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{"id":6986521673881,"title":"VL53L0X Time-of-Flight Flight Distance Measurement Sensor Breakout VL53L0X ToF Laser Range Finder for Arduino","handle":"vl53l0x-time-of-flight-flight-distance-measurement-sensor-breakout-vl53l0x-tof-laser-range-finder-for-arduino","description":"\u003ch4\u003eVL53L0X Time-of-Flight Flight Distance Measurement Sensor Breakout VL53L0X ToF Laser Range Finder for Arduino\u003c\/h4\u003e\n\u003cp id=\"b\"\u003eThe VL53L0X from ST Microelectronics is a time-of-flight ranging system\nintegrated into a compact module. This board is a carrier for the VL53L0X, so\nwe recommend careful reading of the VL53L0X datasheet (1MB pdf) before using\nthis product. The VL53L0 uses ST's FlightSense technology to precisely measure\nhow long it takes for emitted pulses of infrared laser light to reach the\nnearest object and be reflected back to a detector, so it can be considered a\ntiny, self-contained lidar system. This time-of-flight (TOF) measurement\nenables it to accurately determine the absolute distance to a target without\nthe object's reflectance greatly influencing the measurement. The sensor can\nreport distances of up to 2 m (6.6 ft) with 1 mm resolution, but its effective\nrange and accuracy (noise) depend heavily on ambient conditions and target\ncharacteristics like reflectance and size, as well as the sensor\nconfiguration. (The sensor's accuracy is specified to range from ±3% at best\nto over ±10% in less optimal conditions.) Ranging measurements are available\nthrough the sensor's I2C (TWI) interface, which is also used to configure\nsensor settings, and the sensor provides two additional pins: a shutdown input\nand an interrupt output. The VL53L0X is a great IC, but its small, leadless,\nLGA package makes it difficult for the typical student or hobbyist to use. It\nalso operates at a recommended voltage of 2.8 V, which can make interfacing\ndifficult for microcontrollers operating at 3.3 V or 5 V. Our breakout board\naddresses these issues, making it easier to get started using the sensor,\nwhile keeping the overall size as small as possible. PIN Description VDD\nRegulated 2.8 V output. Almost 150 mA is available to power external\ncomponents. (If you want to bypass the internal regulator, you can instead use\nthis pin as a 2.8 V input with VIN disconnected.) VIN This is the main 2.6 V\nto 5.5 V power supply connection\u003c\/p\u003e \n\n\n \u003cul class=\"a\"\u003e\n \u003c\/ul\u003e","published_at":"2021-08-15T20:27:42+10:00","created_at":"2021-08-15T20:27:42+10:00","vendor":"Songhe","type":"Motion Detectors","tags":["cocoon"],"price":9300,"price_min":9300,"price_max":9300,"available":true,"price_varies":false,"compare_at_price":null,"compare_at_price_min":0,"compare_at_price_max":0,"compare_at_price_varies":false,"variants":[{"id":40824838619289,"title":"Default Title","option1":"Default Title","option2":null,"option3":null,"sku":"B085WC16V8","requires_shipping":true,"taxable":true,"featured_image":null,"available":true,"name":"VL53L0X Time-of-Flight Flight Distance Measurement Sensor Breakout VL53L0X ToF Laser Range Finder for Arduino","public_title":null,"options":["Default Title"],"price":9300,"weight":18,"compare_at_price":null,"inventory_management":null,"barcode":"VL53L0X","requires_selling_plan":false,"selling_plan_allocations":[]}],"images":["\/\/soundstores.net\/cdn\/shop\/products\/B085WC16V8.jpg?v=1629033425","\/\/soundstores.net\/cdn\/shop\/products\/41ZZ_rcS6TL.jpg?v=1629033425"],"featured_image":"\/\/soundstores.net\/cdn\/shop\/products\/B085WC16V8.jpg?v=1629033425","options":["Title"],"media":[{"alt":null,"id":23874895446169,"position":1,"preview_image":{"aspect_ratio":1.0,"height":500,"width":500,"src":"\/\/soundstores.net\/cdn\/shop\/products\/B085WC16V8.jpg?v=1629033425"},"aspect_ratio":1.0,"height":500,"media_type":"image","src":"\/\/soundstores.net\/cdn\/shop\/products\/B085WC16V8.jpg?v=1629033425","width":500},{"alt":null,"id":23873478623385,"position":2,"preview_image":{"aspect_ratio":1.0,"height":500,"width":500,"src":"\/\/soundstores.net\/cdn\/shop\/products\/41ZZ_rcS6TL.jpg?v=1629033425"},"aspect_ratio":1.0,"height":500,"media_type":"image","src":"\/\/soundstores.net\/cdn\/shop\/products\/41ZZ_rcS6TL.jpg?v=1629033425","width":500}],"requires_selling_plan":false,"selling_plan_groups":[],"content":"\u003ch4\u003eVL53L0X Time-of-Flight Flight Distance Measurement Sensor Breakout VL53L0X ToF Laser Range Finder for Arduino\u003c\/h4\u003e\n\u003cp id=\"b\"\u003eThe VL53L0X from ST Microelectronics is a time-of-flight ranging system\nintegrated into a compact module. This board is a carrier for the VL53L0X, so\nwe recommend careful reading of the VL53L0X datasheet (1MB pdf) before using\nthis product. The VL53L0 uses ST's FlightSense technology to precisely measure\nhow long it takes for emitted pulses of infrared laser light to reach the\nnearest object and be reflected back to a detector, so it can be considered a\ntiny, self-contained lidar system. This time-of-flight (TOF) measurement\nenables it to accurately determine the absolute distance to a target without\nthe object's reflectance greatly influencing the measurement. The sensor can\nreport distances of up to 2 m (6.6 ft) with 1 mm resolution, but its effective\nrange and accuracy (noise) depend heavily on ambient conditions and target\ncharacteristics like reflectance and size, as well as the sensor\nconfiguration. (The sensor's accuracy is specified to range from ±3% at best\nto over ±10% in less optimal conditions.) Ranging measurements are available\nthrough the sensor's I2C (TWI) interface, which is also used to configure\nsensor settings, and the sensor provides two additional pins: a shutdown input\nand an interrupt output. The VL53L0X is a great IC, but its small, leadless,\nLGA package makes it difficult for the typical student or hobbyist to use. It\nalso operates at a recommended voltage of 2.8 V, which can make interfacing\ndifficult for microcontrollers operating at 3.3 V or 5 V. Our breakout board\naddresses these issues, making it easier to get started using the sensor,\nwhile keeping the overall size as small as possible. PIN Description VDD\nRegulated 2.8 V output. Almost 150 mA is available to power external\ncomponents. (If you want to bypass the internal regulator, you can instead use\nthis pin as a 2.8 V input with VIN disconnected.) VIN This is the main 2.6 V\nto 5.5 V power supply connection\u003c\/p\u003e \n\n\n \u003cul class=\"a\"\u003e\n \u003c\/ul\u003e"}

VL53L0X Time-of-Flight Flight Distance Measurement Sensor Breakout VL53L0X ToF Laser Range Finder for Arduino

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VL53L0X Time-of-Flight Flight Distance Measurement Sensor Breakout VL53L0X ToF Laser Range Finder for Arduino

The VL53L0X from ST Microelectronics is a time-of-flight ranging system integrated into a compact module. This board is a carrier for the VL53L0X, so we recommend careful reading of the VL53L0X datasheet (1MB pdf) before using this product. The VL53L0 uses ST's FlightSense technology to precisely measure how long it takes for emitted pulses of infrared laser light to reach the nearest object and be reflected back to a detector, so it can be considered a tiny, self-contained lidar system. This time-of-flight (TOF) measurement enables it to accurately determine the absolute distance to a target without the object's reflectance greatly influencing the measurement. The sensor can report distances of up to 2 m (6.6 ft) with 1 mm resolution, but its effective range and accuracy (noise) depend heavily on ambient conditions and target characteristics like reflectance and size, as well as the sensor configuration. (The sensor's accuracy is specified to range from ±3% at best to over ±10% in less optimal conditions.) Ranging measurements are available through the sensor's I2C (TWI) interface, which is also used to configure sensor settings, and the sensor provides two additional pins: a shutdown input and an interrupt output. The VL53L0X is a great IC, but its small, leadless, LGA package makes it difficult for the typical student or hobbyist to use. It also operates at a recommended voltage of 2.8 V, which can make interfacing difficult for microcontrollers operating at 3.3 V or 5 V. Our breakout board addresses these issues, making it easier to get started using the sensor, while keeping the overall size as small as possible. PIN Description VDD Regulated 2.8 V output. Almost 150 mA is available to power external components. (If you want to bypass the internal regulator, you can instead use this pin as a 2.8 V input with VIN disconnected.) VIN This is the main 2.6 V to 5.5 V power supply connection

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