ESP32 Audio Stream Selector

Selection of the pair of channels will be done with 3 DIP switches.
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48 days

0:54

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Plan

Clarifying component references.

Clarifying project plan.

Planning DIP switch integration.

Outlining the project plan.

Got it: you want a 3-bit DIP switch to select the Ultranet channel pair in hardware.
  • I’ve prepared a plan to add a 3‑position DIP, tie it into the PLD with pull resistors/optional RC, define the 0–7 code-to-pair truth table, and wire through to the DSP/DAC.
  • Optional: mirror the DIP bits to U3 for status.
Click Start to run the plan. Any preference for pull-up vs pull-down and debounce (yes/no)?
48 days
EXPORT TO PDF
31 days

1:09

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Checking PDF export instructions.

Using the knowledge tool for PDF export.

Gathering instructions for PDF export.

Using Knowledge Base Tool.

Reading docs for: "How do I export a Flux project to PDF? Specifically: exporting schematic pages to PDF, PCB layout to PDF, or printing to PDF. If PDF is not supported, what export options exist (Gerbers, images, BOM) and how to produce a PDF alternative?"

Reading docs for: "Does Flux support exporting schematics or PCB layout to PDF, or printing to PDF? If yes, where is the command and what steps? If not, what export formats are available?"

Considering export alternatives.

This is what the Flux documentation says about exporting a schematic to PDF:
“Can I export my schematic as a PDF?
No, you cannot export a PDF of your schematic from Flux right now.” Source
Which did you want to export to PDF: the schematic or the PCB layout?
31 days

Started implementing a plan

# Goal

- Integrate a 3-bit DIP switch into the Portable Audio DSP project to select the Ultranet channel pair in hardware. The DIP switch setting will feed the PLD, which decodes the 3-bit code and routes the corresponding two audio channels to the DSP and DAC.

# Implementation plan

1. **DIP Switch Integration**

1. Place a 3-bit DIP switch footprint in the schematic.

2. Connect each DIP pole to dedicated PLD input pins with appropriate pull-up or pull-down resistors to ensure stable logic levels.

3. Optionally add RC debounce circuits for noise immunity.

2. **PLD Logic Setup**

1. Define the 3-bit truth table mapping (codes 0–7) to the eight possible channel pairs.

2. Modify the PLD symbol to expose the DIP switch input pins and document the channel pair associations as part of the design notes.

3. **Routing to Audio System**

1. Connect the PLD outputs corresponding to the selected channel pair to the I2S/TDM path leading to the DSP and DAC.

2. Ensure all routing remains on the safe (non-isolated) side of the barrier.

4. **Optional ESP32 Status Monitoring**

1. Route the DIP switch signals to the ESP32 GPIOs as status inputs, verifying that the 3.3V logic levels are met.

2. Label these nets clearly for documentation and testing purposes.

# Success criteria

- A 3-bit DIP switch is integrated and correctly feeds the PLD inputs with stable logic levels (enhanced by pull-ups/pull-downs and optional RC debounce).

- The PLD implements the defined truth table mapping the DIP switch bits (0–7) to eight channel pairs and routes the selected channels to the DSP/DAC.

- Optional routing to the ESP32 for status is completed and verified for 3.3 V compatibility.

- All changes are documented in the design notes, including DIP switch mapping and PLD interface details.

14 days

Stopped due to a problem. Please try again.


recommend a replacement for IC5.

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are all my components in this project RoHS compliant?

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4
please explain what U4 does.

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recommend a replacement for C24.

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5
verify that all passive components have an appropriate voltage ratings.

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3
check all my ICs for any missing decoupling capacitors. Flag any warnings and ma...

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2
SCL
ESP_EN
ESP_RX
SDA
ESP_IO0
ESP_TX
VD
J1


  • Ground
    A common return path for electric current. Commonly known as ground.
  • Net Portal
    Wirelessly connects nets on schematic. Used to organize schematics and separate functional blocks. To wirelessly connect net portals, give them same designator. #portal
  • Power Net Portal
    Wirelessly connects power nets on schematic. Identical to the net portal, but with a power symbol. Used to organize schematics and separate functional blocks. To wirelessly connect power net portals, give them the same designator. #portal #power
  • Generic Resistor
    A generic fixed resistor for rapid developing circuit topology. Save precious design time by seamlessly add more information to this part (value, footprint, etc.) as it becomes available. Standard resistor values: 1.0Ω 10Ω 100Ω 1.0kΩ 10kΩ 100kΩ 1.0MΩ 1.1Ω 11Ω 110Ω 1.1kΩ 11kΩ 110kΩ 1.1MΩ 1.2Ω 12Ω 120Ω 1.2kΩ 12kΩ 120kΩ 1.2MΩ 1.3Ω 13Ω 130Ω 1.3kΩ 13kΩ 130kΩ 1.3MΩ 1.5Ω 15Ω 150Ω 1.5kΩ 15kΩ 150kΩ 1.5MΩ 1.6Ω 16Ω 160Ω 1.6kΩ 16kΩ 160kΩ 1.6MΩ 1.8Ω 18Ω 180Ω 1.8KΩ 18kΩ 180kΩ 1.8MΩ 2.0Ω 20Ω 200Ω 2.0kΩ 20kΩ 200kΩ 2.0MΩ 2.2Ω 22Ω 220Ω 2.2kΩ 22kΩ 220kΩ 2.2MΩ 2.4Ω 24Ω 240Ω 2.4kΩ 24kΩ 240kΩ 2.4MΩ 2.7Ω 27Ω 270Ω 2.7kΩ 27kΩ 270kΩ 2.7MΩ 3.0Ω 30Ω 300Ω 3.0KΩ 30KΩ 300KΩ 3.0MΩ 3.3Ω 33Ω 330Ω 3.3kΩ 33kΩ 330kΩ 3.3MΩ 3.6Ω 36Ω 360Ω 3.6kΩ 36kΩ 360kΩ 3.6MΩ 3.9Ω 39Ω 390Ω 3.9kΩ 39kΩ 390kΩ 3.9MΩ 4.3Ω 43Ω 430Ω 4.3kΩ 43KΩ 430KΩ 4.3MΩ 4.7Ω 47Ω 470Ω 4.7kΩ 47kΩ 470kΩ 4.7MΩ 5.1Ω 51Ω 510Ω 5.1kΩ 51kΩ 510kΩ 5.1MΩ 5.6Ω 56Ω 560Ω 5.6kΩ 56kΩ 560kΩ 5.6MΩ 6.2Ω 62Ω 620Ω 6.2kΩ 62KΩ 620KΩ 6.2MΩ 6.8Ω 68Ω 680Ω 6.8kΩ 68kΩ 680kΩ 6.8MΩ 7.5Ω 75Ω 750Ω 7.5kΩ 75kΩ 750kΩ 7.5MΩ 8.2Ω 82Ω 820Ω 8.2kΩ 82kΩ 820kΩ 8.2MΩ 9.1Ω 91Ω 910Ω 9.1kΩ 91kΩ 910kΩ 9.1MΩ #generics #CommonPartsLibrary
  • Generic Capacitor
    A generic fixed capacitor ideal for rapid circuit topology development. You can choose between polarized and non-polarized types, its symbol and the footprint will automatically adapt based on your selection. Supported options include standard SMD sizes for ceramic capacitors (e.g., 0402, 0603, 0805), SMD sizes for aluminum electrolytic capacitors, and through-hole footprints for polarized capacitors. Save precious design time by seamlessly add more information to this part (value, footprint, etc.) as it becomes available. Standard capacitor values: 1.0pF 10pF 100pF 1000pF 0.01uF 0.1uF 1.0uF 10uF 100uF 1000uF 10,000uF 1.1pF 11pF 110pF 1100pF 1.2pF 12pF 120pF 1200pF 1.3pF 13pF 130pF 1300pF 1.5pF 15pF 150pF 1500pF 0.015uF 0.15uF 1.5uF 15uF 150uF 1500uF 1.6pF 16pF 160pF 1600pF 1.8pF 18pF 180pF 1800pF 2.0pF 20pF 200pF 2000pF 2.2pF 22pF 20pF 2200pF 0.022uF 0.22uF 2.2uF 22uF 220uF 2200uF 2.4pF 24pF 240pF 2400pF 2.7pF 27pF 270pF 2700pF 3.0pF 30pF 300pF 3000pF 3.3pF 33pF 330pF 3300pF 0.033uF 0.33uF 3.3uF 33uF 330uF 3300uF 3.6pF 36pF 360pF 3600pF 3.9pF 39pF 390pF 3900pF 4.3pF 43pF 430pF 4300pF 4.7pF 47pF 470pF 4700pF 0.047uF 0.47uF 4.7uF 47uF 470uF 4700uF 5.1pF 51pF 510pF 5100pF 5.6pF 56pF 560pF 5600pF 6.2pF 62pF 620pF 6200pF 6.8pF 68pF 680pF 6800pF 0.068uF 0.68uF 6.8uF 68uF 680uF 6800uF 7.5pF 75pF 750pF 7500pF 8.2pF 82pF 820pF 8200pF 9.1pF 91pF 910pF 9100pF #generics #CommonPartsLibrary
  • Generic Inductor
    A generic fixed inductor for rapid developing circuit topology. *You can now change the footprint and 3D model at the top level anytime you want. This is the power of #generics
  • Terminal
    Terminal
    An electrical connector acting as reusable interface to a conductor and creating a point where external circuits can be connected.
  • RMCF0805JT47K0
    47 kOhms ±5% 0.125W, 1/8W Chip Resistor 0805 (2012 Metric) Automotive AEC-Q200 Thick Film #forLedBlink
  • 875105359001
    10uF Capacitor Aluminum Polymer 20% 16V SMD 5x5.3mm #forLedBlink #commonpartslibrary #capacitor #aluminumpolymer #radialcan
  • CTL1206FYW1T
    Yellow 595nm LED Indication - Discrete 1.7V 1206 (3216 Metric) #forLedBlink

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Portable Audio DSP

Portable Audio DSP
Description

Created
Last updated by vasy_skral
3 Contributor(s)
vasy_skral
jharwinflux
jharwinbarrozo

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