180 Degree Rotating Sensor Light Meter With Lux And Foot Candle Readings, Range 0.1 To 200000 Lux, Big Backlit 2.25 Inch LCD, Quick 0.5s Sampling, Perfect For Plant Lighting, Car Headlights, And Home Or Office LEDs

Regulärer Preis 77,77 $ Aktionspreis120,00 $Sie sparen 42,23 $
SKU: VXB0C3LTSJBB
UPC:





180-Degree Rotating Light Meter: precise Lux and FC readings ✔️ 180° rotating probe, 0.5s sampling, 2.25 inch backlit LCD

The TS-710 digital light meter measures Lux and foot-candles with a 180-degree rotating sensor for flexible viewing. It covers 0.1 to 200,000 lux and 0.1 to 20,000 fc with 3% rdg + 5 dgt accuracy, helping optimize plant lighting, LED setups, and vehicle headlights. It also measures ambient temperature and humidity for environmental context, and features MAX/MIN, data hold, auto shut-off after 10 minutes, and a low-battery indicator. Includes: meter, sensor cover, soft case, three AAA batteries, and user manual.

The TS-710 is designed for homes, schools, offices, workshops, stages, farms, and factories where precise light measurement matters. With a large backlit display and fast response, it lends itself to quick checks of grow lights, LED installations, and headlamp alignment, while offering environmental data to better understand lighting conditions.

✅ 0.1-200,000 lux / 0.1-20,000 fc 3% rdg + 5 dgt
✅ 0.5 s sampling rate
✅ 180° rotating probe for multi-angle readings
✅ 2.25 inch backlit LCD display
✅ Measures ambient °C/°F temperature and humidity
✅ MAX/MIN, data hold, auto shut-off after 10 minutes
✅ Includes TS-710 meter, sensor cover, soft case, three AAA batteries, and user manual

💡 What is a 180 degree rotating light meter used for in plant lighting and car headlight measurements?

This handy tool helps you quantify light exposure to optimize plant growth and ensure proper automotive lighting. - Precise lux and foot-candle readings across wide ranges - 180° rotating probe for flexible alignment - 0.5 second sampling keeps up with changing light - Backlit 2.25 inch LCD for easy viewing in dim spaces ✝️