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    • 6. 发明授权
    • Buoyancy energy cell
    • 浮力能量电池
    • US07969033B2
    • 2011-06-28
    • US12463193
    • 2009-05-08
    • James Ryan
    • James Ryan
    • F04B35/00
    • F03B17/04
    • A device for the generation of energy and in particular electrical energy includes a cell or chamber which moves upwardly and downwardly in a body of water. Cog wheels are connected to the cell. The cog wheels are connected to the shafts of generators. Rotation of the cog wheels operates the generators which produce energy. The cog wheels engage anchor chains or vertical supports. One end of each anchor chain is secured to an anchor located at the bottom of the body of water. The other end of the anchor chain is secured to a float which floats at or near the surface of the body of water. The up and down movement of the cell causes the cog wheels to move upwardly and downwardly along the anchor chains and thereby rotate. This rotation drives the energy generator and generates energy, preferably electricity. The cog wheels are permitted to rotate upon the receipt of a request for energy. This results in a highly efficient source of energy or electricity.
    • 用于产生能量,特别是电能的装置包括在水体中向上和向下移动的电池或室。 齿轮连接到电池。 齿轮连接到发电机的轴上。 齿轮的旋转操作产生能量的发电机。 齿轮与锚链或垂直支撑件啮合。 每个锚链的一端固定在位于水体底部的锚固件上。 锚链的另一端固定在浮体上,浮子在水体表面或附近。 电池的上下运动导致齿轮沿着锚链向上和向下移动,从而旋转。 该旋转驱动能量发生器并且产生能量,优选地是电能。 在接收到能量请求时,齿轮被允许旋转。 这导致高效的能源或电力来源。
    • 7. 发明授权
    • Methods of scoring for fabricating interconnected photovoltaic cells
    • 制造互联光伏电池的评分方法
    • US07932464B2
    • 2011-04-26
    • US11649723
    • 2007-01-04
    • James Ryan
    • James Ryan
    • H01L31/00
    • H01G9/2031H01G9/2059H01G9/2068Y02E10/542
    • The invention, in one embodiment, is directed to a method of scoring the coating of a first coated base material at a temperature sufficiently elevated to part the coating and melt at least a portion of the first base material. In a further embodiment, the invention is directed to a method of forming a photovoltaic module by scoring a coating of a first coated base material at a temperature sufficiently elevated to part the coating and melt at least a portion of the first base material; scoring a coating of a second coated base material at a temperature sufficiently elevated to part the coating and at least a portion of the second base material; and joining the first and second base materials to form a photovoltaic module.
    • 在一个实施方案中,本发明涉及一种在足够升高以使部分涂层并熔化至少一部分第一基材的温度下对第一涂覆的基材的涂层进行刻痕的方法。 在另一个实施方案中,本发明涉及一种通过在足够升高的温度下对第一涂覆的基材的涂层进行刻划来形成光伏模块的方法,以使部分涂层熔化至少一部分第一基材; 在足够升高的温度下对第二涂覆的基材的涂层进行划片以使涂层部分和第二基材的至少一部分; 并连接第一和第二基材以形成光伏组件。
    • 9. 发明申请
    • Binaural hearing instrument systems and methods
    • 双耳听力仪器系统及方法
    • US20060227976A1
    • 2006-10-12
    • US11100732
    • 2005-04-07
    • Brian CsermakPhilippe PangoJames RyanKen Smith
    • Brian CsermakPhilippe PangoJames RyanKen Smith
    • H04R5/00
    • H04R25/554H04R25/552
    • Binaural hearing instrument systems and methods are provided. The binaural hearing instrument system may include communications circuitry that is used to transmit data between left and right hearing instruments. The left and right hearing instruments may include binaural processing circuits that generate left and right audio output signals, respectively, as a function of the signal-to-noise ratios (SNRs) of both the left and right audio input signals. The data transmitted between the left and right hearing instruments by the communications circuitry may be used to provide the SNR of the left audio input signal to the right hearing instrument and to provide the SNR of the right audio input signal to the left hearing instrument. In one example, the data transmitted between the left and right hearing instruments may include audio signals that may be used to determine the SNRs of the left and right audio input signals.
    • 提供双耳助听器系统和方法。 双耳助听器系统可以包括用于在左和右听力仪器之间传输数据的通信电路。 左和右听力仪器可以包括分别产生左和右音频输出信号的双耳处理电路,其作为左和右音频输入信号的信噪比(SNR)的函数。 可以使用由通信电路在左和右听力仪器之间传输的数据,以将左音频输入信号的SNR提供给右听力仪器,并将右声道输入信号的SNR提供给左听力仪器。 在一个示例中,在左和右听力仪器之间传输的数据可以包括可以用于确定左和右音频输入信号的SNR的音频信号。
    • 10. 发明授权
    • Telephone privacy device
    • 电话隐私设备
    • US5495527A
    • 1996-02-27
    • US258097
    • 1994-06-10
    • Philip E. Rollhaus, Jr.Chris DelPlatoJames RyanEric Knutsen
    • Philip E. Rollhaus, Jr.Chris DelPlatoJames RyanEric Knutsen
    • H04M1/19H04M1/60
    • H04M1/19H04M1/60
    • A telephone privacy device includes first and second connectors that are mateable with a telephone handset and a telephone base, respectively. The handset includes a microphone, and the device includes a variable amplifier that allows the user to amplify the microphone signal to a desired level prior to sending it on to the base. A signal strength display allows the user to monitor the amplitude of the amplified microphone signal. A side tone suppression circuit generates a side tone suppression signal in response to the amplified microphone signal. This side tone suppression signal is used to reduce excessive side tone from the telephone base. An adjustable gain amplifier amplifies the speaker signal supplied by the base for the handset speaker.
    • 电话隐私装置包括分别与电话听筒和电话基座相配的第一和第二连接器。 手机包括麦克风,并且该装置包括可变放大器,其允许用户在将麦克风信号发送到基座之前放大到期望的水平。 信号强度显示允许用户监测放大的麦克风信号的幅度。 侧音抑制电路响应于放大的麦克风信号产生侧音抑制信号。 该侧音抑制信号用于减少来自电话基座的过度侧音。 可调增益放大器放大由手机扬声器的基座提供的扬声器信号。