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Screenshot Bark Scanning Filter FPD file

Screenshot Bark Scanning Filter FPD file

Motivation

t.b.d.

Bark Scanning Filter Block Diagram

Bark Scanning Filter Block Diagram

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Sitelist

Current state:

Picture Bark Scanning Filter current state

Under test

Bark Scanning Filter PCB's

PCB-A1, CV inputs, IO for filters 1-6

Bark Scanning Filter PCB-A1, CV inputs, IO for filters 1-6

PCB-A1, CV inputs, IO for filters 1-6

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Current state: Published

This PCB holds the control voltage inputs for spread, scanning depth, LFO rate and scan CV with the dedicated attenuators and the manual controls. As well as the in- and outputs for the Bark filters 1-6 and the manual control for the dedicated VCA's. For understanding how everything works together please have a look at the block diagram on the project page.

PCB-A2, CV inputs, IO for filters 1-6

Bark Scanning Filter PCB-A2, CV inputs, IO for filters 6-17

PCB-A2, CV inputs, IO for filters 7-17

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Current state: Published

This PCB holds the single outputs for the Bark filters 7-16, the envelope outs, the control voltage ins and the manual fader controls for the dedicated VCA's. The control voltages for the VCA's are signaled with LED, as well as envelope outputs for each channel. For understanding how everything works together please have a look at the block diagram on the project page.

PCB-A2, CV inputs, IO for filters 1-6

Bark Scanning Filter PCB-A3, CV inputs, IO for filters 6-17

PCB-A3, Audio in- and outputs, CV inputs, IO for filters 17-24

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Current state: Published

This PCB holds the audio inputs for the odd and even filters. The odd input is normaled to the even input. Both inputs have attenuverters. Those makes for interesting sonic effects when the feedback is engaged. The outputs A and B sums the individual outs from the filters according to the position of the select switches (A, B, off). The Q potentiometer adjust the amount of feedback used. The feedback is voltage controllable. The PCB holds the single outputs for the Bark filters 17-24, the envelope outs, the control voltage ins and the manual fader controls for the dedicated VCA's as well. The control voltages for the VCA's are signaled with LED, as well as envelope outputs for each channel. For understanding how everything works together please have a look at the block diagram on the project page.

PCB-LF, low pass / band pass

Bark Scanning Filter PCB-LF, CV inputs, filter one low pass, filter 2 band pass

PCB-LF, low pass / 2 band pass

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Current state: Published

This PCB holds the first and second Bark filter. Filter one is a low pass with 80Hz corner frequency, filter two is the first band pass with 150Hz center frequency. It holds the associated VCA's and the associated precision full wave rectifiers as well. For understanding how everything works together please have a look at the block diagram on the project page.

PCB-FH, band pass / high pass

Bark Scanning Filter PCB-FH

PCB-FH, band pass / high pass

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Current state: Published

This PCB holds the twenty third and twenty fourth Bark filter. The last band pass with 10500Hz center frequency and the high pass with 13500Hz cut off frequency. It holds the associated VCA's and the associated precision full wave rectifiers as well. For understanding how everything works together please have a look at the block diagram on the project page.

PCB-B1, scanning LFO, voltage reference, PSU in

Bark Scanning Filter PCB-B1, scanning LFO, voltage reference, PSU in

PCB-B1, scanning LFO, voltage reference, PSU in

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Current state: Published

This PCB holds the scanning LFO and the output buffers for the optional/additional filter out 1-6. As well as the power supply input and the 5V voltage reference. For understanding how everything works together please have a look at the block diagram on the project page.

PCB-B2, scanning LFO, voltage reference, PSU in

Bark Scanning Filter PCB-B2

PCB-B2, additional/optional filter outs

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Current state: Published

This PCB on the back of the middle section holds output buffers for the optional/additional filter outs 7-17. It carries all the necessary signals and control voltages from the left to the right building block and back. And it holds the middle section together. For understanding how everything works together please have a look at the block diagram on the project page.

2024 October

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