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    • 3. 发明申请
    • Audio Communication Networks
    • 音频通信网络
    • US20130337796A1
    • 2013-12-19
    • US13495648
    • 2012-06-13
    • Avraham Suhami
    • Avraham Suhami
    • H03G5/00H04W28/06H04B5/00H04R29/00
    • H04R25/00G10L21/003G10L21/0205G10L21/0364G10L21/057G10L2021/0135G10L2021/065H04M3/569
    • As the possible variations of “Hearing Thresholds”, “Hearing Loudness bandwidths” and “Voice Intonation” characteristics of people are finite, it is proposed to set a Database of these characteristics, where the data elements fully describe the Hearing and Talking characteristics of anyone, while many have the same characteristics. Thus any voice communication between two parties may be optimized by correcting the intensities of the call in the spectral domain, differently for each party and each ear. The optimizations are automatic given the “codes” of the parties and have a minimal latency. The system may be implemented either centrally in the world-wide-web or at the edges, in cellular phones, landline phones, VoIP, VoIM and in the audio parts of entertainment devices.
    • 由于“聆听阈值”,“听觉响度带宽”和“声音语调”特征的可能变化是有限的,因此建议设置这些特征的数据库,其中数据元素充分描述了任何人的听力和谈话特征 ,而许多具有相同的特征。 因此,可以通过在频域中校正呼叫的强度来优化两方之间的任何语音通信,对于每个方和每个耳,不同。 鉴于各方的“代码”,优化是自动的,并具有最小的延迟。 该系统可以在全球网络或边缘,蜂窝电话,固定电话,VoIP,VoIM以及娱乐设备的音频部分中进行实施。
    • 5. 发明申请
    • Radiation detectors
    • 辐射探测器
    • US20060202125A1
    • 2006-09-14
    • US11371573
    • 2006-03-09
    • Avraham Suhami
    • Avraham Suhami
    • G01T1/20
    • G01T1/201A61B6/037B82Y20/00G01T1/1644G01T1/202G01T1/2985G02B6/1225
    • The invention consists in structuring scintillation radiation detectors as Photonic Bandgap Crystals or 3D layers of thin filaments, thus enabling extremely high spatial resolutions and achieving virtual voxellation of the radiation detector without physical separating walls. The ability to precisely measure the recoil electron track in a Compton camera enables to assess the directions of the gamma rays hitting the detector and consequently dispensing with collimators that strongly reduce the intensity of radiation detected by gamma cameras. The invention enables great enhancements of the capabilities of gamma cameras, SPECT, PET, CT and DR machines as well as their use in Homeland Security applications. Methods of fabrication of such radiation detectors are decribed.
    • 本发明包括将闪烁辐射检测器构造为光子带隙晶体或三维细丝层,因此能够实现极高的空间分辨率并实现辐射探测器的虚拟分布,而无需物理分隔壁。 在康普顿相机中精确测量反冲电子轨迹的能力使得能够评估伽马射线撞击检测器的方向,从而分配准直器,从而大大降低伽马相机检测到的辐射强度。 本发明可以大大提高伽马相机,SPECT,PET,CT和DR机器的功能,以及它们在国土安全应用中的应用。 描述制造这种辐射探测器的方法。
    • 6. 发明授权
    • Hands-free telephone assembly
    • 免提电话组装
    • US5164984A
    • 1992-11-17
    • US461311
    • 1990-01-05
    • Avraham SuhamiShmuel Suhami
    • Avraham SuhamiShmuel Suhami
    • H04M1/05H04M1/60H04M1/72H04R1/10H04R3/00
    • H04R1/083H04M1/05H04M1/6033H04M1/72H04R1/1016H04R3/005H04R1/1075H04R2201/107
    • A hands-free telephone assembly according to the present invention comprises a speech network mounted in a base and having an input channel and an output channel, the speech network being connected to a telephone interface which is selectively connectable to a telephone line. Also included are a gain-controllable amplifier in said input channel, a primary transducer including a primary speaker connected to the output of said gain-controllable amplifier, and a primary microphone, and a gain and frequency controllable amplifier connecting the primary microphone to said input channel. The primary transducer is mounted in a housing separate from the base, said housing being constructed and arranged so as to fit within the ear canal of a user and to be releasably maintained therein. Finally, the assembly contains a cancellation mechanism for suppressing positive feedback between the primary microphone and the primary speaker.
    • 根据本发明的免提电话组件包括安装在基座中并具有输入通道和输出通道的语音网络,语音网络连接到可选择性地连接到电话线的电话接口。 还包括在所述输入通道中的增益可控放大器,包括连接到所述增益可控放大器的输出的主扬声器的主换能器和主麦克风,以及将主麦克风连接到所述输入端的增益和频率可控放大器 渠道。 主换能器安装在与基座分离的壳体中,所述壳体被构造和布置成装配在使用者的耳道内并且可释放地保持在其中。 最后,组件包含用于抑制主麦克风和主扬声器之间的正反馈的取消机构。
    • 9. 发明授权
    • Audio communication networks
    • 音频通信网络
    • US08918197B2
    • 2014-12-23
    • US13495648
    • 2012-06-13
    • Avraham Suhami
    • Avraham Suhami
    • G06F17/00G10L21/00G10L21/06G10L25/00H04M1/00H04M9/00H04R25/00
    • H04R25/00G10L21/003G10L21/0205G10L21/0364G10L21/057G10L2021/0135G10L2021/065H04M3/569
    • As the possible variations of “Hearing Thresholds”, “Hearing Loudness bandwidths” and “Voice Intonation” characteristics of people are finite, it is proposed to set a Database of these characteristics, where the data elements fully describe the Hearing and Talking characteristics of anyone, while many have the same characteristics. Thus any voice communication between two parties may be optimized by correcting the intensities of the call in the spectral domain, differently for each party and each ear. The optimizations are automatic given the “codes” of the parties and have a minimal latency. The system may be implemented either centrally in the world-wide-web or at the edges, in cellular phones, landline phones, VoIP, VoIM and in the audio parts of entertainment devices.
    • 由于“聆听阈值”,“听觉响度带宽”和“声音语调”特征的可能变化是有限的,因此建议设置这些特征的数据库,其中数据元素充分描述了任何人的听力和谈话特征 ,而许多具有相同的特征。 因此,可以通过在频域中校正呼叫的强度来优化两方之间的任何语音通信,对于每个方和每个耳,不同。 鉴于各方的“代码”,优化是自动的,并具有最小的延迟。 该系统可以在全球网络或边缘,蜂窝电话,固定电话,VoIP,VoIM以及娱乐设备的音频部分中进行实施。