News : Leti

January 01 2023

Opto-microfluidic system for ultra-sensitive quantitative analysis: application to the diagnosis and monitoring of cardiovascular diseases

The DTBS at Leti develops new technologies to invent tomorrow’s medical diagnostic and therapeutic innovations in collaboration with public hospitals and universities. Inside this department, the LSMB lab gathers a multidisciplinary team to design and produce microfluidic systems for healthcare and biology applications. In collaboration with researchers from IRIG, the lab has set-up an innovative […] >>

January 01 2023

Modelling of device aging for energy conversion : toward predictive maintenance of power converters ?

The conversion of electrical energy is currently a major issue within our societies, whether to reduce losses, to allow the integration of a maximum of renewable energy from wind or solar power or to have cleaner mobility (electric vehicles, whatever their size, individual or collective), in industry as well as in the residential sector. The […] >>

January 01 2023

Gallium Nitride Plasma etching study and innovative process development for µLED fabrication

The advance of LED micro displays requires high resolution and brightness for a wide range of applications such as smart phone or virtual reality. These new products specifications raise challenges in terms of pixels size and density, material integration and fabrication techniques. In this context, Gallium Nitride has been extensively used and studied for its […] >>

January 01 2023

Inductor less DC/DC isolated converter

The aim of this thesis is to design high-efficiency power converters based on resonating piezoelectric transducers. A large part of the work is to develop the electrical cycle able to energetically maintain the piezoelectric resonator in resonance and ensure zero-voltage switching, for electrical energy transfer from the source to the piezoelectric resonator or from the […] >>

January 01 2023

Measuring the electrostatic fields in AlGaN LEDs for UV emission.

In this subjet we will develop off-axis electron holography for the measurement of electrostatic fields in AlGaN quantum well structures for UV emission. Electron holography measures the phase of electrons from an interference pattern. As the phase change of the electrons is proportional to the potentiel in the specimen, then this can be used to […] >>
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