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Welcome to Flux

Treat Flux like your intern. Tell it what you'd like to build and it'll get to work. You can also ask it questions, brainstorm ideas, and teach it your preferences. Learn More

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wire this up to take in 3.3v logic and output 5v logic. we have only 5v power av...

wire this up to take in 3.3v logic and output 5v logic. we have only 5v power available.
2y
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2
how do I use Flux?

@copilot how do I use Flux?
2y
Flux is a comprehensive platform for designing and laying out electronic circuits and printed circuit boards (PCBs). Here are some basic steps on how to use Flux:
  1. Create a New Project: Log into your Flux account and select 'New Project' on the dashboard to start a new schematic.
  2. Add Components: You can add components to your schematic by dragging and dropping them from the component library onto your canvas.
  3. Draw Connections: Once the components are placed, you can draw connections (wire nets) between their pins to create a complete circuit.
  4. Validate the Design: Flux comes with inbuilt design rule checking (DRC) functionality. Once your design is complete, you can cross-verify the design to ensure it adheres to all relevant design rules.
  5. Generate PCB Layout: After validating the schematic design, it can be converted into a PCB layout, where you can place components on the board and route traces.
  6. Export Design Files: You can export your design files, including schematics and Gerber files, for manufacturing the PCB.
Remember, you can always review Flux's in-depth tutorials and documentation for detailed information on how to use each feature. You can also explore the library of video tutorials and join their Slack community for queries and discussions[1]. For action-oriented responses, use the "Take Action" button to help establish the suggested connections[2].
If you're a beginner, I recommend going through the tutorial that walks you through all the main features of Flux. It will guide you to create your first PCB by the end[3].
Remember, Flux is an online platform made for collaboration, enabling workflows found in large engineering organizations. So you can also use this platform for collaborative design works[4].
2y
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3
GND
DIR
A
VCCA
VCCB
B

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    Assets

    SOT65P210X110-6N.kicad_mod

    FP_SOT65P210X110-6NFootprint

    DG4157DL-T1-E3

    DG4157DL-T1-E3 Symbol.svgDefault
    DG4157DL-T1-E3.stp

    DG4157DL-T1-E3.stp

    3D_DG4157DL-T1-E33D Model
    DG4157DL-T1-E3.png

    DG4157DL-T1-E3.png

    DG4157DL-T1-E3Thumbnail

    74AVCH1T45DCKTG4

    74AVCH1T45DCKTG4 thumbnail
    Voltage Level Translator Bidirectional 1 Circuit 1 Channel 380Mbps SC-70-6 #CommonPartsLibrary #IntegratedCircuit #Logic #Translator #Level-Shifter #74AVCH1T45

    Properties

    Integrated Circuit

    Texas Instruments

    74AVCH1T45DCKTG4

    U

    Pricing & Availability

    DPN

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    Qty 1

    1

    0

    $0.00

    1

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    $0.3502

    1

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    $0.00

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