Shandong Fengtu IOT Technology Co., Ltd
Sales Manager:Ms. Emily Wang
Cel,Whatsapp,Wechat:+86 15898932201
Email:info@fengtutec.com
Add:No. 155 Optoelectronic Industry Accelerator, Gaoxin District, Weifang, Shandong, China

Sales Manager:Ms. Emily Wang
Cel,Whatsapp,Wechat:+86 15898932201
Email:info@fengtutec.com
Add:No. 155 Optoelectronic Industry Accelerator, Gaoxin District, Weifang, Shandong, China
time:2026-08-10 09:44:17 source:Weather Station viewed:1 time
Radiation Sensor Solar Irradiance Sensor covers a wavelength range of 280-400nm, features RS485 communication, low power consumption, and a measurement accuracy of less than ±3%, enabling stable acquisition of solar ultraviolet radiation values in outdoor environments.
Radiation Sensor Solar Irradiance Sensor receives the electrical signal converted from ultraviolet light waves using a photodetector, primarily responsible for detecting the intensity of solar ultraviolet radiation in the atmosphere, providing reliable measured data for various environmental monitoring projects. The equipment uses a DC12V power supply, with a normal operating current of only 3mA and a total power consumption of 0.036W, making it suitable for long-term, uninterrupted outdoor operation. The equipment can operate in a wide temperature range from -20℃ to 65℃ and can function normally in various installation environments, including open-air sites and enclosed monitoring boxes.
The Radiation Sensor Solar Irradiance Sensor sensor uses a spectral detection range of 280-400nm, with a measurement limit of 500W/m² and a resolution of 0.01W/m². The overall measurement error is controlled within ±3%. The hardware features an RS485 communication interface with a minimum data acquisition interval of 0.5 seconds, enabling high-frequency transmission of real-time monitoring data. It is compatible with conventional data acquisition terminals and meteorological monitoring hosts. The sensor response time is no more than 10 seconds, allowing for rapid feedback even with rapid fluctuations in ultraviolet radiation values. Annual stability deviation and zero-point drift parameters are within controllable standards, and measurement data do not show significant shifts after prolonged outdoor placement.
The Radiation Sensor Solar Irradiance Sensor internal optical components filter out signal interference from visible and infrared light, receiving only ultraviolet signals in the target wavelength band, reducing interference from external stray light. This device can be used in scenarios such as ultraviolet index monitoring at meteorological stations, agricultural and forestry environmental light surveys, outdoor building material aging resistance testing, and testing of ultraviolet disinfection equipment in public places. The overall structure requires no frequent maintenance, and the stable hardware parameters reduce the need for later debugging. It is compatible with the data access standards of most conventional environmental monitoring systems, providing continuous and accurate radiation monitoring information for ultraviolet-related scientific research and environmental management.
Integrated radar water level gauge system utilizes a Frequency Modulated Continuous Wave (FMCW) radar system to achieve non-contact, high-precision measurement of water and sediment levels. The device features ultra-low power consumption, a compact structure, and strong anti-interference capabilities, making it suitable for water level monitoring in complex environments such as rivers, lakes, flood warning systems, reservoirs, and sewage networks....
transmission line micrometeorological monitoring system.The guardian of micrometeorology.Under the seemingly simple appearance.It hides the magic of science and technology.It's powered by solar panels.No need to take care of it.It monitors the weather around the clock.Wind speed, wind direction,...
The safety of reservoir dams is crucial to the lives and property of people in downstream areas, making it essential to establish a scientific and systematic monitoring system. It mainly consists of four core components: deformation monitoring, seepage monitoring, meteorological monitoring, and term...
Preface.The ultrasonic wind measurement technique uses ultrasound to detect wind speed and direction and has no moving parts compared to older anemometers, so rapid changes in wind speed, especially gusts and wind fluctuations, can be measured more accurately. This technique provides a more reliable...