Garden Controller Design


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Project Specification — USB-C WiFi BLE TH Sensor

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Status: Draft schematic in progress. A consumer USB-C powered temperature and relative humidity sensor node with Wi-Fi and Bluetooth Low Ene...
Architecture review agrees with a USB-C sink plus real VBUS protection and a buck regulator; I’m selecting a low-power certified Wi‑Fi/BLE module rather than a hot LDO-based ESP32-style power tree.
Worked for 14 sec
Thought for 18 sec — Choosing components for low-power MCU
Found 3 results for Find Flux library USB input eFuse or protection switch IC for 5 V USB-C sink with adjustable/current limit around 0.75 to 1 A, overvoltage protection threshold above normal USB 5.25 V and below 9 V, undervoltage lockout, reverse current blocking, soft-start/inrush control, active SMD part. Prefer TI TPS2595 TPS2596 TPS2594 AP2265 AP22802 style eFuse..
Found 10 results for TPS2595.
Found 10 results for TPS2596.
Found 2 results for AP22652.
Found 4 results for NCP361.
Thought for 19 sec
Thought for 16 sec
Reading SIWG917Y111MGABAR, SHT41-AD1B-R2, USB4105-GF-A, TPS259621DDAR, MP28301GG-Z, USBLC6-2SC6, ESD5341N datasheets.
Thought for a moment
i need to design a garden controller for backyard garden with misters and watering control
The project remains empty: no components, nets, schematic, or garden-controller changes were created. The new request needs a fresh architecture covering valve/pump voltage and current, number of watering and misting zones, outdoor power source, weatherproof sensing, and fail-safe behavior; it also differs materially from the current USB‑C environmental-sensor project.
Execution stopped because your ACUs ran out.
Define controller requirements
Choose power architecture
Add irrigation interfaces
Select outdoor sensors
Plan the schematic
No schematic yet

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