US3795756A - Electronic tremolo effect producing device - Google Patents

Electronic tremolo effect producing device Download PDF

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US3795756A
US3795756A US00287568A US3795756DA US3795756A US 3795756 A US3795756 A US 3795756A US 00287568 A US00287568 A US 00287568A US 3795756D A US3795756D A US 3795756DA US 3795756 A US3795756 A US 3795756A
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signal
tone
frequency
musical sound
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S Suzuki
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Nippon Gakki Co Ltd
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    • GPHYSICS
    • G10MUSICAL INSTRUMENTS; ACOUSTICS
    • G10HELECTROPHONIC MUSICAL INSTRUMENTS; INSTRUMENTS IN WHICH THE TONES ARE GENERATED BY ELECTROMECHANICAL MEANS OR ELECTRONIC GENERATORS, OR IN WHICH THE TONES ARE SYNTHESISED FROM A DATA STORE
    • G10H1/00Details of electrophonic musical instruments
    • G10H1/02Means for controlling the tone frequencies, e.g. attack or decay; Means for producing special musical effects, e.g. vibratos or glissandos
    • G10H1/06Circuits for establishing the harmonic content of tones, or other arrangements for changing the tone colour
    • G10H1/12Circuits for establishing the harmonic content of tones, or other arrangements for changing the tone colour by filtering complex waveforms
    • GPHYSICS
    • G10MUSICAL INSTRUMENTS; ACOUSTICS
    • G10HELECTROPHONIC MUSICAL INSTRUMENTS; INSTRUMENTS IN WHICH THE TONES ARE GENERATED BY ELECTROMECHANICAL MEANS OR ELECTRONIC GENERATORS, OR IN WHICH THE TONES ARE SYNTHESISED FROM A DATA STORE
    • G10H1/00Details of electrophonic musical instruments
    • G10H1/02Means for controlling the tone frequencies, e.g. attack or decay; Means for producing special musical effects, e.g. vibratos or glissandos
    • G10H1/04Means for controlling the tone frequencies, e.g. attack or decay; Means for producing special musical effects, e.g. vibratos or glissandos by additional modulation

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  • Field of Search 84/ ITO l Ll l 1,19 L2 ing circuit for the frequency deviated musical sound 84/124 5 signal expediently comprises a filter circuit acting as a filter the value of which changes in response to the [56] References Cited level of an extremely low frequency signal applied at a UNTED STATES PATENTS control terminal of the filter circuit.
  • This invention relates generally to an electronic tremolo effect producing device, and more particularly to a type of device in which a tremolo effect accompanied by a tone color'modulation is obtained.
  • an electrical musical sound signal (as a carrier wave) is amplitude modulated with a signal (as a modulating wave) having a desired frequency and waveform, or alternatively, in a second method the electrical signal is converted into a sound signal through a loudspeaker rotating at a desired speed.
  • a tremolo effect represents a modulation by a frequency ranging from Hz to Hz
  • a chorus effect represents a modulation by a frequency ranging'from 0.5 Hz to 2 Hz.
  • the tone color is modulated and further the phase and directivity of the musical sound signal are varied.
  • a variation (amplitude modulation) of the signal level results whereby a wide spread sensation can be obtained. Therefore, the second system is very effective, but it involves disadvantages such as an excessively complicated rotating mechanism and a driving mechanism of the loudspeaker, and high production cost thereof.
  • various undesirable noises occurring, such as wind noise and other mechanicalnoises being introduced at the time of rotation of the loudspeaker.
  • Another object of the present invention is to provide an electronic tremolo effect producing device which produces a tremoloeffect or a chorus effect accompanied by amplitude modulation and frequency modulation, and further effected by a tone color modulation.
  • a further object of the present invention is to provide a tremolo effect producing device whichcan befreely incorporated in a desired tone color of an electronic musical instrument, and where many stages of key boards in the musical instrument are provided, in only one stage of the stages.
  • a still further object of the present invention is to provide a novel tremolo or chorus effect producing device which can operate in purely electronic manner and is simple and small in organization and economical in production.
  • FIG. 1 is a block diagram illustrating an embodiment I of the tremolo effect producing device according to the present invention
  • FIG. 2 is a block diagram showing another embodiment of the present invention.
  • FIG. 3 is a block diagram illustrating an embodiment of the mixing circuit included in FIG. 1;
  • FIG. 4 is a block diagram exhibiting an example of the mixing circuit included in FIG. 2;
  • FIG. 5 is a block diagram illustrating a further embodiment of the present invention.
  • FIGS. 6 and 7 are circuit diagrams showing concrete examples of the filter included in a tone coloring circuit of FIG. 5;
  • FIGS. 8, 9 and 10 are graphic diagrams exhibiting the characteristics of the filter included in the tone coloring circuit.
  • reference symbol G represents a tone generator and K represents a keyboard including key switches.
  • a musical sound signal selectively derived from the keyboard K is properly tone-colored by a tone-coloring circuit F and is then fed to an amplifier AMP.
  • the musical sound signal (the signal usually comprises a plurality of frequency components thus constituting a frequency spectrum band and the frequency there of is varied in accordance with the progression of the musical performance, but for convenience in explanation in this specification, the musical signal is represented by only a single frequency off Hz) is applied to a modulating circuit D.
  • the modulating circuit D comprises an oscillator LFO oscillating a signal having a frequency (0.5 to 10 Hz) which is substantially lower than that of the musical sound signal, an amplitude modulator M, and a high-pass filter F
  • the modulating circuit D serves to amplitude modulate an extremely low frequency signal (as a carrier wave) furnished from the extremely lowfrequency oscillator 'LFO with the musical sound signal (as a modulating wave).
  • a single side band modulation method or a two side band'modulation method may be utilized for the amplitude modulation.
  • a cosAw t (1 m cosw t) AcosA t+(mA/2) cos w+Aw)t+cos (w-A w)t
  • m ka and m means the amplitude modulation factor (k is the modulation sensitivity).
  • a tremolo effector a chorus effect can be recognized as marked or less marked depending on the tone-color or the musical signal. Therefore, when the tone-.
  • the coloring circuit F has a proper formant, the mixed signal represents a kind of tone-color modulation due to the beat phenomenon between f and f i A f thereby to make the tremolo-effect more pronounced.
  • the tone coloring circuit F it is not always required to insert the tone coloring circuit F into the circuit after the branch to the modulator M as shown in FIG. 1, and it may be inserted before the branching point so that the musical sound signal commonly tone-colored is fed to the modulation circuit D.
  • Mixing of the frequency deviated musical sound signal furnished from the tone coloring circuit F and the original musical sound signal may be accomplished by various ways.
  • the mixing may be effected in such a manner that the relative rate of these signals is variable by a variable resistor VR and a resistor R provided in the frequency deviated musical sound signal path and by providing a resistor R in the original musical sound signal path as shown in FIG. 3, or that the musical sound signal alone and that accompanied with the tone color modulation can be selectively switched over by.
  • a switch provided on the output side of the filter F, as shown in FIG. 4.
  • FIG. shown in FIG. is an electronic musical instrument which comprises a musical sound signal generator MS, a phase shifter PS, adapted to cause a phase shift proportional to the frequency of a musical sound signal, an amplitude modulating circuit D, a filter F of a tone coloring circuit, a phase shifter PS resistors R, and R an amplifier AMP, and a loudspeaker SP.
  • a case of two side band modulation is shown as one example of the amplitude modulating circuit D which comprises an amplitude modulator M, an extremely low frequency oscillator LFO oscillating a frequency (for instance 0.5 to 10 Hz) which is substantially lower than that of the musical sound signal, and a high-pass filter F used to eliminate the extremely low frequency signal.
  • this signal is properly tone-colored through th filter F of the tone coloring circuit, and is then mixed at a proper level through the resistor R with original musical sound signal which is passed through the resis-
  • the filter F of the tone coloring circuit may be com posed as shown in FIG. 6 so that its filtering characteristic be changed by varying its quality factor (Q value) constructed as in FIG. 7, or the filter F may be made so that its frequency characteristic be changed.
  • FIG. 8 illustrates one example of the characteristic of the filter shown in FIG. 6, and its level is changed in the vicinity of frequency 2.5 kHz as shown by (a) through (0) depending on the voltage value of the extremely low frequency signal applied to the control. terminal CT.
  • FIGS. 9 and 10 show characteristics of the filter circuit illustrated in FIG. 7.
  • FIG. 9 shows a characteristic thereof when switches SW, and SW of FIG. 7 are changed over to the side 1
  • FIG. 10 shows a characteristic thereof when the switches SW and SW are changed over to the side 2, and the characteristics are as shown by (a) through (b) depending upon the voltage value of a signal applied to the control terminal CT.
  • a signal mixed through the resistors R and R is converted through the amplifier AMP into a sound which varies in amplitude, frequency and tone color, whereby a tremolo effect sound similar to that in a rotating loudspeaker can be obtained.
  • Af should be 5 Hz to 7 Hz to obtain the tremolo effect and 0.5 Hz to 2 Hz to obtain a chorus effect.
  • phase shifter PS is provided where shown by a dotted line in FIG. 5, a more intricate effect can be produced. In other words, phase-shifting by the phase shifter PS increases with the'increment of frequency.
  • phase difference is produced between the musical sound signal (modulating wave) and the extremely low frequency signal (carrier wave) in the amplitude modulator D. Consequently, frequency modulation and amplitude modulation are effected by the frequency of the musical sound signal thereby to produce intricate effects.
  • the phase shifterPS is inserted between the extremely low frequency oscillator LPG and the filter F the extremely low fre quency signal applied to the amplitude modulator D becomes different in phase from the extremely low frequency signal applied to the control terminal of the filter F and as a result of which the frequency and phase variations of the sound produced from the loudspeaker differs from the tone color thereof thereby to produce intricate effects.
  • An electronic tremolo-effect producing device producing a tremolo effect by mixing a musical sound signal with a frequency-deviated musical signal, comprising:
  • a tone generator to generate musical sound signals
  • a first tone coloring circuit connected to said tone generator for effecting tone coloring of a selected musical sound signal from said tone generator
  • a modulating circuit connected to receive the tonecolored selected signal from said first tone coloring circuit and comprising a low frequency oscillator generating a low frequency carrier signal and a modulator connected thereto and giving out a modulated signal;
  • a filter means connected to said modulator for eliminating said low frequency carrier signal from the modulated signal and for giving an output which is selectively deviated on higher and lower sides of the selected signal frequency to the extent of the frequency of said low frequency oscillator;
  • a second tone coloring circit connected to said modulating circuit to receive said output from said filter means, said second tone coloring circuit including a variable filter circuit having a control input receiving the low frequency signal, wherein the value of the variable filter circuit varies in response to variations of said low frequency signal;
  • a signal mixing means connected to said first and second tone coloring circuits to mix at a predetermined level said frequcncy deviated signal which is tone-colored and said tone-colored selected musical sound signal, to obtain a tremolo effect.

Abstract

A tremolo effect producing device, wherein a frequency deviated musical sound signal the frequency of which is shifted higher or lower by as much as an extremely low frequency signal, is tonecolored differently from the tone color of the original signal, and the frequency deviated musical sound signal thus tone-colored and an original musical sound signal are mixed at a predetermined level. The resultant mixed signal presents a repeated change in tone color, which results in a so-called tone color tremolo. A tone coloring circuit for the frequency deviated musical sound signal expediently comprises a filter circuit acting as a filter the value of which changes in response to the level of an extremely low frequency signal applied at a control terminal of the filter circuit.

Description

United States Patent 1191 Suzuki Mar. 5, 1974 ELECTRONIC TREMOLO EFFECT 3,004,460 10/1961 Wayne 84/l.0l PRODUCING DEVICE 3,007,361 11/1961 Wayne 84/].01
[75] Inventor: Svoichi Suzuki, Hamamatsu, Japan I D Primary Examiner-Richard B. W1lk1nson 1 g qi Gqkkl Sew) Kabushlkl Assistant Examiner-Stanley J. Witkowski Ka'sha, shlzuoka'ken, Japan Attorney, Agent, or Firm-J. C. Holman [22] Filed: Sept. 8, 1972 [21] Appl. No.: 287,568 [57] ABSTRACT Related U.S. Application Data A tremolo effect producing device, wherein a fre- [63] Continuation of Ser. No. 111,449, Feb. 1, 1971, quency deviated musical Sound Signalthe frequency of abandoned which is shifted higher or lower by as much as an extremely low frequency signal, is tone-colored differ- [30] Foreign Applicati P i it D t ently from the tone color of the original signal, and Feb 3 1970 Japan 4540387 the frequency deviated musical sound signal thus tone- Feb 1970 4541739 colored and an original musical sound signal are l I mixed at a predetermined level. The resultant mixed [52] U.S. Cl...;...- ..84/1.22 signal presents a repeated change in tone color which [51] Int. Cl. Gl0h 1/04 results in a so'caned tone color tremolo A tone color [58] Field of Search 84/ ITO l Ll l 1,19 L2 ing circuit for the frequency deviated musical sound 84/124 5 signal expediently comprises a filter circuit acting as a filter the value of which changes in response to the [56] References Cited level of an extremely low frequency signal applied at a UNTED STATES PATENTS control terminal of the filter circuit. 2,835,814 5/1958 Dorf 84/l.25 X 1 Claim, 10 Drawing Figures HIGH-PASS FILTER R1 5P [E l AMPLITUDE r AMP s sm MODULATOR I F l NAL FQATOR P I i M F2 R2 HA E SH'FTER I TONE COLOR'NG CIRCUiT 0 LFO PS2 PHASE SHIFTER MODULATING EXTREMELY LOW CIRCUIT FREQUENCY OSCILLATOR PATENTED "AR 51974 SHEET 1 (If 3 m R l O R T P w R m S P wmwx S MWF LO OI Y M E DI EU M C m W R G A l HF G N T H EF W fi m ill II R D m 0 F 20 T W Hm .I O w NM F u M E G R 0| Tm TC |l r1| 1J|||| D F m G R MD UN 0 M H N H B B H mm m H m H UPI. K II K \r. AM MC m M 2 R MM G 0E TG AMP ll HI II III MODULATING CIRCIT AMPLITUDE MQDULATOR TONE GENERATOR 6. m R R m E w U0 0 l- CWFVI WC 5 LW m wwm w H .w. mum uWEF.
TONE COLOR! N6 CIRCUIT AMP- R2 F2 SW TONEQQLORING CIRCUI AMP TONE COLOR I ma CIRCUIT PAIENTEIJ 51974 3.795.756
sum 2 or 3 FIG. 5
HIGH-PASS FILTER R1 MUSICAL} SIGNAL SOUND GENERATOR PHASE SHIFTER AMPLITUDE r MODULATOR FD TONE COLORING CIRCUIT ,1 LFO PS2 PHASE SHIFTER MODULATI G1 EXTREMELY LOW C|RCU!T L JFREQUENCY OSCILLATOR 22KB Tr2 SW FIG.7
T m L o v SW2 470m gg q 10m PATENTED MR 5 I974 'SHEETISBFS FREQUENCY(HZ) 600 IOK FREQUENCY(HZ) FIG.IO
ELECTRONIC TREMOLO EFFECT PRODUCING DEVICE This is a continuation, of application Ser. No. lll,449, filed Feb. l, 1971, now abandoned.
BACKGROUND OF THE INVENTION This invention relates generally to an electronic tremolo effect producing device, and more particularly to a type of device in which a tremolo effect accompanied by a tone color'modulation is obtained.
Heretofore, there have been used tremolo or chorus producing devices wherein an electrical musical sound signal (as a carrier wave) is amplitude modulated with a signal (as a modulating wave) having a desired frequency and waveform, or alternatively, in a second method the electrical signal is converted into a sound signal through a loudspeaker rotating at a desired speed. (Hereinafter, as far as the electronic musical instrument of the invention is concerned, a tremolo effect represents a modulation by a frequency ranging from Hz to Hz, while a chorus effect represents a modulation by a frequency ranging'from 0.5 Hz to 2 Hz.) However, in the first mentioned system, since only amplitude modulation is employed, the frequency of the musical sound signal remains unchanged, and therefore the resultant sound is rather monotonous and the sound effect is very poor. On the other hand, in the second system, a loudspeaker having a directional characteristic is rotated. Therefore, when a sound pro duced therefrom is listened to at a certain position, different frequency characteristics are found at every rotating position of the loudspeaker. In other words, the tone color is modulated and further the phase and directivity of the musical sound signal are varied. In addition, a variation (amplitude modulation) of the signal level results whereby a wide spread sensation can be obtained. Therefore, the second system is very effective, but it involves disadvantages such as an excessively complicated rotating mechanism and a driving mechanism of the loudspeaker, and high production cost thereof. Furthermore, there are possibilities of various undesirable noises occurring, such as wind noise and other mechanicalnoises being introduced at the time of rotation of the loudspeaker.
SUMMARY OF THE INVENTION It is accordingly a primary object of the present invention to provide a novel organization of a tremolo or chorus effect producing device wherein all of the above-described drawbacks of the conventional devices can be eliminated.
I Another object of the present invention is to provide an electronic tremolo effect producing device which produces a tremoloeffect or a chorus effect accompanied by amplitude modulation and frequency modulation, and further effected by a tone color modulation.
A further object of the present invention is to provide a tremolo effect producing device whichcan befreely incorporated in a desired tone color of an electronic musical instrument, and where many stages of key boards in the musical instrument are provided, in only one stage of the stages.
A still further object of the present invention is to provide a novel tremolo or chorus effect producing device which can operate in purely electronic manner and is simple and small in organization and economical in production.
The nature, utility and the principle of the present invention will be more clearly understood from the following detailed description with reference to the accompanying drawings.
BRIEF DESCRIPTION OF THE DRAWING In the accompanying drawings:
FIG. 1 is a block diagram illustrating an embodiment I of the tremolo effect producing device according to the present invention;
FIG. 2 is a block diagram showing another embodiment of the present invention;
FIG. 3 is a block diagram illustrating an embodiment of the mixing circuit included in FIG. 1;
FIG. 4 is a block diagram exhibiting an example of the mixing circuit included in FIG. 2;
FIG. 5 is a block diagram illustrating a further embodiment of the present invention;
FIGS. 6 and 7 are circuit diagrams showing concrete examples of the filter included in a tone coloring circuit of FIG. 5; and
FIGS. 8, 9 and 10 are graphic diagrams exhibiting the characteristics of the filter included in the tone coloring circuit.
DETAILED DESCRIPTION OF THE INVENTION With reference now to the accompanying drawings and more particularly to FIG. 1, reference symbol G represents a tone generator and K represents a keyboard including key switches. A musical sound signal selectively derived from the keyboard K is properly tone-colored by a tone-coloring circuit F and is then fed to an amplifier AMP. At the same timefthe musical sound signal (the signal usually comprises a plurality of frequency components thus constituting a frequency spectrum band and the frequency there of is varied in accordance with the progression of the musical performance, but for convenience in explanation in this specification, the musical signal is represented by only a single frequency off Hz) is applied to a modulating circuit D. The modulating circuit D comprises an oscillator LFO oscillating a signal having a frequency (0.5 to 10 Hz) which is substantially lower than that of the musical sound signal, an amplitude modulator M, and a high-pass filter F The modulating circuit D serves to amplitude modulate an extremely low frequency signal (as a carrier wave) furnished from the extremely lowfrequency oscillator 'LFO with the musical sound signal (as a modulating wave). In this case, either a single side band modulation method or a two side band'modulation method may be utilized for the amplitude modulation. I
Hereinafter, the modulation method of two side band modulation is described.
Now it is assumed that a signal (carrier) to be modu lated furnished from the extremely low frequency oscillator LFO is represented by A cosAw t (where Aw Z'rrAf) and the musical sound signal (modulating wave) is represented by a cosw t (wherew 21rf), an amplitude-modulated output signal which is obtained on the sented by the following formula:
A cosAw t (1 m cosw t) =AcosA t+(mA/2) cos w+Aw)t+cos (w-A w)t where m ka and m means the amplitude modulation factor (k is the modulation sensitivity).
Then, when an extremely low frequency component of the thus obtained output signal is eliminated by means of the high-pass filter F, a signal represented by the following formula is obtained at an output terminal T, of the high-pass filter F (mA/2) cos (w+ A w)t+ cos (wA w)t] This signal is shifted in frequency by as much as Af to both sides of the original frequency (f) of the musical sound signal. Furthermore, this signal is properly tonecolored through a tone coloring circuit F which gives 7 a tone color different from the tone color given by the circuit F, and is then fed to the amplifier AMP thereby to be mixed with an original musical sound signal. The thus mixed signal is passed through the amplifier AMP and converted into sound in a loudspeaker SP.
A tremolo effector a chorus effect can be recognized as marked or less marked depending on the tone-color or the musical signal. Therefore, when the tone-.
coloring circuit F has a proper formant, the mixed signal represents a kind of tone-color modulation due to the beat phenomenon between f and f i A f thereby to make the tremolo-effect more pronounced. In addition, it is not always required to insert the tone coloring circuit F into the circuit after the branch to the modulator M as shown in FIG. 1, and it may be inserted before the branching point so that the musical sound signal commonly tone-colored is fed to the modulation circuit D.
Mixing of the frequency deviated musical sound signal furnished from the tone coloring circuit F and the original musical sound signal may be accomplished by various ways. For instance, the mixing may be effected in such a manner that the relative rate of these signals is variable by a variable resistor VR and a resistor R provided in the frequency deviated musical sound signal path and by providing a resistor R in the original musical sound signal path as shown in FIG. 3, or that the musical sound signal alone and that accompanied with the tone color modulation can be selectively switched over by. a switch provided on the output side of the filter F, as shown in FIG. 4.
Now, shown in FIG. is an electronic musical instrument which comprises a musical sound signal generator MS, a phase shifter PS, adapted to cause a phase shift proportional to the frequency of a musical sound signal, an amplitude modulating circuit D, a filter F of a tone coloring circuit, a phase shifter PS resistors R, and R an amplifier AMP, and a loudspeaker SP. In FIG. 5, a case of two side band modulation is shown as one example of the amplitude modulating circuit D which comprises an amplitude modulator M, an extremely low frequency oscillator LFO oscillating a frequency (for instance 0.5 to 10 Hz) which is substantially lower than that of the musical sound signal, and a high-pass filter F used to eliminate the extremely low frequency signal.
In the same manner as in FIG. 1, a signal represented by the following formula is obtained at an output terminal T, of the filter F in FIG. 5 also:
(mA/2) cos (w A w)t cos (w A w)t] This represents a signal which isshifted in frequency by as much as Af to both sides of a frequency (f) of the musical sound signal.
Then, this signal is properly tone-colored through th filter F of the tone coloring circuit, and is then mixed at a proper level through the resistor R with original musical sound signal which is passed through the resis- The filter F of the tone coloring circuit may be com posed as shown in FIG. 6 so that its filtering characteristic be changed by varying its quality factor (Q value) constructed as in FIG. 7, or the filter F may be made so that its frequency characteristic be changed.
FIG. 8 illustrates one example of the characteristic of the filter shown in FIG. 6, and its level is changed in the vicinity of frequency 2.5 kHz as shown by (a) through (0) depending on the voltage value of the extremely low frequency signal applied to the control. terminal CT. FIGS. 9 and 10 show characteristics of the filter circuit illustrated in FIG. 7. FIG. 9 shows a characteristic thereof when switches SW, and SW of FIG. 7 are changed over to the side 1, while FIG. 10 shows a characteristic thereof when the switches SW and SW are changed over to the side 2, and the characteristics are as shown by (a) through (b) depending upon the voltage value of a signal applied to the control terminal CT.
A signal mixed through the resistors R and R is converted through the amplifier AMP into a sound which varies in amplitude, frequency and tone color, whereby a tremolo effect sound similar to that in a rotating loudspeaker can be obtained. In addition, Af should be 5 Hz to 7 Hz to obtain the tremolo effect and 0.5 Hz to 2 Hz to obtain a chorus effect.
Moreover, if the phase shifter PS is provided where shown by a dotted line in FIG. 5, a more intricate effect can be produced. In other words, phase-shifting by the phase shifter PS increases with the'increment of frequency.
Therefore, a phase difference is produced between the musical sound signal (modulating wave) and the extremely low frequency signal (carrier wave) in the amplitude modulator D. Consequently, frequency modulation and amplitude modulation are effected by the frequency of the musical sound signal thereby to produce intricate effects. Further, if the phase shifterPS is inserted between the extremely low frequency oscillator LPG and the filter F the extremely low fre quency signal applied to the amplitude modulator D becomes different in phase from the extremely low frequency signal applied to the control terminal of the filter F and as a result of which the frequency and phase variations of the sound produced from the loudspeaker differs from the tone color thereof thereby to produce intricate effects.
While a few embodiments of the present'invention have been illustrated and described in detail, it is particularly understood that the present invention is not limited thereto or thereby.
I claim:
1. An electronic tremolo-effect producing device, producing a tremolo effect by mixing a musical sound signal with a frequency-deviated musical signal, comprising:
a tone generator to generate musical sound signals;
a first tone coloring circuit connected to said tone generator for effecting tone coloring of a selected musical sound signal from said tone generator;
a modulating circuit connected to receive the tonecolored selected signal from said first tone coloring circuit and comprising a low frequency oscillator generating a low frequency carrier signal and a modulator connected thereto and giving out a modulated signal;
a filter means connected to said modulator for eliminating said low frequency carrier signal from the modulated signal and for giving an output which is selectively deviated on higher and lower sides of the selected signal frequency to the extent of the frequency of said low frequency oscillator;
a second tone coloring circit connected to said modulating circuit to receive said output from said filter means, said second tone coloring circuit including a variable filter circuit having a control input receiving the low frequency signal, wherein the value of the variable filter circuit varies in response to variations of said low frequency signal; and
a signal mixing means connected to said first and second tone coloring circuits to mix at a predetermined level said frequcncy deviated signal which is tone-colored and said tone-colored selected musical sound signal, to obtain a tremolo effect.

Claims (1)

1. An electronic tremolo-effect producing device, producing a tremolo effect by mixing a musical sound signal with a frequencydeviated musical signal, comprising: a tone generator to generate musical sound signals; a first tone coloring circuit connected to said tone generator for effecting tone coloring of a selected musical sound signal from said tone generator; a modulating circuit connected to receive the tone-colored selected signal from said first tone coloring circuit and comprising a low frequency oscillator generating a low frequency carrier signal and a modulator connected thereto and giving out a modulated signal; a filter means connected to said modulator for eliminating said low frequency carrier signal from the modulated signal and for giving an output which is selectively deviated on higher and lower sides of the selected signal frequency to the extent of the frequency of said low frequency oscillator; a second tone coloring circit connected to said modulating cirCuit to receive said output from said filter means, said second tone coloring circuit including a variable filter circuit having a control input receiving the low frequency signal, wherein the value of the variable filter circuit varies in response to variations of said low frequency signal; and a signal mixing means connected to said first and second tone coloring circuits to mix at a predetermined level said frequency deviated signal which is tone-colored and said tonecolored selected musical sound signal, to obtain a tremolo effect.
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Cited By (8)

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US3911776A (en) * 1973-11-01 1975-10-14 Musitronics Corp Sound effects generator
US3920905A (en) * 1974-02-11 1975-11-18 Cbs Inc Production of non-frequency proportional vibrato
US3995235A (en) * 1975-10-24 1976-11-30 Rca Corporation Phase control circuit including an operational transconductance amplifier suitable for use in audio frequency signal processing apparatus
US4108041A (en) * 1976-06-25 1978-08-22 Norlin Music, Inc. Phase shifting sound effects circuit
US4306480A (en) * 1977-03-29 1981-12-22 Frank Eventoff Electronic musical instrument
US4580479A (en) * 1983-02-28 1986-04-08 Octave-Plateau Electronics Inc. Guitar controller
US4924744A (en) * 1987-08-27 1990-05-15 Hudson Soft Co., Ltd. Apparatus for generating sound through low frequency and noise modulation
US20080300519A1 (en) * 2007-06-04 2008-12-04 Helt Iii Donald G Neuromuscular therapeutic device

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US3004460A (en) * 1956-12-31 1961-10-17 Baldwin Piano Co Audio modulation system
US3007361A (en) * 1956-12-31 1961-11-07 Baldwin Piano Co Multiple vibrato system

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Cited By (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3911776A (en) * 1973-11-01 1975-10-14 Musitronics Corp Sound effects generator
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