• RF-Harvested Audio Node

    RF-Harvested Audio Node

    Battery-less 2 mm cube audio node concept powered by inductive/RF harvesting, with MEMS microphone capture, RF SoC burst transmission, rectification, and ceramic buffer storage.

    mmkmk

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  • Powerbank board rnjs

    Powerbank board rnjs

    Fully-Integrated Bi-directional PD3.0 and Fast Charge Power Bank SOC with Multiple Input and Output Ports based on IP5328P

    canil

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  • Powerbank board

    Powerbank board

    Fully-Integrated Bi-directional PD3.0 and Fast Charge Power Bank SOC with Multiple Input and Output Ports based on IP5328P

    canil

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  • nRF52810 Watch Template

    nRF52810 Watch Template

    This is a smart watch project based on E73-2G4M04S1A module with SoC nRF52810 on board. OLED display and coin battery #wearable #nRF52810 #E73 #Ebyte #BLE #referenceDesign

    ulasyalin

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  • 48V Pass-Through Power Distribution

    48V Pass-Through Power Distribution

    This project is the core of the Caldera Loudspeakers, incorporating the SoC, DSP, amplifier, and all required electronics.

    brunodom

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  • FlowState Headband EVT1

    FlowState Headband EVT1

    FlowState Headband EVT1 — 4-Channel EEG Calibration Device Closed-loop EEG neurofeedback headband for theta/beta baseline calibration. 4-layer mixed-signal PCB, 40x30mm. Core ICs: - ADS1299-4PAG (TI) — 4-channel 24-bit EEG analog front end, SPI interface, 250 SPS - nRF5340 (Nordic) — Dual-core BLE 5.3 SoC, 128 MHz app core + 64 MHz network core Key requirements: - Separate analog and digital power domains (dual LDO: LP5907 for AVDD, AP2112 for DVDD) - Split analog/digital ground planes with single-point connection - 6 electrode inputs (4 active + 1 reference + 1 DRL) with individual TVS ESD protection on each - LIS2DH12 accelerometer (I2C) for motion artifact detection - MCP73831 USB-C battery charging (300-500 mAh LiPo) - 2.4 GHz chip antenna or PCB trace antenna at board edge with 10mm keepout - Conformal coating for sweat/moisture protection Reference designs: - Analog front-end: TI ADS1299 EVM (SBAS499) - Digital/BLE: Nordic nRF5340 DK reference schematic Critical constraint: Microvolt-level EEG signals — analog input routing and power supply filtering are the highest-priority layout concerns.

    ninaphatak

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  • Seeed Studio XIAO ESP32C6 SMD Version

    Seeed Studio XIAO ESP32C6 SMD Version

    Seeed Studio XIAO ESP32C6 is powered by the highly-integrated ESP32-C6 SoC, built on two 32-bit RISC-V processors, with a high-performance (HP) processor with running up to 160 MHz, and a low-power (LP) 32-bit RISC-V processor, which can be clocked up to 20 MHz. There are 512KB SRAM and 4 MB Flash on the chip, allowing for more programming space, and binging more possibilities to the IoT control scenarios.

    themisfit68

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  • Powerbank board

    Powerbank board

    Fully-Integrated Bi-directional PD3.0 and Fast Charge Power Bank SOC with Multiple Input and Output Ports based on IP5328P

    gabugraver41

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  • ESP32-WROOM-32D

    ESP32-WROOM-32D

    RF Module, ESP32-D0WD SoC, Wi-Fi 802.11b/g/n, Bluetooth, BLE, 32-bit, 2.7-3.6V, onboard antenna, SMD #RF #ESP32 #WiFi #BLE #commonpartslibrary

    sanchezstar29

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  • Seeed Studio XIAO MG24 Sense

    Seeed Studio XIAO MG24 Sense

    XIAO MG24 Sense is an ultra-low-power wireless development board based on Silicon Labs' EFR32MG24 SoC, featuring a high-performance 78MHz ARM Cortex®-M33 core. It‘s Matter® native over Thread® and Bluetooth® Low Energy 5.3, all supported by the Arduino® Core. With 4MB Flash onboard, 19 GPIOs, LED, and charging circuit onboard, it boasts extremely low operating current and ultra-low-power modes, making it an ideal choice for IoT applications, especially battery-powered projects utilizing Matter® protocols. Additionally, the onboard analog microphone and six-axis IMU sensors make XIAO MG24 Sense a great fit for TinyML applications such as posture detection

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  • 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

    0 Uses

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  • BLE Encoder [Auto-Layout Example]

    BLE Encoder [Auto-Layout Example]

    BLE remote control board. Based on SoC ESP32-C3-MINI-1 that allows you to program it as HID volume multichannel control, you can switch channels with the user button, or use it as arrow keys. #internetOfThings

    0 Uses

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  • Jharwin Powerbank Board [Example for AI Auto Layout] 1234 0c39 147b

    Jharwin Powerbank Board [Example for AI Auto Layout] 1234 0c39 147b

    Fully-Integrated Bi-directional PD3.0 and Fast Charge Power Bank SOC with Multiple Input and Output Ports based on IP5328P

    0 Uses

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  • Bluetooth Controlled RC Car template

    Bluetooth Controlled RC Car template

    This project is a Bluetooth Controlled RC Car template. With a dual channel DC motor controller based on L298N and E73-2G4M04S1A module with SoC nRF52810 on board #robotics #nRF52810 #E73 #Ebyte #BLE #motorController #L298N #controller #motor #DC #referenceDesign #project

    +

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  • BLE Controller Template

    BLE Controller Template

    This is a BLE Controller project based on E73-2G4M04S1A module with SoC nRF52810 on board. Can be used to control RC cars, robots, planes, drones, etc #robotics #nRF52810 #E73 #Ebyte #BLE #referenceDesign

    +

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  • nRF52810 Watch Template

    nRF52810 Watch Template

    This is a smart watch project based on E73-2G4M04S1A module with SoC nRF52810 on board. OLED display and coin battery #wearable #nRF52810 #E73 #Ebyte #BLE #referenceDesign

    +

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  • LoRa remote control Reference Design 874z nL8t

    LoRa remote control Reference Design 874z nL8t

    This is a LoRa remote control project built around a Raspberry Pi RP2040 SoC and the RFM95W LoRa module. The design includes user interface features such as multiple buttons and LEDs, power management components, and a temperature sensor. The project utilizes SPI, I2C, and USB interfaces for communication and control. #referenceDesign #simple-embedded #raspberrypi #lora #template #reference-design

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  • 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

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  • LoRa remote control Reference Design 874z

    LoRa remote control Reference Design 874z

    This is a LoRa remote control project built around a Raspberry Pi RP2040 SoC and the RFM95W LoRa module. The design includes user interface features such as multiple buttons and LEDs, power management components, and a temperature sensor. The project utilizes SPI, I2C, and USB interfaces for communication and control. #referenceDesign #simple-embedded #raspberrypi #lora #template #reference-design

    0 Uses

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  • LoRa remote control Reference Design 874z nL8t idWb

    LoRa remote control Reference Design 874z nL8t idWb

    This is a LoRa remote control project built around a Raspberry Pi RP2040 SoC and the RFM95W LoRa module. The design includes user interface features such as multiple buttons and LEDs, power management components, and a temperature sensor. The project utilizes SPI, I2C, and USB interfaces for communication and control. #referenceDesign #simple-embedded #raspberrypi #lora #template #reference-design

    0 Uses

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  • Powerbank board

    Powerbank board

    Fully-Integrated Bi-directional PD3.0 and Fast Charge Power Bank SOC with Multiple Input and Output Ports based on IP5328P

    0 Uses

    0 Comments

    0 Stars


  • 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

    0 Uses

    0 Comments

    0 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

    0 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

    0 Stars


  • Pin Socket 01x20 2.54mm Vertical

    Pin Socket 01x20 2.54mm Vertical

    Through Hole straight socket strip, 01x20, 2.54mm pitch, single row #connector #pinsocket #tht

    0 Uses

    1 Comment

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