IoT Sensor Node Design


I understand what you want: not PCB layout, but a cleaner schematic drawing where parts are visually grouped and visibly connected instead of looking like floating islands.
Right now I can help with the electrical schematic/netlist, but I cannot reliably auto-arrange the schematic canvas into a polished human-readable drawing from here. The project is electrically connected through named nets, but Flux may still show components visually separated if the schematic view has not been manually organized.
What I can do next is one of these:
  1. Read-only schematic readability audit
    I’ll report which parts only look floating versus which are actually unconnected.
  2. Create a clean schematic organization plan
    I’ll give you exact functional blocks and where each component should go:
    • Power input/regulator
    • ATmega4808 core
    • RS-485 interface
    • I2C sensors/OLED
    • Solenoid driver
    • Fan driver
    • Connectors/programming
  3. Fix real schematic connectivity issues
    If any capacitors or parts are genuinely not connected to nets, I can reconnect them electrically.
For the visual schematic cleanup, the target organization should be:
  • Left: J1/J2 RS-485 + 12 V bus input/output
  • Upper-left: AMS1117 regulator, C5, C11, 3V3 rail caps
  • Center: U1 ATmega4808 with reset, UPDI, decoupling
  • Upper-right: I2C devices: U4, IC1, OLED1, R1/R2
  • Right: RGB LED and resistors
  • Lower-right: solenoid driver Q1/D1/J4 and fan driver Q2/D2/J6
  • Bottom: programming and external sensor connectors J3/J5
Important: the “floating capacitors” you see may already be electrically connected to 3V3/GND by net names. They only look floating because visible schematic wires were not drawn between them.
If you want, I can now run the read-only schematic readability audit and list every component that visually appears isolated but is electrically connected, plus any that are truly unconnected.
Run readability audit
Create organization plan
Check floating capacitors
Explain named nets
Run ERC review

U4
Not Recommended for New Designs
R13
Resistance
33Ω
R2
Resistance
4.7kΩ
R12
Resistance
33Ω
R4
Resistance
100 Ω
R7
Resistance
10kΩ
R8
Resistance
10kΩ
R5
Resistance
100kΩ
R14
Resistance
100 ohms
R15
Resistance
10 kohms
R3
Resistance
120 Ω
R10
Resistance
1kΩ
R1
Resistance
4.7kΩ
R9
Resistance
10kΩ
R11
Resistance
10kΩ
R6
Resistance
33Ω
D1
Q2
C2
Capacitance
100nF
C4
Capacitance
100nF
J6
OLED1
C5
Capacitance
100uF
C10
Capacitance
100nF
C11
Capacitance
22uF
C8
Capacitance
100nF
C12
Capacitance
1uF
C1
Capacitance
100nF
C7
Capacitance
1uF
C9
Capacitance
100nF
C6
Capacitance
10uF
Q1
C3
Capacitance
100nF
D2
J2
J1
U3
J3
U2
J4
IC1
U1
J5
LED1
Agricultural RS-485 Sensor Node thumbnail