IP Library Granted Patent US 9,154,100
Granted Patent B2
US 9,154,100 · App. 14/090,825 · Granted Oct 6, 2015

Equalizer

Inventor: David Joseph Mate (Long Compton, GB)
Assignee: Red Lion 49 Limited
H03G5/165H03G5/005H03G5/025
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Quick Facts
Patent No.
US 9,154,100
App. No.
14/090,825
Granted
Oct 6, 2015
Kind
B2
Abstract

An equalizer ( 402 ) is shown, having a state variable filter in which a first MDAC ( 502 ) is coupled to a first integrator ( 503 ) and a second MDAC ( 504 ) is coupled to a second integrator ( 505 ) to allow control of the corner frequency of the state variable filter. The MDACs are each configured to provide variable attenuation in a plurality of discrete steps. A digital attenuation controller is coupled to and adjusts the attenuation of the MDACs independently, and effects a one-step increase in the corner frequency of the state variable filter by first determining the attenuation levels of the MDACs, and then controlling the attenuation levels of the MDACs in accordance with their existing attenuation levels.

Claims (31)

1. An equalizer for applying equalization to an input audio signal, said equalizer including:

a state variable filter having a first integrator and a second integrator, and having a variable corner frequency that is controlled by a first multiplying digital-to-analog converter (MDAC) coupled to said first integrator and a second multiplying digital-to-analog converter (MDAC) coupled to said second integrator, wherein said first multiplying digital-to-analog converter (MDAC) and said second multiplying digital-to-analog converter (MDAC) are each configured to provide variable attenuation in a plurality of discrete steps;

a digital attenuation controller coupled to and configured to adjust the attenuation of said first multiplying digital-to-analog converter (MDAC) and said second multiplying digital-to-analog converter (MDAC) independently, and wherein, to effect a one-step increase in the corner frequency of the state variable filter, said digital attenuation controller is configured to determine attenuation levels of said first multiplying digital-to-analog converter (MDAC) and said second multiplying digital-to-analog converter (MDAC), and:

in response to determining that the attenuation of said first multiplying digital-to-analog converter (MDAC) is equal to the attenuation of said second multiplying digital-to-analog converter (MDAC), increase the attenuation of said first multiplying digital-to-analog converter (MDAC) by one step and leaving the attenuation of said second multiplying digital-to-analog converter (MDAC) unchanged,

in response to determining that the attenuation of said first multiplying digital-to-analog converter (MDAC) is one step higher than the attenuation of said second multiplying digital-to-analog converter (MDAC), decrease the attenuation of said first multiplying digital-to-analog converter (MDAC) by one step and increasing the attenuation of said second multiplying digital-to-analog converter (MDAC) by one step,

in response to determining that the attenuation of said second multiplying digital-to-analog converter (MDAC) is one step higher than the attenuation of said first multiplying digital-to-analog converter (MDAC), increase the attenuation of said first multiplying digital-to-analog converter (MDAC) by one step and leaving the attenuation of said second multiplying digital-to-analog converter (MDAC) unchanged.

2. The equalizer of claim 1 , wherein:

said state variable filter further comprises a third multiplying digital-to-analog converter (MDAC) coupled to a third integrator, said third multiplying digital-to-analog converter (MDAC) being configured to provide variable attenuation in a plurality of discrete steps, and wherein the combination of said third multiplying digital-to-analog converter (MDAC) and said third integrator allows adjustment of the quality factor of said state variable filter; and

said digital attenuation controller is further coupled to said third multiplying digital-to-analog converter (MDAC), so as to provide for adjustment of said quality factor of said state variable filter.

3. The equalizer of claim 1 , forming part of a parametric equalizer circuit, wherein the output of said state variable filter is a bandpass signal.

4. A mixing console having a channel strip for modifying an input audio signal, said channel strip including an equalizer for applying equalization to an input audio signal, said equalizer including:

a state variable filter having a first integrator and a second integrator, and having a variable corner frequency that is controlled by a first multiplying digital-to-analog converter (MDAC) coupled to said first integrator and a second multiplying digital-to-analog converter (MDAC) coupled to said second integrator, wherein said first multiplying digital-to-analog converter (MDAC) and said second multiplying digital-to-analog converter (MDAC) are each configured to provide variable attenuation in a plurality of discrete steps;

a digital attenuation controller coupled to and configured to adjust the attenuation of said first multiplying digital-to-analog converter (MDAC) and said second multiplying digital-to-analog converter (MDAC) independently, and wherein, to effect a one-step increase in the corner frequency of the state variable filter, said digital attenuation controller is configured to determine the attenuation levels of said first multiplying digital-to-analog converter (MDAC) and said second multiplying digital-to-analog converter (MDAC), and:

in response to determining that the attenuation of said first multiplying digital-to-analog converter (MDAC) is equal to the attenuation of said second multiplying digital-to-analog converter (MDAC), increase the attenuation of said first multiplying digital-to-analog converter (MDAC) by one step and leaving the attenuation of said second multiplying digital-to-analog converter (MDAC) unchanged,

in response to determining that the attenuation of said first multiplying digital-to-analog converter (MDAC) is one step higher than the attenuation of said second multiplying digital-to-analog converter (MDAC), decrease the attenuation of said first multiplying digital-to-analog converter (MDAC) by one step and increasing the attenuation of said second multiplying digital-to-analog converter (MDAC) by one step,

in response to determining that the attenuation of said second multiplying digital-to-analog converter (MDAC) is one step higher than the attenuation of said first multiplying digital-to-analog converter (MDAC), increase the attenuation of said first multiplying digital-to-analog converter (MDAC) by one step and leaving the attenuation of said second multiplying digital-to-analog converter (MDAC) unchanged.

5. The mixing console of claim 4 , further comprising a corner frequency adjustment device coupled to the digital attenuation controller, said corner frequency adjustment device being configured to allow manual adjustment of the corner frequency of the state variable filter.

6. The mixing console of claim 4 ,

wherein:

said state variable filter further comprises a third multiplying digital-to-analog converter (MDAC) coupled to a third integrator, said third multiplying digital-to-analog converter (MDAC) being configured to provide variable attenuation in a plurality of discrete steps, and wherein the combination of said third multiplying digital-to-analog converter (MDAC) and said third integrator allows adjustment of the quality factor of said state variable filter; and

said digital attenuation controller is further coupled to said third multiplying digital-to-analog converter (MDAC), so as to provide for adjustment of said quality factor of said state variable filter; and

further comprising a quality factor adjustment device coupled to the digital attenuation controller, said quality factor adjustment device being configured to allow manual adjustment of the quality factor of the state variable filter.

7. In an equalizer including a state variable filter having a first integrator and a second integrator, thus providing said equalizer with a corner frequency variable over a plurality of discrete steps, which is controlled by a first multiplying digital-to-analog converter (MDAC) coupled to said first integrator and a second multiplying digital-to-analog converter (MDAC) coupled to said second integrator, and wherein said first multiplying digital-to-analog converter (MDAC) and said second multiplying digital-to-analog converter (MDAC) are each configured to provide variable attenuation levels in a plurality of discrete steps, a method of adjusting the corner frequency of said equalizer, which method comprises steps of:

receiving an instruction to increment the corner frequency of the state variable filter by one step;

identifying the current corner frequency of the state variable filter, by determining the attenuation levels of said first multiplying digital-to-analog converter (MDAC) and said second multiplying digital-to-analog converter (MDAC); and

in response to determining that the attenuation of said first multiplying digital-to-analog converter (MDAC) is equal to the attenuation of said second multiplying digital-to-analog converter (MDAC), increasing the attenuation of said first multiplying digital-to-analog converter (MDAC) by one step and leaving the attenuation of said second multiplying digital-to-analog converter (MDAC) unchanged,

in response to determining that the attenuation of said first multiplying digital-to-analog converter (MDAC) is one step higher than the attenuation of said second multiplying digital-to-analog converter (MDAC), decreasing the attenuation of said first multiplying digital-to-analog converter (MDAC) by one step and increasing the attenuation of said second multiplying digital-to-analog converter (MDAC) by one step,

in response to determining that the attenuation of said second multiplying digital-to-analog converter (MDAC) is one step higher than the attenuation of said first multiplying digital-to-analog converter (MDAC), increasing the attenuation of said first multiplying digital-to-analog converter (MDAC) by one step and leaving the attenuation of said second multiplying digital-to-analog converter (MDAC) unchanged.

8. The method of claim 7 , wherein said state variable filter further comprises a third multiplying digital-to-analog converter (MDAC) coupled to a third integrator, said third multiplying digital-to-analog converter (MDAC) being configured to provide variable attenuation in a plurality of discrete steps, and wherein the combination of said third multiplying digital-to-analog converter (MDAC) and said third integrator allows adjustment of the quality factor of said state variable filter in a plurality of discrete steps, and wherein said method further comprises steps of:

receiving an instruction to increase the quality factor of said state variable filter;

increasing the attenuation of said third multiplying digital-to-analog converter (MDAC) by one step.

Assignments (2)
CHANGE OF NAME Recorded Aug 8, 2022
From: RED LION 49 LIMITED
To: SOLID STATE LOGIC UK LIMITED
Reel/Frame 060741/0919 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 26, 2013
From: MATE, DAVID JOSEPH
To: RED LION 49 LIMITED
Reel/Frame 031681/0023 →
Priority Claims (1)
GB 1221560.4 · Nov 30, 2012 · national
Continuity (1)
Related Publication 20140153745A1 · Jun 5, 2014