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Vacancies

A list of job opportunities @ ETRO

Available Positions

Compact transistor modeling for advanced GaN technologies by merging machine learning and system identification techniques.

State-of-the-art GaN transistor models range from black-box models (using machine learning), with limited or no physical interpretation, up to physics-based compact models that give insight into the influence of scaling rules and technology parameters. The latter is of ...

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Enhancement mode RF Transistors in GaN-on-Si Technology

Gallium nitride high electron mobility transistors (GaN HEMTs) offer a compelling combination of high-frequency operation, power handling capability, and efficiency - making them the preferred choice for a wide range of RF applications, where performance, size, and power efficiency are ...

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Integrating digital predistortion performance in design-technology co-optimization

The rapid evolution of wireless communication technologies necessitates innovative materials and integration techniques to meet the demands of next-generation networks. As we transition towards 6G, integrating Gallium Nitride (GaN) on Silicon (Si) has emerged as a critical area of research for ...

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Mechanisms of alternating-state degradation of GaN power amplifier transistors

In 5G telecommunication, high free-space pass loss demands high output power from transmitters. The GaN high electron mobility transistor (HEMT) with its high current density and breakdown voltage is a competent candidate as a 5G RF power amplifier (PA). Note that although fresh GaN HEMTs ...

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Exploring GaN HEMTs for Cutting-Edge Wireless Technologies

Gallium nitride high electron mobility transistors (GaN HEMTs) offer a compelling combination of high-frequency operation, power handling capability, and energy efficiency making them a preferred choice for a wide range of RF and millimeter wave applications where circuit performance, size, ...

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Material scarcity and sustainable semiconductors

Sustainability is one of the key challenges of our society and it is therefore important to control and reduce the ecological impact of the technologies under development. The evolution of semiconductor technologies has however been driven for several decades by other factors: increase of ...

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Assessing the environmental impact and economical cost of future silicon photonic technologies

Sustainability is one of the key challenges of our society and it is important to control and reduce the ecological impact of the technologies under development. The evolution of semiconductor technologies has however been driven for several decades by other factors: increase of performance, ...

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Cost and Environmental Cost System-Technology Co-Optimization

The fundamental principle of CMOS scaling has led to dramatic improvements in computing power and performance while reducing manufacturing costs. As we are approaching limits in achievable devices and interconnect sizes, the complexity of the processes lead to increasing cost and environmental cost ...

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Pathfinding and optimization of emerging VLSI technologies for reliable operation

As device dimensions become smaller with every technology node, the upcoming devices, including NanoSheets, ForkSheets and complementary FETs (CFETs), are also getting progressively more complex. Further abrupt shift is expected with 2D dichalcogenide channel FETs in 2030’s. Meanwhile, ...

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Massively Time-Interleaved Slope-ADCs for Next-generation Wireline Communications

Popular cloud-based applications such as video-on-demand, internet search engines, streaming, and social media rely all on warehouse-scale data centers, which comprise tens of thousands of computing nodes interconnected via high-capacity optical links, from ...

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RF Input Interfaces for ADCs for Next-generation Wireline Communications

Popular cloud-based applications such as video-on-demand, internet search engines, streaming, and social media rely all on warehouse-scale data centers, which comprise tens of thousands of computing nodes interconnected via high-capacity optical links, from ...

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Ultra-Low-jitter PLLs for Wireless and Wireline applications

The increasing complexity in future cellular base-stations can be addressed by incorporating direct RF radio transceivers. They are enabled by high performance digital-to-analog converters (DAC) and analog-to-digital converters (ADCs). To enable high data rates ...

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Digitally assisted calibration of RF sampling ADCs

In the ever-evolving field of wireless communication, where speed and reliability are crucial, high-speed Analog-to-Digital Converters (ADCs) play a vital role. Future wireless communication standards demand ultra-high data rates, necessitating ADCs that operate at high ...

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Low-noise amplifier based on GaSb for quantum computing

The read-out of qubits operating at cryogenic temperatures is a real challenge [1]. A key component in the amplification chain (right figure below) of the weak signals is a low-noise amplifier (LNA) with the highest possible signal-to-noise ratio and operating below 4K. An ...

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System technology co-optimization for high speed/high frequency chiplets and heterogeneous integration packaging

Are you ready to embark on an exciting journey into the cutting-edge world of semiconductors? Today, the semiconductor industry is undergoing a profound transformation, and we invite you to be part of it.
Imagine a future where electronics are more powerful, energy-efficient, ...

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System technology co-optimization for high speed/high frequency chiplets and heterogeneous integration packaging

Are you ready to embark on an exciting journey into the cutting-edge world of semiconductors? Today, the semiconductor industry is undergoing a profound transformation, and we invite you to be part of it.
Imagine a future where electronics are more powerful, energy-efficient, ...

read more

Working Environment @ ETRO

Thanks in part to its location in the heart of Europe in Brussels a city of rich heritage with cultural diversity, and in part to its interdisciplinary research projects. ETRO offers an international and multicultural environment that leads to a positive and creative work place. With its three research groups all specialising in different areas, cooperation and open communication are at the forefront of ETRO daily life. All in all ETRO is an enthusiastic, hard working, professional and welcoming environment in which to work where your aspiration can be fulfilled and new friendships made.

General contact details

Vrije Universiteit Brussel (VUB)
Department of Electronics and Informatics (ETRO)
Pleinlaan 2 - B-1050 Brussel - Belgium
Room Ke.3.01 (secretariat)

Tel: +32 (0)2 629 2930 (secretariat)
Fax: +32 (0)2 629 2883

Email: etroinfo@etrovub.be

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