YukaLink

Misaka0x2730·YukaLink·hardware/prototype/YukaLink_revA.kicad_pcb

YukaLink PCB layout, top view — open source PIC board by Misaka0x2730

About the YukaLink PCB

YukaLink is an open source PIC PCB design by Misaka0x2730, published on GitHub under the GPL-3.0 license. It is a 4-layer board measuring 94.3 × 81.8 mm, with 235 components from 62 distinct parts.

Its main chip is the PIC12F629-I/SN, from the PIC family. Other key parts include the W5500, 24AA025E48T-I/OT, TPS2553DBV, TCA9535PWR and PCF85263ATL/AX. By type, the board carries 91 resistors, 84 capacitors, 37 ICs, 10 diodes, 6 inductors and 3 transistors.

It belongs with the usb & debug tools designs in this gallery.

From the project

Dual targets USB+ETH ARM JTAG/SWD debugger (BlackMagic port) based on RP2350. JTAG and SWD interfaces are implemented on PIO.

Main components on the YukaLink

YukaLink bill of materials (BOM)

235 components, 62 distinct parts — part numbers from the project's BOM.

QtyPartRefs
1
W5500
U1
1
24AA025E48T-I/OT
24AA025E-OT
U2
4
TPS2553DBV
TPS2553DBVR
U3, U12, U24, U37
2
TCA9535PWR
U6, U7
1
PCF85263ATL/AX
PCF85263ATL
U8
6
SN74LVC2T45DCU
74LVC2T45DC
U9, U10, U11, U19, U20, U21
2
INA180A2IDBV
INA180A2
U13, U25
3
TLV9001IDCK
U14, U26, U32
4
Si8641BB-B-IS1
U15, U16, U17, U18
2
SN74LVC1G3157DBV
74LVC1G3157
U22, U27
1
ADS1118IDGSR
ADS1118IDGS
U23
1
LM66100DCK
U28
1
SN74LVC1G125DBVR
SN74LVC1G125DBV
U29
1
SN74LVC1G07DBVR
74LVC1G07
U30
1
MCP73831-2ACI/OT
MCP73832-2-OT
U31
1
TPS2116DRL
U33
2
LP2985-33DBV
LP2985-3.3
U34, U39
1
TLV61070ADBV
U35
1
PIC12F629-I/SN
PIC12F629-xSN
U36
1
TLV62568ADRLR
TLV62568DRL
U38
Show 42 more
QtyPartRefs
3
BSS138LT1G
BSS138
Q1, Q2, Q3
1
X322525MOB4SI
25MHz
Y1
1
Q13FC13500004
32.768kHz
Y2
1
FTSH-105-01-L-DV-K-TR
MCU SWD
J2
1
B3S-1000
RST
SW1
1
XL-3216SURC
USB
D1
1
XL-3216UOC
ETH
D2
2
XL-3216SYGC
PWR
D3, D7
2
XL-3216SURC
ERR
D4, D8
2
XL-3216UOC
ACT
D5, D9
2
XL-3216UYC
SER
D6, D10
1
BLM18PG330SN1D
33Ohm/100MHz
FB1
3
BLM18KG121TN1D
120Ohm/100MHz
FB2, FB3, FB4
2
FNR3015S2R2MT
2.2uH
L1, L2
1
0402B223K500NT
22n
C1
2
0402B682K500NT
6.8nF
C2, C3
4
CC0402KRX7R9BB103
10n
C4, C6, C70, C78
1
CL10A475KO8NNNC
4.7u
C5
22
CL10A106KP8NNNC
10u
C7, C14, C19, C21, C35, C36, C54, C56 +14
47
CC0402KRX7R7BB104
100n
C8, C9, C10, C11, C12, C13, C15, C17 +39
2
0402CG180J500NT
18p
C16, C18
4
CL05A105KA5NQNC
1u
C60, C68, C72, C76
1
CC0402CRNPO9BN6R8
6.8pF
C83
2
0402WGF3300TCE
330
R1, R2
1
0603WAF100JT5E
10 1%
R3
4
RC0603FR-0749R9L
49.9 1%
R4, R5, R6, R7
1
0402WGF1242TCE
12.4k 1%
R8
4
0603WAF330JT5E
33 1%
R9, R10, R11, R12
32
RC0402FR-07100KL
100k
R13, R16, R18, R23, R27, R28, R30, R31 +24
1
RC0402FR-071ML
1M
R14
1
0402WGF0000TCE
0
R15
7
RC0402FR-0710KL
10k
R17, R19, R20, R25, R26, R39, R64
18
0402WGF1001TCE
1k
R21, R22, R24, R29, R32, R33, R34, R35 +10
2
PT0603FR-7W0R62L
0.62 1%
R41, R58
10
RC0402FR-0727RL
100
R44, R45, R46, R47, R48, R52, R53, R54 +2
2
0402WGF4701TCE
4.7k
R49, R70
1
RC0402FR-0720KL
20k
R74
1
RC0402FR-07680KL
680k
R84
1
RC0402FR-0775KL
75k
R85
1
RC0402FR-07200KL
200k
R88
1
AC0402FR-07453KL
453k
R89
1
RC-MT08W270JT
27
RN1

YukaLink design files

The KiCad project lives in the Misaka0x2730/YukaLink repository on GitHub; these links point at the commit this page was built from.

YukaLink: common questions

What microcontroller does the YukaLink use?

The YukaLink is built around the PIC12F629-I/SN, from the PIC family.

How big is the YukaLink PCB?

The YukaLink measures 94.3 × 81.8 mm, has 4 copper layers and is 1.6554 mm thick.

How many components are on the YukaLink?

235 components, from 62 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 YukaLink design files?

From the Misaka0x2730/YukaLink 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 YukaLink design in my own project?

Yes, under the terms of its GPL-3.0 license, which Misaka0x2730 chose for the repository.

Can I test firmware for the YukaLink without the hardware?

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

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