Repositor Automático V8 (Primer Final)
Pierini-Franco·Repositor_Automatico·versionesBeta/Repositor Automático V8 (Primer Final)/Repositor Automático V8 (Primer Final).kicad_pcb
About the Repositor Automático V8 (Primer Final) PCB
Repositor Automático V8 (Primer Final) is an open source ESP32 PCB design by Pierini-Franco, published on GitHub. It is a 2-layer board measuring 80.2 × 59.8 mm, with 56 components from 30 distinct parts.
Its main chip is the ESP32-WROOM-32, from the ESP32 family. Other key parts include the TB67H450AFNG,EL, MP2307 and AMS1117-3.3. By type, the board carries 23 capacitors, 11 resistors, 9 connectors, 6 ICs, 2 diodes and 1 inductor.
It belongs with the iot & wireless designs in this gallery.
From the project
https://github.com/Pierini-Franco/Repositor_Automatico/assets/105557226/09ac5b65-eae8-4226-86f4-ccc1e2ff2913
https://github.com/Pierini-Franco/Repositor_Automatico/assets/105557226/09ac5b65-eae8-4226-86f4-ccc1e2ff2913
The React app provides a way to order multiple products in a single order. At the same time, employees can order a single product
Leave a ⭐ if you are interested in this repo!
Main components on the Repositor Automático V8 (Primer Final)
Repositor Automático V8 (Primer Final) bill of materials (BOM)
56 components, 30 distinct parts.
| Qty | Part | Footprint | Refs |
|---|---|---|---|
| 3 | TB67H450AFNG,EL | SOIC127P600X170-9N | IC1, IC2, IC3 |
| 1 | MP2307 | SO8-TH | IC4 |
| 1 | AMS1117-3.3 | SOT-223-3_TabPin2 | U3 |
| 1 | ESP32-WROOM-32 | ESP32-WROOM-32D | U10 |
| 1 | Alimentacion 12V | BORNERA2_AZUL | J1 |
| 1 | UART | PinSocket_1x04_P2.54mm_Vertical | J2 |
| 1 | Motor2 | BORNERA2_AZUL | J3 |
| 1 | Motor1 | BORNERA2_AZUL | J4 |
| 1 | Motor3 | BORNERA2_AZUL | J5 |
| 1 | Motor4 | BORNERA2_AZUL | J6 |
| 1 | MotorElev | BORNERA2_AZUL | J7 |
| 1 | Screw_Terminal_01x10 | IDC-Header_2x05_P2.54mm_Horizontal | J8 |
| 1 | Final de carrera | BORNERA2_AZUL | J11 |
| 1 | 220k | Potentiometer_Vishay_TS53YJ_Vertical | RV1 |
| 2 | SW_MEC_5G | SW_Push_SPST_NO_Alps_SKRK | SWJ1, SWJ3 |
| 1 | VAL** | hole_3mm | hole_3mm |
| 2 | LED | LED_1206_3216Metric | D1, D2 |
| 1 | 2u | L_6.3x6.3_H3 | L1 |
| 2 | 10u | C_1206_3216Metric | C1, C6 |
| 14 | 0.1u | C_1206_3216Metric | C2, C3, C4, C7, C9, C10, C11, C12 +6 |
Show 10 more
| Qty | Part | Footprint | Refs |
|---|---|---|---|
| 3 | 100u | CP_Radial_D8.0mm_P2.50mm | C5, C13, C16 |
| 2 | 12u | C_1206_3216Metric | C18, C22 |
| 1 | 4.8n | C_1206_3216Metric | C20 |
| 1 | 10n | C_1206_3216Metric | C21 |
| 3 | 0.22 | R_1206_3216Metric | R1, R2, R3 |
| 2 | 100k | R_1206_3216Metric | R4, R5 |
| 2 | 8.2k | R_1206_3216Metric | R6, R7 |
| 1 | 330 | R_1206_3216Metric | R8 |
| 2 | 4.7k | R_1206_3216Metric | R9, R18 |
| 1 | 5.1k | R_1206_3216Metric | R11 |
Repositor Automático V8 (Primer Final) design files
The KiCad project lives in the Pierini-Franco/Repositor_Automatico repository on GitHub; these links point at the commit this page was built from.
Repositor Automático V8 (Primer Final): common questions
What microcontroller does the Repositor Automático V8 (Primer Final) use?
The Repositor Automático V8 (Primer Final) is built around the ESP32-WROOM-32, from the ESP32 family.
How big is the Repositor Automático V8 (Primer Final) PCB?
The Repositor Automático V8 (Primer Final) measures 80.2 × 59.8 mm, has 2 copper layers and is 1.6 mm thick.
How many components are on the Repositor Automático V8 (Primer Final)?
56 components, from 30 distinct parts. The full bill of materials is listed on this page.
Where can I download the Repositor Automático V8 (Primer Final) design files?
From the Pierini-Franco/Repositor_Automatico repository on GitHub, which has the KiCad layout and the schematic; the links under Design files point to each one.
Can I use the Repositor Automático V8 (Primer Final) design in my own project?
The repository has no license, so all rights stay with Pierini-Franco. Use it as a reference, and ask the author before reusing the design.
Can I test firmware for the Repositor Automático V8 (Primer Final) 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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