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https://storage.googleapis.com/flux-comment-files/files/commentFileId-2f03d0e679...

make this
2y
@copilot
Image

Image

https://storage.googleapis.com/flux-comment-files/files/commentFileId-2f03d0e67903bebaa663100994b349678e129f5c3c6501cdaed899d6c1111ecc.jpeg?GoogleAccessId=graviton-mvp%40appspot.gserviceaccount.com&Expires=4859707933&Signature=Ykx5KPvwTPKDB%2FDh09wRLLs%2F1ZlSv0vZeYdUHFFXzDWPx7hjn75GJXmY5R2O483fUGBVQDH64qmipPFsadUDTZBlziKZq3WyqfmxP0eVEapXlV5OH3auryFWJFEgMQ%2BJG0frvSFvjF0DMfeZooiG3iqZ%2Bc7I2%2BVJaFyA5rfgvGNvLww8rh0QqMycrf1PIxCOu6D7j4gWmYpMGMkIgv6zD8%2BOv3GSHyXkIdz6P3AAdTW%2B9VzhuPltm3%2BLoPuAayJfn9QKth4RFdZTUpLpm90nVJYFFabg7zUo7EMIA3%2BrqfM4Mu1glrJkesrWZ2k3lBhxNASrEdepbTD5vmHIhhBgQQ%3D%3D
2y
It seems you've uploaded an image multiple times. The image shows a microcontroller chip labeled "MG72F6D17M" with two set of pins, JP1 and JP2, and a 100kΩ resistor designated as "IC1 R1". There are also nets connecting pins from both JP1 and JP2 to the resistor, and to each other.
What would you like assistance with in regards to this image? If you need help with creating this circuit in Flux, or have any other questions, feel free to let me know!
2y
make this
2y
To recreate the circuit from the image in Flux, the browser-based electronics CAD program, you'll want to follow these general steps:
  1. Place a Microcontroller: Start your project by placing a microcontroller symbol that closely matches the pinout of the "MG72F6D17M", if it is available. If the exact microcontroller is not available, use a generic microcontroller symbol and customize the pin names accordingly.
  2. Add Connectors: Place two connectors, JP1 and JP2, with enough pins to match the microcontroller. JP1 should have 10 pins, and JP2 should have 20 pins based on the image.
  3. Place Resistor: Add a 100kΩ resistor, which can be labelled "IC1 R1".
  4. Make Connections: Now, make the following connections using nets to represent the wires:
    • Connect the microcontroller to JP1 and JP2 as shown in the image. This will involve connecting pins of the microcontroller to the corresponding pins on JP1 and JP2.
    For example (assuming that the pin names on the generic microcontroller match those in the image):
    • Connect MCU:P6.1 to JP1:1.
    • Connect MCU:P6.0 to JP1:2.
    • And so on for the rest of the pins shown in the image.
    • Connect the resistor R1 to the respective microcontroller pins. Based on the image, it seems like it is connected to a pin labelled VDD, VSS, or possibly another control pin, but it's not clear due to the image's resolution and cut-off labels.
    Since the specific microcontroller pin to which the resistor's other terminal is connected isn't clearly visible, you would typically connect it to a power pin or a pin that requires a pull-up resistor, depending on the function the resistor serves in this circuit.
    For example, if the resistor is supposed to be a pull-up for a reset pin, it might be something like this:
    • Connect R1:1 to the microcontroller's reset pin (e.g., MCU:RST if applicable).
    • Connect R1:2 to the microcontroller's power pin (e.g., MCU:VDD if applicable).
Please provide additional details if you have specific pin connections in mind or other functions for the circuit elements. Without more context, such as where the second terminal of R1 is connected, these instructions are based on commonly used configurations and may not match your intended design exactly.
2y
MG82F6D17 add this i cant find it in nlibrary
2y
In Flux, if you cannot find a specific component like the "MG82F6D17" microcontroller in the parts library, you can create a custom component that matches the pinout and functionality of the intended device. Here's a simplified set of steps to do this:
  1. Create a New Component: Start by creating a new component in the Flux component editor. You will need to state the number of pins and their functions according to the datasheet of the MG82F6D17.
  2. Define Pins: Accurately configure the pins for the component, giving them the correct names and attributes (e.g., I/O, power, ground, etc.) according to the microcontroller's datasheet.
  3. Draw the Symbol: Design the symbol for the microcontroller. It could be a rectangle with pin names and numbers corresponding to the datasheet.
  4. Create the Footprint: Create a footprint that corresponds to the physical package of the MG82F6D17. Make sure the pin spacing and dimensions are accurate to ensure the physical microcontroller will fit onto the PCB.
  5. Save and Place the Component: Once the custom component is created, save it to your personal library, and then place it onto your schematic.
  6. Connect Other Components: Proceed to place other components like resistors, capacitors, connectors, etc., and wire them according to your circuit design.
Remember to label the component with the correct name and reference designator, e.g., "U1: MG82F6D17". Since the MG82F6D17 is not a real microcontroller model I'm familiar with (it may be a typo or a hypothetical part), you'll need the actual datasheet or specifications to create the component accurately.
If you have that information handy, please provide the specifics, such as the number of pins and their functions, so I can assist you further with creating the custom component in Flux. Without the actual datasheet details, these instructions are generalized to any microcontroller component creation.
2y
1


  • Generic Inductor
    A generic fixed inductor suitable for rapid circuit topology development. The footprint automatically adapts based on the selected package, supporting standard SMD sizes (e.g., 0402, 0603, 0805) as well as well-known inductor packages such as SDR1806, PA4320, SRN6028, and SRR1260. Standard inductor values: 1.0 nH, 10 nH, 100 nH, 1.0 µH, 10 µH, 100 µH, 1.0 mH 1.2 nH, 12 nH, 120 nH, 1.2 µH, 12 µH, 120 µH, 1.2 mH 1.5 nH, 15 nH, 150 nH, 1.5 µH, 15 µH, 150 µH, 1.5 mH 1.8 nH, 18 nH, 180 nH, 1.8 µH, 18 µH, 180 µH, 1.8 mH 2.2 nH, 22 nH, 220 nH, 2.2 µH, 22 µH, 220 µH, 2.2 mH 2.7 nH, 27 nH, 270 nH, 2.7 µH, 27 µH, 270 µH, 2.7 mH 3.3 nH, 33 nH, 330 nH, 3.3 µH, 33 µH, 330 µH, 3.3 mH 3.9 nH, 39 nH, 390 nH, 3.9 µH, 39 µH, 390 µH, 3.9 mH 4.7 nH, 47 nH, 470 nH, 4.7 µH, 47 µH, 470 µH, 4.7 mH 5.6 nH, 56 nH, 560 nH, 5.6 µH, 56 µH, 560 µH, 5.6 mH 6.8 nH, 68 nH, 680 nH, 6.8 µH, 68 µH, 680 µH, 6.8 mH 8.2 nH, 82 nH, 820 nH, 8.2 µH, 82 µH, 820 µH, 8.2 mH #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, 10000uF 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, 220pF, 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 Resistor
    A generic fixed resistor ideal for rapid circuit topology development. Its footprint automatically adapts based on the selected package case code—supporting 0402, 0603, 0805, 1203, and many other standard SMD packages, as well as axial horizontal and vertical configurations. Save precious design time by seamlessly add more information to this part (value, footprint, etc.) as it becomes available. Standard resistor values: 1.0 ohm, 10 ohm, 100 ohm, 1.0k ohm, 10k ohm, 100k ohm, 1.0M ohm 1.1 ohm, 11 ohm, 110 ohm, 1.1k ohm, 11k ohm, 110k ohm, 1.1M ohm 1.2 ohm, 12 ohm, 120 ohm, 1.2k ohm, 12k ohm, 120k ohm, 1.2M ohm 1.3 ohm, 13 ohm, 130 ohm, 1.3k ohm, 13k ohm, 130k ohm, 1.3M ohm 1.5 ohm, 15 ohm, 150 ohm, 1.5k ohm, 15k ohm, 150k ohm, 1.5M ohm 1.6 ohm, 16 ohm, 160 ohm, 1.6k ohm, 16k ohm, 160k ohm, 1.6M ohm 1.8 ohm, 18 ohm, 180 ohm, 1.8K ohm, 18k ohm, 180k ohm, 1.8M ohm 2.0 ohm, 20 ohm, 200 ohm, 2.0k ohm, 20k ohm, 200k ohm, 2.0M ohm 2.2 ohm, 22 ohm, 220 ohm, 2.2k ohm, 22k ohm, 220k ohm, 2.2M ohm 2.4 ohm, 24 ohm, 240 ohm, 2.4k ohm, 24k ohm, 240k ohm, 2.4M ohm 2.7 ohm, 27 ohm, 270 ohm, 2.7k ohm, 27k ohm, 270k ohm, 2.7M ohm 3.0 ohm, 30 ohm, 300 ohm, 3.0K ohm, 30K ohm, 300K ohm, 3.0M ohm 3.3 ohm, 33 ohm, 330 ohm, 3.3k ohm, 33k ohm, 330k ohm, 3.3M ohm 3.6 ohm, 36 ohm, 360 ohm, 3.6k ohm, 36k ohm, 360k ohm, 3.6M ohm 3.9 ohm, 39 ohm, 390 ohm, 3.9k ohm, 39k ohm, 390k ohm, 3.9M ohm 4.3 ohm, 43 ohm, 430 ohm, 4.3k ohm, 43K ohm, 430K ohm, 4.3M ohm 4.7 ohm, 47 ohm, 470 ohm, 4.7k ohm, 47k ohm, 470k ohm, 4.7M ohm 5.1 ohm, 51 ohm, 510 ohm, 5.1k ohm, 51k ohm, 510k ohm, 5.1M ohm 5.6 ohm, 56 ohm, 560 ohm, 5.6k ohm, 56k ohm, 560k ohm, 5.6M ohm 6.2 ohm, 62 ohm, 620 ohm, 6.2k ohm, 62K ohm, 620K ohm, 6.2M ohm 6.8 ohm, 68 ohm, 680 ohm, 6.8k ohm, 68k ohm, 680k ohm, 6.8M ohm 7.5 ohm, 75 ohm, 750 ohm, 7.5k ohm, 75k ohm, 750k ohm, 7.5M ohm 8.2 ohm, 82 ohm, 820 ohm, 8.2k ohm, 82k ohm, 820k ohm, 8.2M ohm 9.1 ohm, 91 ohm, 910 ohm, 9.1k ohm, 91k ohm, 910k ohm, 9.1M ohm #generics #CommonPartsLibrary
  • Terminal
    Terminal
    An electrical connector acting as reusable interface to a conductor and creating a point where external circuits can be connected.
  • RMCF0805JT47K0
    General Purpose Thick Film Standard Power and High-Power Chip Resistor 47 kOhms ±5% 0.125W, 1/8W Chip Resistor 0805 (2012 Metric) Automotive AEC-Q200 Thick Film Features: - RMCF – standard power ratings - RMCP – high power ratings - Nickel barrier terminations standard - Power derating from 100% at 70ºC to zero at +155ºC - RoHS compliant, REACH compliant, and halogen free - AEC-Q200 compliant
  • 875105359001
    10 µF 16 V Aluminum - Polymer Capacitors Radial, Can - SMD 30mOhm 2000 Hrs @ 105°C #commonpartslibrary #capacitor #aluminumpolymer #radialcan
  • CTL1206FYW1T
    Yellow 595nm LED Indication - Discrete 1.7V 1206 (3216 Metric)
  • 1070TR
    Battery Holder (Open) Coin, 20.0mm 1 Cell SMD (SMT) Tab bate or batt #forLedBlink
  • Push Button
    A momentary or non-latching switch which causes a temporary change in the state of an electrical circuit only while the switch is physically actuated. SWITCH TACTILE SPST-NO 0.05A 24V
  • T491D226K025AT
    22 µF Molded Tantalum Capacitors 25 V 2917 (7343 Metric) 800mOhm #Capacitors #Tantalum #22uF #part

Rare Salmon Sonic Screwdriver

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