PCB DRONE C8

ArduProject·PCB_DRONE_C8·CURSO_PCB_DRONE_C8/CURSO_PCB_DRONE.kicad_pcb

PCB DRONE C8 layout, top view — open source STM32 board by ArduProject
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About the PCB DRONE C8

PCB DRONE C8 is an open source STM32 PCB design by ArduProject, published on GitHub under the MIT license. It is a 4-layer board measuring 102 × 49 mm, with 140 components from 72 distinct parts.

Its main chip is the STM32F103C8T6, from the STM32 family. Other key parts include the CH340G, ATMEGA328P-AU, LM358DR, nRF24L01P and 74HC245. By type, the board carries 48 capacitors, 36 resistors, 17 connectors, 13 diodes, 12 ICs and 6 inductors.

It belongs with the robotics & motion designs in this gallery.

From the project

En este repositorio encontrareis los archivos de fabricación y las listas de montaje del PCB con STM32F103C8 que hemos visto en el curso. Enlace al curso: https://www.udemy.com/course/controlador-de-vuelo-drones-arduino-pcb/?referralCode=FD3F1CBF871EDFD84B6F

En este repositorio encontrareis los archivos de fabricación y las listas de montaje del PCB con STM32F103C8 que hemos visto en el curso. Enlace al curso: https://www.udemy.com/course/controlador-de-vuelo-drones-arduino-pcb/?referralCode=FD3F1CBF871EDFD84B6F

La estructura de las carpetas de este repositorio es la misma que hemos visto en el curso: una carpeta GERBER con los archivos de fabricación del PCB, y una carpeta MONTAJE con las listas de componentes y el archivo de colocación de huellas (CURSOPCBDRONE-all-pos.xlsx). Tambien se incluye un manual de montaje del PCB y del drone. La…

PCB DRONE C8, from the project README
From the project README

Main components on the PCB DRONE C8

PCB DRONE C8 bill of materials (BOM)

140 components, 72 distinct parts — part numbers from the project's BOM.

QtyPartRefs
1
CH340G
U1
1
ATMEGA328P-AU
U2
1
LM358DR
U3
1
STM32F103C8T6
U4
1
nRF24L01P
U5
1
74HC245
U6
1
MICROSD_C164170
U7
1
SRV05-4
U8
1
74AHC1G125
U9
1
MPU-6050
U10
1
LM7805_TO220
U11
1
AMS1117-3.3
U12
2
16Mhz
Y1, Y5
1
12Mhz
Y2
1
8Mhz
Y3
2
USB_B_Micro
J1, J3
1
SWD
J2
1
ICSP
J4
1
OLED
J5
1
CONN_STM32_USART
J6
Show 52 more
QtyPartRefs
1
jumper
J7
1
CONN_MANDO
J8
1
CONN_STM32_SPI
J9
1
CONN_MOT_1
J10
1
CONN_MOT_3
J11
1
LIDAR
J12
1
CONN_STM32_I2C
J13
1
CONN_MOT_2
J14
1
CONN_MOT_4
J15
1
Conn_Coaxial
J16
1
XT-60
J17
3
RST
SW1, SW2, SW3
1
SW_Push_SPDT
SW4
3
B5819W
D1, D2, D9
4
ROJO
D4, D5, D12, D13
2
AZUL
D6, D15
4
VERDE
D10, D11, D14, D16
2
100Ohm @ 100Mhz
FB1, FB2
1
27nH
L1
1
3.9nH
L2
1
8.2nH
L3
1
2.7nH
L4
21
100nF
C1, C2, C4, C5, C6, C8, C9, C10 +13
3
4.7uF
C3, C7, C40
2
1uF
C13, C27
4
12pF
C17, C18, C35, C36
2
33pF
C20, C21
2
20pF
C25, C26
4
10nF
C28, C29, C30, C43
1
33nF
C34
1
1.5pF
C37
1
1pF
C38
2
2.2nF
C41, C47
1
4.7pF
C42
1
0.22uF
C48
1
10uF
C49
2
10uF (t)
C50, C51
2
1k
R1, R2
2
750
R4, R5
2
220
R6, R38
4
22
R9, R10, R16, R17
8
10k
R11, R12, R13, R19, R30, R31, R33, R34
1
1.5k
R14
1
330
R15
4
1k
R18, R22, R23, R24
2
1.5k
R20, R21
5
4.7k
R25, R26, R27, R28, R39
1
47k
R29
1
15k
R32
1
22k
R35
1
1M
R36
1
4.7k
R37

PCB DRONE C8 design files

The KiCad project lives in the ArduProject/PCB_DRONE_C8 repository on GitHub; these links point at the commit this page was built from.

PCB DRONE C8: common questions

What microcontroller does the PCB DRONE C8 use?

The PCB DRONE C8 is built around the STM32F103C8T6, from the STM32 family.

How big is the PCB DRONE C8?

The PCB DRONE C8 measures 102 × 49 mm, has 4 copper layers and is 1.6 mm thick.

How many components are on the PCB DRONE C8?

140 components, from 72 distinct parts, with part numbers taken from the project's own BOM. The full bill of materials is listed on this page.

Where can I download the PCB DRONE C8 design files?

From the ArduProject/PCB_DRONE_C8 repository on GitHub, which has the KiCad layout and the BOM; the links under Design files point to each one.

Can I use the PCB DRONE C8 design in my own project?

Yes, under the terms of its MIT license, which ArduProject chose for the repository.

Can I test firmware for the PCB DRONE C8 without the hardware?

Yes. HardLabs builds a simulation of the board from its netlist and BOM, so you can run and debug STM32 firmware against it before you order a PCB.

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