Soldered Inkplate 6COLOR

SolderedElectronics·Soldered-Inkplate-6-COLOR-hardware-design·CAD/V1.2.0/Soldered Inkplate 6COLOR.kicad_pcb

Soldered Inkplate 6COLOR PCB layout, top view — open source ESP32 board by SolderedElectronics

About the Soldered Inkplate 6COLOR PCB

Soldered Inkplate 6COLOR is an open source ESP32 PCB design by SolderedElectronics, published on GitHub under the TAPR-OHL-1.0 license. It is a 2-layer board measuring 131.4 × 105.5 mm, with 177 components from 59 distinct parts.

Its main chip is the ESP32-WROVER, from the ESP32 family. Other key parts include the PCAL6416AHF,128, TPS3840PL27DBVR, CH340C, MCP73831T and MC14093BDTR2G. By type, the board carries 48 relays, 40 capacitors, 36 resistors, 12 transistors, 9 ICs and 8 diodes.

From the project

Hardware design, BOM, gerbers and 3D files for Soldered-Inkplate-6-COLOR designed by Soldered Electronics.

All Soldered hardware is designed in KiCAD, and repositories are organized in the following way:

- CAD folder - contains KiCAD files (Schematics, Board, Panel Board), organized by version. Change log lists all changes between versions. - OUTPUTS - contains useful files, such as Bill of Materials (BOM), PDF of schematics, 3D .step file of the board and gerber files, organized by version.

Main components on the Soldered Inkplate 6COLOR

Soldered Inkplate 6COLOR bill of materials (BOM)

177 components, 59 distinct parts — part numbers from the project's BOM.

QtyPartRefs
1
PCAL6416AHF,128
U1
1
ESP32-WROVER
U2
1
TPS3840PL27DBVR
U3
1
CH340C
U4
1
MCP73831T
U5
1
MC14093BDTR2G
U6
1
TPS7A2633DRVR
U7
1
PCF85063A
U8
1
AC057TC1
U9
3
NPN
Q1, Q2, Q7
2
NMOS
Q3, Q10
4
PMOS
Q4, Q5, Q9, Q11
2
SSM3J358R,LF
Q6, Q8
1
CJ2310
Q12
1
7LC32768F12UC
X1
1
1206FUSE-500mA
F1
4
Standoff_M3
H1, H2, H3, H4
5
SMD_JUMPER_3_PAD_CONNECTED_LEFT_TRACE
JP1, JP2, JP3, JP5, JP6
1
SMD_JUMPER
JP4
41
HEADER_MALE_1X1_Inkplate
K1, K2, K3, K4, K5, K6, K7, K8 +33
Show 39 more
QtyPartRefs
1
Inkplate_TP
K34
1
U262-161N-4BVC11
K35
1
easyC-SMD
K36
1
JST-2pin-SMD
K41
1
CR2032_BS-6-1
K43
1
HYC77-TF09-200
K44
1
SFV24R-2STBE1HLF
K45
7
PAD_4x4
PAD1, PAD2, PAD3, PAD4, PAD5, PAD7, PAD9
1
SK-3296S-01-L1
S1
1
YTSA007A0151803B
SW1
2
K2-1114SA-A4SW-06
SW2, SW3
1
RED
D1
1
0603LED_SIDE
D2
1
BAT20J
D3
2
M4_DIODA
D4, D5
3
MBR0530(C77336)
D6, D7, D8
1
SRN5020TA-100M
L1
3
10u
C1, C8, C14
6
2u2
C2, C12, C13, C15, C18, C24
13
100n
C3, C4, C5, C7, C9, C10, C16, C17 +5
2
DNP
C6, C11
2
12p
C21, C22
1
885012206075
C27
7
GRM188C81E475KE11J
C28, C29, C30, C32, C33, C34, C35
4
GMK107BJ105KAHT
C31, C37, C39, C40
1
GRM21BR61H106KE43L
C36
1
UMK212BBJ475KG
C38
10
10k
R1, R8, R9, R24, R29, R30, R31, R33 +2
2
5k1
R2, R3
1
47k
R4
5
1k
R5, R6, R10, R17, R19
11
100k
R7, R12, R13, R18, R20, R21, R22, R23 +3
1
510k
R11
1
2k49
R14
1
47R
R15
1
DNP
R16
1
100R
R28
1
0R47
R32
1
AC0603FR-1356KL
R36

Soldered Inkplate 6COLOR design files

The KiCad project lives in the SolderedElectronics/Soldered-Inkplate-6-COLOR-hardware-design repository on GitHub; these links point at the commit this page was built from.

Soldered Inkplate 6COLOR: common questions

What microcontroller does the Soldered Inkplate 6COLOR use?

The Soldered Inkplate 6COLOR is built around the ESP32-WROVER, from the ESP32 family.

How big is the Soldered Inkplate 6COLOR PCB?

The Soldered Inkplate 6COLOR measures 131.4 × 105.5 mm, has 2 copper layers and is 1.6 mm thick.

How many components are on the Soldered Inkplate 6COLOR?

177 components, from 59 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 Soldered Inkplate 6COLOR design files?

From the SolderedElectronics/Soldered-Inkplate-6-COLOR-hardware-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 Soldered Inkplate 6COLOR design in my own project?

Yes, under the terms of its TAPR-OHL-1.0 license, which SolderedElectronics chose for the repository.

Can I test firmware for the Soldered Inkplate 6COLOR 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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