USB-C Sensor Node


Worked for 1 min 32 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
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 1 min 40 sec — Creating documentation and estimates
2/6 Select library parts for MCU, T/RH sensor, USB-C input, regulator, and protection

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 38 sec
Found 1 results for Select a low-power Wi-Fi plus Bluetooth LE 5.x MCU module for a USB-C powered consumer temperature/humidity sensor node. Need 2.4 GHz 802.11 b/g/n, BLE 5.x, native USB programming preferred, integrated antenna/certified module, 3.3 V operation, suitable Flux library part..
Found 3 results for Select a digital temperature and relative humidity sensor IC for an indoor consumer environmental node. Need I2C interface, 3.3 V operation, low power, good accuracy, SMD package, available Flux library part, modern non-EOL part..
Found 3 results for Select a USB-C receptacle for a 5 V sink-only consumer IoT sensor node. Need USB 2.0 data pins D+ D-, CC1 CC2 pins, SMD or hybrid mechanical shell, Flux library part with footprint..
Found 3 results for Select a 5 V USB input protection IC or eFuse/load switch for consumer USB-C powered IoT node. Need overvoltage protection, undervoltage lockout, overcurrent/current limit around 0.5 to 3 A capable sources, reverse-current blocking if possible, output to 3.3 V regulator, SMD Flux library part..
Found 2 results for Select a 5 V to 3.3 V regulator for ESP32-class Wi-Fi sensor node. Need low quiescent current, at least 600 mA transient capability, thermally suitable for USB 5 V to 3.3 V, SMD Flux library part. Buck or thermally capable LDO acceptable..
Found 2 results for Select USB ESD protection for USB 2.0 D+ D- lines and 5 V VBUS on a USB-C powered consumer IoT node. Need low capacitance data line TVS array and VBUS TVS/protection parts available in Flux library..
Analyzing in depth.
Deeply thought for a moment
Thought for 3 sec
Deeply thought for a moment
Analyzing in depth.
Completed design checks.
Getting a schematic overview.
Getting a BOM overview.
Thought for 2 sec
Deeply thought for 41 sec
Analyzing in depth.
Reading project docs.
Deeply thought for 1 sec
Thought for 1 sec
Analyzing in depth.
Deeply thought for 16 sec
Thought for 1 min 27 sec
Thought for a moment
Choosing components for low-power MCU
I
Created a project doc

Project Specification — USB-C WiFi BLE TH Sensor

View Document

Status: Draft schematic in progress. A consumer USB-C powered temperature and relative humidity sensor node with Wi-Fi and Bluetooth Low Ene...
make the schematic
I’m blocked because this account currently has no available ACUs, so I can’t create or modify the schematic.
Current state: the project is empty—0 components and 0 nets. Remaining work is the complete schematic: USB‑C 5 V input with CC resistors and reverse/OVP/UVLO/OCP protection, 3.3 V regulation, Wi‑Fi/BLE 5.x MCU/module, digital temperature/RH sensor, decoupling, programming/reset circuitry, and electrical verification.
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Document project requirements
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