kostas1 / Straight Rose Carbonite Freezer

Loaded

0

0

Files

Schematic

PCB

Log InSign Up

ESP32 and BME680 Integration

kostas1

kostas1

Can you connect those for me ?
392 days

flux

1:12

Below is a schematic update suggestion that will connect the I2C bus, pull-up resistors, and decoupling capacitors:
Schematic Net Connections:
  1. I2C Bus Wiring:
    • Connect the SDA pin of U2 to the SDA pin of U1 on a net labeled "I2C_SDA".
    • Connect the SCL pin of U2 to the SCL pin of U1 on a net labeled "I2C_SCL".
  2. Pull-Up Resistors:
    • Wire R1 such that one end is connected to the "I2C_SDA" net and the other end goes to the 3.3V rail.
    • Wire R2 such that one end is connected to the "I2C_SCL" net and the other end goes to the 3.3V rail.
  3. Decoupling Capacitors:
    • Connect C1 between the 3.3V rail and ground at the ESP32 power input.
    • Connect C2 between the VDD pin of the BME680 and ground.
    • Ensure that both decoupling capacitors share a common ground by connecting to the Ground component.
Using the "Apply changes" button will update your schematic with these net connections. Let me know if you need any additional modifications!
Apply net changes
Confirm net labeling
Verify decoupling connections
Proceed with updates
392 days

โ€‹
Sign up to send

To get started, talk to Flux or create a New Document.

Reviews

Documents

    Documents are markdown text files which describe project goals, capture details, or even simulation outputs.

    Assets

    No assets added.

    Straight Rose Carbonite Freezer

    Straight Rose Carbonite Freezer thumbnail
    Welcome to your new project. Imagine what you can build here.

    Properties

    Properties describe core aspects of the project.

    Pricing & Availability

    Distributor

    Qty 1

    Arrow

    $11.19

    Digi-Key

    $10.65โ€“$21.52

    LCSC

    $19.28

    Mouser

    $17.30

    Verical

    $17.60โ€“$18.43

    Controls

    Welcome ๐Ÿ‘‹

    Flux helps you build PCBs faster with an AI teammate!

    Create your account to collaborate, stay updated, fork your own version, and get instant answers from our AI agent.

        Introducing AI Placement!
        AI Placement Demo

        AI-Powered Component Placement

        Let AI place your components intelligently. AI Placement analyzes your schematic and positions components for optimal routing, signal integrity, and board density.

        From Schematic to Layout in Seconds

        Skip the tedious manual placement. AI Placement generates a starting layout you can refine, saving hours of repetitive work on every new design.

        Works With Auto-Layout

        Pair AI Placement with Auto-Layout for a complete AI-driven PCB design flow โ€” from component placement through trace routing, all with one click.

        Try it