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create a high level mermaid block diagram of this project. Include key component...

Create 20 Jst jumper pins
2y
@copilot create a high level mermaid block diagram of this project. Include key component's manufacturer part number in each block whenever possible.
2y
Sure! Let's create a high-level mermaid block diagram for the Raspberry Pi Pico-based project you have here. The key component is the RP2040 microcontroller, so we'll focus on including the significant signals and power connections defined.
Here is the mermaid block diagram:

Diagram


RaspberryPiPico "Ground Connections" "RP2040 Microcontroller" "Power System" "UART GPIO0 GPIO1" "GPIOs GPIO2 to GPIO13" "GPIOs GPIO14 to GPIO22" "ADC GPIO26_ADC0, GPIO27_ADC1, GPIO28_ADC2, ADC_VREF" "Debug SWDIO, SWCLK" "USB Power Input (VBUS)" "System Power Input (VSYS)"
In this diagram:
  • RP2040 Microcontroller represents the central microcontroller on the Raspberry Pi Pico.
  • Power System includes the various power inputs and supplies.
  • UART GPIO0 GPIO1, GPIOs GPIO2 to GPIO13, GPIOs GPIO14 to GPIO22, ADC GPIO26_ADC0, GPIO27_ADC1, GPIO28_ADC2, ADC_VREF, and Debug SWDIO, SWCLK represent the specific GPIO and ADC pins defined in your project.
  • Ground Connections consolidates all GND pins in the schematic.
To render this as a visual diagram, you can paste the mermaid code snippet above into a Markdown file or an editor that supports mermaid diagrams. This will give you a clear, high-level view of your project components and their connections.
2y
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3
can you add a raspberry pico footprint?

@copilot can you add a raspberry pico footprint?
2y
There's no physical influence over your project from this end, but some information can certainly guide you on how to add a Raspberry Pi Pico footprint to your Flux project.
Here are the necessary steps:
  1. Search for the Raspberry Pi Pico footprint
    • In the Flux component library, seek for 'Raspberry Pi Pico' or 'Pico' related components. If there's a similar component, you can use that.
    • If none exists, you will need to create a new component.
  2. Create a New Component (if necessary)
    • In the left panel, click on 'Components', and click the 'Create Component' button.
    • Set the parameters for the component:
      • Name: Raspberry Pi Pico
      • Description: Raspberry Pi Pico microcontroller
    • Then proceed to define the pins according to the Raspberry Pi Pico pinout.
  3. Define the Pins
    • You need to add 3 groups of pins according to the Raspberry Pi Pico datasheet:
      • Ground pins (GND)
      • Power pin (3V3)
      • GPIO pins (GPIO0 to GPIO29, including specific roles for some GPIOs such as ADCs, RUN, SWDIO, SWCLK...)
  4. Configure the Footprint
    • After defining the pins, you need to configure the layout for the footprint. You can do this in the Footprint Editor available in Flux.
    • Create a rectangle of size 21x51mm (size of the Raspberry Pi Pico) and place the pins accordingly. Recall, it's a dual row header with a distance of 17.78mm (700mil) between rows. Each pin should have a distance of 2.54mm (100mil) to the adjacent pins.
  5. Save and Use Your Component
    • After setting up the footprint, click 'Save'. You can now find your created component in your custom component library.
Ensure to connect the correct pins according to your needs, and refer to the Raspberry Pi Pico's datasheet once added onto your board.
2y
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GPIO7
GPIO26_ADC0
GND
GPIO22
GND
GPIO6
GPIO28_ADC2
GND
VSYS
SWDIO
GND
GPIO2
GPIO3
GPIO1
GND
GPIO12
GPIO0
GPIO8
GND
RUN
GPIO16
AGND
GPIO19
GPIO9
GPIO17
GPIO15
GND
3V3_EN
GPIO5
GPIO10
GPIO4
ADC_VREF
SWCLK
GND
GPIO13
GPIO20
GPIO27_ADC1
GPIO11
VBUS
GPIO18
GPIO14
GPIO21
3V3

Raspberry Pi Pico Shield