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Paving the way for the next generation audio codec for the True Wireless Stereo (TWS) applications


Industry Articles
PART 1 : TWS challenges explained​
By Hai YU, Clément MOULIN (Dolphin Design)
The audio market for wireless Bluetooth headsets is growing rapidly. Audio devices using Bluetooth (BT) connectivity are more ubiquitous than ever. People have gotten used to wireless audio systems, and the mobile phone industry is pushing towards a world without audio connectors and cables. The latest trend in wireless headsets and speakers is True Wireless Stereo systems (TWS), consisting of two independent units that are each charged in their own charging case. These headsets or speakers are typically connected through Bluetooth to an audio source while some contain additional memory to store music. TWS smart devices often contain integrated Active Noise Cancellation (ANC) to eliminate unwanted background noise from the received audio and at the same time minimize disturbances in the transmitted audio stream e.g., during voice calls. ....

Hai Yureceived , Energy Efficient Soc Design , Bluetooth Low Energy , Bluetooth Special Interest Group , Grenoble Alpes University , Dolphin Design , True Wireless Stereo , Active Noise Cancellation , Wireless Stereo , True Wireless Stereo Bluetooth , Low Complexity Communication Codec , Multi Stream Audio , Dolphin Design Codec , Bridge Tied Load , Micro Electrical Engineering , Lead Application Engineer , Application Engineer , Dolphin Integration , Energy Efficient Soc , ஆற்றல் திறமையான சமூக வடிவமைப்பு , புளூடூத் குறைந்த ஆற்றல் , புளூடூத் சிறப்பு ஆர்வம் குழு , க்ரிநோபல் ஆல்ப்ஸ் பல்கலைக்கழகம் , டால்பின் வடிவமைப்பு , செயலில் சத்தம் ரத்து , வயர்லெஸ் ஸ்டீரியோ ,

Nanotechnology Now - Press Release: CEA-Leti & Dolphin Design Report FD-SOI Breakthrough that Boosts Operating Frequency by 450% and Reduces Power Consumption by 30%: Joint Paper Presented at ISSCC 2021 Shows How New Adaptive Back-Biasing Technique Overcomes Integration Limits in Chip Design Flows


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Home > Press > CEA-Leti & Dolphin Design Report FD-SOI Breakthrough that Boosts Operating Frequency by 450% and Reduces Power Consumption by 30%: Joint Paper Presented at ISSCC 2021 Shows How New Adaptive Back-Biasing Technique Overcomes Integration Limits in Chip Design Flows
Abstract:
CEA-Leti and Dolphin Design have developed an adaptive back-biasing (ABB) architecture for FD-SOI chips that can be seamlessly integrated in the digital design flow with industrial-grade qualification, overcoming integration drawbacks of existing ABB techniques.
CEA-Leti & Dolphin Design Report FD-SOI Breakthrough that Boosts Operating Frequency by 450% and Reduces Power Consumption by 30%: Joint Paper Presented at ISSCC 2021 Shows How New Adaptive Back-Biasing Technique Overcomes Integration Limits in Chip Design Flows ....

Nordrhein Westfalen , Andrea Bonzo , Home Press Dolphin Design Report , Energy Efficient Soc Design , University Of Bonn , Contact Dolphin Design , Degree Capital Corp , Wave Inc , Chip Technology , Dolphin Design Report , Boosts Operating Frequency , Reduces Power Consumption , Joint Paper Presented , How New Adaptive Back Biasing Technique , Overcomes Integration Limits , Chip Design , Dolphin Design , Chip Design Flows Grenoble , Depleted Silicon , Scalable Drivers Achieving , Frequency Boosting , Power Reduction , Silicon Valley , Carnot Institutes , Dolphin Integration , Energy Efficient Soc ,

CEA-Leti & Dolphin Design Report FD-SOI Breakthrough that Boosts Operating Frequency by 450% and Reduces Power Consumption by 30%


February 22, 2021
CEA-Leti & Dolphin Design Report FD-SOI Breakthrough that Boosts Operating Frequency by 450% and Reduces Power Consumption by 30%
Joint Paper Presented at ISSCC 2021 Shows How New Adaptive Back-Biasing Technique Overcomes Integration Limits in Chip Design Flows
GRENOBLE, France – Feb. 22, 2021 – CEA-Leti and Dolphin Design have developed an adaptive back-biasing (ABB) architecture for FD-SOI chips that can be seamlessly integrated in the digital design flow with industrial-grade qualification, overcoming integration drawbacks of existing ABB techniques.
Fully Depleted Silicon on Insulator (FD-SOI) is a technology that allows the biasing of the transistor’s body that acts as a back gate. Unlike conventional bulk technology, FD-SOI enables a wide voltage range of the body bias. This permits compensating for process, voltage, and temperature (PVT) variations by controlling the threshold voltage. For example, in switch operations, when the swit ....

Andrea Bonzo , Energy Efficient Soc Design , Dolphin Design , Depleted Silicon , Scalable Drivers Achieving , Frequency Boosting , Power Reduction , Silicon Valley , Carnot Institutes , Dolphin Integration , Energy Efficient Soc , ஆண்ட்ரியா போன்சோ , ஆற்றல் திறமையான சமூக வடிவமைப்பு , டால்பின் வடிவமைப்பு , அதிர்வெண் அதிகரிக்கும் , பவர் குறைப்பு , சிலிக்கான் பள்ளத்தாக்கு , டால்பின் ஒருங்கிணைப்பு , ஆற்றல் திறமையான சமூக ,