Design-Assembly and-Commissioning of a-GreenPHY-Based-EVSE-Signalling and-Communication-Emulator

Shriniketpk2124·Design-Assembly-and-Commissioning-of-a-GreenPHY-Based-EVSE-Signalling-and-Communication-Emulator·hardware/kicad/PWM_Schematic/PWM_Schematic.kicad_pcb

Design-Assembly and-Commissioning of a-GreenPHY-Based-EVSE-Signalling and-Communication-Emulator PCB layout, top view — open source AVR/Arduino board by Shriniketpk2124

About the Design-Assembly and-Commissioning of a-GreenPHY-Based-EVSE-Signalling and-Communication-Emulator PCB

Design-Assembly and-Commissioning of a-GreenPHY-Based-EVSE-Signalling and-Communication-Emulator is an open source AVR/Arduino PCB design by Shriniketpk2124, published on GitHub. It is a 2-layer board measuring 250 × 121 mm, with 101 components from 62 distinct parts.

Its main chip is the ARDUINO_NANO_V3.X, from the AVR/Arduino family. Other key parts include the LM2596T-5.0/NOPB, LM393AP, TPS26600PWPR, OPA2172ID and TMR 2422. By type, the board carries 43 resistors, 17 capacitors, 10 diodes, 6 ICs, 5 jumpers and 3 transistors.

From the project

Mixed-signal EVSE prototype for IEC 61851 control-pilot signalling, Green PHY/SLAC, and ISO 15118-2 communication experiments.

This directory contains the KiCad source files for the mixed-signal PCB used by

the Green PHY EVSE signalling and communication emulator.

\- Standard KiCad 3D-model package, if 3D rendering is required

The custom symbol and footprint libraries required by the project are included

locally in the symbols/ and footprints/ directories. The corresponding

sym-lib-table and fp-lib-table files use ${KIPRJMOD} paths, so the project

Main components on the Design-Assembly and-Commissioning of a-GreenPHY-Based-EVSE-Signalling and-Communication-Emulator

LM2596T-5.0/NOPBLM393APTPS26600PWPROPA2172IDTMR 2422VO2611ARDUINO_NANO_V3.X

Design-Assembly and-Commissioning of a-GreenPHY-Based-EVSE-Signalling and-Communication-Emulator bill of materials (BOM)

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

QtyPartRefs
1
LM2596T-5.0/NOPB
LM2596T-5.0_NOPB
IC1
1
LM393AP
IC2
1
TPS26600PWPR
IC3
1
OPA2172ID
U1
1
TMR 2422
TMR-2422
U2
1
VO2611
U3
1
ARDUINO_NANO_V3.X
Arduino_Nano_v3.x
A1
2
BC337-40
Q1, Q2
1
VO4661
Q3
1
DEVOLO_PLC - MKDS 1,5/2-5,08 - 1715721
J1
1
CONN_01X04
Conn_01x04
J2
1
USB-PD Trigger-(20V)
J3
1
5.1V
DZ_1
1
SMAJ14CA
Bourns
D_CP1
2
1.5KE15CA
D_OV1, D_OV2
2
SB540
D_RP1, D_RP2
1
PI_PWR_LINK
JP1
1
PLC_COUPLING_BYPASS
JP2
1
CP_LPF_BYPASS
JP3
1
UART_PI_TX_ENABLE
JP4
Show 42 more
QtyPartRefs
1
UART_ARD_TX_ENABLE
JP5
1
HF3FA-005-Z
K1
1
HF3FA-005-Z
K2
1
5V_RAW
TP1
1
5V_PROTECTED
TP2
1
Raspberry_Pi_4
U_RPI1
2
1N4001
D1, D2
5
LED
D3, D4, D8, D9, D10
1
1N4148
D5
1
SB540
D6
1
1N5817
D7
1
2100LL-470-H-RC
L2
1
7447020
220uH
Würth Elektronik
L3
5
100NF
100nF
C1, C2, C11, C14, C15
2
10UF
10uF
C3, C4
1
0.1UF
0.1uF
C5
1
220NF
220nF
C6
1
10NF
10nF
C7
1
680U
680u
C8
1
330U
330u
C9
1
1NF
1nF
C10
2
R75UI127050H4J
2.7nF / 2kV
KEMET
C12, C13
2
100NF
100nF
C16, C17
3
1.8K
1.8k
R1, R2, R41
7
1k
R3, R4, R5, R9, R11, R31, R40
1
4.7K
4.7k
R6
1
22K
22k
R7
6
47K
47k
R8, R22, R23, R33, R37, R38
3
1.5K
1.5k
R10, R26, R27
5
330
R12, R13, R19, R20, R30
1
1MEG
1Meg
R14
2
13K
13k
R15, R36
2
10K
10k
R16, R32
1
15K
15k
R17
1
6.04K
6.04k
R18
1
5.6K
5.6k
R21
1
560K
560k
R24
1
620K
620k
R25
3
3.3K
3.3k
R28, R29, R42
2
100K
100k
R34, R35
1
220
R39
1
100R
R43

Design-Assembly and-Commissioning of a-GreenPHY-Based-EVSE-Signalling and-Communication-Emulator design files

The KiCad project lives in the Shriniketpk2124/Design-Assembly-and-Commissioning-of-a-GreenPHY-Based-EVSE-Signalling-and-Communication-Emulator repository on GitHub; these links point at the commit this page was built from.

Design-Assembly and-Commissioning of a-GreenPHY-Based-EVSE-Signalling and-Communication-Emulator: common questions

What microcontroller does the Design-Assembly and-Commissioning of a-GreenPHY-Based-EVSE-Signalling and-Communication-Emulator use?

The Design-Assembly and-Commissioning of a-GreenPHY-Based-EVSE-Signalling and-Communication-Emulator is built around the ARDUINO_NANO_V3.X, from the AVR/Arduino family.

How big is the Design-Assembly and-Commissioning of a-GreenPHY-Based-EVSE-Signalling and-Communication-Emulator PCB?

The Design-Assembly and-Commissioning of a-GreenPHY-Based-EVSE-Signalling and-Communication-Emulator measures 250 × 121 mm, has 2 copper layers and is 1.6 mm thick.

How many components are on the Design-Assembly and-Commissioning of a-GreenPHY-Based-EVSE-Signalling and-Communication-Emulator?

101 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 Design-Assembly and-Commissioning of a-GreenPHY-Based-EVSE-Signalling and-Communication-Emulator design files?

From the Shriniketpk2124/Design-Assembly-and-Commissioning-of-a-GreenPHY-Based-EVSE-Signalling-and-Communication-Emulator 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 Design-Assembly and-Commissioning of a-GreenPHY-Based-EVSE-Signalling and-Communication-Emulator design in my own project?

The repository has no license, so all rights stay with Shriniketpk2124. Use it as a reference, and ask the author before reusing the design.

Can I test firmware for the Design-Assembly and-Commissioning of a-GreenPHY-Based-EVSE-Signalling and-Communication-Emulator 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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