{"id":8115246006452,"title":"UV Light Sensor GUVA-S12SD with Analogue Output 3-5V 240-370nm for Arduino","handle":"uv-light-sensor-guva-s12sd-with-analogue-output-3-5v-240-370nm-for-arduino","description":"\u003ch3\u003eUV Light Sensor GUVA-S12SD with Analogue Output 3-5V 240-370nm for Arduino\u003c\/h3\u003e\n\u003cp id=\"b\"\u003eUV light sensor GUVA-S12SD with analogue output, 3-5V, 240-370nm, for e.g.\nArduino Use the GUVA-S12SD UV light sensor to measure light in the UV-B and\nlarge parts of the UV-A spectrum. The analogue output makes controlling the\nsensor board particularly easy. Simply connect VCC and GND to your voltage\nsource and tap the UV component at the analogue output SIG. Supports voltages\nbetween 2.5 V and 5 V. Thanks to the almost linear characteristic, the\nconversion to the UV index can be easily implemented with the following\nformula: UV index = SIG 10 - 1. This means that an output voltage of 0.2 V\ncorresponds approximately to the UV index 1, an output voltage of 1.0 V\napproximately the UV index 9. Thanks to the wide input voltage range of\n2.5-5V, the board is suitable for both 5V microcontroller boards, such as the\nArduino UNO, as well as 3V boards, such as the Adafruit QT Py.\u003c\/p\u003e \n\n\u003ch3\u003eProduct Features\u003c\/h3\u003e\n \u003cul class=\"a\"\u003e\n \u003cli\u003eMeasurement in the UV-A\/UV-B spectrum 240-370 nm measuring range allows you to measure the light intensity in the UV-B and large parts of the UV-A spectrum.\u003c\/li\u003e\n \u003cli\u003eEasy to use: connect VCC and GND to the power supply and tap the UV component at the analogue output SIG. The board supports operating voltages of 2.5-5V.\u003c\/li\u003e\n \u003cli\u003eEasy conversion to UV index thanks to the almost linear characteristic, the conversion from output voltage to UV index can be easily carried out: UV index = SIG x 10 - 1\u003c\/li\u003e\n \u003cli\u003eBox contents: you will receive a UV light sensor GUVA-S12SD board with pin headers, which you can solder on if necessary, shrink-wrapped in an anti-static packaging.\u003c\/li\u003e\n \u003cli\u003eProven quality if you have reason to complain despite our quality controls, we at Paradisetronic will help you quickly and easily.\u003c\/li\u003e\n \u003c\/ul\u003e","published_at":"2026-09-02T11:28:27+10:00","created_at":"2026-09-01T23:33:37+10:00","vendor":"Paradisetronic.com","type":"Optical Sensors","tags":["industrial_DE_Aug2026"],"price":11000,"price_min":11000,"price_max":11000,"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":44374965780660,"title":"Default Title","option1":"Default Title","option2":null,"option3":null,"sku":"de-B09X1SFR2J","requires_shipping":true,"taxable":true,"featured_image":null,"available":true,"name":"UV Light Sensor GUVA-S12SD with Analogue Output 3-5V 240-370nm for Arduino","public_title":null,"options":["Default Title"],"price":11000,"weight":20,"compare_at_price":null,"inventory_management":"shopify","barcode":"968","requires_selling_plan":false,"selling_plan_allocations":[],"quantity_rule":{"min":1,"max":null,"increment":1}}],"images":["\/\/auspowers.com\/cdn\/shop\/files\/de-B09X1SFR2J.jpg?v=1788269619","\/\/auspowers.com\/cdn\/shop\/files\/51TkRDsJ8TL.jpg?v=1788269619","\/\/auspowers.com\/cdn\/shop\/files\/51-6alh688L.jpg?v=1788269619","\/\/auspowers.com\/cdn\/shop\/files\/61wGhmy5KpL.jpg?v=1788269619"],"featured_image":"\/\/auspowers.com\/cdn\/shop\/files\/de-B09X1SFR2J.jpg?v=1788269619","options":["Title"],"media":[{"alt":null,"id":33272984535220,"position":1,"preview_image":{"aspect_ratio":1.0,"height":1600,"width":1600,"src":"\/\/auspowers.com\/cdn\/shop\/files\/de-B09X1SFR2J.jpg?v=1788269619"},"aspect_ratio":1.0,"height":1600,"media_type":"image","src":"\/\/auspowers.com\/cdn\/shop\/files\/de-B09X1SFR2J.jpg?v=1788269619","width":1600},{"alt":null,"id":33272984567988,"position":2,"preview_image":{"aspect_ratio":1.0,"height":1600,"width":1600,"src":"\/\/auspowers.com\/cdn\/shop\/files\/51TkRDsJ8TL.jpg?v=1788269619"},"aspect_ratio":1.0,"height":1600,"media_type":"image","src":"\/\/auspowers.com\/cdn\/shop\/files\/51TkRDsJ8TL.jpg?v=1788269619","width":1600},{"alt":null,"id":33272984600756,"position":3,"preview_image":{"aspect_ratio":1.0,"height":1600,"width":1600,"src":"\/\/auspowers.com\/cdn\/shop\/files\/51-6alh688L.jpg?v=1788269619"},"aspect_ratio":1.0,"height":1600,"media_type":"image","src":"\/\/auspowers.com\/cdn\/shop\/files\/51-6alh688L.jpg?v=1788269619","width":1600},{"alt":null,"id":33272984633524,"position":4,"preview_image":{"aspect_ratio":1.0,"height":1600,"width":1600,"src":"\/\/auspowers.com\/cdn\/shop\/files\/61wGhmy5KpL.jpg?v=1788269619"},"aspect_ratio":1.0,"height":1600,"media_type":"image","src":"\/\/auspowers.com\/cdn\/shop\/files\/61wGhmy5KpL.jpg?v=1788269619","width":1600}],"requires_selling_plan":false,"selling_plan_groups":[],"content":"\u003ch3\u003eUV Light Sensor GUVA-S12SD with Analogue Output 3-5V 240-370nm for Arduino\u003c\/h3\u003e\n\u003cp id=\"b\"\u003eUV light sensor GUVA-S12SD with analogue output, 3-5V, 240-370nm, for e.g.\nArduino Use the GUVA-S12SD UV light sensor to measure light in the UV-B and\nlarge parts of the UV-A spectrum. The analogue output makes controlling the\nsensor board particularly easy. Simply connect VCC and GND to your voltage\nsource and tap the UV component at the analogue output SIG. Supports voltages\nbetween 2.5 V and 5 V. Thanks to the almost linear characteristic, the\nconversion to the UV index can be easily implemented with the following\nformula: UV index = SIG 10 - 1. This means that an output voltage of 0.2 V\ncorresponds approximately to the UV index 1, an output voltage of 1.0 V\napproximately the UV index 9. Thanks to the wide input voltage range of\n2.5-5V, the board is suitable for both 5V microcontroller boards, such as the\nArduino UNO, as well as 3V boards, such as the Adafruit QT Py.\u003c\/p\u003e \n\n\u003ch3\u003eProduct Features\u003c\/h3\u003e\n \u003cul class=\"a\"\u003e\n \u003cli\u003eMeasurement in the UV-A\/UV-B spectrum 240-370 nm measuring range allows you to measure the light intensity in the UV-B and large parts of the UV-A spectrum.\u003c\/li\u003e\n \u003cli\u003eEasy to use: connect VCC and GND to the power supply and tap the UV component at the analogue output SIG. The board supports operating voltages of 2.5-5V.\u003c\/li\u003e\n \u003cli\u003eEasy conversion to UV index thanks to the almost linear characteristic, the conversion from output voltage to UV index can be easily carried out: UV index = SIG x 10 - 1\u003c\/li\u003e\n \u003cli\u003eBox contents: you will receive a UV light sensor GUVA-S12SD board with pin headers, which you can solder on if necessary, shrink-wrapped in an anti-static packaging.\u003c\/li\u003e\n \u003cli\u003eProven quality if you have reason to complain despite our quality controls, we at Paradisetronic will help you quickly and easily.\u003c\/li\u003e\n \u003c\/ul\u003e"}

UV Light Sensor GUVA-S12SD with Analogue Output 3-5V 240-370nm for Arduino

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UV Light Sensor GUVA-S12SD with Analogue Output 3-5V 240-370nm for Arduino

UV light sensor GUVA-S12SD with analogue output, 3-5V, 240-370nm, for e.g. Arduino Use the GUVA-S12SD UV light sensor to measure light in the UV-B and large parts of the UV-A spectrum. The analogue output makes controlling the sensor board particularly easy. Simply connect VCC and GND to your voltage source and tap the UV component at the analogue output SIG. Supports voltages between 2.5 V and 5 V. Thanks to the almost linear characteristic, the conversion to the UV index can be easily implemented with the following formula: UV index = SIG 10 - 1. This means that an output voltage of 0.2 V corresponds approximately to the UV index 1, an output voltage of 1.0 V approximately the UV index 9. Thanks to the wide input voltage range of 2.5-5V, the board is suitable for both 5V microcontroller boards, such as the Arduino UNO, as well as 3V boards, such as the Adafruit QT Py.

Product Features

  • Measurement in the UV-A/UV-B spectrum 240-370 nm measuring range allows you to measure the light intensity in the UV-B and large parts of the UV-A spectrum.
  • Easy to use: connect VCC and GND to the power supply and tap the UV component at the analogue output SIG. The board supports operating voltages of 2.5-5V.
  • Easy conversion to UV index thanks to the almost linear characteristic, the conversion from output voltage to UV index can be easily carried out: UV index = SIG x 10 - 1
  • Box contents: you will receive a UV light sensor GUVA-S12SD board with pin headers, which you can solder on if necessary, shrink-wrapped in an anti-static packaging.
  • Proven quality if you have reason to complain despite our quality controls, we at Paradisetronic will help you quickly and easily.