PCB Schematic Design for ESP32 IoT Sensor
0:45
Troubleshooting project errors.
Analyzing the schematic.
Running design review.
Analyzing the PCB layout.
What they are
| Type | Count | Meaning |
|---|---|---|
| Airwires | 23 | Unrouted PCB connections between pads |
| ERC Missing Power | 1 | U1 pin VP is being treated as an unpowered power-input pin |
0:38
Running design review.
Analyzing the schematic.
Running design review.
Applied changes.
nets {
net SD_MOSI = U1:D23, U5:CMD/SI;
net GND = U2:GND_TAB, U2:GROUND, GND:GND, U1 GND_1 - U3 8:GND, C3:P2, C2:P2, U2 GND_TAB - U2 ~ON~/OFF:GND, U2:~ON~/OFF, J1:Terminal, C4:P2, U1:GND, U1:GND_1, U4:GND, U3:10, C1:P2, U5:GND, R1:P2, U3:8, LED1:K;
net VCC_3V3 = U4:VDD, LED1:A, C3:P1, U3:14, U1:3V3, C2:P1, U3:9, R1:P1, U5:3V, R2:P1, C1:P1;
net SD_CS = U1:D5, U5:D3/CS;
net ONE_WIRE = U1:D4, U4:DQ, R2:P2;
net SD_CLK = U5:CLK, U1:D18;
net VCC_5V = C4:P1, U2:FEEDBACK, U2:OUTPUT, U1:VIN;
net SCL = U3:11, U1:D22;
net SD_MISO = U5:DO/SO, U1:D19;
net SDA = U3:12, U1:D21;
}
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