loading

PPE Testing Equipment Manufacturer | Safety Equipment Testing Machines | GESTER


Products

Standard requirements for light sources in color light boxes

Standard light sources are currently used in many industries for color light boxes. The main function of standard light sources on color light boxes is the color matching and calibration of the appearance of the product. Many products have high requirements for appearance and color, and some even directly affect it. Due to the market sales of the product, manufacturers must strictly control the appearance and color of the product. The role of the standard light source on the color light box is naturally highlighted. Since the standard light source is affected by many conditions on the light source of the color light box, the light color exists. Therefore, the international statistical standards have made a series of requirements for the standard light source for the light source of the color light box. This article will focus on the requirements for marking the light source in the hue phase. 1. Spectral requirements of the light source According to the requirements of ISO3664:2000, ordinary fluorescent tubes can never be used as the light source for observing colors. Special fluorescent tubes must be used that meet the following technical requirements at the same time: (1) The color temperature of the light source must be 5000K or 6500K, that is, observing the color under the color temperature of this light source is basically similar to the effect of observing the color under natural light from 8 am to 10 am and 3 pm to 5 pm in most parts of China. (2) The color rendering index of the light source Ra>90, that is, under this kind of light source, more than 90% of the colors can be correctly observed. 2. The brightness of the light source requires a certain degree of illuminance to observe the color of the object. It can be imagined that nothing can be seen in a dark room. According to the requirements of ISO3664:2000: (1) The brightness of the light source illuminated on the surface of the observed object through reflection should reach 2000Lux (+/-500Lux). The illuminated surface is within the range of 1mX1m, and the brightness of any point shall not be less than 75% of the brightness of the center of the illuminated surface (2) The brightness of the light source irradiated on the surface of the observed object through transmission should reach 1270cd/m2 (+/-320cd/ m2) (3) The brightness of the display should reach >75cd/m2 3. The softness of the light source requires only a few standard light sources. It is impossible to collect the light source and illuminate it evenly and softly on the surface of the illuminated object. . This means that the standard observation light source must have a scientifically designed surrounding light system to ensure that the energy of the light emitted by the fluorescent tube is irradiated on the surface of the illuminated object as much as possible, and there is no light glare or light. Shadows. 4. Requirements of the surrounding environment of the light source Observing colors not only requires a standard light source and suitable light source brightness, but also requires strict requirements on the environment around the light source: (1) Other lighting sources around the observation light source cannot directly or indirectly affect the Observe the surface of the object. (2) Observe the wall panels around the light source. Other colors cannot be used on the top and bottom (including the observer's clothes), and only neutral gray with reflectivity <60% can be used. (3) When observing color transmission photos, there must be a frame with a width of 50mm or more around the photo, and the color of the frame must be black with a blackness of >90%. 5. Color rendering index (Ra) The color rendering index is used to measure the ratio between the color that can be seen under natural light and the color that can be seen under a certain light source, that is, Rau003din a certain light source The color that can be seen under illumination ÷ the color that can be seen under the illumination of natural light. Ra represents the color rendering index of a light source. The closer the Ra is to 100%, the smaller the difference between the color displayed under the light source and the color displayed under natural light. Note: Color temperature and color rendering index are two different physical concepts. The color temperature only reflects the color of the artificial light source, which is warmer or cooler. The color rendering index reflects the type of color that can be displayed under a certain light source. A high color temperature does not mean a high color rendering index, and a high color rendering index does not mean a high color temperature. 6. Color temperature (K) The color temperature of a light source is defined by the burning temperature when the color of the light source is consistent with the color of an absolute black body when it is burned at a high temperature. Its unit is absolute temperature Kelvin (K) . The higher the K value, the more white-blue color appears; the lower the K value, the more yellow-red color appears. 5000K (D50) is a standard light source lamp with a slightly warmer (yellowish) luminous color, which is widely used in advertising art and pre-press fields. But according to ISO3664:2000, this kind of light source is now mandatory for printing and other color management processes. 6500K (D65) is a standard light source lamp with a slightly cooler (blueish) luminous color. Previously in European and American countries, this light source was used in the printing field. However, according to ISO3664:2000, this light source is gradually being replaced by the D50 light source. But in China, the D65 light source is still the standard light source lamp commonly used in the printing field. More about standard color matching light box: http://www.dsdengxiang.com/

GET IN TOUCH WITH Us
recommended articles
Mask Testing Equipment: Everything You Need to Know
This article comprehensively introduces mask testing equipment, including its definition, application significance, core international testing standards, main equipment types and functional characteristics. It also puts forward a step-by-step selection guide and common selection misunderstandings, providing a reference for mask manufacturers, third-party testing institutions and regulatory departments to select appropriate testing equipment, so as to ensure mask product quality, pass international certification and protect user safety.
What is EN 149 & Why is it Important?
EN 149 is the core European standard for particle-filtering half masks and FFP respirators. This article elaborates on the definition, structure, performance classification, marking rules and core advantages of EN 149, compares it with NIOSH N95, KN95, EN 143 and medical mask standards, and lists industry application scenarios, as well as professional mask and filter testing instruments compliant with EN 149 testing requirements.
How to Choose the Right DIN Abrasion Tester
This article provides a comprehensive guide to selecting the right DIN Abrasion Tester for material wear performance evaluation. It covers the instrument's function, applicable standards (including ISO 20344, DIN-53516, ISO 4649, ASTM D5963), key features like digital counter and auto-stop, application scope for rubber, tires, shoe soles, and conveyor belts, as well as quality, construction, brand considerations, and FAQs on troubleshooting. Ideal for laboratories, quality inspection departments, and material research institutions.
Cobb Test Paper Absorption Tester GT-N07 - A Comprehensive Guide
The Cobb Test Paper Absorption Tester GT-N07 is an essential instrument for evaluating the water absorption properties of paper and paperboard materials. This test, commonly known as the Cobb method, helps determine how much water paper can absorb over a specified time under controlled conditions—crucial for assessing its suitability in printing, packaging, and coating applications.
Bally Resistance Flexing Tester – An Effective Method for Testing Material Flexing
The Bally Resistance Flexing Tester, also known as the Bally Leather Flexometer, is an essential testing instrument for evaluating the flex durability of leather, coated fabrics, synthetic leather, and textile materials. By accurately simulating repeated bending conditions encountered during actual use, the tester helps manufacturers assess material performance, prevent premature product failures, and meet international quality standards. This article explores the working principle, key benefits, applicable testing standards, and common specimen materials suitable for Bally flexing resistance testing.
Glove Tester: Key Standards EN 388 & EN 407
Protective glove testing is the core link to verify hand safety protection performance for industrial PPE. This article focuses on the two most authoritative EU mandatory standards EN 388 and EN 407, elaborates on standardized test necessity, complete test items, professional supporting glove testers, result rating rules, and the differences between mechanical risk testing and thermal risk testing. It provides one-stop compliant testing reference for glove manufacturers, third-party testing labs, and safety supervision institutions to meet global CE certification and workplace safety production requirements.
What is the Safety Glove & Shoe Upper Cutting Tester GT-KC29
The Safety Glove & Shoe Upper Cutting Tester GT-KC29 is a high-precision testing instrument developed to measure the cut resistance performance of safety gloves and footwear uppers. In industrial and construction environments where sharp tools and metal edges pose significant injury risks, the GT-KC29 provides a reliable evaluation method by simulating real cutting motion. This tester meets EN 388 section 6.2, ISO 20344:2021 section 5.23, GB/T 20991 section 6.14, and other global standards, making it essential for PPE manufacturers, testing laboratories, and quality control departments. With automated operation, high repeatability, and multi-standard compliance, it helps companies improve product safety levels, enhance global competitiveness, and ensure superior protection for end users.
EN ISO 20345 Safety Footwear Standard — How to Choose the ISO 20345 Tester
EN ISO 20345 is the core international standard for general-purpose safety footwear, defining minimum performance requirements for foot protection against various workplace hazards. This article elaborates on the definition, key highlights and mainstream safety classes of the EN ISO 20345 standard, covering applicable industry scenarios. It further provides a systematic step-by-step guide for selecting qualified ISO 20345 testing equipment, involving test item confirmation, equipment performance evaluation and reliable supplier selection. Finally, it introduces professional ISO 20345-compliant testing solutions provided by GESTER for footwear manufacturers and third-party testing institutions.
Why GESTER is Recognized as a Global Top Safety Shoe Tester Exporter
As global industrial safety requirements tighten, GESTER International Co., Ltd has emerged as a globally recognized top safety shoe tester exporter, serving 168 countries with over 25 years of specialized expertise. The company’s success hinges on its commitment to precision engineering, compliance with international standards (ISO, ASTM, EN, SATRA), and partnerships with renowned testing institutes like SGS, Intertek, and TUV. Its product lineup, including the Safety Glove & Shoe Upper Cutting Tester GT-KC29 and cut resistance testers, delivers reliable, repeatable data for safety footwear durability, cut resistance, and other critical performance indicators. Complemented by a comprehensive global service network (on-site installation, calibration, staff training) and OEM/ODM customization capabilities, GESTER streamlines quality control for manufacturers, facilitating market access and ensuring workplace safety. Trusted by PPE brands and laboratories worldwide, GESTER bridges technical excellence and practical usability to drive efficiency in safety shoe certification and global trade.
Why GESTER Ranks as a Leading TPP Thermal Protective Performance Tester Exporter
As a trusted leading TPP Thermal Protective Performance Tester exporter, GESTER International Co., Ltd. brings 25+ years of R&D and manufacturing expertise to PPE safety testing. Our flagship GT-RC02 series TPP testers feature advanced dual-source thermal simulation, high-sensitivity sensors, and full digital automation—delivering precise, repeatable data to evaluate thermal protection for firefighter and industrial protective clothing. Fully compliant with global standards (NFPA 1971, EN 469, ISO), GESTER’s equipment is trusted by SGS, Intertek, and top testing institutes worldwide. Backed by ISO 9001 certification, global service in 160+ countries, and professional calibration support, we empower manufacturers and labs to meet stringent safety regulations and ensure life-saving thermal protection. Discover tailored TPP testing solutions for PPE excellence at GESTER.
GESTER International Co., Ltd. gains certificates of ISO 9001, 3A and SGS Audited supplier etc. with advanced design concept, excellent manufacturing technology and strict quality control.
WeChat
Contact us
Tel: +86-595-28886108 
Fax: +86-595-22515221
E-mail: sales10@gester-instruments.com,
                 info@gester-instruments.com
Mobile/Whatapp/ Wechat:  
             + 86(0)18059985379
Address:  No.15, Chifeng Road,Licheng Region, Quanzhou city of Fujian,PR China.
Customer service
detect