XIAO ESP32S3 Plus V1.0 241025

OpenKNX·OpenKNX-KNeoPiX·Documentation/External/XIAO_ESP32S3_PLUS/XIAO ESP32S3 Plus_V1.0_241025.kicad_pcb

XIAO ESP32S3 Plus V1.0 241025 PCB layout, top view — open source ESP32 board by OpenKNX

About the XIAO ESP32S3 Plus V1.0 241025 PCB

XIAO ESP32S3 Plus V1.0 241025 is an open source ESP32 PCB design by OpenKNX, published on GitHub. It is a 6-layer board measuring 17.8 × 21.1 mm, with 70 components from 41 distinct parts.

Its main chip is the PMOS_1.00.60.35MM, from the ESP32 family. Other key parts include the MCU-ESP32-S3, XIAO-HALF-HOLE-23P, SGM6029CYG/TR, SGM40567-4.2XG/TR and PY25Q128HA-DFH-IR. By type, the board carries 28 capacitors, 13 resistors, 8 test points, 5 ICs, 4 inductors and 2 relays.

It belongs with the iot & wireless and displays & leds designs in this gallery.

From the project

The OpenKNX KNeoPix is a hardware solution designed specifically for DIY (Do It Yourself) projects in the realm of building automation and intelligent networking. Created for enthusiasts and hobbyists, it allows users to develop creative KNX automation solutions. KNeoPix is a DIY

The OpenKNX KNeoPix is a hardware solution designed specifically for DIY (Do It Yourself) projects in the realm of building automation and intelligent networking. Created for enthusiasts and hobbyists, it allows users to develop creative KNX automation solutions. KNeoPix is a DIY product and does not come with any warranties. This means that users are responsible for assembly, configuration, and operation. KNeoPix is fully compatible with the openKNX software platform, ensuring seamless integration within the OpenKNX ecosystem.

XIAO ESP32S3 Plus V1.0 241025, from the project README
From the project README

Main components on the XIAO ESP32S3 Plus V1.0 241025

XIAO ESP32S3 Plus V1.0 241025 bill of materials (BOM)

70 components, 41 distinct parts — part numbers from the project's BOM.

QtyPartRefs
1
MCU-ESP32-S3
U1
1
XIAO-HALF-HOLE-23P
U2
1
SGM6029CYG/TR
PMIC-SGM6029
SGMICRO
U3
1
SGM40567-4.2XG/TR
SGMICRO
U4
1
PY25Q128HA-DFH-IR
Puya
U5
1
PMOS_1.00.60.35MM
Q1
1
40MHz
X1
1
LBF11-G30P-BOR
DF40C-30DP-0.4V(51)
LianXingWang
J3
1
U.FL-R-SMT-1
ANT1
1
VBAT
BAT0
1
GND
GND0
2
SKTAAAE010/311021459
K1, K2
8
TEST-POINT'4545'
TP1, TP2, TP3, TP4, TP5, TP6, TP7, TP8
1
UBF31-0171
USB0
1
RED
CHG0
1
LMBR4010BST5G
D2
1
SMAJ40CA-13-F
Yellow
D3
1
2nH
L1
1
3.3nH
L2
1
DNP
L3
Show 21 more
QtyPartRefs
1
470nH
L4
2
100NF
DNP
C1, C2
4
2.2uF
C3, C9, C13, C16
1
4.7uF
C4
2
100NF
4.7uF
C5, C6
3
10pF
C7, C8, C28
4
1uF
C10, C21, C25, C26
8
100nF
C11, C14, C15, C19, C22, C23, C29, C30
1
10nF
C12
1
CC0201CRNPO9BN1R2
DNP
YAGEO
C17
1
CC0201CRNPO9BN1R8
1pF
YAGEO
C18
1
DNP
C20
2
5.1K
R1, R2
2
22R
R3, R4
1
0R
R5
1
499R
R6
3
10K
R7, R8, R11
1
100K
R9
1
220K
R10
1
249K
R13
1
1.5K
R15

XIAO ESP32S3 Plus V1.0 241025 design files

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

XIAO ESP32S3 Plus V1.0 241025: common questions

What microcontroller does the XIAO ESP32S3 Plus V1.0 241025 use?

The XIAO ESP32S3 Plus V1.0 241025 is built around the PMOS_1.00.60.35MM, from the ESP32 family.

How big is the XIAO ESP32S3 Plus V1.0 241025 PCB?

The XIAO ESP32S3 Plus V1.0 241025 measures 17.8 × 21.1 mm, has 6 copper layers and is 1.6 mm thick.

How many components are on the XIAO ESP32S3 Plus V1.0 241025?

70 components, from 41 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 XIAO ESP32S3 Plus V1.0 241025 design files?

From the OpenKNX/OpenKNX-KNeoPiX 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 XIAO ESP32S3 Plus V1.0 241025 design in my own project?

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

Can I test firmware for the XIAO ESP32S3 Plus V1.0 241025 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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