Image SpectroPhotoMeter

The image spectrophotometer captures spectral data from the surface of objects using spectroscopic technology and combines it with image analysis to locate measurement areas. It is used for detecting color differences in printed materials, assessing color distribution in plastic parts, and analyzing color patterns in textiles. It can simultaneously acquire color numerical values and visual image information.
Selection
When selecting, focus on the type of spectral principle, ensure the measurement aperture matches the sample size, and consider models with image positioning functionality. Verify the instrument's repeatability data and confirm that the supporting software supports industry-standard color systems. Choose appropriate light source conditions and measurement fixtures based on the material of the sample.
Type
Measurement method
Caliber
light source
integrating sphere
Chromatic value repeability
Measurement shape
software
Special features

Terms

Standards

Instruments

The image method is used for particle morphology analysis, the measurement range is 0.1~ 3000μm, the total magnification is 8000 times, and the automatic segmentation and measurement of various geometric paraMeters are supported, and the operation is efficient.

$ 8949.00

The image method is used for particle morphology analysis, the measurement range is 0.1~ 3000 μ m, the total magnification is 8000 times, and it has the functions of automatic segmentation and measurement of various geometric paraMeters.

$ 12176.00

Equipped with 20 million pixel Sony IMX183 Sensor and global shutter technology, support real-time image stitching and depth of field fusion, USB3.0 interface realizes 15fps high-speed transmission, providing a complete image acquisition to report output workflow.

$ 2139.00

Image segmentation technology is used to process overlapping dust and maintain particle prototype; Measurement range is 0.1~ 3000μm, repeatability error ≤ +/- 1%; support custom particle size classification and various image processing methods.

$ 9998.00

Image segmentation technology is used to process overlapping dust and maintain the original appearance of particles; the measurement range is 0.1~ 3000μm, and the repeatability error ≤ +/- 1%; it supports automatic classification and custom paraMeter analysis, and the operation is simple and fast.

$ 8949.00

The width is 5cm, the optical path is 10mm, and the dimensions are 12.5 × 52.5 × 45mm, which is suitable for the use of Spectrophotometer to ensure Optical inspection detection accuracy.

$ 114.00

Width 2cm, optical path 10mm, dimensions 12.5 × 22.5 × 45mm, specially designed for Spectrophotometer matching Cuvette, to ensure Optical inspection detection accuracy.

$ 101.00

The width is 3cm, the optical path is 10mm, and the dimensions are 12.5 × 32.5 × 45mm. As a special accessory for Spectrophotometer, it ensures the stability of the optical path and the accuracy of measurement.

$ 106.00

The image method is used to analyze the particle morphology and particle size, the test range is 1~ 3500 μ m, the system magnification is 4000 times, the automatic segmentation success rate exceeds 93%, and paraMeters such as length-diaMeter ratio and sphericity can be counted.

$ 5366.00

Measurement range 0.5-3000 μm, maximum resolution 0.1μm, support more than 30 image analysis functions, Particle size distribution and morphology analysis.

$ 5237.00

Equipped with Sony 5 million pixel CMOS Sensor, supports global shutter and 35fps high-speed imagery, real-time image stitching and depth of field fusion functions to optimize the operation process and improve work efficiency.

$ 3268.00

Using image analysis method to support high temperature sample testing, camera resolution up to 1280 × 1024, with automatic contact angle calculation and dynamic analysis function, Measurement range 0~ 180 °, accuracy 0.01 °.

$ 3317.00

Equipped with Sony IMX178 Sensor, 3072x2048 resolution, supports real-time image stitching and depth of field fusion functions, global shutter technology ensures distortion-free shooting of dynamic samples, and USB3.0 interface realizes 40fps high-speed imagery.

$ 1493.00

Image analysis method, support high temperature sample testing, camera resolution of 1280 × 1024, with dynamic contact angle analysis and surface energy estimation function, Measurement range 0~ 180 °, accuracy 0.01 °.

$ 2082.00

CCD camera system to achieve 1280 × 1024 resolution image analysis, support 0~ 180 ° contact angle and 0~ 400mN/m surface tension measurement, with dynamic contact angle analysis and solid surface energy estimation function.

$ 4077.00

Articles

Spectrophotometer measures ink spectral reflectance and opacity.
This article introduces how to measure the hiding power of ink using a spectrophotometer. The instrument irradiates the ink sample, measures its reflectance within the visible light spectrum, and calculates the hiding power using the Kubelka-Munk model.
The combination of hiding power chart paper and a spectrophotometer enables the digital evaluation of hiding power.
This article introduces how to combine hiding power cards with spectrophotometers to achieve digital assessment of hiding power.
Haze meter detects haze on high-gloss coating surfaces
Haze is the phenomenon where a high-gloss coating surface causes a blurring of reflected images due to light scattering, which reduces visual clarity. A haze meter quantifies the haze value by measuring the intensity ratio between the specularly reflected light and the scattered light at specific small angles. The lower the value, the clearer the surface.
A spectrophotometer uses digital language to describe colors, making color differences impossible to hide.
A spectrophotometer measures the color of an object through spectral analysis, converting reflected light data into spectral curves. It then calculates chromaticity parameters such as L*a*b* based on international standards, achieving a digital representation of color.
How to Interpret Color Difference Lab Values Measured by a Spectrophotometer? Save This Color Difference Judgment Standard Now!
This article explains how spectrophotometers measure and evaluate color differences using the Lab color space. In the Lab values, L represents lightness, while a and b indicate the red-green and yellow-blue color biases. The color difference ΔE is calculated using a formula to quantify the variation between a sample and the standard.