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Student Assistant – Radio Frequency Printed Circuit Boards Design, Fabrication & Measurement (m/f/d)

Werkstudent
Dresden
Teilzeit
Befristet
🇬🇧 C1

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The Barkhausen Institute performs research on the latest hardware, software and communication technologies and demonstrates their application in tomorrow's society. Our goal is to build a flexible and trustworthy IoT platform based on reliable electronics and secure communication methods.

 

The RF Design Enablement group researches and develops dependable IoT systems with focus on three key research topics such as joint radar-communication system, antenna-system design with meta-surface and physical layer security. We focus our research on designing building blocks, while identifying critical hardware parameters for next-generation hardware systems and applications.

 

To help pursue our research agenda, we are looking for a

 

Student Assistant – Radio Frequency Printed Circuit Boards Design, Fabrication & Measurement (m/f/d)

(up to 19 hours/week for 3-6 months) 

 

The project

The SHK will design application specific radio frequency electronic modules using a combination of simple planar RF-components and off-the-shelf surface mount blocks. The SHK will manufacture the boards with our in-house manufacturing facility or through third party manufacturers and assemble the boards for measurement.

 

Your tasks

  • Designing and simulating simple planar RF-components (e.g., hybrid couplers) using EM simulation software (AWR, HFSS, etc.)
  • Multilayer PCB designs with tailor-made RF and off-the-shelf SMT components using software tools (e.g., Altium designer, KiCAD, etc.)
  • Manufacturing of the boards using LPKF machine or third-party manufacturing services
  • Assembling of the boards with SMDs
  • Application specific measurements of the boards

 

We expect the following

  • Study of electrical/electronics engineering, computer science or comparable
  • Basic knowledge of microwave engineering and wireless communications theory
  • Knowledge of EM software (AWR, HFSS, CST etc)
  • Prior experience of PCB designing with SMT component
  • Prior experience of using RF measurement equipment preferred
  • Good communication and writing skills in English

 

What we provide

  • An open and creative team of enthusiastic scientists
  • Close to campus
  • Agile working hours and workflows
  • Work on future technologies

 

If you have passion for new technologies and the desire to develop the connected world of tomorrow with us, we are looking for you. 

 

Life and science are compatible at our institute. We offer a range of recognised family-friendly measures, such as part-time work, mobile working and flexible working hours that take family needs into account.  We also offer support for arriving in Dresden (all formalities, apartment etc.).

 

Application procedure

 

Short letter of motivation and curriculum vitae to Kontakt-Formular . Please also enclose a current university transcript or extract from the grade overview with details of courses and grades. We only accept complete documents as one single PDF document by e-mail. Applications that contain other file formats (e.g. Word, Excel) will not be considered in the selection process. Informal inquiries can also be submitted to the same address.

 

The data submitted by you in the course of the application procedure will be processed by the Barkhausen Institut (BI). BI shall use the data for the purposes of the application procedure. No data shall be passed on to third parties.

 

DeutschEnglish
RF, radio frequency, Electrical Engineering, computer sciences, student assistant, IoT, Simulation, Englisch, Elektrotechnik, Halbleiter, MINTbund.de, Empfehlungsbund

Dieser Praktikumsplatz bzw. Ausbildungsplatz als 'Student Assistant – Radio Frequency Printed Circuit Boards Design, Fabrication & Measurement (m/f/d)' ist für folgende Adressen ausgeschrieben: 01067 Dresden in Sachsen.

Kurzprofil der Barkhausen Institut gGmbH

The Barkhausen Institut is an internationally recognized research institute that bridges the gap between fundamental research and the practical implementation of trustworthiness in networked electronic systems.


We research innovative information and communication technologies to ensure trustworthiness in a connected world. Our work focuses on key aspects such as integrity, accountability, authenticity, availability, and data protection.


Beyond our application-oriented foundational research, we act as a cooperation partner and thought leader in discussions surrounding trustworthiness. We place particular importance on professional science communication and actively seek dialogue with the public.

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