Skills:**You have good written and spoken English skills, enabling effective collaboration and communication within an international team. **What you can expect** We offer you an exciting task and valuable insights into the methods and procedures of a modern high-tech research institute. A motivated and dynamic team awaits you in a very well-equipped research and development environment. In addition, we offer you connecting points in the context of your studies or your career entry, e.g. a topic for your thesis or the beginning of your career at Fraunhofer IPMS. We will support you! The weekly working time is a maximum of 20 hours and is to be coordinated flexibly. The position is initially limited for 1 year. A long-term collaboration is desired. We value and promote the diversity of our employees' skills and therefore welcome all applications - regardless of age, gender, nationality, ethnic and social origin, religion, ideology, disability, sexual orientation and identity. Severely disabled persons are given preference in the event of equal suitability. Remuneration according to the general works agreement for employing assistant staff. With its focus on developing key technologies that are vital for the future and enabling the commercial utilization of this work by business and industry, Fraunhofer plays a central role in the innovation process. As a pioneer and catalyst for groundbreaking developments and scientific excellence, Fraunhofer helps shape society now and in the future. **Job Segment:** Physics, R&D Engineer, R&D, Electronics Engineer, Science, Engineering, Research
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