TX3300 XRF Device

TX3300 XRF Device

The TX3300 Total Reflection X-ray Fluorescence Spectrometer is a portable XRF device specifically designed and developed for trace element analysis following advancements in XRF technology. Utilizing the principle of total reflection X-rays, it offers extremely low background noise and high sensitivity, enabling rapid multi-element trace analysis of liquids, suspensions, solids, and contaminants. This device provides an efficient and cost-effective solution for trace element analysis.

With its compact size, the TX3300 XRF Device is easy to carry and transport, making it ideal for field analyses or mobile laboratory needs. Its high performance, ease of use, environmental friendliness, and economic advantages make it an indispensable analytical tool in scientific research, quality control, and environmental sciences.

· Higher hardware configuration
· Lower detection limits
· Smaller and more portable
· Lower operating costs
· Wide range of applications

Features

Environmental science It can effectively detect trace pollution elements in soil, air, and water quality and can provide a scientific basis for the assessment and management of environmental quality.

Material science It can be used for trace element detection in alloys, ceramics, glass, and other materials, as well as for silicon wafer surface quality control in the semiconductor industry.

Food safety, TXRF, by being used for the detection of trace elements and heavy metals in foods and beverages, helps prevent potential risks and ensures food safety and quality standards.

Biomedical/biopharmaceuticals, It can be used for the detection of elements in beverages and foods to ensure food safety. Analysis of trace elements in foods.

Industrial Fuel Production and Quality Control Raw material testing; Process monitoring; Finished product testing

Geology/metallurgy It can be used in mineral exploration and evaluation, geological research, and sedimentary environment studies.

Forensic science: used for the analysis of trace elements and toxic components in crime scene samples to provide clues and support forensic toxicology investigations.

Cosmetics: ensures that products comply with relevant laws and regulations by detecting lead, mercury, arsenic, other heavy metals, and potentially harmful elements in cosmetics.

Advantages

Extremely small sample analysis at μL/ng level

Considering that this method requires only a very small amount of sample for analysis, it is ideal for situations where sample volume is limited.
 
 

Simultaneous analysis of multiple elements

The device can simultaneously detect eight major heavy metal elements such as chromium and lead. Additionally, it can expand the range of elements according to detection needs and analyze approximately 30 elements, significantly saving analysis time.

Detection limit up to ppb level

The device surpasses the detection limits of traditional XRF, reaching detection levels as low as ppb. It can accurately measure and analyze microelements, including trace elements.
 
 

Only 2 minutes processing time

The processing time is only 2 minutes and requires no calibration or digestion, providing great convenience and efficiency for on-site analysis.
 
 

Lightweight and portable

Thanks to its compact size and lightweight design, it is easy to carry and transport, making it perfectly suited for on-site testing and mobile laboratory needs, ensuring accurate analyses are always accessible anytime and anywhere.

 
 

Service Support

We have a 24/7 customer service hotline. Our company is committed to providing a great customer experience by responding quickly to customer needs, offering professional services, and continuously improving our products.
 
 

High stability and reliability

By adopting a high-performance detector and a unique optical path system, it can achieve highly consistent analysis results even during long-term continuous operation.
 
 

Low Operating Cost

Compared to imported equipment, TXRF is not only more cost-effective but also features a design optimized for low-energy operation. This design allows for a smaller sample volume, thereby reducing the need for expensive reagents and standards. Additionally, since the sample dissolution procedure does not require equipment or hazardous chemicals, it is extremely economical.