Nano Scale Portable Sphere Spectrophotometers
The full line of PS Portable Sphere Spectrophotometers offers convenient, cost-efficient solutions designed to provide fast, precise color measurement information on a wide range of materials, such as paper, paint, plastics, and textiles.
Key Highlights
D/8 (diffuse illumination, receiving in 8 direction), SCI
3 apertures
UV light source+full spectrum LED, from conventional materials to fluorescent samples
Flagship level quality control: non-contact automatic calibration, combined with customized color management process
Guaranteed Grade 1 metrology certification
Reliable repeatability (ΔEab ≤0.03) and **inter-instrument agreement (ΔEab ≤0.3)
The 3nh PS500 is a portable spectrophotometer specially designed for caulking & gap-filling, focusing on accurate color measurement for daily basic applications. Adopting 3 interchangeable apertures, dual optical path design and self-developed algorithm, it delivers stable and precise color data. Compatible with multi-system software and mobile APP expansion, it is an ideal choice for color quality control in plastics, electronics, paint & coating, textile dyeing, ceramics and other industries.
Multi-size measuring apertures: Equipped with 1×3mm needle tip, 5mm flat, 10mm flat apertures, suitable for small parts, curved surfaces, irregular products and regular flat samples.
High-precision positioning: Adopts high-stability positioning plate to accurately lock the measuring area and improve efficiency in complex applications.

High accuracy & stability: Repeatability ΔEab ≤ 0.03, inter-instrument difference ΔEab ≤ 0.3, ensuring consistent results for repeated measurements. Supports multi-instrument collaboration for batch inspection.
Contact white calibration: Built-in calibration white tile at the bottom; simple and fast calibration keeps the instrument in optimal measuring condition.

Built-in digital color card: Supports quick color matching via mobile APP with complete basic functions.
Smart interaction: 3.5-inch TFT true-color capacitive touch screen with ergonomic inclined design for comfortable long-time operation.
Multi-device connectivity: USB and Bluetooth interfaces; connects to PC, printer and other devices. Compatible with Android, iOS, Windows, WeChat Mini Program and HarmonyOS for fast data transmission, sharing and remote management, facilitating quality control and color data analysis.

Rich measurement parameters: Provides over 40 internationally standard indicators (including hiding power, whiteness, yellowness, etc.) and 30 light source conditions.
Intuitive color data display: Shows spectrum graph/data, sample color values, color difference graph, pass/fail judgment, color simulation and color tendency to meet diverse industry applications.

International standard D/8 + SCI technology: Accurately simulates human visual observation to capture real surface color.
Full-spectrum combined LED light source: Uniform spectrum from 400-700 nm, eliminating measurement errors caused by spectrum missing.
Dual 18-group silicon photodiode array sensor: Ensures efficient and accurate color data processing.
Dual optical path system with self-developed algorithm: Stronger anti-interference performance than single optical path, further improving accuracy and stability.
Nano-integrated optical device: Achieves nano-level spectroscopy for more precise color signal acquisition.

| Product Model | PS500 Spectrophotometer |
| Illumination Geometry | D/8 (diffused illumination, 8° viewing), SCI (specular component included);Conforms to CIE No.15, GB/T 3978, GB 2893, GB/T 18833, ISO 7724-1, ASTM E1164, DIN 5033 Teil7 |
| Features | For color quality control in plastics, electronics, paint & coating, textile dyeing, ceramics and other industries. Portable design, built-in digital color card, color lookup and function expansion via mobile APP. |
| Light Source | Full-spectrum combined LED |
| Integrating Sphere | Φ40mm |
| Spectroscopy | Nano-integrated optical device |
| Sensor | Dual 18-group silicon photodiode array |
| Wavelength Range | 400-700nm |
| Measuring Apertures | 3 apertures: 1×3mm needle tip + 5mm flat + 10mm flat |
| Light-containing method | SCI |
| Color Spaces | CIE LAB,XYZ,Yxy,LCh,CIE LUV,s-RGB,HunterLab,βxy,DIN Lab99 |
| Color Difference Formulas | ΔE*ab,ΔE*uv,ΔE*94,ΔE*cmc(2:1),ΔE*cmc(1:1),ΔE*00,DINΔE99,ΔE(Hunter) |
| Other Indices | Spectral reflectance, WI (ASTM E313, CIE/ISO, AATCC, Hunter, Taube, Berger, Stensby), YI (ASTM D1925, ASTM E313), Metamerism Index MI, staining fastness, color change fastness, strength, hiding power, 555 color classification, Munsell (C/2), blackness (My, dM), CMYK color density, Tint |
| Observer Angle | 2°/10° |
| Illuminants | D65,A,B,C,D50,D55,D75,F1,F2(CWF),F3,F4,F5,F6,F7(DLF),F8,F9,F10(TPL5),F11(TL84),F12(TL83/U30),U35,NBF,ID50,ID65,LED-B1,LED-B2,LED-B3,LED-B4,LED-B5,LED-BH1,LED-RGB1,LED-V1,LED-V2 |
| Display | Spectrum graph/data, sample color values, color difference graph, pass/fail result, color simulation, color tendency |
| Measuring Time | Approx. 1 s |
| Repeatability | Chromaticity value: MAV/SCI, standard deviation value ΔE*ab within 0.03 (after preheating and correction, measure the white board 30 times at intervals of 5 seconds and take the average value). Spectral reflectance: MAV/SCI, standard deviation within 0.1% (400-700nm: within 0.2%) |
| Inter-Instrument Difference | MAV/SCI, ΔE*ab ≤ 0.3 (average of 12 BCRA Series II tiles) |
| Display | 0.01 |
| Reflectance Range | 0-200% |
| Reflectance Resolution | 0.01% |
| Measurement Mode | Single measurement, average measurement (2-99 times) |
| Positioning | Stable plate positioning |
| White Calibration | Contact white calibration |
| Dimensions | 120*75*207mm |
| Weight | 367g (excluding calibration base) |
| Battery | Li-ion battery, 3.7V, 3200mAh, up to 8000 measurements in 8 hours |
| Light Source Life | Over 1,200,000 measurements within 10 years |
| Display | 3.5-inch TFT true-color capacitive touch screen |
| Interfaces | USB,Bluetooth |
| Data Storage | 200 standards, 10000 samples; unlimited storage via APP/PC |
| Software Support | Android, iOS, Windows, WeChat Mini Program, HarmonyOS |
| Languages | Simplified Chinese, English, Traditional Chinese |
| Operating Environment | 0-40°C, 0-85%RH (non-condensing), altitude < 2000m |
| Storage Environment | -20-50°C, 0-85%RH (non-condensing) |
| Accuracy | Meets legal metrology certification |
| Standard Accessories | Power adapter, data cable, user manual, quality management software (official website download), white calibration box, protective cover, wrist strap, measuring apertures |
| Optional Accessories | Mini printer, powder test kit |
| Note | Specifications subject to change without prior notice |
FAQs About Spectrocolorimeter
A calorimeter is used to measure heat that is gained or lost during a chemical or physical reaction. A sample is taken in an insulated container, and a temperature change is measured. This assists in computing the alterations in energy by the equation Q = mcΔT, where Q is heat.
A colorimeter is sufficient when measuring similar materials or batches with stable conditions. Suitable for fast, low-cost color checks where high precision is not required. Quick quality control in plastics, paint batch consistency, food color grading (e.g., fruit ripeness), and basic printing checks.
A spectrophotometer is recommended when you need professional, maximum color accuracy or when testing materials with variable surfaces – such as glossy or textured samples. Like textile dye formulation, cosmetic shade matching, medical device color calibration, high-end printing (e.g., packaging for luxury goods), and material spectral research. learn more Understanding Spectrophotometric Parameter Measurement
A colorimeter measures the amount of light and the wavelength that is absorbed by a solution. It is a sign that colored compounds are present and the level of their concentration. It is applied in the laboratory and industry to check the concentrations of chemicals, the color of products, and purity.
The LAB color space defines colors in a three-dimensional model: Lightness (L), red–green axis (a), and blue–yellow axis (b). It's a globally recognized standard supported by most modern color measuring devices. CIELAB is a standardized, device-independent system designed to map all visible colors that the human eye can perceive.
To quantify color change, take the original L*a*b* values of a sample, and reread after exposure or processing. Compute the difference as 1/2(Emut1 Emut2). The larger the value of ΔE, the more obvious the change of color is, which can be used in quality or stability testing.
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