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SKU SEN0505/B

TFmini-i Industrial ToF Single-Point Ranging Solid State LiDAR Sensor (12m, RS485, IP65)

by DFRobot
Original price €105,26 - Original price €105,26
Original price
€105,26
€105,26 - €105,26
Current price €105,26

All prices are VAT included

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TFmini-i LiDAR is an industrial-grade small single-point solid state LiDAR . Its maximum detection range can reach up to 12m and it has an adjustable frame rate with a maximum of 1KHz.


More Suitable for Industrial Application

  • Compatible with RS485 interface
  • Supports Pix and customized output protocols
  • Optimized compensation algorithms for bright light and temperature to work well in different environments

  • More Stable & Safer

  • Has a PC/ABS/PMMA enclosure with IP65 water and dust resistance.
  • Supports a wide range of input voltages ( 7-30V ) and reduce the damage caused by voltage fluctuations.
  • With reverse protection to protect the internal circuit.
  • Passing drone-level vibration tests.

  • Small Size & High Performance

    Inheriting the advantages of the TFmini's small size. This ToF Single-Point Ranging Sensor is only 50mm*34mm*41mm , but it brings us excellent performance and can be flexibly and easily integrated into various small smart devices.

    TFmini-i laser radar small size


    Easy to Use

    The TFmini-i ToF single-point ranging sensor can be used on the Arduino UNO R3 through the TTL to RS485 Shield, and it can also be used on the Raspberry Pi through the USB to RS485 module. Those two ways provided by DFRobot can make TFmini-i LiDAR easier to use.

    TFmini-i laser radar connection


    How does TFmini-i LiDAR work?

    TFmini-i is a TOF single point solid state LiDAR, which is based on Pulse Time of Flight (PTOF).It adopts an incoherent energy receiving mode, and the detection is mainly based on Pulse counting. TFmini-i emits a narrow pulse laser, which is collimated by the transmitting lens to form a collimated light, which enters the receiving system after being reflected by the measured target and is focused on the APD detector by the receiving lens. The time between the transmitted signal and the received signal is calculated through the circuit amplification and filtering, and the distance between TFmini-i and the measured target can be calculated through the speed of light.

    Schematic diagram of ToF Single-Point Ranging Solid State LiDAR

    Schematic diagram of TFmini-i