Titan67j60

Lehman3065·titan·Titan67j60/Titan67j60.kicad_pcb

Titan67j60 PCB layout, top view — open source AVR/Arduino board by Lehman3065
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About the Titan67j60 PCB

Titan67j60 is an open source AVR/Arduino PCB design by Lehman3065, published on GitHub. It is a 2-layer board measuring 191 × 123 mm, with 242 components from 133 distinct parts.

Its main chip is the ATTINY20-SSU, from the AVR/Arduino family. Other key parts include the LTV-354T, ULN2003D, PIC18F67J60-I/PT, AT25DF081A-SH-T and PC817. By type, the board carries 101 resistors, 48 capacitors, 33 connectors, 19 ICs, 17 diodes and 10 transistors.

Main components on the Titan67j60

Titan67j60 bill of materials (BOM)

242 components, 133 distinct parts — part numbers from the project's BOM.

QtyPartRefs
1
LTV-354T
U1
1
ULN2003D
U2
1
PIC18F67J60-I/PT
U3
1
AT25DF081A-SH-T
U4
3
PC817
U5, U10, U15
2
74HC594
U6, U7
1
DG408
U8
1
4051
U9
1
TPS54308
U11
1
ATTINY20-SSU
U12
1
TLV73333PDBV
U13
1
Viper37LD
U14
1
TL431AC
U16
1
DRV8872
U17
1
TMP432
U18
1
SN74AHC1G08DBVTG4
U19
1
BC857BS
Q1
1
BC847C
Q2
7
Relay_A
Q10, Q11, Q12, Q13, Q14, Q15, Q16
1
BC857
Q17
Show 113 more
QtyPartRefs
1
25M
Y1
1
CONN_01X16
J1
1
WiFi/GSM
J2
1
RJ45-TRANSFO
J3
6
Termistor 10k
J4, J5, J6, J7, J8, J9
8
Termistor 10k
J10, J11, J12, J13, J14, J15, J16, J17
1
CONN_01X02
J18
3
CONN_01X03
J19, J20, J21
1
CONN_01X04
J22
5
CONN_01X03
J23, J24, J25, J27, J28
1
CONN_01X01
J26
1
Jamper
J29
1
CONN_01X05
J30
1
CONN_01X05
J31
2
CONN_01X03
J32, J33
1
5A
F1
1
1A
F2
1
PLA10AN4330
FL1
1
Varistor
RV1
1
471
RV2
1
Transformer_spark_1
T1
1
EF20 Core
T2
1
MF72-60D5
TH1
1
BAV70
D1
1
LED_FAULT
D2
1
P6KE350CA
D5
1
S1M
D6
1
BAT54S
D7
1
BT150S-600R
D8
1
BA158
D9
1
BZX84-C5V1
D10
1
BAV99
D11
1
DB107S
D12
1
1.5KE250A
D13
1
STTH1L06A
D14
1
1N5711
D15
1
1N4148W
D16
1
DB3
D17
1
STPS2150
D18
1
BT149G
D19
3
600 ohm 500mA
L1, L2, L3
1
2,7uH 2A
L4
1
47uH 0,6A
L5
11
0,1
C1, C2, C5, C6, C11, C17, C20, C38 +3
2
33
C3, C4
1
1nF 2kV
C7
8
10,0
C8, C9, C10, C13, C14, C21, C40, C41
1
0,1
C12
1
1uF 50V
C15
1
0,1uF 50V
C16
1
2200x2kV
C18
1
0,01
C19
1
1uFx400V
C22
1
0,047
C23
3
1nF 2kV Y2
C24, C27, C42
2
0,1uF 400V X2
C25, C26
1
22uF 450V
C28
1
820
C29
1
10n
C30
1
56n
C31
1
33uF 35V
C32
1
2n2 3kV Y2
C33
1
10,0
C34
1
330uF 20% x 35V
C35
1
18n
C36
1
22uF 20% x 35V
C37
1
75
C39
1
47uFx50V
C43
2
1500
C45, C46
1
2k7
R1
4
50R1%
R2, R3, R4, R5
2
240k
R6, R7
4
470
R8, R10, R100, R101
3
1k
R9, R65, R66
8
150k
R11, R12, R13, R14, R15, R16, R17, R18
1
5k1 1%
R19
1
33k 1%
R20
15
39k
R21, R22, R23, R24, R25, R26, R39, R40 +7
2
1k5 1%
R27, R29
3
5k6
R28, R98, R99
1
300k
R30
8
240k
R31, R32, R33, R34, R35, R36, R37, R38
1
10k
R47
4
100k
R48, R49, R77, R94
1
0,68R
R50
4
390
R51, R52, R53, R97
1
10 1W
R54
6
1M1%
R55, R57, R59, R61, R68, R70
2
240k
R56, R60
2
160k
R58, R62
2
20k1%
R63, R64
2
5M1
R67, R69
1
10k
R71
1
15k
R72
1
75k
R73
1
130k
R74
1
24k
R75
3
1k5
R76, R78, R96
1
3k6
R79
1
11,5k
R80
1
47k
R81
1
1,87M
R82
1
1,96M
R83
1
10R
R84
1
75k
R85
1
18k
R86
1
8k2
R87
1
910
R88
1
300k
R89
1
4k7
R91
1
2k
R92
1
49k9
R93
1
22k1
R95

Titan67j60 design files

The KiCad project lives in the Lehman3065/titan repository on GitHub; these links point at the commit this page was built from.

Titan67j60: common questions

What microcontroller does the Titan67j60 use?

The Titan67j60 is built around the ATTINY20-SSU, from the AVR/Arduino family.

How big is the Titan67j60 PCB?

The Titan67j60 measures 191 × 123 mm, has 2 copper layers and is 1.6 mm thick.

How many components are on the Titan67j60?

242 components, from 133 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 Titan67j60 design files?

From the Lehman3065/titan repository on GitHub, which has the KiCad layout and the BOM; the links under Design files point to each one.

Can I use the Titan67j60 design in my own project?

The repository has no license, so all rights stay with Lehman3065. Use it as a reference, and ask the author before reusing the design.

Can I test firmware for the Titan67j60 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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