Kicad hiltop moto board

devtank-ltd·kicad_hiltop_moto_board·kicad_hiltop_moto_board/moto_board.kicad_pcb

Kicad hiltop moto board layout, top view — open source STM32 board by devtank-ltd

About the Kicad hiltop moto board

Kicad hiltop moto board is an open source STM32 PCB design by devtank-ltd, published on GitHub under the CERN-OHL-W-2.0 license. It is a 4-layer board measuring 159.9 × 99.9 mm, with 160 components from 54 distinct parts.

Its main chip is the STM32F072RBTx, from the STM32 family. Other key parts include the DRV8704, LD1117S33TR_SOT223, AT25DN512CSSHF-B, CP2102N-A01-GQFN24 and USB2502. By type, the board carries 69 resistors, 51 capacitors, 9 connectors, 8 transistors, 7 ICs and 7 diodes.

From the project

KiCAD files for Moto card for HILTOP

This documentation describes Open Hardware and is Licensed under CERN-OHL-W v2.

You may redistribute and modify this documentation under the terms of the CERN-OHL-W v2 (https://cern.ch/cern-ohl). This documentation is distributed WITHOUT ANY EXPRESS OR IMPLIED WARRANTY, INCLUDING OF MERCHANTABILITY, SATISFACTORY QUALITY AND FITNESS FOR A PARTICULAR PURPOSE. Please see the CERN-OHL-W v2 for applicable conditions

Main components on the Kicad hiltop moto board

Kicad hiltop moto board bill of materials (BOM)

160 components, 54 distinct parts.

QtyPartRefs
1
DRV8704
U1
1
LD1117S33TR_SOT223
U2
1
AT25DN512CSSHF-B
U3
1
DNF
U7
1
CP2102N-A01-GQFN24
U13
1
STM32F072RBTx
U22
1
USB2502
U27
8
CSD18540Q5B
Q1, Q2, Q3, Q4, Q5, Q6, Q7, Q8
1
50ppm 24.000MHZ
Y1
1
8MHZ
Y2
1
ABS25-32.768KHZ-6-T
Y3
1
Conn_01x04
J1
2
Conn_01x04
J2, J4
1
Conn_03x32_DIN41612
J3
1
Conn_02x05_Top_Bottom
J5
4
Conn_01x04
J6, J7, J8, J9
2
Polyfuse
F1, F2
1
Jumper_NC_Dual
JP1
1
SW_Push
SW1
1
B240A-13
D1
Show 34 more
QtyPartRefs
1
RED
D2
4
GRN
D3, D4, D5, D13
1
MBR230LSFT1G
D32
1
500mA/0.10DCR
L1
1
2A/0.05DCR
L11
2
1uF
C1, C5
12
0.1uF
C2, C3, C6, C7, C92, C94, C95, C96 +4
1
0.01uF
C4
9
100uF
C8, C9, C13, C14, C15, C16, C17, C18 +1
2
10uF
C10, C11
7
100nF
C12, C24, C56, C73, C74, C79, C80
1
DNF
C52
6
4.7uF
C55, C100, C102, C103, C104, C105
2
18pF
C75, C76
2
4.3pF
C77, C78
2
100nF
C81, C82
2
33pF
C88, C89
1
0.1uF
C90
1
1.0uF
C91
1
DNF
C106
1
DNF
R1
13
DNF
R2, R17, R37, R38, R45, R46, R48, R74 +5
21
0R
R3, R8, R9, R10, R11, R12, R21, R24 +13
1
0R
R13
11
10K
R14, R18, R19, R23, R47, R75, R99, R102 +3
2
4K7
R15, R16
1
47K
R20
1
200R
R22
4
0.015R
R29, R30, R31, R32
6
100K
R39, R40, R41, R42, R90, R93
5
330R
R43, R44, R81, R82, R124
1
24K
R78
1
1M
R87
1
12.0K
R109

Kicad hiltop moto board design files

The KiCad project lives in the devtank-ltd/kicad_hiltop_moto_board repository on GitHub; these links point at the commit this page was built from.

Kicad hiltop moto board: common questions

What microcontroller does the Kicad hiltop moto board use?

The Kicad hiltop moto board is built around the STM32F072RBTx, from the STM32 family.

How big is the Kicad hiltop moto board?

The Kicad hiltop moto board measures 159.9 × 99.9 mm, has 4 copper layers and is 1.6 mm thick.

How many components are on the Kicad hiltop moto board?

160 components, from 54 distinct parts. The full bill of materials is listed on this page.

Where can I download the Kicad hiltop moto board design files?

From the devtank-ltd/kicad_hiltop_moto_board repository on GitHub, which has the KiCad layout; the links under Design files point to each one.

Can I use the Kicad hiltop moto board design in my own project?

Yes, under the terms of its CERN-OHL-W-2.0 license, which devtank-ltd chose for the repository.

Can I test firmware for the Kicad hiltop moto board 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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