• E-ink Smart Thermostat Reference Design

    E-ink Smart Thermostat Reference Design

    This project is a Smart Thermostat design using an ESP32 module for WiFi connectivity and a BME680 sensor for environmental monitoring. The user interface includes an E-ink display and an encoder for settings adjustment. Power is managed through a USB-C connector with a 3.3V regulator. #referenceDesign #project #ESP32 #ESP32WROOM #RF #WIFI #MCU #thermostat #referenceDesign #edge-computing #edgeComputing #espressif #template #reference-design

    trinox

    1 Comment


  • E-ink Smart Thermostat Reference Design

    E-ink Smart Thermostat Reference Design

    This project is a Smart Thermostat design using an ESP32 module for WiFi connectivity and a BME680 sensor for environmental monitoring. The user interface includes an E-ink display and an encoder for settings adjustment. Power is managed through a USB-C connector with a 3.3V regulator. #referenceDesign #project #ESP32 #ESP32WROOM #RF #WIFI #MCU #thermostat #referenceDesign #edge-computing #edgeComputing #espressif #template #reference-design

    tobiass

    1 Comment


  • Standard Plum Dejarik

    Standard Plum Dejarik

    QCS6490 Camera + Audio Carrier (USB-C + TP4056 + 3.3V Buck, 35x35mm 4-layer)

    pajafac693


  • ESP8684-WROOM-02C Reference Design

    ESP8684-WROOM-02C Reference Design

    This is a reference design of the ESP8684-WROOM-02C WiFi module from Espressif Systems. This board has USB C for flashing via CH340, RESET and BOOT buttons, 3.3V regulator and 2 IO connectors #WiFi #BLE #MCU #referenceDesign #simple-embedded #espressif #template #reference-design

    vasyl


  • MLX90640 Module

    MLX90640 Module

    This project is a IR camera sensor module based on the TSL25911FN sensor, equipped with I2C communication technique. The module features a 3.3V regulator, I2C level shifter, LEDs, capacitors, resistors, and JST connectors for easy interfacing. #Module #Template #sensor #IR #reusable #module #industrialsensing #sublayout

    kerry


  • 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

    6 Comments


  • Buck Boost 3.3V 500mA Physical Module aKRp

    Buck Boost 3.3V 500mA Physical Module aKRp

    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

    1 Comment


  • Buck Boost 3.3V 500mA [You're Holding it Wrong]

    Buck Boost 3.3V 500mA [You're Holding it Wrong]

    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


  • Buck Boost 3.3V 500mA Module suJx 1bc7 test 2

    Buck Boost 3.3V 500mA Module suJx 1bc7 test 2

    A buck boost converter that can be powered from a Li-Ion battery and output 3.3V @ 500mA. Powered by the TPS63051RMWR. EN is internally pulled up to VIN Input Voltage Range: 2.5V to 5.5V


  • Buck Boost 3.3V 500mA Module suJx

    Buck Boost 3.3V 500mA Module suJx

    A buck boost converter that can be powered from a Li-Ion battery and output 3.3V @ 500mA. Powered by the TPS63051RMWR. EN is internally pulled up to VIN Input Voltage Range: 2.5V to 5.5V


  • 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


  • Buck Boost 3.3V 500mA

    Buck Boost 3.3V 500mA

    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


  • 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


  • 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


  • Boost buck converter 3.3V 500 mA

    Boost buck converter 3.3V 500 mA

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


  • 5-24v Input Buck to 3.3v

    5-24v Input Buck to 3.3v

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

    &


  • AI Brick Phone 8dcd pTUT

    AI Brick Phone 8dcd pTUT

    AI Brick Phone — 3.3V Synchronous Buck Upgrade (5V→3.3V ≥1A, Low‑Noise for ESP32 & Audio/ADC)


  • AI Brick Phone 8dcd

    AI Brick Phone 8dcd

    AI Brick Phone — 3.3V Synchronous Buck Upgrade (5V→3.3V ≥1A, Low‑Noise for ESP32 & Audio/ADC)


  • FluxTutorial

    FluxTutorial

    Buck Boost 3.3V 500mA. Output 3.3V @500mA.


  • Zoophagous Beige Matter Compiler

    Zoophagous Beige Matter Compiler

    - ESP32 DevKitC V4 (microcontroller) - 2x BME280 sensors (temperature, humidity, pressure) - 8ch relay board with 12VDC relays (NO/NC SPDT) - 12VDC power supply - USB connectivity - Various components (resistors, caps, opto couplers, op-amps, motor drivers, multiplexers) - 2x SPDT relay boards (for fan fail-safe) - 4x 2ch bidirectional level controllers (3.3V to 5V) - ESP32 GPIO 21 (SCL) to BME280's SCL - ESP32 GPIO 22 (SDA) to BME280's SDA - ESP32 GPIO 5 (digital output) to 8ch relay board input - ESP32 GPIO 25 (PWM output) -> Fan PWM (0-255 value) - ESP32 GPIO 26 (PWM output) -> Light PWM (0-255 value) - ESP32 GPIO 34 (analog input) -> Tachometer input (0-4095 value, 12-bit ADC) - Add a 5V voltage regulator (e.g., 78L05) to power the ESP32 and other 5V components - Add a 3.3V voltage regulator (e.g., 78L03) to power the BME280 sensors and other 3.3V components - Include decoupling capacitors (e.g., 10uF and 100nF) to filter the power supply lines - Ensure proper grounding and shielding to minimize noise and interference -- Power supply: - VCC=12VD Available, to be used for LM358P - 5V voltage regulator (78L05) - VCC=5V, GND=0V - 3.3V voltage regulator (78L03) - VCC=3.3V, GND=0V - 3.3V voltage regulator (78L03) - VCC=3.3V, GND=0V - Fan PWM boost: - Input (3.3V PWM): 0-3.3V, frequency=20kHz - Output (5V PWM): 0-5V, frequency=20kHz - LM358P op-amp (unity gain buffer) - VCC=5V, GND=0V - R1=1kΩ, R2=1kΩ, R3=1kΩ, R4=1kΩ - C1=10uF (50V), D1=1N4007 - 0-10V signal conditioning: - Input (3.3V PWM): 0-3.3V, frequency=13kHz - Output (0-10V): 0-10V, frequency=13kHz - LM358P op-amp (non-inverting amplifier) - VCC=5V, GND=0V - R5=2kΩ, R6=1kΩ, R7=2kΩ, R8=1kΩ, R9=1kΩ, R10=2kΩ - C2=10uF (50V), R11=10kΩ (1%) ------------------------------------ Fan PWM Boost (3.3V to 5V): 1. ESP32 GPIO 25 (PWM output) -> R1 (1kΩ) -> VCC (3.3V) 2. ESP32 GPIO 25 (PWM output) -> R2 (1kΩ) -> Vin (LM358P) 3. LM358P (Voltage Follower): - VCC (5


  • Buck Boost Converter 3.3V 500 mA

    Buck Boost Converter 3.3V 500 mA

    A buck boost converter that can be powered from a Li-ion battery and ouput 3.3V @500mA. Powered by the TPS63051YFFR and in the same package as a standard ADAFRUIT buck converter. Input Voltage Range: 2.5 to 5.5 Voltage.

    52 Comments


  • buck boost converter 3.3V 500mA

    buck boost converter 3.3V 500mA

    Buck boost converter with 3 pins. Input: 2.5V to 5.5V Output: 3.3V


  • Buck Boost Converter 3.3v

    Buck Boost Converter 3.3v

    A buck boost converter that can be powered from a Li-ion and can output 3.3v @500ma. Powered by the TPS63051YFFR and in the same package as a standard Adafruit buck converter. Input voltage range: 2.5v to 5.5v


  • Buck Boost Converter 3.3V 500mA

    Buck Boost Converter 3.3V 500mA

    A Buck Boost Converter that can be powered from Li ion battery and output 3.3V 500mA Powered by TPS63051YFFR and in the same package as a standard Adafruit Buck Converter. Input Voltage Range: 2.5V to 5.5V


  • Buck Boost Converter 3.3V 500mA

    Buck Boost Converter 3.3V 500mA

    A Buck booster that can be powered from Li-on battery ans output 3.3V @ 500mA. Powered by the TPS63051YFFR and in the same package as a standard Adafruit buck converter. Input voltage range : 2.5V to 5.5V