Claims
- 1. Circuitry for amplifying audio signals, comprising:
- preamplifier means for amplifying the audio signals and including a first operational amplifier for receiving the audio signals at a non-inverting input thereof and providing a first amplified signal output, first feedback means interconnected between the output of said operational amplifier and an inverting input thereof for variably controlling the gain and frequency response of said operational amplifier within a predetermined range of audio frequencies;
- amplifier means responsive to said first amplified signal output and including a second operational amplifier for providing a second amplified signal output and including a second feedback means for selectively controlling the gain and frequency response of said second operational amplifier within a second predetermined range of audio frequencies;
- distortion means for selectively distorting said second amplified signal output to provide at least one of a distorted audio output signal and a non-distorted audio output signal;
- post gain control means for independently amplifying said distorted audio output signal to provide a third amplified signal output; and
- switching means for selectively controlling said preamplifier means, amplifier means and said distortion means to provide said distorted audio output signal with said switching means at one position, and said non-distorted audio output signal with said switching means at another position.
- 2. Circuitry according to claim 1 wherein said first feedback means includes first circuit means for varying the gain of said first operational amplifier.
- 3. Circuitry according to claim 2 wherein said first circuit means includes a variable potentiometer electrically connected to said switching means.
- 4. Circuitry according to claim 1 further comprising tone control filter means for filtering said first amplified signal output in at least one of several frequency ranges to provide a filtered output signal; and wherein said switching means includes first and second switching sections each having respective one and another operating positions with said second switching section being electrically connected in said tone control filter means with said switching means set to said one position, said second switching section modifies said filtered output signal with said switching means set to said another position, and said second switching section does not modify said filtered output signal with said switching means set to said one position.
- 5. Circuitry according to claim 4 wherein said first and second switching sections are ganged.
- 6. Circuitry according to claim 4 wherein said tone control filter means further includes at least first, second and third filter sections respectively operating in different frequency ranges of said audio signals, and a second potentiometer electrically connected in one of said at least first, second and third filter sections for selectively varying the gain of said filtered output signal.
- 7. Circuitry according to claim 4 wherein said first and second switching sections are ganged.
- 8. Circuitry according to claim 4 wherein said switching means is an external footswitch for operating said first and second switching sections.
- 9. Circuitry according to claim 4 further comprising intermediate amplifier means responsive to first amplified signal output and providing an intermediate amplified signal output to said tone control filter means.
- 10. Circuitry according to claim 2 wherein, with said switching means at said one position, said first circuit means is electrically disconnected from said first operational amplifier, and said amplifier means, distortion means and post gain control means are enabled to provide said distorted audio output signal.
- 11. Circuitry according to claim 10 wherein said second feedback means includes second circuit means for varying the gain and frequency response of said second operational amplifier at respective predetermined low and high frequencies to vary said second amplified signal output.
- 12. Circuitry according to claim 11 wherein said second circuit means is a selectively variable potentiometer for providing a broad range of selective gain control of said second amplified signal output.
- 13. Circuitry according to claim 11 further comprising tone control filter means for providing a filtered audio output signal and including second switching means operable with said switching means such that with said switching means at said one position, said filtered audio output signal is not affected.
- 14. Circuitry according to claim 13 said tone control filter means further includes at least first, second and third filter sections respectively operating in different frequency ranges of said audio signals, and at least one of said first, second and third filter sections includes a "thick" capacitor connected to said second switching means such that with said first switching means at said one position said "thick" capacitor is connected in one of said first, second and third filter sections, and with said first switching means at said another position said "thick" capacitor is not connected in one of said first, second and third filter sections.
- 15. Circuitry according to claim 14 wherein said tone control filter means includes passive filter circuitry.
- 16. Circuitry according to claim 1 wherein said distortion means includes clipping means responsive to said second signal output for providing said distorted audio output signal.
- 17. Circuitry according to claim 16 wherein said clipping means is operable when said switching means is at said one position.
- 18. Circuitry according to claim 1 wherein said switching means is a DPDT push button switch.
- 19. Circuitry according to claim 1 wherein said switching means is an external footswitch.
- 20. Circuitry according to claim 1 further comprising input jack means connected to the non-inverting input of said first operational amplifier for receiving an audio input signal and including means for providing at least one reduced amplified signal level output.
- 21. Circuitry according to claim 1 wherein said post gain control means is a variable potentiometer.
- 22. Circuitry according to claim 21 wherein said post gain control means is operable with said switching means at said one position.
- 23. Circuitry for selectively amplifying audio signals in distorted and non-distorted modes, comprising:
- a series connection of variable gain first amplifier means, variable gain second amplifier means and clipping means; and
- switching means for selectively controlling the first amplifier means, the second amplifier means and the clipping means so that the second amplifier means provides substantially unity gain irrespective of any gain to which it is adjusted while the first amplifier means provides that gain to which it is adjusted and the clipping means is disabled in one position of the switching means to produce a non-distorted audio signal output, and in another position of the switching means first amplifier means has unity gain, the second amplifier means has variable gain, and the clipping means is enabled to produce a distorted audio signal output.
- 24. Circuitry as defined in claim 23 tone control filter means connected between the first amplifier means and the second amplifier means for filtering low- mid- and high-range frequencies at the one position of the switching means and for emphasizing frequencies between the low- and high-range frequencies at the another position of the switching means.
- 25. Circuitry as defined in claim 24 including post gain control means for selectively controlling gain of the circuitry at said another position of the switching means and which is disabled at the one position of the switching means.
- 26. Circuitry as defined in claim 25 wherein the gain of the post gain control means is variable between about 0 dB and -12 dB.
- 27. Circuitry for selectively amplifying audio signals in distorted and non-distorted modes, comprising:
- low gain amplifier means having an input for receiving the audio signals and an output for providing a first amplified signal output;
- first feedback means interconnected between the output and input of the low gain amplifier means for selectively controlling the gain and frequency response of the low gain amplifier means within a predetermined range of audio frequencies;
- high gain amplifier means having an input in series connection with the first amplified output signal and an output for providing a second amplified output signal;
- second feedback means interconnected between the output and the input of the high gain amplifier means for selectively controlling the gain and frequency response of the high gain amplifier means within a second predetermined range of audio frequencies;
- distortion means having an input connected to the output of the high gain amplifier means for providing a distorted audio output signal when the high gain amplifier means is adjusted through its feedback means to provide a second amplified output signal of high gain; and
- switching means for selectively controlling the low gain amplifier means, the high gain amplifier means and the distortion means so that the high gain amplifier means provides substantially unity gain irrespective of any setting of its feedback means while the low gain amplifier means provides that gain to which its feedback means is set and the distortion means is disabled in one position of the switching means, and in another position of the switching means the low gain amplifier means has unity gain, the high gain amplifier means has variable gain, and the distortion means is enabled.
- 28. Circuitry as defined in claim 27 including tone control filter means between the low gain amplifier means and the high gain amplifier means for filtering low- mid- and high-range frequencies at the one position of the switching means and for emphasizing frequencies between the low- and high-range frequencies at the another position of the switching means.
- 29. Circuitry for selectively amplifying audio signals in distorted and non-distorted modes, comprising:
- a series connection of variable gain first amplifier means, tone control means, variable gain second amplifier means and clipping means; and
- switching means for selectively controlling the first amplifier means, the second amplifier means and the clipping means so that the second amplifier means provides substantially unity gain irrespective of any setting of its variable gain while the first amplifier means provides that gain to which it is adjusted, the tone control means gives a non-distortion frequency response and the clipping means is disabled in one position of the switching means to produce a non-distorted audio signal output, and in another position of the switching means, the first amplifier means has unity gain, the second amplifier means has variable gain, the tone control means has a distortion frequency response, and the clipping means is enabled to produce a distorted audio signal output.
- 30. Circuitry as defined in claim 29 the tone control means for filtering low- mid- and high-range frequencies at the one position of the switching means and for emphasizing frequencies between the low- and high-range frequencies at the another position of the switching means.
- 31. Circuitry as defined in claim 30 wherein the tone control means includes a "thick" capacitor switched into circuit at the another position of the switching means and switched out of circuit at the one position of the switching means.
- 32. Circuitry for amplifying audio signals, comprising:
- first amplifier means having an input for receiving the audio signals and an output for providing a first amplified signal output, first feedback means interconnected between the output and input of the first amplifier means for selectively controlling the gain and frequency response of said first amplifier means within a predetermined range of audio frequencies;
- second amplifier means serially connected with the first amplifier means having an input responsive to the first amplified output signal and an output for providing a second amplified output signal and including a second feedback means for selectively controlling the gain and frequency response of said second amplifier means within a second predetermined range of audio frequencies;
- distortion means for selectively distorting said second amplified signal output to provide at least one of a distorted audio output signal and a non-distorted audio output signal dependent upon unity gain and non-unity gain of the preamplifier means;
- post gain control means for independently amplifying the output of the distortion means; and
- switching means for selectively controlling said preamplifier means so that it is "floating" with unity gain in one position of the switching means and has a non-unity, low gain as set by the first feedback means at another position of the switching means, for selectively controlling the amplifier means so that it is "floating" with unity gain in the another position of the switching means and has a non-unity, high gain as set by the second feedback means when the switching means is in the one position thereof, so that said distortion means provides said distorted audio output signal with said switching means at the one position, and said non-distorted audio output signal with said switching means at the another position.
- 33. Circuitry as defined in claim 32 including tone control filter means for filtering said first amplified output signal in high, mid and low frequency ranges and including a "thick" capacitor altering high, mid and low range filtering, the switching means connecting and disconnecting the "thick" capacitor in circuit in response to the one and another positions of the switching means respectively.
- 34. Circuitry for selectively amplifying audio signals in superdistorted and clean, non-distorted audio output modes, comprising:
- a series connection of variable gain first amplifier means for producing the clean, non-distorted audio output mode from the circuitry, tone control filter means for selectively providing frequency filtering of a first kind and of a second kind, variable gain superdistortion amplifier means for providing a high gain output, clipping means for clipping the high gain output to provide the superdistorted audio output mode from the circuitry, and post gain control means for selectively varying the gain of the superdistorted audio output mode; and
- switching means for selectively controlling the first amplifier means, the superdistortion amplifier means, the clipping means and the post gain control means so that the superdistortion amplifier means provides substantially unity gain irrespective of any setting of its variable gain while the first amplifier means provides that gain to which it is adjusted, the tone control filter means is adjusted to frequency filtering of the first kind and the clipping means and post gain control means are disabled at one position of the switching means to produce the clean, non-distorted audio output mode from the circuitry, and the first amplifier means provides substantially unity gain irrespective of any setting of its variable gain while the superdistortion amplifier means provides that gain to which it is adjusted, the tone control filter means is adjusted to frequency filtering of the second kind, and the clipping means and the post gain control means are enabled at another position of the switching means to produce the superdistorted audio output mode from the circuitry.
- 35. Circuitry as defined in claim 34 wherein the frequency filtering of the first kind comprises low- mid- and high-range frequency filtering with a notch at a predetermined low frequency and the frequency filtering of the second kind comprises low- to high-range frequency filtering which eliminates the notch.
- 36. Circuitry as defined in claim 35 wherein the gain of the post gain control means is variable between about 0 dB and -12 dB.
- 37. Circuitry as defined in claim 34 wherein the first amplifier means is variable in gain up to about 35 dB and the superdistortion amplifier means is variable in gain up to about 70 dB.
- 38. Circuitry as defined in claim 35 wherein the first amplifier means is variable in gain up to about 35 dB and the superdistortion amplifier means is variable in gain up to about 70 dB.
- 39. Circuitry as defined in claim 36 wherein the first amplifier means is variable in gain up to about 35 dB and the superdistortion amplifier means is variable in gain up to about 70 dB.
Parent Case Info
This application is a continuation of application Ser. No. 63,924, filed 06/19/87 and abandoned concurrently with the filing of this application.
US Referenced Citations (7)
Non-Patent Literature Citations (1)
Entry |
Vox Distortion Boaster V8162 (Thomas Organ Co.) 1969. |
Continuations (1)
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Number |
Date |
Country |
Parent |
63924 |
Jun 1987 |
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