ECE-445-Notebooks
fadnis-shaunak28·ECE-445-Notebooks·burner_pcb/burner_pcb.kicad_pcb
About the ECE-445-Notebooks PCB
ECE-445-Notebooks is an open source ESP32 PCB design by fadnis-shaunak28, published on GitHub. It is a 2-layer board measuring 47.4 × 46.2 mm, with 68 components from 43 distinct parts.
Its main chip is the ESP32-WROOM-E, from the ESP32 family. Other key parts include the TPS542A50RJMR, MCP6001UT-I/OT, AP62200WU-7 and ACS711KEXLT-31AB-T. By type, the board carries 27 resistors, 19 capacitors, 7 ICs, 7 connectors, 3 transistors and 2 switches.
From the project
Lab Notebooks for ECE 445
Main components on the ECE-445-Notebooks
ECE-445-Notebooks bill of materials (BOM)
68 components, 43 distinct parts.
| Qty | Part | Footprint | Refs |
|---|---|---|---|
| 1 | TPS542A50RJMR | RJM0033A | U1 |
| 2 | MCP6001UT-I/OT | SOT-23-5_MC_MCH | U3, U8 |
| 1 | AP62200WU-7 | TSOT26-WU_DIO | U4 |
| 1 | ESP32-WROOM-E | ESP32-WROOM-32E | U5 |
| 2 | ACS711KEXLT-31AB-T | QFN12_ACS711KEXLT-31AB-T_ALM | U6, U7 |
| 1 | SQJ951EP-T1_GE3 | MOSFET_DEP-T1_GE3_VIS | Q1 |
| 2 | SS8050-G | SOT-23 | Q2, Q3 |
| 1 | Pairing Button | Molex_KK-254_AE-6410-02A_1x02_P2.54mm_Vertical | J1 |
| 1 | Peltier Connector | Molex_KK-254_AE-6410-02A_1x02_P2.54mm_Vertical | J2 |
| 1 | Conn_01x04 | Molex_KK-254_AE-6410-04A_1x04_P2.54mm_Vertical | J3 |
| 1 | Coil Connector | TerminalBlock_TE_282834-2_1x02_P2.54mm_Horizontal | J4 |
| 1 | Capacitive Touch Wire | PinHeader_1x01_P1.00mm_Vertical | J5 |
| 1 | USB-UART Bridge | PinHeader_1x05_P2.54mm_Vertical | J6 |
| 1 | Screw_Terminal_01x02 | TerminalBlock_TE_282834-2_1x02_P2.54mm_Horizontal | J7 |
| 1 | SolderJumper_3_Open | SolderJumper-3_P2.0mm_Open_TrianglePad1.0x1.5mm | JP1 |
| 2 | SW_Push | SW_SPST_B3S-1000 | SW1, SW4 |
| 1 | 2.2uH | L_0805_2012Metric | L1 |
| 1 | 4.7uH | L_0805_2012Metric | L2 |
| 1 | 4.7uF | C_0805_2012Metric | C1 |
| 4 | 0.1uF | C_0805_2012Metric | C2, C4, C16, C17 |
Show 23 more
| Qty | Part | Footprint | Refs |
|---|---|---|---|
| 1 | 40uF | C_0805_2012Metric | C3 |
| 1 | 330uF | C_0805_2012Metric | C5 |
| 1 | 0.47uF | C_0805_2012Metric | C6 |
| 2 | 44uF | C_0805_2012Metric | C7, C11 |
| 1 | 200nF | C_0805_2012Metric | C8 |
| 3 | 10uF | C_0805_2012Metric | C9, C10, C18 |
| 1 | 100nF | C_0805_2012Metric | C12 |
| 2 | 1u | C_0805_2012Metric | C13, C20 |
| 2 | 1uF | C_0805_2012Metric | C14, C15 |
| 1 | 10R | R_0805_2012Metric | R1 |
| 9 | 10k | R_0805_2012Metric | R2, R8, R12, R14, R16, R22, R23, R25 +1 |
| 1 | 49.9k | R_0805_2012Metric | R3 |
| 1 | 47.5k | R_0805_2012Metric | R4 |
| 1 | 18.2k | R_0805_2012Metric | R5 |
| 1 | 61.9k | R_0805_2012Metric | R6 |
| 1 | 26.1k | R_0805_2012Metric | R7 |
| 1 | 31.6k | R_0805_2012Metric | R9 |
| 1 | 33.2k | R_0805_2012Metric | R10 |
| 2 | 100k | R_0805_2012Metric | R11, R28 |
| 2 | 500R | R_0805_2012Metric | R13, R15 |
| 2 | 5k | R_0805_2012Metric | R17, R18 |
| 2 | 4.7k | R_0805_2012Metric | R19, R20 |
| 2 | 1k | R_0805_2012Metric | R21, R24 |
ECE-445-Notebooks design files
The KiCad project lives in the fadnis-shaunak28/ECE-445-Notebooks repository on GitHub; these links point at the commit this page was built from.
ECE-445-Notebooks: common questions
What microcontroller does the ECE-445-Notebooks use?
The ECE-445-Notebooks is built around the ESP32-WROOM-E, from the ESP32 family.
How big is the ECE-445-Notebooks PCB?
The ECE-445-Notebooks measures 47.4 × 46.2 mm, has 2 copper layers and is 1.6 mm thick.
How many components are on the ECE-445-Notebooks?
68 components, from 43 distinct parts. The full bill of materials is listed on this page.
Where can I download the ECE-445-Notebooks design files?
From the fadnis-shaunak28/ECE-445-Notebooks repository on GitHub, which has the KiCad layout and the schematic; the links under Design files point to each one.
Can I use the ECE-445-Notebooks design in my own project?
The repository has no license, so all rights stay with fadnis-shaunak28. Use it as a reference, and ask the author before reusing the design.
Can I test firmware for the ECE-445-Notebooks without the hardware?
Yes. HardLabs builds a simulation of the board from its netlist and BOM, so you can run and debug ESP32 firmware against it before you order a PCB.
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