Smart Hybrid IOT energy management System

jsitech4·Projects·ESP32/Smart_Hybrid_IOT_energy_management_System/hardware/Smart_Hybrid_IOT_energy_management_System.kicad_pcb

Smart Hybrid IOT energy management System PCB layout, top view — open source ESP32 board by jsitech4
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About the Smart Hybrid IOT energy management System PCB

Smart Hybrid IOT energy management System is an open source ESP32 PCB design by jsitech4, published on GitHub. It is a 4-layer board measuring 198.1 × 130.8 mm, with 133 components from 66 distinct parts.

Its main chip is the ESP32-WROOM, from the ESP32 family. Other key parts include the LM2596S-3.3V, LM2596S-12V, LM2596S-5V, AMS1117-3.3 and PCA9555D. By type, the board carries 30 diodes, 27 capacitors, 22 resistors, 17 connectors, 13 relays and 7 ICs.

It belongs with the iot & wireless and displays & leds designs in this gallery.

From the project

This project is a modular Smart Hybrid IOT Energy Management System built around the ESP32-WROOM-32 using a structured PlatformIO architecture.

This project is a modular Smart Hybrid IOT Energy Management System built around the ESP32-WROOM-32 using a structured PlatformIO architecture.

The system monitors the real electrical load using a PZEM-004T v3.0 energy meter and automatically manages household loads between the inverter supply and PHCN/Grid supply based on:

- Actual measured load power - User-configured inverter power rating - User-configured load margin percentage - User-configured power value for each load - PHCN/Grid availability - Inverter availability

Main components on the Smart Hybrid IOT energy management System

Smart Hybrid IOT energy management System bill of materials (BOM)

133 components, 66 distinct parts — part numbers from the project's BOM.

QtyPartRefs
1
LM2596S-3.3V
U1
1
LM2596S-12V
LM2596S-12
U2
1
ESP32-WROOM
U3
1
LM2596S-5V
U4
1
AMS1117-3.3
U5
1
PCA9555D
U6
1
CH340C
U7
2
UMH3N
Q1, Q2
2
ULN2803ADWR
Texas Instruments
Q3, Q4
1
12MHZ
12MHz
Y1
1
NEPA
J1
1
INVERTER
J2
1
CT
J3
1
PZEM_LOAD
J6
1
N
J10
1
PZEM_SIG
J11
1
USB_C Conn
J14
1
TRANS 1-OUT
J15
1
TRANS-IN
J17
1
TRANS 2-OUT
J18
Show 46 more
QtyPartRefs
1
DISPLAY
J19
1
LOAD 6
J20
1
LOAD 5
J21
1
LOAD 4
J22
1
LOAD 3
J23
1
LOAD 2
J24
1
LOAD 1
J25
1
CMZ12
DZ1
2
~
JP1, JP2
1
~
JP3
1
10A/12V
10A RELAY
K1
12
30A/12V
30A RELAY
K2, K3, K4, K5, K6, K7, K8, K9 +4
2
PC817XFP
OC1, OC2
1
10K
RV1
1
RESET
SW1
1
SPST_CK_KXT3
FLASH
SW2
1
Blue
D1
2
1N5824
D2, D3
2
Green
D4, D17
17
SM4001
D5, D6, D7, D10, D11, D18, D19, D20 +9
2
GBU8M
D8, D9
1
1N5824
D12
2
1N5819
D13, D14
2
SM4007PL
D15, D30
1
Red
D16
3
33UH
33uH
L1, L2, L3
3
680UF/35V
680uF_35V
C1, C2, C7
1
470NF
470nF
C3
8
100NF
100nF
C4, C12, C13, C18, C22, C23, C24, C25
3
220UF/16V
220uF_16V
C5, C6, C11
1
145J400V
C8
2
2200UF/35V
2200uF/35V
C9, C10
1
470UF/25V
470uF/25V
C14
1
4.7UF/16V
4.7uF/16V
C15
3
10uF_16V
C16, C26, C27
1
0.1uF/25V
C17
1
4.7UF/16V
4.7uF/16V
C19
2
22PF
22pF
C20, C21
3
680K
680k
R1, R2, R7
1
100K
100k
R3
3
6.8k
R4, R5, R8
5
330R
R6, R9, R11, R19, R20
7
10K
10k
R10, R12, R15, R16, R17, R21, R22
1
1M
R13
1
330R/2W
R14
1
150R
R18

Smart Hybrid IOT energy management System design files

The KiCad project lives in the jsitech4/Projects repository on GitHub; these links point at the commit this page was built from.

Smart Hybrid IOT energy management System: common questions

What microcontroller does the Smart Hybrid IOT energy management System use?

The Smart Hybrid IOT energy management System is built around the ESP32-WROOM, from the ESP32 family.

How big is the Smart Hybrid IOT energy management System PCB?

The Smart Hybrid IOT energy management System measures 198.1 × 130.8 mm, has 4 copper layers and is 1.6 mm thick.

How many components are on the Smart Hybrid IOT energy management System?

133 components, from 66 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 Smart Hybrid IOT energy management System design files?

From the jsitech4/Projects 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 Smart Hybrid IOT energy management System design in my own project?

The repository has no license, so all rights stay with jsitech4. Use it as a reference, and ask the author before reusing the design.

Can I test firmware for the Smart Hybrid IOT energy management System without the hardware?

Yes. HardLabs builds a simulation of the board from its netlist and BOM, so you can run and debug ESP32 firmware against it before you order a PCB.

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