Taking inspiration from insect ears to develop an acoustic device is not new. Research to take inspiration from the highly directional, sub-wavelength, Ormia ochracea fly’s ear to produce miniature directional microphones is well-known. Since the 1990s, researchers have tried to implement Ormia based micro-electro-mechanical systems devices, typically using standard silicon or similar microfabrication. Much of this time has been spent trying to circumvent the fact that Ormia evolved to hear one specific frequency, that of a calling cricket, and so is not a broadband system as you would require for an audio microphone. Further, building a silicon system inspired by the mechanics of insect ears leads to various compromises. This talk will dis...
This paper introduces a directional MEMS microphone designed for hearing aid applications appropriat...
Over many millions of years of evolution, nature has developed some of the most adaptable sensors an...
Researchers have developed a variety of micro-electromechinical systems (MEMS) directional microphon...
Micro-Electro Mechanical System (MEMS) microphones inspired by the remarkable phonotactic capability...
Biological systems provide an incredible wealth of archetypes that have emerged through evolutionary...
Directional MEMS microphones inspired by the parasitoid fly Ormia ochracea have been studied since t...
A new bio-inspired multi-band directional MEMS microphone based on the hearing properties of the fly...
Auditory signal processing relies on feedback mechanisms between mechanical and electrical systems t...
The need for small directional microphones is patent in the current market. From smartphones to hear...
Miniature directional microphones are desirable for applications ranging from smartphones to hearing...
A multi-band operational MEMS microphone inspired by the hearing organ of Ormia ochracea is presente...
Microphone arrays have been widely used in sound source localization for many applications. In order...
Miniaturization of sound localization sensors arrays is heavily constrained by the limited direction...
Gathering insights from nature to develop original solutions for engineering problems is known as bi...
The purpose of my project is to test and verify two Micro-Electro-Mechanical-System (MEMS) microphon...
This paper introduces a directional MEMS microphone designed for hearing aid applications appropriat...
Over many millions of years of evolution, nature has developed some of the most adaptable sensors an...
Researchers have developed a variety of micro-electromechinical systems (MEMS) directional microphon...
Micro-Electro Mechanical System (MEMS) microphones inspired by the remarkable phonotactic capability...
Biological systems provide an incredible wealth of archetypes that have emerged through evolutionary...
Directional MEMS microphones inspired by the parasitoid fly Ormia ochracea have been studied since t...
A new bio-inspired multi-band directional MEMS microphone based on the hearing properties of the fly...
Auditory signal processing relies on feedback mechanisms between mechanical and electrical systems t...
The need for small directional microphones is patent in the current market. From smartphones to hear...
Miniature directional microphones are desirable for applications ranging from smartphones to hearing...
A multi-band operational MEMS microphone inspired by the hearing organ of Ormia ochracea is presente...
Microphone arrays have been widely used in sound source localization for many applications. In order...
Miniaturization of sound localization sensors arrays is heavily constrained by the limited direction...
Gathering insights from nature to develop original solutions for engineering problems is known as bi...
The purpose of my project is to test and verify two Micro-Electro-Mechanical-System (MEMS) microphon...
This paper introduces a directional MEMS microphone designed for hearing aid applications appropriat...
Over many millions of years of evolution, nature has developed some of the most adaptable sensors an...
Researchers have developed a variety of micro-electromechinical systems (MEMS) directional microphon...