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DFRobot

DFRobot DFM8001 Ambient Energy Harvesting Module

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DF Robot Modules for everyday users

The DFRobot DFM8001 Ambient Energy Harvesting Module by DFRobot is a value-for-money df robot modules designed for everyday users. It features Item Type: Module and Voltage Rating (V): 3.3 to 5.5.

₹1,108
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Total: ₹1,108
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Estimated delivery: 22 Aug5 Sept
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Quick Specs

Item Type: Module
Voltage Rating (V): 3.3 to 5.5
Cold start: Input ≥ 400mV 15uW
Supported: disposable backup battery
Length (mm): 15
Width (mm): 15

Ideal For

Electronics projectsArduino / Raspberry Pi buildsPrototyping
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SKU: robu-2157707Category: DF Robot Modules

About This Product

The DFRobot DFM8001 Ambient Energy Harvesting Module by DFRobot is a value-for-money df robot modules designed for everyday users. It delivers reliable performance at an accessible price.

Key Specifications

  • Item Type: Module
  • Voltage Rating (V): 3.3 to 5.5 — works with standard household power
  • Cold start: Input ≥ 400mV 15uW
  • Supported: disposable backup battery — keeps you powered without frequent recharging
  • Length (mm): 15
  • Width (mm): 15
  • Shipping Weight: 0.025 kg
  • Shipping Dimensions: 6 × 5 × 2 cm

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Harness the power of the natural environment with the DFM8001 Ambient Energy Harvesting Module. This module is a micro-energy harvesting module that can be used indoors. It efficiently collects and stores energy from abundant sources such as mechanical, thermal, solar, and radio frequency energy. The best part? It does not require a battery, eliminating the need to worry about charging, discharging, and battery life. Energy sources in the natural environment are influenced by factors such as geographical location and weather, making it difficult to utilize effectively due to their weak and unstable characteristics. The DFM8001 module addresses this challenge by being capable of handling energy ranging from weak to microwatt levels. It features dynamic MPPT tracking, which regularly monitors the status of input sources and adjusts to the maximum power point to ensure efficient collection of weak energy. Moreover, the module integrates functions including charge and discharge management, energy storage management, and dual-channel voltage stabilization output. The DFM8001 module integrates necessary components for operation internally. Simply connect the module’s configuration pins to GND/Vbuck, and connect energy harvesting devices, energy storage devices, and electrical devices to construct an ambient energy supply system. It is particularly suitable for use with amorphous silicon, organic materials, dye-sensitized, and other types of photovoltaic cells, exhibiting excellent energy storage performance even in weak light environments such as low sunlight or indoor lighting. For user convenience, DFRobot has introduced the DFM8001 Evaluation Kit. This kit includes the DFM8001 evaluation board, amorphous silicon photovoltaic cells, and a supercapacitor energy storage module. Users can build an ambient energy power system with a simple connection.

Applications:

  1. Indoor light energy harvesting
  2. Self-powered Internet of Things (IoT) nodes
  3. Smart home systems
  4. Industrial monitoring
  5. Asset management
  6. Ambient IoT

Useful link:

For more information refer to the tutorial

Features:

  1. Efficiently collects and stores various energy types.
  2. Features dynamic Maximum Power Point Tracking (MPPT).
  3. Integrates charge, discharge, and energy storage management.
  4. Provides dual-channel voltage stabilization output.
  5. Handles energy from weak to microwatt levels.
  6. Suitable for various types of photovoltaic cells.
  7. Performs well in weak light environments.

Package Includes:

1 x DFRobot DFM8001 Ambient Energy Harvesting Module for Indoor IoT Battery-free Devices

Setup Guide

1
Identify the pins
Locate VCC (power), GND (ground), and data pins (SDA/SCL for I2C, MOSI/MISO for SPI, or TX/RX for UART). Refer to the pinout diagram on the product page.
2
Wire to your microcontroller
Connect VCC to 3.3V or 5V (check the module spec), GND to GND, and data pins to the appropriate GPIO pins on your Arduino or Raspberry Pi.
3
Install libraries
In Arduino IDE, go to Sketch → Include Library → Manage Libraries and search for the sensor library. Install the recommended version.
4
Upload example sketch
Open File → Examples → [library name] → Basic Example. Upload to your board and open Serial Monitor to view output.
5
Calibrate if needed
Some sensors (temperature, humidity, distance) may need a short warm-up period or calibration. Run the calibration sketch if provided.