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Bone Conduction Device
Bone Conduction
Introduction

Bone conduction is a way to perceive the sound. Compared with air conduction, bone conduction transmits sound waves with no need of passing through eardrums, and the vibrator is used to send sound waves for bone vibration to auditory nerve.

Bone Conduction Characteristics:
1. Reduce the burden of “eardrums” and the risk of hearing loss.
2. Wear the device without blocking the ear, and care for ear canal hygiene and health.
3. Used in music earphones, hearing aid equipment, communication services in noisy environment, IOT sensor application, IOT sensing field, etc.

Bone Conduction
Device

The bone conduction device is a kind of sound conduction device used in hearing equipment (such as earphones and hearing aids). The sound source signal (including electrical signal) is converted into mechanical vibration. The hearing equipment is used to touch the human bone and transmit vibration to human bones so that the people can recognize the sound through bones.

The latest-generation bone conduction device adopted by our company is the micro vibrator with high sensitivity, ultra precision and low energy consumption, having a diameter of only about 10 mm, which simplifies the internal components to the fullest extent and achieves the lightweight integrated design. The ultra-wide frequency range from 4Hz to 40KHz presents extensive sound domain and full sound field, to radiate the new sound sense of Bone Audio and bring pure bone conduction hearing enjoyment.

Bone Conduction
Device
Characteristics

1. Highly-sensitive vibration transmission unit
The built-in vibration transmission unit is made of ultra-light high-steel materials, with strong elasticity, able to achieve highly-sensitive vibration transmission capacity, provide deep low-frequency flexibility, and realize clear and bright medium & high audio.

2. PreciseAir 3.0 technology
Configure PreciseAir 3.0 technology, achieve the fixed structure of each component embedded in the ring, realize the functions of high stability, strong sensitivity and low power consumption, reduce the noise, sound transmission loss and resonance leakage arisen from structural looseness, and greatly improve the power output.

3. AVV precise vertical vibration transmission
During the process of converting electrical signals into vibration signals, the vibrator is always in the state of precise vertical vibration, with uniform stability, high elasticity and strong sensitivity, able to effectively restrain the irregularity of vibration quality and better show the sound transmission performance and quality.

4. 3.0 full-automatic integrated mass production equipment
Adopt the self-developed mass production equipment of vibrators, automatically complete precise embedding and fixed assembly, realize standardized production, and provide stable and high-quality bone conduction device.

Combination
Technology

1. Multiple innovative wearing methods
Based on the cutting-edge vibrator technology, the team has carried out the innovative research & development of multiple bone conduction earphones suitable for different point wearing methods to meet the needs of people with various ear types and different hearing sensitivities.

2. Applicable to multiple application scenarios
The series products are applicable to sports, attendance, calls, meetings, study, business trips and other scenarios, with good effect and high comfort when being used in hearing aid earphones.

3. TWBS innovation in a true wireless form
The team has created bone conduction earphones into the TWS true wireless form, achieving TWBS (True Wireless Bone Conduction), which is a breakthrough in bone conduction technology, and the innovation in the true wireless field.

4. New-generation vibrator technology and commercial application in the futureNew-generation vibrator technology and commercial application in the future
Build the multi-scene intelligent and healthy hearing equipment for bone conduction, and explore more commercial applications of bone conduction devices in the “metaverse” field.

  • 中谷任徳

    首席科學家、BoCo骨傳導振子發明人

    畢業于近畿大學,長期從事骨傳導技術的基礎研究,是骨傳導領域的世界權威。擁有日本國內專利28件,申請12件,海外專利3件。

  • 謝端明

    日本經濟產業省國家項目負責人、杭州高新區“5050計劃”人才

    畢業于早稻田大學,曾任職柯尼卡集團生產技術研究中心、愛森哲咨詢戰略咨詢部,負責以制造業為主的BPR、SCM改革。擁有多項骨傳導技術與裝置專利。

  • 荒牧純一

    骨傳導技術應用研發及聲學技術負責人

    畢業于中央大學,歷經AKAI錄像機的機械設計、軟件設計,之后長期在SONY開發CD、MD、網絡音頻等,獲得專利70多件。

  • 中島敏夫

    公司骨傳導振子設備制造及生產負責人

    原富士通公司生產製造部門的負責人,曾擔任過中國現地法人的總經理。

  • 江政煌

    TWS技術總監&項目經理

    畢業于華南理工大學,曾任職Jarden集團電子工程師,FIIO品牌ID結構經理、項目經理,及產品經理委員會成員。領導多項音頻產品開發設計工作。

  • 藤田弘道

    軟件開發技術負責人

    情報工學專業大學畢業,從事音頻產品的開發、SONY用戶界面、聲音效果相關聯的業務。擔當控制骨傳導元件的軟件技術。

  • 金子善安

    硬件開發技術負責人

    長期從事電氣設計業務,參與Olasonic產品的研究開發、SONY音響設備的產品設計。擔當控制骨傳導元件的硬件技術。

  • 朱玉龍

    產品規劃及技術專利負責人

    畢業于日本大阪攝南大學經營情報專業,擔當公司骨傳導技術及應用產品的知識產權布局,新產品的規劃與市場技術支持。