ATX WiFi Control Board


Worked for 23 sec
Referenced guidance.
Thought for 15 sec — Searching for library schema
Created 6 tasks.
1/6 Rename project, create specification, and record initial requirements/power budget

Rename project, create specification, and record initial requirements/power budget

Select library parts for MCU, T/RH sensor, USB-C input, regulator, and protection

Add main components and supporting passives to the schematic

Wire USB-C power/protection, 3.3 V rail, MCU boot/debug, USB data, I2C sensor, and indicators

Create firmware/regulatory/bring-up project files

Run schematic/design checks and fix actionable issues

Thought for 8 sec
Reading project docs.
Renamed USB-C WiFi BLE TH Sensor.
Updated project description.
Set Domain, Connectivity, Connectivity and 2 more.
Thought for a moment
Creating documentation and estimates
I
Make a board to plug direct I to my pc motherboards 24pin molar connector, allow me to plug my PSU molar connector into the board and take power from the SB pin. Have a WiFi module which will start an AP which when prompting for sign-in will ask which network to connect to. Have a Arduino chip which has custom firmware on to allow me to connect the device via Alexa. Include pins for me to connect the power switch, reset switch to and allow pins for me to send them back to the motherboard for remote control.
No board changes were made; the project is still empty because no ACUs are currently available for Agent execution.
Remaining work: design an ATX 24-pin pass-through board using the +5VSB rail, protected 3.3 V supply, Wi‑Fi/BLE MCU, captive-portal provisioning, Alexa-compatible firmware plan, and isolated pass-through/control headers for PWR_SW and RESET_SW. The exact ATX connector orientation and remote-switch isolation/fail-safe behavior must be confirmed before schematic capture and PCB layout.
Create power schematic
Use ESP32 module
Add switch control
Clarify design constraints
No schematic yet

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