• Avocaudio (Modular) 04_12 External Flash

    Avocaudio (Modular) 04_12 External Flash

    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

    hasofukirsch

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    1 Star


  • Avocaudio (Modular) 04_11 Done

    Avocaudio (Modular) 04_11 Done

    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

    hasofu

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    hasofukirsch

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    1 Star


  • Avocaudio (Modular) 04_08 Start

    Avocaudio (Modular) 04_08 Start

    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

    hasofukirsch

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    1 Star


  • Avocaudio (Modular) 04_06 Done

    Avocaudio (Modular) 04_06 Done

    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

    hasofukirsch

    0 Uses

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    1 Star


  • Avocaudio (Modular) 04_05 Done

    Avocaudio (Modular) 04_05 Done

    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

    hasofu

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    hasofukirsch

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    1 Star


  • Avocaudio (Modular) 4_04 Start - MCU Placement

    Avocaudio (Modular) 4_04 Start - MCU Placement

    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

    hasofu

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    hasofukirsch

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    1 Star


  • Sendtra-0ne-B1

    Sendtra-0ne-B1

    Basic project template for RP2040 MCU from Raspberry Pi Pico Development board #RaspberryPi #Raspberry #Pi #RPi #Pico #template #project #project-template

    anmolkingk

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  • AvocAudio 02_02_Start

    AvocAudio 02_02_Start

    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

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    1 Star


  • AvocAudio: A tinyML community board v2 Modules

    AvocAudio: A tinyML community board v2 Modules

    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. #raspberryPi #rp2040 #lorawan #iot #solar

    0 Uses

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    1 Star


  • RP2040 - Newsletter1

    RP2040 - Newsletter1

    I designed a Raspberry Pi pico-like board using only AI

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    1 Star


  • Fellow Pink Massive Robot Spider

    Fellow Pink Massive Robot Spider

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

    0 Uses

    80 Comments

    1 Star


  • Due Indigo Pip boy

    Due Indigo Pip boy

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

    0 Uses

    77 Comments

    1 Star


  • Ordinary Amethyst Pip boy

    Ordinary Amethyst Pip boy

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

    +

    0 Uses

    41 Comments

    1 Star


  • Evolutionary Pink Tricorder

    Evolutionary Pink Tricorder

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

    0 Uses

    4 Comments

    1 Star


  • Underground Pink Hoverboard

    Underground Pink Hoverboard

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

    0 Uses

    1 Comment

    1 Star


  • Bored Emerald Pip boy

    Bored Emerald Pip boy

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

    0 Uses

    1 Comment

    1 Star


  • Particular Bronze Pip boy

    Particular Bronze Pip boy

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

    0 Uses

    1 Comment

    1 Star


  • Variable Coral Pip boy

    Variable Coral Pip boy

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

    0 Uses

    1 Comment

    1 Star


  • Honest Maroon Pip boy

    Honest Maroon Pip boy

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

    0 Uses

    1 Comment

    1 Star


  • Frantic Plum Pip boy

    Frantic Plum Pip boy

    como puedo corregir este codigo para que funcione en flux.io import time import random import matplotlib.pyplot as plt import io import base64 from fluxio import Flow flow = Flow() @flow.task def linear_search(arr, target): for i in range(len(arr)): if arr[i] == target: return i return -1 @flow.task def binary_search(arr, target): low = 0 high = len(arr) - 1 while low <= high: mid = (low + high) // 2 if arr[mid] == target: return mid elif arr[mid] < target: low = mid + 1 else: high = mid - 1 return -1 @flow.task def measure_time(func, arr, target): start_time = time.time() func(arr, target) end_time = time.time() return end_time - start_time @flow.task def generate_data_and_measure(): sizes = [100, 1000, 5000, 10000, 50000, 100000] linear_times = [] binary_times = [] for size in sizes: arr = random.sample(range(size * 2), size) target = random.choice(arr) sorted_arr = sorted(arr) linear_time = measure_time(linear_search, arr, target) binary_time = measure_time(binary_search, sorted_arr, target) linear_times.append(linear_time) binary_times.append(binary_time) return sizes, linear_times, binary_times @flow.task def plot_results(sizes, linear_times, binary_times): plt.plot(sizes, linear_times, label='Búsqueda Lineal') plt.plot(sizes, binary_times, label='Búsqueda Binaria') plt.xlabel('Tamaño del Array') plt.ylabel('Tiempo de Ejecución (segundos)') plt.title('Análisis de Complejidad Temporal') plt.legend() plt.grid(True) buf = io.BytesIO() plt.savefig(buf, format='png') buf.seek(0) img_str = base64.b64encode(buf.read()).decode('utf-8') plt.close() return img_str @flow.task def main(): sizes, linear_times, binary_times = generate_data_and_measure() img_str = plot_results(sizes, linear_times, binary_times) return img_str if __name__ == "__main__": flow.run(main)

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    1 Star


  • Secure Pink KITT

    Secure Pink KITT

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

    0 Uses

    1 Comment

    1 Star


  • Light Pink Flux Capacitor

    Light Pink Flux Capacitor

    Industrial ESP32-S3 MicroPython Controller with USB Hub, HDMI Output, Isolated Relay, and Buzzer Driver

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    1 Star


  • Hushed Maroon Pip boy

    Hushed Maroon Pip boy

    TelePacks v2.1 - Routed, Part-Assigned, All Checks Passed

    0 Uses

    0 Comments

    1 Star


  • Horizontal Pink Electronic Thumb

    Horizontal Pink Electronic Thumb

    nRF52840 Bluetooth 5.0 Sensor Node with Robust Power and Enhanced RF Performance

    0 Uses

    0 Comments

    1 Star


  • Cooperative Harlequin Pip boy

    Cooperative Harlequin Pip boy

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

    +

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    1 Star