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    • 41. 发明授权
    • Programmable rhythm apparatus
    • 可编程节奏装置
    • US4058043A
    • 1977-11-15
    • US627262
    • 1975-10-30
    • Masashi Shibahara
    • Masashi Shibahara
    • G10H1/40G10F1/00A63J17/00G10H1/02
    • G10H1/40G10H2210/361Y10S84/12
    • A programmable rhythm apparatus for use with an electronic musical instrument comprising a sequential pulse generator, a plurality of individually programmable rhythm channels or tracks each producing an output pulse pattern in response to the sequential pulse generator and a standard voice generation circuit to receive the pulse output pattern from the programmed rhythm channels. The voice generation circuit produces a signal representative of an unpitched musical instrument with a rhythm pattern corresponding to the pulse output pattern of an individual rhythm channel. The voice generation circuit output signals corresponding to each rhythm channel and representing different unpitched instruments are combined and applied to an audio transducer. Each individual rhythm channel can be programmed by the instrument player to provide a pulse output sequence representative of any rhythm pattern desired. Each rhythm channel has a plurality of logic means and a selection means. The instrument player uses the selection means to set or program various ones of the plurality of logic means to form a pattern corresponding to the desired rhythm. Thereafter, each set logic means produces an output pulse upon receipt of a sequence pulse from the pulse generator. A switching network can be provided between the outputs of the rhythm channels and the input terminals of the voice generation circuit to provide increased flexibility and versatility. Furthermore, the programmable rhythm apparatus can be used in conjunction with the fixed rhythm matrices of the prior art to provide selectable rhythm variation for certain unpitched musical instruments and the standard rhythm for others.
    • 一种与电子乐器一起使用的可编程节奏装置,包括顺序脉冲发生器,多个单独可编程的节奏通道或轨道,每个产生响应于顺序脉冲发生器的输出脉冲模式和标准语音产生电路,以接收脉冲输出 模式从编程的节奏频道。 语音产生电路产生代表无缝乐器的信号,其具有对应于单个节奏频道的脉冲输出模式的节奏模式。 语音产生电路输出对应于每个节奏信道并且表示不同的未打开的乐器的信号被组合并应用于音频换能器。 每个单独的节奏通道可以由仪器播放器进行编程,以提供代表所需节奏图案的脉冲输出序列。 每个节奏频道具有多个逻辑装置和选择装置。 乐器演奏者使用选择装置来设置或编程多个逻辑装置中的各种逻辑装置以形成对应于期望节奏的图案。 此后,每个设置的逻辑装置在从脉冲发生器接收到序列脉冲时产生输出脉冲。 可以在节奏信道的输出和语音产生电路的输入端之间提供交换网络,以提供增加的灵活性和多功能性。 此外,可编程节奏装置可以与现有技术的固定节奏矩阵结合使用,以为某些未开发的乐器提供可选择的节奏变化,并为其他乐器提供标准节奏。
    • 45. 发明授权
    • Oscillator controlled color organ display
    • 振荡器控制彩色有机显示
    • US3851332A
    • 1974-11-26
    • US38274873
    • 1973-07-26
    • DOUGHERTY R
    • DOUGHERTY R
    • A63J17/00G08B5/36
    • A63J17/00
    • A color organ display system or music in color (MIC) system is provided for achieving musical tone separation expressed in terms of color utilizing a power supply, pre-amp and automatic volume regulator, and an RC Audio Frequency Phase Shift Oscillator. The power supply is a standard piece of equipment which can be readily purchased at any electronic supply store. The pre-amp and automatic volume regulator as well as the RC Audio Frequency Phase Shift Oscillator is comprised of transistors, capacitors and resistors which are all readily intergratable. One pre-amp and automatic volume regulator for a multi-channel operation is required. One RC Audio Frequency Phase Shift Oscillator (channel unit) is required for each note utilizing a different color light to display the note which is currently being played by the instrument to which the MIC system is connected. The tones, as for example, from a radio or an organ or jukebox, requires that separation be applied simultaneously to a bank of channels of one or more oscillator circuits which are held just barely below oscillation. Power from the many tones to be separated provides the small additional signal level necessary to drive one or more of the separate and independent oscillator circuits into operation. Thus, the output of the one or more oscillators when operating are amplified sufficiently to provide separate indicator lamp displays.
    • 提供彩色显示系统或彩色音乐(MIC)系统,用于实现利用电源,前置放大器和自动音量调节器以及RC音频相移振荡器在颜色方面表达的音调分离。 电源是一种标准的设备,可以在任何电子商店轻松购买。 前置放大器和自动音量调节器以及RC音频相移振荡器由晶体管,电容器和电阻组成,这些都可以很容易地进行。 需要一个用于多通道操作的前置放大器和自动音量调节器。 每个音符需要一个RC音频相移振荡器(通道单位),使用不同的颜色指示灯可显示MIC系统所连接的仪器当前正在播放的音符。 音调,例如来自无线电或器官或自动点唱机,要求将分离同时应用于一个或多个振荡器电路的一组通道,这些振荡器电路只保持刚好低于振荡。 要分离的许多音调的功率提供驱动单独和独立的振荡器电路中的一个或多个操作所需的小的附加信号电平。 因此,一个或多个振荡器在操作时的输出被充分放大以提供单独的指示灯显示。
    • 46. 发明授权
    • Sonic-color system
    • SONIC彩色系统
    • US3815128A
    • 1974-06-04
    • US18833971
    • 1971-10-12
    • MC CLURE R
    • MC CLURE R
    • A63J17/00G08B5/22
    • A63J17/00
    • An electronically controlled audio-responsive color display is provided by a system wherein audio signals of various frequencies are utilized to effect illumination in various colors. Signal processing amplifies and limits total audio signal strength while substantially maintaining relative signal strength. The audio signals are segregated into a plurality of frequency bands, and the detected signal magnitude from each band is applied in pulse form to effect illumination in corresponding colors.
    • 电子控制的音频响应彩色显示器由系统提供,其中使用各种频率的音频信号来实现各种颜色的照明。 信号处理放大并限制总音频信号强度,同时基本保持相对信号强度。 音频信号被分离成多个频带,并且以脉冲形式施加来自每个频带的检测信号幅度以实现相应颜色的照明。
    • 47. 发明授权
    • Light display
    • 光显示
    • US3736832A
    • 1973-06-05
    • US3736832D
    • 1970-01-26
    • FRANKE HFRANKE R
    • FRANKE HFRANKE R
    • A63J19/00A63J17/00G09F13/34
    • A63J19/00A63J2019/003
    • A light display apparatus comprising a plurality of light sources controlled by circuitry and a display screen. The display apparatus can project images of an object onto the screen in several relative positions to create apparent motion in coordination with a sound wave signal. Illumination of the respective light sources is coordinated to respond to various amplitudes of a sound wave signal by contact structure placed in different actuated positions under control of divers voltage amplitudes of an output signal from an audio-amplifier.
    • 一种光显示装置,包括由电路和显示屏控制的多个光源。 显示装置可以在几个相对位置将物体的图像投影到屏幕上,以与声波信号协调来产生明显的运动。 通过在来自音频放大器的输出信号的潜在的电压幅度的控制下,通过位于不同的致动位置的接触结构来协调各个光源的照明来响应声波信号的各种振幅。