Sostituzione Componente WT32-ETH01

Started implementing a plan

#Goal

- Replace the current generic U1 socket in the WT32-ETH01 carrier project with a datasheet-accurate WT32-ETH01 socket/component. The upgrade should use the provided WT32-ETH01 datasheet (https://files.seeedstudio.com/products/102991455/WT32-ETH01_datasheet_V1.1-%20en.pdf) as the single source of truth to ensure correct pin numbering, orientation (with the Ethernet connector at the bottom), and proper net connections. Critical corrections include remapping ESP32_D1 and ESP32_D0 to the correct pins described in the datasheet and preserving carrier board net integrity.

#Implementation plan

1. **Review and Validate Datasheet Data**

1. Lock the official WT32-ETH01 datasheet URL as the reference.

2. Extract and verify the correct module I/O numbering (pins 12-15: 12=IO39, 13=IO36, 14=IO15, 15=IO14) and the separate 6-pin debug/programming interface.

2. **Select and Prepare a Datasheet-Accurate Component**

1. Evaluate the Flux library prototype (uid 14fb3602-b4fe-45eb-bf86-fd67557219d4) against the datasheet.

2. Confirm verified pin ordering, grouping, and physical orientation (top view with the Ethernet jack at the bottom).

3. If the library part is accurate, select and add this candidate. If not, create or modify the footprint/symbol as needed.

3. **Update the Schematic**

1. Replace the existing generic 2×13 connector U1 with the datasheet-accurate WT32-ETH01 component.

2. Map existing signals to the correct pins: update ESP32_D1 from pin 15 to the datasheet-correct assignment and similarly correct ESP32_D0 (adjusting to the re-mapped pin for its function, and reassign any misaligned nets).

3. Preserve existing nets (e.g. ESP32_EN, P3V3_REF, P5V, GND, ESP32_BUZZER_CTRL, ESP32_LED_CTRL) and migrate them to the new pin assignments while maintaining net names as much as possible.

4. **Verify Mechanical and PCB Layout Compatibility**

1. Compare the module’s physical dimensions and connector orientation from the datasheet against the current PCB footprint.

2. Validate that the Ethernet connector orientation, pad alignment, shield/keepout areas, and mounting style remain correct.

5. **Conduct Final Audit and Design Checks**

1. Run ERC/DRC to ensure all schematic and connectivity changes are consistent with the new datasheet mapping.

2. Perform a final review of the net assignments and mechanical fit to confirm that the updated U1 meets all target criteria and that no debug pins are mistakenly connected as main I/O pins.

#Success criteria

- The new WT32-ETH01 socket/component accurately reflects the datasheet pin numbering and physical orientation.

- Schematic nets, especially those for ESP32 signals, are correctly re-mapped and preserved.

- PCB layout and mechanical validations confirm a proper fit without disrupting existing routing or placements.

- ERC/DRC passes without errors, ensuring correct integration of the new component.

24 days

Execution stopped due to insufficient credits.

0:30

24 days

0:00

Work done
  • I reviewed the requested plan and confirmed the required reference datasheet URL for the WT32-ETH01.
  • I identified that the task requires schematic modification, datasheet-driven pin validation, component replacement, remapping of U1, layout/mechanical validation, and ERC/DRC review.
  • I also confirmed the user’s intent that U1 must become a datasheet-accurate WT32-ETH01 socket/component with Ethernet connector orientation referenced at the bottom.
Success criteria review
  • ❌ I did not execute the required replacement/remapping of U1.
  • ❌ I did not validate the library candidate or create a corrected component.
  • ❌ I did not run the final schematic/layout validation for the requested update.
  • ❌ ERC/DRC verification for the corrected implementation was not completed.
Next steps I’m blocked in this session because I cannot continue executing project modification steps. In a writable session, the next actions should be: read the WT32-ETH01 datasheet, verify the exact 26-pin mapping and debug header, evaluate the library candidate, replace U1, remap the carrier nets, then inspect layout fit and review ERC/DRC.
24 days

3V3 3
EN 1
GND
IO39
3V3
EN 4
IO14
J1 2 - IC1 GROUND
GND
GND
IO15
GND 2
IO36
D1
J3
J4


  • 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
  • Power Net Portal
    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 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
  • 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 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
  • Terminal
    Terminal
    An electrical connector acting as reusable interface to a conductor and creating a point where external circuits can be connected.
  • RMCF0805JT47K0
    47 kOhms ±5% 0.125W, 1/8W Chip Resistor 0805 (2012 Metric) Automotive AEC-Q200 Thick Film #forLedBlink
  • 875105359001
    10uF Capacitor Aluminum Polymer 20% 16V SMD 5x5.3mm #forLedBlink #commonpartslibrary #capacitor #aluminumpolymer #radialcan
  • CTL1206FYW1T
    Yellow 595nm LED Indication - Discrete 1.7V 1206 (3216 Metric) #forLedBlink

WT32-ETH01 Carrier Socket

WT32-ETH01 Carrier Socket thumbnail
WT32-ETH01 carrier refactored for a single 2x10 WT32 header, 12V input terminal, 6-pin Wiegand terminal, and a 12V-to-5V buck stage with level-shifted D0/D1 plus transistor-driven LED and BUZZER outputs, prepared for a simple 2-layer layout.

Properties

Diagram


"12V Input Terminal" "12V to 3.3V Regulator" "WT32-ETH01 Module Header" "D0 D1 Level Shifter node_5V to 3.3V" "Wiegand 4 Pin Terminal" "LED and Buzzer NPN Drivers"

Pricing & Availability

Distributor

Qty 1

Arrow

$1.41–$3.96

Digi-Key

$2.95–$11.59

LCSC

$4.05–$4.12

Mouser

$5.53

TME

$5.03

Verical

$1.61–$4.13

Controls