ATmega32-16P

kinsy3015·Circuit_Design·PCB_Design/Kicad_Workspace/MCU Embedded PCB_AT2/ATMega32-16P/ATmega32-16P.kicad_pcb

ATmega32-16P PCB layout, top view — open source AVR/Arduino board by kinsy3015

About the ATmega32-16P PCB

ATmega32-16P is an open source AVR/Arduino PCB design by kinsy3015, published on GitHub. It is a 2-layer board measuring 80 × 90.9 mm, with 10 components from 10 distinct parts.

Its main chip is the LM555XN, from the AVR/Arduino family. By type, the board carries 5 connectors, 2 capacitors, 1 IC, 1 crystal and 1 switch.

ATmega32-16P, from the project README
From the project README

Main components on the ATmega32-16P

ATmega32-16P bill of materials (BOM)

10 components, 10 distinct parts — part numbers from the project's BOM.

QtyPartRefs
1
LM555XN
ATmega32-16P
U1
1
16MHz
Y1
1
SCREW_TERMINAL_01X02
Conn_01x20
J1
1
Conn_01x03
J3
1
Conn_01x05
J4
1
Conn_01x07
J5
1
USB_B
J6
1
SW_Push
SW1
1
1UF
20p
C1
1
20p
C2

ATmega32-16P design files

The KiCad project lives in the kinsy3015/Circuit_Design repository on GitHub; these links point at the commit this page was built from.

ATmega32-16P: common questions

What microcontroller does the ATmega32-16P use?

The ATmega32-16P is built around the LM555XN, from the AVR/Arduino family.

How big is the ATmega32-16P PCB?

The ATmega32-16P measures 80 × 90.9 mm, has 2 copper layers and is 1.6 mm thick.

How many components are on the ATmega32-16P?

10 components, from 10 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 ATmega32-16P design files?

From the kinsy3015/Circuit_Design repository on GitHub, which has the KiCad layout, the schematic and the BOM; the links under Design files point to each one.

Can I use the ATmega32-16P design in my own project?

The repository has no license, so all rights stay with kinsy3015. Use it as a reference, and ask the author before reusing the design.

Can I test firmware for the ATmega32-16P without the hardware?

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

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