InverterBoostConverter

datacrystals·TractionInverterV3·Boards/DCLinkBusVRM/InverterBoostConverter.kicad_pcb

InverterBoostConverter PCB layout, top view — open source AVR/Arduino board by datacrystals

About the InverterBoostConverter PCB

InverterBoostConverter is an open source AVR/Arduino PCB design by datacrystals, published on GitHub. It is a 2-layer board measuring 450 × 150 mm, with 225 components from 82 distinct parts.

Its main chip is the ARDUINO_UNO_R3, from the AVR/Arduino family. Other key parts include the UCC28220D, LM358DR, UCC27424QDRQ1, MCP2515-e/ST and TJA1050T/CM,118. By type, the board carries 80 resistors, 66 capacitors, 20 diodes, 16 inductors, 14 ICs and 10 connectors.

Main components on the InverterBoostConverter

InverterBoostConverter bill of materials (BOM)

225 components, 82 distinct parts — part numbers from the project's BOM.

QtyPartRefs
1
UCC28220D
IC1
5
LM358DR
IC2, IC4, IC5, IC8, IC9
1
UCC27424QDRQ1
IC3
1
MCP2515-e/ST
MCP2515-e_ST
IC6
1
TJA1050T/CM,118
TJA1050T_CM,118
IC7
1
ACS758xCB-200U-PFF
U1
1
TL431AIDBZR
U2
2
TMP36xS
U4, U5
1
ACS758ECB-200U-PFF
ACS758xCB-200U-PFF
U6
1
ARDUINO_UNO_R3
Arduino_UNO_R3
A1
1
FAN_4PIN
Fan_4pin
M1
1
FZ400R12KE4
IMBG65R015M2H
Q1
3
IMBG65R015M2H
Q2, Q4, Q5
1
SIHFR120-GE3
Q3
1
8MHZ
8MHz
Y1
2
1987724
J1, J2
2
Conn_Coaxial
J3, J4
2
5442251
Conn_01x02_Pin
J5, J6
4
5442251
~
J7, J8, J9, J10
1
JUMPER_2_OPEN
Jumper_2_Bridged
JP1
Show 62 more
QtyPartRefs
1
SW_Push
SW1
1
1SMB2EZ15_R1_00001
Z1
4
MMSZ5231B-TP
Z2, Z3, Z4, Z5
1
LTST-C230CKT
LED1
3
LTST-C230GKT
LED2, LED3, LED4
20
VS-30CDU06HM3/I
VS-30CDU06HM3_I
D1, D2, D3, D4, D5, D6, D7, D8 +12
4
FBMJ1608HS220NTR
FB1, FB2, FB3, FB4
12
IHDM1008BCEV2R2M20
L1, L2, L3, L4, L5, L6, L7, L8 +4
3
UVY1E102MPD1TD
1000uF
C1, C2, C3
2
UVY1E102MPD1TD
1uF
C4, C5
6
ALH82A750CB600
75uF
C14, C15, C17, C37, C38, C39
1
ALH82A750CB600
100nF
C18
1
ALH82A750CB600
10uF
C19
2
1uF
C20, C22
1
180pF
C21
3
100nF
C23, C48, C58
3
10uF
C24, C33, C57
1
10nF
C25
1
10UF
~
C26
3
10UF
1nF
C27, C29, C36
1
10UF
4.7uF
C28
3
1nF
C30, C35, C47
1
470pF
C31
1
100NF
470pF
C32
9
100NF
100nF
C34, C60, C61, C64, C65, C69, C70, C74 +1
10
SLPX331M200A1P3
330uF
C44, C45, C46, C50, C51, C52, C53, C54 +2
5
10UF
10uF
C59, C62, C63, C66, C75
2
22PF
22pF
C67, C68
2
10UF
470pF
C71, C78
2
100NF
10uF
C72, C80
1
10UF
100nF
C73
1
470PF
10uF
C76
1
100NF
1nF
C77
28
RC2512JK-071ML
R1, R2, R3, R4, R5, R6, R7, R8 +20
1
12.79k
R19
1
101.85k
R20
1
149.21k
R21
5
100k
R22, R26, R37, R49, R80
1
40.8k
R23
1
10.2k
R24
1
7k
R25
1
5.6k
R27
6
10k
R28, R40, R46, R47, R51, R55
6
0
R29, R30, R41, R43, R58, R61
1
45.00k
R31
1
120k
R32
1
28k
R33
3
1k
R34, R35, R57
1
800.00k
R36
3
~
R38, R42, R44
1
4.7K
4.7k
R39
4
1
R45, R52, R53, R56
1
300k
R48
1
4.7K
100k
R50
1
4.7k
R54
1
4.7K
10k
R59
1
120
R60
2
220
R62, R63
2
220
R64, R79
2
RC2512JK-071ML
1M
R70, R77
1
60K
120k
R71
1
40k
R78

InverterBoostConverter design files

The KiCad project lives in the datacrystals/TractionInverterV3 repository on GitHub; these links point at the commit this page was built from.

InverterBoostConverter: common questions

What microcontroller does the InverterBoostConverter use?

The InverterBoostConverter is built around the ARDUINO_UNO_R3, from the AVR/Arduino family.

How big is the InverterBoostConverter PCB?

The InverterBoostConverter measures 450 × 150 mm, has 2 copper layers and is 1.6 mm thick.

How many components are on the InverterBoostConverter?

225 components, from 82 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 InverterBoostConverter design files?

From the datacrystals/TractionInverterV3 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 InverterBoostConverter design in my own project?

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

Can I test firmware for the InverterBoostConverter 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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