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Your request is to connect the components in your schematic according to the design intent. Below is a summary of the net connections you can implement:

Net Connections Overview:
  • Battery & TP4056:
    • Connect the positive terminal of the Li-ion Battery (BAT1) to the battery positive input (BAT+) on the TP4056 (PMIC1).
    • Connect the negative terminal of the battery to the common Ground.
  • Power Supply to ESP32:
    • Connect the output from the TP4056 (its VOUT pin) to the power input (VCC) of the ESP32-WROOM-32 (U1). (Note that although the TP4056 typically outputs around 5V, your design may assume that any additional regulation to 3.3V for the ESP32 is managed or that the module is tolerant; adjust as necessary.)
    • Place the 100nF Capacitor (C1) between the VCC net (power rail feeding the ESP32) and Ground to serve as a decoupling capacitor, and similarly add the second 100nF Capacitor (C2) as additional filtering near the ESP32.
  • Sensor (Magnetic Reed Switch):
    • Connect one terminal of the Magnetic Reed Switch (S1) to a selected GPIO input on the ESP32. (Many designers select a pin with internal pull-up enabled, such as one of the general-purpose digital inputs.)
    • Connect the other terminal of the reed switch directly to Ground. This way, when the cover is removed (magnet separated), the GPIO will detect the change.
  • Common Ground:
    • Ensure that all components (Battery, TP4056, ESP32, and Magnetic Reed Switch) share a common ground via the Ground component.

Schematic Connection Summary Table:

Table


Connection DescriptionNet/Node
[Li-ion Battery] positive terminal to TP4056 BAT+ inputBattery Positive (BAT+)
[Li-ion Battery] negative terminal to GroundGround (GND)
TP4056 VOUT output to [ESP32-WROOM-32] power inputVCC
[100nF Capacitors] (C1 & C2) between ESP32 VCC and Ground (placed near U1)VCC and Ground
One terminal of [Magnetic Reed Switch] to a selected ESP32 GPIO signalSensor Signal (GPIO)
Other terminal of [Magnetic Reed Switch] to GroundGround (GND)

These connections establish the power management, sensor interfacing, and ensure a common ground throughout your design. Let me know if you need any further net connections or additional modifications!
Connection Overview
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  • 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
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    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
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  • Generic Inductor
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Easy Gold Ecto Goggles

Easy Gold Ecto Goggles
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Last updated by victorobaro
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victorobaro

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