Fully Automatic Computer ColoriMeter

The fully automatic computer colorimeter projects light onto the sample via a built-in light source. The sensor captures the reflected light and converts it into electrical signals, which are then analyzed by the processor to derive color values. It is used for color measurement and quality control of products such as coatings and plastics, ensuring color consistency across batches.
Selection
When selecting a fully automatic computer colorimeter, it is important to consider the measurement aperture matching the sample size, the instrument's repeatability meeting industry standards, software functionality supporting data export and color difference calculation, an intuitive and user-friendly operation interface, and maintenance costs and brand after-sales service that align with actual needs.

Terms

Instruments

Adopt 32-bit ARM processor to improve data processing speed, equipped with 5-inch true color Touchscreen to simplify the operation process, support one-click whiteness and chroma testing, Repeatability color coordinates ≤ 0.0003.

$ 3026.00

Using positive pressure test principle, Measurement range 0~ 1.6MPa, fully automatic operation, support three test modes, built-in calibrating program, suitable for quantitative measurement of various sealing performance indicators.

$ 1332.00

The fully automatic electronically controlled hydraulic pump provides smooth and continuous pulling force with +/- 1% accuracy, built-in rechargeable battery supports 200 tests, and IP65 Protection Rating ensures durability.

$ 4212.00

Suitable for medium Hardness rubber and thermal plasticity resilience materials, Measurement range 0-100HB, resolution 0.1HB. With real-time, peak, automatic timing and average measurement mode, can be connected to the computer for data Linear dispersion analysis, storage and export.

$ 590.00

Pneumatic fixture to achieve automatic clamping, no manual operation; Measurement range covers 10~ 16000mN, support a variety of sheet material Tear strength detection, equipped with 3.2 inch LCD display and thermal printer.

$ 2308.00

Using D/8 lighting system, Inter-instrument Agreement Delta E * 00 < 0.2, equipped with non-contact automatic whiteboard calibration technology to ensure measurement accuracy, lithium battery supports 12,000 consecutive tests.

$ 202.00

It adopts coaxial focusing system of coarse micro-motion, with a grid value of 2 μ m, supports real-time observation and automatic image rating analysis by computer, and the operation is stable and comfortable.

$ 1526.00

Fully enclosed metal Furnace body to enhance Baseline Stability, with imported alloy Sensor to enhance corrosion resistance; Temperature range covering room temperature to 600 ℃, support 0.1~ 100 ℃/min program temperature control, with 0.001 ℃ resolution and Automatic calibration function.

$ 3672.00

Featuring a Cotex-M4 ARM processor, it employs pneumatic sample clamping and an integrated weighing mechanism to achieve fully automated measurement. The oscillation frequency is adjustable from 50 to 200 times per minute, with a weighing resolution of up to 0.001g.

$ 3059.00

Fully automatic one-click measurement of a variety of whiteness paraMeters, support chromaticity coordinates ≤ 0.001 High Accuracy, built-in thermal printer and RS232 interface, suitable for powder, paper and other samples.

$ 1818.00

Equipped with dedicated host computer software to realize data storage analysis, support peak mode and automatic Timing function, Measurement range 20-90HC, resolution 0.1HC, with a variety of coordinate Linear dispersion display and qualified judgment ability.

$ 399.00

Using 7-inch true color Touchscreen and 32-bit microprocessor, Temperature range RT +~ 400 ℃, with automatic atmospheric pressure compensation and over-temperature protection function, the test process is fully automated.

$ 5399.00

Adopt a new generation of High Accuracy Sensor to ensure stable and reliable weighing, with a reaction time of less than 2 seconds, a fully automatic internal calibration function triggered by time and temperature, and support for a variety of weighing units.

$ 935.00

Using three-axis automatic precision control, the maximum cutting section of 200 * 150mm, with intelligent cutting function can change the amount of feed according to the hardness of materials, fully enclosed structure to ensure safe operation, mobile magnetic filtrate circulating water Tank to improve the cutting mass.

$ 37930.00

Automatic ink running stability, ink time and speed can be set, printing pressure 0~ 2mm adjustable, provide low, medium and high three printing speed, each time can be proofed 4 colors to facilitate Color contrast.

$ 3430.00

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.
Colorimeter evaluation of color difference in anodized coloring layers
This article explains how colorimeters are used to evaluate color differences in anodized coloring layers. It describes how colorimeters convert colors into numerical values based on international standards and quantify color variations by calculating the color difference ΔE.
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.