LATEST NEWS

Imec World-First to Develop 200V and 650V dispersion free normally-off/e-mode Power Devices on 200mm/8-inch Si Wafers

Imec, the world-leading research and innovation hub in nano-electronics and digital technology, announced today that it has developed 200V and 650V normally-off/enhancement mode (e-mode) on 200mm/8-inch GaN-on-Silicon wafers, achieving a very low dynamic Ron dispersion (below 20 percent) and state-of-the-art performance and reproducibility. Stress tests have also shown a good device reliability. Imec’s technology is ready for prototyping, customized low-volume production as well as for technology transfer.

GaN technology offers faster switching power devices with higher breakdown voltage and lower on-resistance than silicon (Si), making it an ideal material for advanced power electronic components. Imec’s GaN-on-Si device technology is Au-free and compatible with the wafer handling and contamination requirements for processing in a Si fab. A key component of the GaN device structure is the buffer layer, which is required to accommodate the large difference in lattice parameters and thermal expansion coefficient between the AlGaN/GaN materials system and the Si substrate. Imec achieved a breakthrough development in the buffer design (patent pending), allowing to grow buffers qualified for 650 Volt on large diameter 200mm wafers. This, in combination with the choice of the Si substrate thickness and doping increased the GaN substrate yield on 200mm to competitive levels, enabling low-cost production of GaN power devices. Also, the cleaning and dielectric deposition conditions have been optimized, and the field plate design (a common technique for achieving performance  improvement) has been extensively studied. As a result, the devices exhibit dynamic Ron dispersion below 20% up till 650 Volt over the full temperature range from 25°C to 150°C. This means that there is almost no change in the transistor on-state after switching from the off-state, a challenge typical for GaN technology.

“Having pioneered the development of GaN-on-Si power device technology on large diameter substrates (200mm/8-inch), imec now offers companies access to its normally-off/e-mode GaN power device technology through prototyping, low-volume manufacturing as well as via a full technology transfer” stated Stefaan Decoutere, program director for GaN technology at imec. “Next to enhancement mode power device switches, imec also provides lateral Schottky diodes for power switching applications. Based on imec’s proprietary device architecture, the diode combines low turn-on voltage with low leakage current, up to 650V – a combination that is very challenging to achieve.”

 

Lihi

Recent Posts

Renesas Unveils Industry’s First 650V GaN in Dual-Side Cooled 8x8mm Package for Megawatt-Scale AI Data Centers

Dual-side cooling (DSC) shrinks package footprint by 57% compared with TOLT, packing more power into…

21 hours ago

Leica Microsystems launches AI software module for consistent inspection decisions

Supporting manufacturers with reliable defect identification and scalable quality control across production lines Leica Microsystems,…

21 hours ago

Teradyne Introduces Near-DUT Test Platform for LPDDR6, DDR6 and GDDR7

The Magnum E2 system supports emerging DRAM and NAND interfaces while using common hardware and…

21 hours ago

ARX Robotics and DEUTZ Deliver First Ulm-Built GEREON UGVs to Ukraine

The first unmanned ground systems left the production line only 12 weeks after the two…

21 hours ago

AMD Releases Ross Agentic Assistant for Vivado and Vitis HLS Workflows

The available-now engineering assistant connects language models to AMD development tools, documentation and reusable FPGA…

21 hours ago

Murata Begins Mass Production of 0201-Inch Three-Terminal Low-ESL MLCCs

The 0.6 × 0.3 mm capacitors occupy 64% less mounting area than Murata’s previous smallest…

22 hours ago