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What is a UV Flood Light?

The image is UV flood light in NEWs of China QUEENDOM Company.

What is a floodlight? Floodlight is the most widely used light source in the production of renderings, and standard floodlights are used to illuminate the entire scene. Multiple flood lights can be applied to a scene. In order to produce a better effect, the light bulb for shooting is packed into a large reflective umbrella for use as a high-brightness diffused light source. Although it is indispensable for lighting in the studio, it can also be regarded as one of the light sources with good lighting effects for general amateur indoor photography. Floodlights are not spotlights, projection lights, or spotlights. Floodlights produce highly diffuse, non-directional light rather than a well-defined beam, resulting in soft and transparent shadows that fade more slowly when used for object lighting than when illuminated by spotlights. There are even flood lights whose illumination fades off very slowly, appearing as a light source that does not cast shadows. Spotlights, on the other hand, cast a directional, well-defined beam of light that illuminates a specific area. How floodlights work? The traditional electric light source, whether it is an incandescent lamp or a high and low pressure gas discharge lamp, is composed of a glass bulb and a filament. Electric energy enters the bulb through the filament and is converted into light energy. The floodlight is by inductively coupling high-frequency electromagnetic energy into the bulb, so that the gas in the bulb avalanche ionizes to form plasma, and when the excited atoms of the plasma return to the ground state, they spontaneously radiate 245nma ultraviolet rays, Phosphors are excited by ultraviolet light to emit visible light. Floodlight is a new type of electric light source based on the combination of two well-known principles of fluorescent lamp gas discharge and high-frequency electromagnetic induction. Because it does not have the filament or electrode necessary for conventional electric light sources, it is also called electrodeless lamp; usually the working frequency of low-pressure gas discharge high-frequency electrodeless lamp is 2.5~3.0MHz, that is to say, the operating frequency of floodlight is higher than that of ordinary The operating frequency (50Hz) of incandescent lamps and daily-used inductive fluorescent lamps, metal halide lamps, high-pressure sodium lamps and other lamps is 50,000-60,000 times higher than that of ordinary energy-saving lamps or electronic ballasts (30-60KHz). ) about 250 times higher.

What is a Plant Growth light?

The image is plant growth light in NEWs of China QUEENDOM Company.

Plant growth light is a light source used to grow plants. It is mainly used for planting and management of crops and flowers. It can generally be divided into three types: red light, blue light and green light. Red light is the red light spectrum in the visible spectrum, which is suitable for photosynthesis and can promote the chlorophyll of plants; blue light is a kind of monochromatic light, which can produce a large amount of anthocyanins; green light is a special Spectrum, usually yellow and green. The plant growth light can increase the chlorophyll content of the plant and promote the photosynthesis of the plant in a certain concentration of nutrient solution. It can promote the enlargement of leaf cells; make the leaves shiny, brightly colored, and thick stems; make crops grow robustly, reduce diseases and insect pests, etc. It is mainly used in the planting management of vegetables, flowers, etc., which is very helpful for increasing production. What is light? The speed of light is the speed of light. The amount of light passing through a unit area in a unit time is called the speed of light. Light has three important characteristics: directionality, a long-term change rule, energy dissipation. On Earth, everything has a certain size and shape, a certain wavelength and different brightness, and they transform into each other in space. The energy of different lights is related to the wavelength: light of one color (red light) contains the most energy; followed by blue, red and blue light, among which red light contains the least energy; white, blue and yellow light contains the least energy. What are the functions of a plant growth light? By improving photosynthesis, increasing photosynthetic products, improving plant stress resistance, and promoting yield increase. By improving the absorption of nutrients, promote root development, enhance plant resistance, and reduce diseases. By adjusting the stomatal opening of the leaf and the change of the leaf structure (that is, changing the stomatal opening; increasing the thickness of the leaf) to achieve the purpose of light regulation; Regulate photosynthesis by adjusting the sensitivity of plants to light intensity. Common types In general, plant growth lights are mainly divided into three categories: Yellow light: mainly used for the production of vegetables and other plants, which can increase the light and promote growth during the vegetative reproduction of plants; Purple light lamp: that is, incandescent bulb, which can be used for indoor greening and flower cultivation management; Strobe light: it is a new light source that has only appeared in recent years. Choose Choose according to the application needs: such as flower cultivation, seedling cultivation, etc. Select by function: mainly used for photosynthesis and other functions. How to use: According to different needs, choose different photoperiods and light colors to regulate the light of plants to achieve the desired effect.

Classifications of LED street lights

The image is in NEWs of China QUEENDOM Company.

LED street lights, commonly known as light source lamps, are lighting fixtures that use semiconductor materials as light-emitting diodes. There are many classifications of LED street lamps. According to different light sources, they can be divided into: halogen lamps (tungsten halogen lamps, xenon lamps), fluorescent lamps (high pressure sodium lamps, high pressure mercury lamps), metal halide lamps and electrodeless lamps. LED street lights are relatively new lighting products in China and are widely used in many cities. The following are several classifications of LED street lights: Light source LED solid-state light source: there are solid-state, fluorescent, halogen and other light sources LED laser light source: there are laser, high-voltage xenon lamp, high-brightness lamp and other light sources LED gas discharge lamps: There are mercury-sodium lamps and halogen-tungsten lamps. Mercury gas discharge lamps convert mercury into xenon through high pressure. LED light source: There are mainly three kinds of LEDs on the market at present, one is an incandescent lamp developed based on the traditional incandescent lamp, which is generally used in the lighting industry The second type is a xenon lamp developed based on a high-pressure gas discharge lamp. This lamp has the advantages of high light efficiency, long life and environmental protection. Appearance Square LED street lights: The traditional street light is round, which is also called urban street light. Triangular LED street lights: LED street lights adopt a triangular installation method and a triangular light source, which can save more than half of the space compared with circular LEDs, and the brightness is many times higher. Rectangular LED street lights: This type of road light has a simple shape design, and the direction of the light pole can be adjusted freely to make the road illumination more uniform. Fan-shaped LED street lights: Because of its unique shape, it is called a round street lamp. This type of lamp is also the most used shape in China. Power supply Direct power supply LED street lights: that is, the low-voltage power supply is directly provided by the street lamp power supply to achieve the purpose of controlling the switching time and power of the LED street lamp. Inductive LED street lights: Control the power supply through induction to control the lighting time and lighting power of the LED street lamp. Indirect power supply type LED street lights: Control the output of high-voltage electric energy through load sensing, and then adjust the switching time and power of LED street lights by dividing the high-voltage electric energy. Rectifier/load hybrid LED street lights: Combine direct power supply and indirect power supply together, so that the electric energy of the power supply can be directly converted into the form of required power.

Why should we using LED Car Lights?

The image is in NEWs of China QUEENDOM Company.

LED Car lights refer to devices that use the principle of electroluminescence to convert electrical energy into light energy. Compared with traditional lighting sources, LED lights have the advantages of low energy consumption, long life, and convenient use. With the continuous development of LED technology, new light sources are increasingly used in automobiles, and LED lights are an indispensable part. In the automotive industry, LEDs are widely used, but not all models are suitable for LED headlights; in some cases, auxiliary lighting systems (Side Lanes) are required to replace LED headlights. Structure LED Car Lights are composed of LED light-emitting diodes, which use the principle of electrothermal to control the power-on and power-off states of the light-emitting diodes by controlling the size of the current in the semiconductor, so as to realize the control of the working state of the light-emitting source. During the entire working process of the LED light source, several discrete drive units are generally connected in series to control the magnitude and direction of the current. Working principle LED Car lights are mainly composed of lamp holders, lampshades, light guide plates (also called diffuser plates) and so on. The working principle is: convert electrical energy into light energy, irradiate the front or rear of the vehicle through the light guiding effect of the diffusion plate, and then consume the light energy in the form of heat energy. When there is a certain distance between the LED lamp head and the light guide sheet of the diffusion plate, an illumination light source will be formed. LED Car lights have a long service life of 30,000 hours, while traditional light bulbs only last about 1,000 hours; while the vehicle is running, LEDs can self-adjust according to the intensity and brightness of the external light to achieve the best luminous effect. Working characteristics: Small power and high energy density. With high luminous brightness, it can be used in the auxiliary lighting system of automobiles to replace halogen lamps. Long service life (more than 5 years). It can conveniently realize the control and switching of far and low beams, that is, the intensity of the car lights can be changed by adjusting the color of the lights. It can realize more functions without adding any electronic components. Benefits of using LED Car Lights Using LED Car Lightscan reduce energy consumption, because LED is DC, it does not need high voltage power supply LED Car lights are very common in cars, and it does not require complex circuits to control the brightness of the lights Compared with xenon lamps and halogen headlights, LED headlights are more energy-efficient and have a longer service life, while xenon lamps and halogen headlights usually produce a certain degree of glare effect With the continuous advancement of LED technology, more and more LED vehicles will be used in the automotive industry (especially for high-end models). As consumers, we also hope that our cars have the characteristics of high quality, high safety performance, high light efficiency, long life and high environmental protection performance.

LED panel light

LED panel light

LED panel light is a high-end indoor lighting fixture. Its outer frame is made of aluminum alloy through anodic oxidation. The light source is LED. The feeling of beauty.
The LED panel light has a unique design. The light passes through the light guide plate with high light transmittance to form a uniform plane luminous effect. The illumination uniformity is good, the light is soft, comfortable and bright, which can effectively relieve eye fatigue. LED panel lights can also prevent radiation and will not irritate the skin of pregnant women, the elderly, and children.

Application of Infrared IR LED in Infrared Camera

Infrared IR LED

  Application of Infrared IR LED in Infrared Camera With the increasing demand for night vision monitoring in security video surveillance system engineering, infrared cameras have entered the mainstream market of cameras, and sales are increasing day by day. Problems in the application of infrared night vision technology are gradually exposed. In fact, night vision technology is a photoelectric technology that realizes night observation by means of photoelectric imaging devices. It includes two types of low-light night vision and infrared night vision: low-light night vision technology is a night vision technology with an image intensifier tube, which actually enhances the faint target image illuminated by night skylight for observation photoelectric imaging technology. Here we mainly talk about active infrared night vision technology, which is a night vision technology that implements observation by actively illuminating and using the infrared light reflected by the target to reflect the infrared source. The corresponding equipment is an active infrared night vision device, and the actual core is an infrared camera. The infrared light source, the camera composed of the non-direct-view photoelectric imaging device CCD or CMOS image sensor as the core, and the lens required for the imaging screen are the three major factors that dominate the night surveillance effect of the infrared camera. Selection of infrared light source Infrared light is an invisible light with a wavelength greater than 780nm. Generally, there are the following three methods for generating such invisible light. ①. Directly use the infrared light emitted by incandescent lamp or xenon lamp. That is, install visible light filters on these two lamps to filter out visible light and only let invisible infrared rays emit; ②. Use infrared light-emitting diodes (LEDs) or LED arrays to generate infrared light. This device generates infrared light through the recombination of electrons and holes in a gallium arsenide (GaAs) semiconductor; ③. Using infrared laser diode LED can also be used as infrared light source. However, it needs to excite or pump electrons in a lower energy state to a higher energy state, and maintain stimulated emission of infrared light through a large number of particle distribution reversals and resonance. The first type of light source is a thermal infrared light source. Its biggest advantage is that it can be made into a relatively large power and a large irradiation angle, so the irradiation distance is long. Its biggest disadvantage is that it contains visible light components, that is, there is a red burst, and its service life is short. If it works 10 hours a day, it can only be used for 5000 hours for more than a year. If the heat dissipation is not enough, the service life is even shorter. In order to improve the service life of the thermal radiation infrared lamp, it is necessary to use a light control switch circuit to reduce its working time. In addition, a delay switch circuit is added to prevent the interference of ambient light. The second is an infrared lamp composed of a semiconductor gallium arsenide light-emitting diode array, especially the array-type integrated light-emitting chip LEDArray that is now developed and produced using new technology. The optical output of one LED-Array has reached 800mw-1000mw, and it has become a replacement product of ordinary LEDs. The half-power angle of the LED-Array is 10-120° (variable angle). Since the LED-Array is a highly integrated LED, and its volume is only the size of a penny, it can evenly illuminate the entire space indoors, and its lifespan is 50,000 hours. It was originally used on aviation aircraft. In recent years, due to the development of the civilian night surveillance market, LED-Array has gradually entered the civilian market and has become an ideal choice for high-quality night surveillance. Although infrared LED and LED-Array have eliminated thermal infrared light sources, for the monitoring of ultra-long-distance scenes over 1km, infrared LED light sources should still be selected. Because semiconductor lasers have the characteristics of higher brightness and stronger directionality than LEDs. Generally, the following points should be paid attention to when choosing an infrared light source. There should be a margin in the distance selection of infrared lamps When choosing an infrared lamp, pay special attention to the gap between the nominal distance and the actual irradiation distance. Because the nominal viewing distance of some manufacturers is often too large, it is necessary to conduct actual tests when selecting the irradiation distance of infrared lamps, and to leave sufficient margin to make the illuminance of the observed scene reliable. A light source driven by a steady current source should be selected Because LED is a current-driven device, its luminous brightness and power are proportional to the driving current, not the voltage. Therefore, in order to keep the luminous intensity constant, a light source driven by a steady current source must be selected. Choose a light source with good heat dissipation Because luminous tubes have heat and heat dissipation problems, especially light sources with high power and long distances generate a lot of heat, so it is necessary to choose a light source with good heat dissipation to ensure stable and reliable work. It is necessary to choose an infrared light source with a power supply circuit with a light-controlled switch automatic control circuit and separated from the light board Because the power supply circuit of the infrared lamp is not separated from the lamp board, the heat generated by the light-emitting tube will affect the performance of the components of the power supply circuit, resulting in unstable light emission of the light-emitting tube. With this light-controlled switch circuit, the infrared The lights are off during the day and on at night. Infrared lamps should be selected according to the monitoring distance Because the infrared light-emitting diode LED can be installed on the lens, it can be used with a sensitive infrared camera, or directly installed on the casing around the interface between the camera and the lens. Obviously, these two types of devices have fewer infrared LEDs, and their irradiation distance is definitely not as far as that of a single infrared LED lamp. Generally, if it is more than 50m, it is better to choose a separate infrared lamp. In addition, LED is mostly used for night vision lighting of monitoring scenes with a distance of more than 1km, but the beam of LED is thin and strong. In order to make the infrared beam illuminate a certain range of scenes, use Sometimes it is necessary to expand the beam through a beam expander lens. Second, the choice of camera At present, there are two types of photosensitive devices in cameras: CMOS and CCD. Like the CCD, the CMOS image sensor chip also responds to infrared light waves, but its sensitivity in the range of 890-980nm is much higher than that of the CCD image sensor chip, and the attenuation gradient is slower as the wavelength increases. With the rapid development of CMOS image chips, their noise signals have been further reduced, and star-level CMOS cameras have also appeared on the market. Therefore, it is not necessarily limited to the choice of CCD cameras, but can be selected by making full use of their respective advantages. In general, the selection points of infrared cameras are as follows. A low-illuminance camera should be selected, and its illumination requirements are generally ≤0.02Lux Some camera manufacturers or sellers falsely report the minimum illuminance, which greatly reduces the effective distance of night vision, so it is best to test it in detail. Intensified cameras such as moonlight level and starlight level can work in very dark conditions, but some places with small reflective coefficients still cannot meet the requirements, such as deserts, green lands, forest areas, etc. In this case, it is necessary to use a low-light night vision camera that is directly coupled by a high-performance image intensifier and a CCIR black and white CCD through a fiber panel and a light cone. In short, the lower the illuminance, the better. Since it is not yet standardized, the minimum illuminance claimed by the manufacturer cannot be trusted. It is better to test it under practical conditions. Usually, the illuminance requirement is generally ≤0.02Lux. The larger the size of the selected infrared camera image sensor, the better Because 1/4CCD cannot be used for the effective distance of infrared night vision above 15m, because the luminous flux of 1/4CCD is only 50% of 1/3CCD. The larger the size of the CCD, the larger the received luminous flux; the smaller the size of the CCD, the less the received luminous flux. Therefore, choose 1/2 of the CCD for the night vision camera, and 1/3 of the CCD can be tested if it is feasible, but you must not choose 1/4 of it. Infrared cameras must have automatic electronic shutter and automatic gain control (AGC) functions Because of these functions, the signal can be adjusted to a better state to meet the observation effect. Choose a CMOS ultra-miniature camera for concealed occasions Because low power consumption, high integration, and small size can only be achieved by CMOS image sensors, it can be made into a CMOS camera with the size of a shirt button or a suit button. Coupled with the miniaturization of the corresponding infrared light source and the introduction of high-efficiency batteries, the third eye will be ubiquitous. In this way, with a pair of night vision glasses and a hat equipped with an infrared light source and a CMOS ultra-miniature camera, the night will be like the day. Clearly, this will change the face of our entire social life. Choose the supporting small power supply for the camera The selection of the power supply of the camera should pay attention to the following two points Select a regulated power supply. Because the mains AC220V is unstable, if only one AC-to-DC 12V transformer is selected and the voltage is not stabilized, the circuit in the camera will work unstable, so that the camera will not work stably, and the required performance will not meet the requirements; It is better to choose a small power supply that is more than twice the current of the camera. If the current of the camera is 200mA or 250mA, generally 500mA is sufficient. If it is too large, such as 1A for 1 camera, the volume will be too large and the price will be too expensive; if it is too small, such as equal to the current of the camera, it may generate heat (due to long continuous working time) and affect reliability and working life. Third, the choice of lens, etc. The camera lens is the key equipment of the infrared camera. Its quality (indicator) directly affects the imaging effect of the system. Therefore, the selection of the lens is not only related to the quality of the system, but also related to the project cost. Therefore, pay attention to the following points when choosing a lens: It is best to choose an infrared lens Because of the ordinary optical lens, the infrared light reflected by the object back to the lens cannot be effectively focused on the CCD target surface. At this time, the infrared night vision effect will be greatly reduced, so it is best to use an infrared lens. Especially for color-to-black cameras, if the infrared lens is not used, the focal plane of the day and night monitoring cannot be consistent, so that the day and night images cannot be kept clear. The imaging size of the selected lens should preferably be consistent with the size of the image sensor in the camera The imaging size of the selected lens should be consistent with the size of the image sensor in the camera. If the size of the image sensor is 1/2″, the imaging size of the lens must be 1/2″. When the imaging size of the lens is larger than the size of the photosensitive surface of the camera, the imaging will not be affected, but the actual imaging field of view

LED application PCBA

LED application PCBA

pcba led assembly is LED application PCBA control board electrical digital application technology,SMD LED,DIP LED is also widely used in PCBA control board industry.Queendom’s LED diode is durable, High temperature resistance, anti-vibration, low light attenuation, high brightness and other advantages are very popular among users. All products are strictly inspected in accordance with the national system safety certification, from chips, brackets, gold wires, etc. are all high-quality materials.

PCR laboratory lighting

PCR laboratory lighting,PCR lighting,pcr light price

In medical PCR lighting, purification lamps are commonly used in medical lighting in special PCR laboratory lighting;Clean rooms generally implement two-level isolation, which is achieved through biological safety cabinets, negative pressure isolators, positive pressure protective clothing, gloves, goggles, etc.; second-level isolation is achieved through laboratory buildings, air-conditioning purification and electrical control systems.

led application in medical industry

LEDs medical application technology,led application in medical industry,what are the applications of led,led full form in medical,led lights for medical use

led application in medical industry,This article summarizes the research and application of light-emitting diodes (LED) in animal models and clinical medicine in recent years, including the research of LED application in animal cells and human tissue cells, the research of LED application in animal models, and the experiment of LED in clinical treatment Research. Look forward to the prospect of LED application in clinical treatment. LED Phototherapy Cell Animal Clinical Light Emitting Diode (1ight emitting diode, LED) drive circuit is easy to control, has a long service life and is low in price. With the continuous development of semiconductor technology, LED has greatly improved the performance of parameters such as luminous intensity, peak wavelength, and half-wave bandwidth. At present, the light effect of a single LED has exceeded 1001mW; the peak wavelength is becoming more and more stable, the half-wave bandwidth is narrower,

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