Product Description
The Pulsed Xenon Lamp Benchtop Spectrophotometer YR05475 represents a pinnacle of scientific instrumentation, combining accuracy and versatility for color measurement. Boasting a 360nm-780nm Xenon Lamp as its light source, this device spans a broad gamut of applications, allowing precise reflectance and transmittance measurements with its d/8 and d/0 optical geometry conforming to exacting industry standards like CIE No.15 and ASTM E1164.
One of the standout features is its large integrating sphere size of Φ 154mm, which facilitates exact light diffusion for unmatched measurement reliability. It utilizes a concave grating as a spectrophotometric mode, and the sensor technology employed is a dual-array CMOS image sensor with 256 image elements, ensuring granular data capture over a wavelength pitch of 10nm and a semiband width of 5nm. With a reflectance range of 0~200%, it can handle diverse measurement tasks, supported by its ability to measure through varying apertures for reflective and transmissive work.
The device covers comprehensive color spaces including CIE Lab, XYZ, LCh, and Munsell, providing complete color profiling. Its extensive color difference formulas such as ΔE*ab and ΔE*94, and indices like whiteness and yellowness, give users confidence in color precision analysis. The benchtop spectrophotometer also offers a swift measurement speed, taking only about 2.4s for SCI and SCE measurements, promoting efficiency in operation.
| Model | YR05475 (Pulsed xenon lamp) |
| Optical Geometry | Reflectance: d/8 (SCI⪰ Include UV/Exclude UV) |
| Transmittance: d/0 (SCI⪰ Include UV/Exclude UV); Haze(ASTM D1003) | |
| Conforms to CIE No.15, GB/T 3978, GB 2893, GB/T 18833, ISO7724/1, ASTM E1164, DIN5033 Teil7 | |
| Integrating Sphere Size | Φ 154mm |
| Light Source Device | 360nm-780nm Xenon Lamp, 400nm cut-off Xenon Lamp |
| Spectrophotometric Mode | Concave Grating |
| Sensor | 256 Image Element Double Array CMOS Image Sensor |
| Wavelength Range | 360-780nm |
| Wavelength Pitch | 10nm |
| Semiband Width | 5nm |
| Reflectance Range | 0~200% |
| Measuring Aperture | Reflective: Φ30mm/Φ25.4mm, Φ10mm/Φ8mm, Φ6mm/Φ4mm; |
| Transmissive: Φ30mm/Φ25.4mm; Remark: 1. Automatic identification of switch caliber 2. Customized Configuration caliber and lens position | |
| Specular Component | Reflectance: SCI&SCE |
| Transmittance: SCI&SCE | |
| Color Space | CIE Lab, XYZ, Yxy, LCh, CIE LUV, Hunter LAB, Munsell, s-RGB, HunterLab, DIN, βxy |
| Color Difference Formula | ΔE*ab, ΔE*uv, ΔE*94, ΔE*cmc(2:1), ΔE*cmc(1:1), ΔE*00v, ΔE(Hunter), DIN ΔE99 |
| Colorimetric Index | WI (ASTM E313, CIE/ISO, AATCC, Hunter), YI (ASTM D1925, ASTM 313), MI (Metamerism Index), Staining Fastness, Color Fastness, Color Strength, Opacity, Gardner Index, Pt-Co Index, 555 Index, Haze(ASTM D1003) |
| Observer Angle | 2° & 10° |
| Illuminants | D65, A, C, UV, D50, D55, D75, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11, F12 |
| Displayed Data | Spectrogram/Values, Chromaticity Values, Color Difference Values/Graph, Pass/Fail Result, Color Offset |
| Measuring Time | About 2.4s (Measure SCI & SCE about 5s) |
| Repeatability | Spectral reflectance: Φ25.4mm/SCI, Standard deviation within 0.07% (400 nm to 700 nm: within 0.06%) |
| Chromaticity value: Φ25.4mm/SCI, Standard deviation within ΔE*ab 0.015 (When a white calibration plate is measured 30 times at 5 second intervals after white calibration) | |
| Spectral Transmittance: Φ25.4mm/SCI, Standard deviation within 0.07% (400 nm to 700 nm: within 0.07%) | |
| Chromaticity value: Φ25.4mm/SCI, Standard deviation within ΔE*ab 0.018 (When a white calibration plate is measured 30 times at 5 second intervals after white calibration) | |
| Inter-instrument Error | Φ25.4mm/SCI, Within ΔE*ab 0.15 |
| (Average for 12 BCRA Series II color tiles) | |
| Size | 370×300×200mm |
| Weight | About 9.6kg |
| Power Supply | DC 24V, 3A Power Adapter |
| Light Source Device Life | 5 years, more than 3 million times measurements. |
| Display | 7″ TFT Capacitive Screen-touch Display |
| Data Port | USB & Print serial port |
| Data Storage | Standard 2000 Pcs, Sample 20000 Pcs |
| Language | Simplified Chinese, Traditional Chinese, English, |
| Working Environment | Temperature: 0~40℃; Humidity: 0~85% (No Condensation) |
| Storage Environment | Temperature: -20~50℃; Humidity: 0~85% (No Condensation) |
| Standard Accessory | Power Adapter, User Guide, CD Disk(PC Software), USB cable, Standard Calibration Board, Black Calibration Cavity, Transmission black baffle, Sample holder, 25.4 caliber, 8 caliber, 4 caliber, |
| Optional Accessory | Micro-printer, Transmissive Test Clamp Component,Micro Aperture(4mm) transmission test clamp component, Instrument inversion components |
| Notes: The specifications are subject to change without notice. | |
Market Price
The market for benchtop spectrophotometers is characterized by a wide range of options, with prices generally influenced by the precision, features, and brand reputation. The Pulsed Xenon Lamp Spectrophotometer YR05475 is highly competitive in its category, typically ranging from $5,000 to $10,000 USD depending on the distributor and additional features selected. For those considering investing in this technological marvel, it is worthwhile to contact suppliers directly or access platforms like Kalstein Plus for the most accurate pricing and potential discounts.
Frequently Asked Questions
What are the main applications of the Pulsed Xenon Lamp Spectrophotometer?
This spectrophotometer is typically used in industries such as textiles, plastics, and coatings where precise color measurements are critical. It’s also widely used in laboratories for quality control and research purposes.
How does the spectrophotometer account for different light conditions?
It incorporates various illuminants such as D65, A, C, and more, allowing users to simulate different lighting conditions and ensure accuracy across various environmental scenarios.
Is the device suitable for both laboratory and field use?
Yes, its robust design and portability make it suitable for both controlled laboratory environments and fieldwork.
Advantages and Disadvantages
The Pulsed Xenon Lamp Spectrophotometer stands out for its accuracy, flexibility, and user-friendly design. With a concise wavelength range and fast measurement times, it serves as an essential tool for detailed color analysis, supporting a variety of industrial standards and applications. Its large storage capacity and intuitive touch-screen display further enhance user experience, while USB and print ports enable easy data transfer and documentation.
Nevertheless, users should be mindful of potential limitations such as the initial cost of acquisition and the need for regular calibration to maintain accuracy. Additionally, while it offers a robust set of features, the complexity of its functions might necessitate thorough user training.
Product Use in the Field
In practical settings, the YR05475 facilitates rigorous color quality assurance in manufacturing environments. By capturing precise spectral data, it assists users in ensuring product consistency and meeting stringent quality standards. This is especially critical in industries such as textiles, automotive paints, and food packaging, where color fidelity is paramount.
Employing this spectrophotometer allows technicians to obtain consistent readings quickly, translate spectrometric data into actionable insights, and make adjustments to maintain product quality. Its portability adds to its appeal, giving users the flexibility to conduct on-site evaluations where immediate results are critical.
Recommendations
For users looking to maximize the capabilities of this spectrophotometer, it is advisable to conduct regular calibrations using the provided calibration board and follow manufacturer instructions for maintenance. Additionally, leveraging the versatility of its multiple aperture options can optimize measurement precision for different sample sizes and types.
Engaging in ongoing training sessions and familiarizing oneself with the comprehensive software can enable users to fully exploit the device’s functionalities, thereby enhancing productivity and accuracy. As with any high-end laboratory equipment, ensuring proper storage and handling conditions will help in extending its operational life.
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