MIST.1010

UzixLS·mist1010-board·pcb/rev.B/mist1010.kicad_pcb

MIST.1010 PCB layout, top view — open source ESP8266 board by UzixLS
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About the MIST.1010 PCB

MIST.1010 is an open source ESP8266 PCB design by UzixLS, published on GitHub under the MIT license. It is a 2-layer board measuring 100 × 100 mm, with 259 components from 77 distinct parts.

Its main chip is the ESP-12E, from the ESP8266 family. Other key parts include the MT48LC16M16A2, AT91SAM7S256-AU-001, EP3C25E144, MAX3421E and FE2.1-CQFP48A. By type, the board carries 101 resistors, 91 capacitors, 19 connectors, 17 ICs, 7 transistors and 5 diodes.

It belongs with the audio, iot & wireless and power & battery designs in this gallery.

From the project

10x10cm PCB variant of MIST FPGA project for G738/G706 enclosure

Tech specs: - EP3C25E144 FPGA - 32/64Mb SDRAM - VGA/RGB video output - Composite video + audio output via 3.5 jack connector (raspberry-pi compatible pinout) - 4xUSB ports for keyboard, mouse and joysticks - 2xDB-9 ports for Amiga mouse and joysticks - SD/microSD card slot - RTC (clock) with battery - Tape input / output - ESP8266 WiFi module - MIDI input and output (starting from rev.C) - Type C (starting from rev.D) or MicroUSB power supply - Board optimized for G738 and G706 cases

MIST.1010, from the project README
From the project README

Main components on the MIST.1010

MIST.1010 bill of materials (BOM)

259 components, 77 distinct parts.

QtyPartRefs
1
MT48LC16M16A2
U1
1
AT91SAM7S256-AU-001
AT91SAM7S256-AU
U2
1
EP3C25E144
U3
1
MAX3421E
U4
1
FE2.1-CQFP48A
U5
1
ATtiny45-20SU
U6
1
DS1307Z+
U7
2
LD1117AS33TR
U8, U12
1
LD1117AS12TR
U9
1
LD1117AS25TR
U10
1
H11L1SM
U11
1
74AHCT1G125DB
U13
1
ESP-12E
U14
1
MAX809LEUR
U15
1
74LVC2G34DB
U16
1
LP2985-3.3
U17
5
BC817
Q1, Q3, Q4, Q6, Q7
1
IRLML6402
Q2
1
BC856
Q5
1
27 MHz
X1
Show 57 more
QtyPartRefs
1
12 MHz
X2
1
18.432 MHz
Y1
1
32768 Hz
Y2
5
Conn_02x05_Odd_Even
J1, J3, J13, J14, J21
1
USB_B_Micro
J2
1
PJ-320
J4
4
USB_A
J5, J6, J7, J8
1
TE 041021-4
J10
3
PJ392
J11, J19, J20
2
Conn_01x04
J12, J15
1
MEM2055-00-190-01-A
J16
1
B2B-XH-A
J17
1
1775485-1 or S8401-46
BT1
1
1.1A
F1
1
0.2A
F2
1
Jumper_2_Open
JP1
1
Jumper
JP2
1
G738 or G706
N1
1
SW_DIP_x02
SW2
3
SW_Push
SW3, SW4, SW5
1
LED_Red
D1
1
LED_Yellow
D2
1
LED_Green
D3
2
1N4148W
D4, D5
3
1u
L1, L2, L3
2
6.8u
L5, L6
1
2.2u
C1
2
1n
C2, C9
39
100n
C3, C4, C5, C22, C23, C24, C29, C30 +31
3
10p
C6, C15, C16
4
15p
C7, C8, C27, C28
1
10n
C10
7
100u
C11, C12, C39, C40, C80, C87, C89
4
2.2n
C13, C14, C82, C83
14
10u
C17, C18, C19, C25, C26, C33, C34, C74 +6
2
100p
C20, C21
7
1u
C35, C42, C50, C51, C52, C63, C70
5
22u
C41, C68, C69, C81, C91
2
300p
C77, C78
4
1.5k
R1, R8, R24, R49
19
10k
R2, R3, R4, R9, R38, R44, R52, R55 +11
11
22
R5, R6, R12, R13, R14, R27, R29, R30 +3
1
120
R7
4
560
R10, R11, R99, R104
6
1k
R15, R22, R33, R76, R83, R101
10
1.1k
R16, R17, R23, R25, R34, R35, R77, R78 +2
5
2.2k
R18, R26, R37, R79, R86
5
4.3k
R19, R28, R39, R80, R87
5
9.1k
R20, R31, R40, R81, R88
5
18k
R21, R32, R41, R82, R90
1
2.7k 1%
R36
2
100
R42, R43
6
220
R45, R46, R47, R106, R107, R108
14
4.7k
R48, R50, R51, R53, R60, R61, R62, R63 +6
1
470k
R58
1
470
R65
1
680
R102

MIST.1010 design files

The KiCad project lives in the UzixLS/mist1010-board repository on GitHub; these links point at the commit this page was built from.

MIST.1010: common questions

What microcontroller does the MIST.1010 use?

The MIST.1010 is built around the ESP-12E, from the ESP8266 family.

How big is the MIST.1010 PCB?

The MIST.1010 measures 100 × 100 mm, has 2 copper layers and is 1.6 mm thick.

How many components are on the MIST.1010?

259 components, from 77 distinct parts. The full bill of materials is listed on this page.

Where can I download the MIST.1010 design files?

From the UzixLS/mist1010-board repository on GitHub, which has the KiCad layout and the schematic; the links under Design files point to each one.

Can I use the MIST.1010 design in my own project?

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

Can I test firmware for the MIST.1010 without the hardware?

Yes. HardLabs builds a simulation of the board from its netlist and BOM, so you can run and debug ESP8266 firmware against it before you order a PCB.

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