• ESP32 Battery Management System Controller Board

    ESP32 Battery Management System Controller Board

    ESP32 Battery Management System Controller Board – An innovative solution for smart power control and audio recording integration. This cutting-edge board harnesses the power of the ESP32 microcontroller to deliver precise battery management and seamless integration with an S3 Voice Recorder subsystem. Perfect for advanced IoT applications, the board’s robust design ensures reliable energy optimization, remote monitoring, and real-time performance coupled with high-quality voice recording capabilities. Experience enhanced connectivity, efficient power regulation, and smart audio functionality, all in one compact package that paves the way for next-generation smart devices. #ESP32 #BatteryManagement #VoiceRecorder #IoT #SmartDevices #ControllerBoard

    jharwinbarrozo

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    deaa1
    pedroreyes
    jodanflux530

    0 Uses

    195 Comments

    45 Stars


  • ENVIRONMENTAL EXPOSURE RISK METER

    ENVIRONMENTAL EXPOSURE RISK METER

    Environmental exposure risk measuring device based on ESP32, ultraviolet light (UV) and CO2 gas sensor modules. It has a voltage booster based on MT3608 chip and a solar panel lithium battery charger with MPPT based on CN3791 chip.

    jr98

    0 Uses

    1 Comment

    31 Stars


  • BRAVE POWER MANAGEMENT BOARD

    BRAVE POWER MANAGEMENT BOARD

    Brave is a versatile and efficient power board that can provide 12v, 5v and 3.3v outputs for various applications. It can be powered by battery or solar panel, and the battery can be recharged by solar energy. It can also be powered by a USB port if needed. This board is ideal for IoT projects that require reliable and stable power supply in different environments. #internetOfThings #IoT #power #management #usb

    collinsemasi

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    jharwinbarrozo

    0 Uses

    176 Comments

    21 Stars


  • Audio Electronics | Copilot Preset

    Audio Electronics | Copilot Preset

    Servo Control Module with Battery Protection and UI for 100×60×50 mm Enclosure

    nico

    0 Uses

    0 Comments

    14 Stars


  • SmokeSensor_ShieldCompetition

    SmokeSensor_ShieldCompetition

    Arduino Uno shield used to monitor chimney smoke and provide feedback to stove. This shield powers the Arduino using TEGs and a battery. This shield provides power to an LED, fans, and a light sensor used to detect light intensity.

    tpetrovic2

    0 Uses

    0 Comments

    11 Stars


  • AvocAudio: A tinyML community board v1

    AvocAudio: A tinyML community board v1

    AvocAudio is a compact tinyML community board designed for extensive audio data collection for various tinyML applications. It leverages the Raspberry Pi RP2040 and integrates a LoRa-E5 LoRaWAN Transceiver Module for connectivity. Equipped with an SD card slot for local data storage, the board ensures efficient data collection. The board operates on solar power or a lithium-ion battery, ensuring flexible and efficient energy use. #audioDevices #raspberryPi #rp2040 #lorawan #iot #solar

    collinsemasi

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    kerry
    jharwinbarrozo

    0 Uses

    210 Comments

    10 Stars


  • Guitar Pedal Template

    Guitar Pedal Template

    Compact USB-C Rechargeable 9V/1A Guitar Pedal Power Supply Module with 18650 Battery

    jwwitherspoon

    0 Uses

    0 Comments

    9 Stars


  • Solar power for Raspberry Pi

    Solar power for Raspberry Pi

    To power the Raspberry Pi from solar panels or a lifepo4 battery, an efficient ultra-low power boost converter with battery management is used to generate power BQ25504RGTT

    cherepanyadima

    0 Uses

    0 Comments

    7 Stars


  • Ouija Board

    Ouija Board

    First in the world hands-free Otherside communication device! You need only the board, spirit or ghost don't need to move the ouija anymore. Symbols will light up from the inside so you will be able to read your messages and spirit or ghost just need to turn on a red bottom entry LED. Two MEMS microphones allow your interlocutor to clearly hear your questions. WiFi connectivity gives you an opportunity to "dial" without a Medium anytime anywhere. And it has Bluetooth as well, because: "Everything is better with Bluetooth"! This board is powered by a single 10440(AAA) LiFePO4 battery that gives you up to 2 hours of seance. Designed by Vasyl Skral

    0 Uses

    32 Comments

    6 Stars


  • Buck Boost 3.3V 500mA Physical Module

    Buck Boost 3.3V 500mA Physical Module

    A buck boost converter that can be powered from a Li-Ion battery and output 3.3V @ 500mA. Powered by the TPS63051YFFR and in the same package as a standard Adafruit buck converter. Expect to squeeze around 5-10% SoC from a typical Li-Ion battery. Input Voltage Range: 2.5V to 5.5V Assembled at pcbway.com

    0 Uses

    0 Comments

    6 Stars


  • Weather Station

    Weather Station

    This Weather Station Logger project employs the versatile ESP32 microcontroller board, integrated with an SD card slot for data storage. It features a USB interface for easy programming and is efficiently powered by a single 18650 battery, complete with a protection circuit for safe operation. #iot #esp32 #lora #weather #edgecomputing

    0 Uses

    6 Comments

    5 Stars


  • WeMos D1 mini template

    WeMos D1 mini template

    WeMos D1 Mini: LiPo Battery, OLED Display, and Debounced Button System (Final Schematic & Ready for Production)

    jharwinbarrozo

    0 Uses

    100 Comments

    4 Stars


  • ESP32 BMS V1.2

    ESP32 BMS V1.2

    This BMS 10s board for Zinc ion batteries is made of water, zinc, and carbon. The maximum battery voltage is 1.8v. #BMS #zinc #esp32#battery

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    0 Uses

    15 Comments

    4 Stars


  • Air-powered-soft-robots

    Air-powered-soft-robots

    Board for air-powered soft robots. Board contains 4 air pumps powered by a 12.4v li-on battery and controlled by fixed buttons

    0 Uses

    1 Comment

    4 Stars


  • Project Sunflower Seeds

    Project Sunflower Seeds

    Solar-powered autonomous development board that allows you to grow your project from a small seed to a big, beautiful flower. AAA(10440) LiFePO4 battery as energy storage. BQ25504 Ultra Low-Power Energy Harvester

    0 Uses

    19 Comments

    3 Stars


  • LoRa soil monitor Reference Design

    LoRa soil monitor Reference Design

    This is a LoRa soil monitor Reference Design. It uses a STM32L031G6U6S microcontroller and a RFM95W-915S2 LoRa transceiver, integrated with sensor interfacing and LED indicators. Communication occurs via USART and SPI. The system is powered using a battery. #referenceDesign #simple-embedded #stm #template #reference-design

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    0 Uses

    14 Comments

    3 Stars


  • ESP32 BMS

    ESP32 BMS

    Balancing board for zinc batteries controlled by ESP32 via IO expander. Information about the state of each battery will be uploaded to the cloud

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    nico

    0 Uses

    0 Comments

    3 Stars


  • 18650 battery charging circuit

    18650 battery charging circuit

    Welcome to your new project. Imagine what you can build here.

    0 Uses

    70 Comments

    2 Stars


  • Battle Bot

    Battle Bot

    Welcome to your new project. Imagine what you can build here.

    +

    0 Uses

    0 Comments

    2 Stars


  • Drone

    Drone

    This PCB is for a quad copter drone. The drone will use a 4S lipo battery as a power supply and each of the motors will use 30Amp ESC's. The microcontroller that handles the RF signals is a Raspberry Pi Pico.

    0 Uses

    211 Comments

    2 Stars


  • The Green Dot 2040E5 Board

    The Green Dot 2040E5 Board

    The "Green Dot 2040E5" Board is a Node that interfaces RS485 Sensor probes and can log information to the cloud using LoRa Connectivity. It uses the XIAO RP2040 and the LoRa-E5 (STM32WLE5JC) modules from Seeed Studio to do its magic. It also has amazing power management capabilities (Solar charging, Battery protection, etc) that make it very useful for IoT applications #Seeed #XIOA #LoRa #RP2040 #IoT

    kerry

    0 Uses

    24 Comments

    2 Stars


  • The Green Dot 2040E5 Board  krN5

    The Green Dot 2040E5 Board krN5

    The "Green Dot 2040E5" Board is a Node that interfaces RS485 Sensor probes and can log information to the cloud using LoRa Connectivity. It uses the XIAO RP2040 and the LoRa-E5 (STM32WLE5JC) modules from Seeed Studio to do its magic. It also has amazing power management capabilities (Solar charging, Battery protection, etc) that make it very useful for IoT applications #Seeed #XIOA #LoRa #RP2040 #IoT

    nico

    0 Uses

    18 Comments

    2 Stars


  • Aquatimer

    Aquatimer

    AquaTimer is a programmable timer for 12V devices such as lighting, solenoid valves or pumps not only for aquariums. It has three switchable channels for currents up to 2A each and up to 5A in total. Connected lighting can be dimmed if desired and slowly faded in and out to simulate sunrises and sunsets. The internal RTC of the ATtiny is used as a clockwork in conjunction with a 32.768kHz crystal. A backup battery keeps the clock running even if the external power supply is interrupted. Settings are made using three buttons and the OLED display.

    0 Uses

    14 Comments

    2 Stars


  • BQ25895 Reference Design

    BQ25895 Reference Design

    This project is a reference design based on the BQ25895, a single cell Li-Ion battery charger. It manages the power between an external power source (VIN), a Li-Ion battery (BAT), and a system power rail (SYS). Key features include power-path management, battery thermistor monitoring, and charge status indication. #project #BQ25895 #ReferenceDesign #charger #BatteryManagemen #referenceDesign #bms #texas-instruments #template #reference-design #polygon

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    cherepanyadima

    0 Uses

    14 Comments

    2 Stars


  • MSP430FR6035IPZ

    MSP430FR6035IPZ

    The Texas Instruments MSP430FR604x and MSP430FR603x family comprises highly integrated ultrasonic sensing and measurement system-on-chips (SoCs) designed specifically for water and heat metering applications. The featured components, including MSP430FR6047, MSP430FR60471, MSP430FR6045, MSP430FR6037, MSP430FR60371, and MSP430FR6035, deliver best-in-class ultrasonic water flow measurement with ultra-low power consumption. These microcontrollers excel with an active mode current consumption of approximately 120 µA/MHz and a standby mode power draw as low as 450 nA with a real-time clock (RTC) enabled. Key functionalities include a high-precision differential time-of-flight (dTOF) accuracy of less than 25 ps, integrated analog front-end, programmable pulse generation (PPG), and an analog comparator. They also interface directly with standard ultrasonic sensors up to 2.5 MHz and feature up to 256KB FRAM, robust RAM options, and integrated LCD drivers for up to 264 segments. The embedded low-energy accelerator (LEA) enhances digital signal processing capabilities, making these components ideal for battery-powered metering solutions. Peripherals include multiple enhanced serial communication interfaces, high-performance ADCs, DMA controllers, and a suite of timers and encryption modules. These features combine to offer a powerful solution for high-accuracy, low-cost, and ultra-low-power metering applications.

    0 Uses

    4 Comments

    2 Stars


  • Simple Charger Modul

    Simple Charger Modul

    This is a simple charger modul that can be connected to a DC generator or solar panel at the input and a battery at the output

    0 Uses

    4 Comments

    2 Stars


  • GPS Breakout - ZOE-M8Q (Qwiic)

    GPS Breakout - ZOE-M8Q (Qwiic)

    The SparkFun ZOE-M8Q GPS Breakout is a high accuracy, miniaturized, GPS board that is perfect for applications that don't possess a lot of space. The on-board ZOE-M8Q is a 72-channel GNSS receiver, meaning it can receive signals from the GPS, GLONASS, BeiDou, and Galileo constellations. This increases precision and decreases lock time and thanks to the onboard rechargable battery you'll have backup power enabling the GPS to get a hot lock within seconds! Additionally, this u-blox receiver supports I2C (u-blox calls this Display Data Channel) which made it perfect for the Qwiic compatibility so we don't have to use up our precious UART ports. Utilizing our handy Qwiic system, no soldering is required to connect it to the rest of your system. However, we still have broken out 0.1"-spaced pins in case you prefer to use a breadboard.

    0 Uses

    1 Comment

    2 Stars


  • LoRa Door and Window Sensor Reference Design bbYa

    LoRa Door and Window Sensor Reference Design bbYa

    This is a LoRa-based door and window sensor incorporating a microcontroller unit (MCU). It features a reed sensor, LED indicators, a AAA non-rechargeable battery, and a booster IC for constant voltage. The MCU is linked to peripherals through nets, ensuring optimal performance #LoRa #MCU #ReferenceDesign #project #referenceDesign #simple-embedded #seeed #seeed-studio #template #reference-design

    0 Uses

    1 Comment

    2 Stars


  • 12V LiFePO4 Power Distribution Board

    12V LiFePO4 Power Distribution Board

    12V LiFePO4 power distribution board requirements package: 150 mm x 100 mm 2-layer SMD PCB with 12V battery input, input protection, 12V-to-5.1V buck conversion, six USB-C power outputs, 3.3V logic rail, current/voltage monitoring, test points, board-edge connectors, and JLCPCB-aligned fabrication outputs.

    +

    0 Uses

    0 Comments

    2 Stars


  • AvocAudio 04_02 Generating Manufacturing Files

    AvocAudio 04_02 Generating Manufacturing Files

    AvocAudio is a compact tinyML community board designed for extensive audio data collection for various tinyML applications. It leverages the Raspberry Pi RP2040 and integrates a LoRa-E5 LoRaWAN Transceiver Module for connectivity. Equipped with an SD card slot for local data storage, the board ensures efficient data collection. The board operates on solar power or a lithium-ion battery, ensuring flexible and efficient energy use. #audioDevices #raspberryPi #rp2040 #lorawan #iot #solar

    0 Uses

    0 Comments

    2 Stars


  • AvocAudio - Fully Placed 23ab 7515

    AvocAudio - Fully Placed 23ab 7515

    AvocAudio is a compact tinyML community board designed for extensive audio data collection for various tinyML applications. It leverages the Raspberry Pi RP2040 and integrates a LoRa-E5 LoRaWAN Transceiver Module for connectivity. Equipped with an SD card slot for local data storage, the board ensures efficient data collection. The board operates on solar power or a lithium-ion battery, ensuring flexible and efficient energy use. #audioDevices #raspberryPi #rp2040 #lorawan #iot #solar

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    collinsemasi

    0 Uses

    0 Comments

    2 Stars


  • Aaduino

    Aaduino

    The AAduino is an wireless Arduino clone the size of an AA battery with Keystone battery terminals rotated 180° to act as positive and negative terminals. It is meant to go inside a 3xAA battery holder creating a very small wireless node. Powered by an ATMega328p, it is fitted with an RFM69CW companion, two DS18B20 temperature sensors and an indicator LED

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    jharwinbarrozo

    0 Uses

    0 Comments

    2 Stars


  • Lipo Battery

    Lipo Battery

    3.7 V Lithium-Ion Polymer Battery Rechargeable (Secondary) 5500mAh

    0 Uses

    1 Comment

    1 Star


  • Smart Brown Battle Mech

    Smart Brown Battle Mech

    Welcome to your new project. Imagine what you can build here.

    0 Uses

    97 Comments

    1 Star


  • Excessive Olive Antigravity Battle Room

    Excessive Olive Antigravity Battle Room

    Welcome to your new project. Imagine what you can build here.

    0 Uses

    6 Comments

    1 Star


  • Clean Lime Battle Mech

    Clean Lime Battle Mech

    Welcome to your new project. Imagine what you can build here.

    +

    0 Uses

    3 Comments

    1 Star


  • Tragic Apricot Battle Mech

    Tragic Apricot Battle Mech

    Welcome to your new project. Imagine what you can build here.

    0 Uses

    3 Comments

    1 Star


  • Conservative Scarlet Battle Mech

    Conservative Scarlet Battle Mech

    Welcome to your new project. Imagine what you can build here.

    +

    0 Uses

    1 Comment

    1 Star


  • Strategic Amber Battle Mech

    Strategic Amber Battle Mech

    Welcome to your new project. Imagine what you can build here.

    +

    0 Uses

    1 Comment

    1 Star


  • Civil Gray Antigravity Battle Room

    Civil Gray Antigravity Battle Room

    Welcome to your new project. Imagine what you can build here.

    +

    0 Uses

    1 Comment

    1 Star



  • Right Azure Antigravity Battle Room

    Right Azure Antigravity Battle Room

    Welcome to your new project. Imagine what you can build here.

    0 Uses

    1 Comment

    1 Star


  • Obliged Scarlet Antigravity Battle Room

    Obliged Scarlet Antigravity Battle Room

    Welcome to your new project. Imagine what you can build here.

    jharwinbarrozo

    +

    0 Uses

    1 Comment

    1 Star


  • Colossal Black Antigravity Battle Room

    Colossal Black Antigravity Battle Room

    Welcome to your new project. Imagine what you can build here.

    0 Uses

    1 Comment

    1 Star


  • Attractive Lavender Antigravity Battle Room

    Attractive Lavender Antigravity Battle Room

    Welcome to your new project. Imagine what you can build here.

    0 Uses

    1 Comment

    1 Star


  • Multi cells battery

    Multi cells battery

    jharwinbarrozo

    0 Uses

    1 Comment

    1 Star


  • Competent Violet Battle Mech

    Competent Violet Battle Mech

    Welcome to your new project. Imagine what you can build here.

    0 Uses

    1 Comment

    1 Star


  • Stale Amethyst Antigravity Battle Room

    Stale Amethyst Antigravity Battle Room

    Welcome to your new project. Imagine what you can build here.

    0 Uses

    0 Comments

    1 Star


  • Shocked Brown Antigravity Battle Room

    Shocked Brown Antigravity Battle Room

    Production-Ready ESP32 Bulk Dialer PCB with Triple SIM800L, MFRC522 RFID, SPI Storage, and Robust Power Management

    0 Uses

    0 Comments

    1 Star


  • Realistic Brown Battle Mech

    Realistic Brown Battle Mech

    Nice — you can do a clean pulse + latch using a single quad Schmitt-NAND chip: 74HC132 (or 74LVC132 for 3.3 V systems). The HC132 contains four 2-input NAND gates with Schmitt inputs so you can both clean a noisy SYN480R DATA line and build an SR latch (NAND SR is active-LOW) inside one package. Only a few passives and a driver transistor are needed. Below is a ready-to-build recipe (parts, wiring, explanation, tuning tips, and an ASCII schematic) — no extra logic ICs required. Parts (per latch) 1 × 74HC132 (quad 2-input NAND with Schmitt inputs). If your system is 3.3 V use 74LVC132 / 74HC132 rated for 3.3 V. Rin = 47 kΩ (input series) Cfilter = 10 nF (input RC to ground) — tweak for debounce/clean time Rpulldown = 100 kΩ (pull-down at input node, optional) Rpullup = 100 kΩ (pull-up for active-LOW R input so reset is idle HIGH) Rbase = 10 kΩ, Q = 2N2222 (NPN) or small N-MOSFET (2N7002) to drive your load Diode for relay flyback (1N4001) if you drive a coil Optional small cap 0.1 µF decoupling at VCC of IC Concept / how it works (short) Use Gate1 (G1) of 74HC132 as a Schmitt inverter by tying its two inputs together and feeding a small RC filter from SYN480R.DATA. This removes HF noise and provides a clean logic transition. Because it's a NAND with tied inputs its function becomes an inverter with Schmitt behavior. Use G2 & G3 as the cross-coupled NAND pair forming an SR latch (active-LOW inputs S̄ and R̄). A low on S̄ sets Q = HIGH. A low on R̄ resets Q = LOW. Wire the cleaned/inverted output of G1 to S̄. A valid received pulse (DATA high) produces a clean LOW on S̄ (because G1 inverts), setting the latch reliably even if the pulse is brief. R̄ is your reset input (pushbutton, HT12D VT, MCU line, etc.) — idle pulled HIGH. Q drives an NPN/MOSFET to switch your load (relay, LED, etc.). Recommended wiring (pin mapping, assume one chip; use datasheet pin numbers) I’ll refer to the 4 gates as G1, G2, G3, G4. Use G4 optionally for additional conditioning or to build a toggler later. SYN480R.DATA --- Rin (47k) ---+--- Node A ---||--- Cfilter (10nF) --- GND | Rpulldown (100k) --- GND (optional, keeps node low) Node A -> both inputs of G1 (tie inputs A and B of Gate1 together) G1 output -> S̄ (S_bar) (input1 of Gate2) Gate2 (G2): inputs = S̄ and Q̄ -> output = Q Gate3 (G3): inputs = R̄ and Q -> output = Q̄ R̄ --- Rpullup (100k) --- VCC (reset is idle HIGH; pull low to reset) (optional) R̄ can be wired to a reset pushbutton to GND or to an MCU pin Q -> Rbase (10k) -> base of 2N2222 (emitter GND; collector to one side of relay coil) Other side of relay coil -> +V (appropriate coil voltage) Diode across coil If you prefer MOSFET low side switching: Q -> gate resistor 100Ω -> gate of 2N7002 2N7002 source -> GND ; drain -> relay coil low side

    0 Uses

    0 Comments

    1 Star