Ravinder S. Dahiya (@ravindersdahiya) 's Twitter Profile
Ravinder S. Dahiya

@ravindersdahiya

Professor, @Northeastern Univ.| IEEE Board of Directors| EiC, npj Flex. Electron.| Leader, @Grp_BEST| Fellow, IEEE| Opinions mine, RTs not endorsements.

ID: 3311982760

linkhttp://www.rsdahiya.com calendar_today07-06-2015 14:20:15

921 Tweet

891 Followers

19 Following

Ravinder S. Dahiya (@ravindersdahiya) 's Twitter Profile Photo

Submissions now open for npj Flexible Electronics Focussed Collection on: "Fibers, Yarns and Textile based Electronics" by guest editors - S. Park, J. Yan, and S. Beeby. See more details here - nature.com/collections/ib… #fibre #yarn #etextile #wearables #sensors #electronics

Submissions now open for npj Flexible Electronics Focussed Collection on: "Fibers, Yarns and Textile based Electronics" by guest editors - S. Park, J. Yan, and S. Beeby. See more details here - nature.com/collections/ib…
 
#fibre #yarn #etextile #wearables
#sensors #electronics
Ravinder S. Dahiya (@ravindersdahiya) 's Twitter Profile Photo

Submissions now open for npj Flexible Electronics Focussed Collection on: "Flexible Electronics in Industry 5.0". See more details here - nature.com/collections/ai… Nature Portfolio

Submissions now open for npj Flexible Electronics Focussed Collection on: "Flexible Electronics in Industry 5.0". See more details here - nature.com/collections/ai…
 
<a href="/NaturePortfolio/">Nature Portfolio</a>
Ravinder S. Dahiya (@ravindersdahiya) 's Twitter Profile Photo

Printed electronics holds great potential for resource-eff. fabrication of circuits. But, achieving uniformly responding nanowires based printed devices is a challenge.Ā This work addresses this longstanding issue & provides a valuable toolkit. Nice work Bendable Electronics & Sustainable Technologies Gp Northeastern U.

Ravinder S. Dahiya (@ravindersdahiya) 's Twitter Profile Photo

Heterogeneous integration on flexible substrates has been explored in recent years to meet the high-performance and flexible form factors requirements. Reliable interconnects are critical for these systems & this article presents a new perspective. Nice work Bendable Electronics & Sustainable Technologies Gp.

Ravinder S. Dahiya (@ravindersdahiya) 's Twitter Profile Photo

Submissions now open for npj Flexible Electronics Focus Collection on: "Multimaterial Additive Manufacturing and Soft Electronics" by guest editors Kumar Shanmugam, Woo Soo Kim and William Boley Boston University. See more details here - nature.com/collections/ai… Nature Portfolio

Submissions now open for npj Flexible Electronics Focus Collection on: "Multimaterial Additive Manufacturing and Soft Electronics" by guest editors Kumar Shanmugam, Woo Soo Kim and William Boley Boston University. See more details here - nature.com/collections/ai…
<a href="/NaturePortfolio/">Nature Portfolio</a>
Ravinder S. Dahiya (@ravindersdahiya) 's Twitter Profile Photo

Large data from sensor-laden systems need to be processed locally. In this regard, printed memristors could offer the resource-efficient means for development of novel brain-inspired & in-memory computing. Their ultralow switching voltages is a bonus. Nice work Bendable Electronics & Sustainable Technologies Gp.

Ravinder S. Dahiya (@ravindersdahiya) 's Twitter Profile Photo

The insightful discussion in this paper shows how advance in resource efficient printing electronics tech. could address the need for large number & types of sensors in e-skin, their high-performance requirements & integration over large areas. Nice work Bendable Electronics & Sustainable Technologies Gp Northeastern U.

Ravinder S. Dahiya (@ravindersdahiya) 's Twitter Profile Photo

Submissions now open for npj Flexible Electronics Focussed Collection on: "Printed and Flexible Energy Devices". This collection will publish high-quality papers on energy generation, storage, and conversion on flexible substrates. See details here - nature.com/collections/ag…

Submissions now open for npj Flexible Electronics Focussed Collection on: "Printed and Flexible Energy Devices". This collection will publish high-quality papers on energy generation, storage, and conversion on flexible substrates. See details here - nature.com/collections/ag…
Ravinder S. Dahiya (@ravindersdahiya) 's Twitter Profile Photo

Starting with local (near sensor) data processing, an inherent mechanism in play in biological skin helps to scale down the data produced by large number of receptors. The neural FETs presented in this paper present similar features for e-skin. Nice work Bendable Electronics & Sustainable Technologies Gp Northeastern U.

Ravinder S. Dahiya (@ravindersdahiya) 's Twitter Profile Photo

The high-performance electronics using printing, highlighted in this paper, reveal the future promise of printed electronics as a sustainable & resource-efficient route for realising high-performance ICs & systems. Nice work Bendable Electronics & Sustainable Technologies Gp Northeastern U. Northeastern COE Wiley

Ravinder S. Dahiya (@ravindersdahiya) 's Twitter Profile Photo

Optoelectronic devices, such as PDs, are needed in high-speed optical communications, robotics, healthcare, and biomimetic visual systems. The comprehensive discussion on PDs in this paper will be useful to researchers & practitioners from academia & industry. Nice work Bendable Electronics & Sustainable Technologies Gp

Ravinder S. Dahiya (@ravindersdahiya) 's Twitter Profile Photo

Transparent devices are needed for see-through applications such as smart windows & optical comm. These devices exhibit excellent response & also degrade naturally, at the end of life – thus offering a e-waste-free solution. Nice work Bendable Electronics & Sustainable Technologies Gp Northeastern U. Northeastern COE

Ravinder S. Dahiya (@ravindersdahiya) 's Twitter Profile Photo

Submissions now open for npj Flexible Electronics Focussed Collection on: "Neuromorphic Circuits and Bio-inspired Systems". #neuro #brain #inspired #electronics #sensor #print #compute #intelligence #ai #hardware #MachineLearning

Submissions now open for npj Flexible Electronics Focussed Collection on: "Neuromorphic Circuits and Bio-inspired Systems". #neuro #brain #inspired #electronics #sensor #print #compute #intelligence #ai #hardware #MachineLearning
Ravinder S. Dahiya (@ravindersdahiya) 's Twitter Profile Photo

Scalable, non-destructive, & low-cost sensors, such as the one presented in this paper, could be used in the future within plant breeding to screen large populations of plants for responses to plant stresses. Nice work Bendable Electronics & Sustainable Technologies Gp in collaboration with Valerio Hoyos-Villegas & team

Ravinder S. Dahiya (@ravindersdahiya) 's Twitter Profile Photo

Semiconducting NWs hold great potential for high-performance flexible electronics. However, using them, to fabricate electronics, requires multiple lithography steps. In this regard, this design-to-fab approach is interesting. Nice work Bendable Electronics & Sustainable Technologies Gp Northeastern U. Northeastern COE

Ravinder S. Dahiya (@ravindersdahiya) 's Twitter Profile Photo

The upscaling of printed NW based approach for large scale circuits is challenging because of lack of high uniformity of printed NWs layers. This could be resolved with a holistic approach such as the one presented in this paper. Thanks Bendable Electronics & Sustainable Technologies Gp. Northeastern COE Northeastern U.

Ravinder S. Dahiya (@ravindersdahiya) 's Twitter Profile Photo

Submissions now open for npj Flexible Electronics Focussed Collection on: "AI/AE Enabled Advances in Soft Materials and Electronics" by guest editors - Y. Liu (Oak Ridge Lab), K. Nakajima (ę±äŗ¬å¤§å­¦ | UTokyo), P. Schindler (from Northeastern U.), and Ying Li (from UW–Madison).

Submissions now open for npj Flexible Electronics Focussed Collection on: "AI/AE Enabled Advances in Soft Materials and Electronics" by guest editors - Y. Liu (<a href="/ORNL/">Oak Ridge Lab</a>), K. Nakajima (<a href="/UTokyo_News/">ę±äŗ¬å¤§å­¦ | UTokyo</a>), P. Schindler (from <a href="/Northeastern/">Northeastern U.</a>), and Ying Li (from <a href="/UWMadison/">UW–Madison</a>).
Ravinder S. Dahiya (@ravindersdahiya) 's Twitter Profile Photo

Degradability of electronic devices alone is insufficient to ascertain the environmental impact. It is also essential to evaluate the nature of degradation by-products. This study highlights this critical aspect and show that by-products can be harmful too. Nice work Bendable Electronics & Sustainable Technologies Gp.

Ravinder S. Dahiya (@ravindersdahiya) 's Twitter Profile Photo

While the influence of functional materials on sensor performance has been well studied, the role of substrate material itself has not received much attention. This paper addresses this gap. Nice work Sofia Bendable Electronics & Sustainable Technologies Gp. Northeastern U. Northeastern COE Northeastern ECE