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RFH new product P-ir-1064 series picosecond infrared laser marking glass

Nov 03 , 2023

RFH new product P-ir-1064 series picosecond infrared laser marking glass

 

 

 

In today's industrial manufacturing field, laser marking technology has become an important marking method. Among them, picosecond lasers are widely used in surface marking of various materials due to their ultra-high pulse frequency and precise focusing capabilities. This article will discuss the new skills of RFH’s newly developed high-power 35W picosecond laser for N9 glass marking.

 

 

1. Picosecond laser marking principle

 

A picosecond laser is a laser device that outputs pulses with a pulse width in the picosecond level (1 picosecond equals 10-12 seconds). This ultra-short pulse width allows the picosecond laser to heat the surface of the material and cause a chemical reaction in a very short time, leaving a permanent mark on the surface of the material. Compared with traditional laser marking machines, picosecond lasers have higher processing speeds and better marking quality.

 

 

 

2. Characteristics of RFH 35W picosecond laser

 

The RFH 35W picosecond laser is a high-power picosecond laser with higher output energy and a wider range of marking applications. Its main features include:

 

1. High power: The output power of 35W can meet the marking needs of most materials, achieving deep etching and high-speed marking.

 

2. Good stability: The 35W picosecond laser has excellent stability and can ensure long-term continuous operation and marking accuracy.

 

3. Easy to operate: The 35W picosecond laser has a simple and easy-to-use control system and operation interface, making it convenient for users to perform marking operations.

 

 

 

3. Characteristics of N9 glass

 

N9 glass is a high-quality glass material with high light transmittance, high hardness and high weather resistance. These characteristics make N9 glass widely used in fields such as optics, electronics and architecture. However, N9 glass has a high surface smoothness, which makes laser marking more challenging.

 

 

 

4. Application of RFH 35W picosecond laser in N9 glass marking

 

Due to the surface characteristics of N9 glass, it is often difficult for traditional laser marking machines to achieve high-quality scale markings. However, the 35W picosecond laser, with its ultra-high pulse frequency and precise focusing ability, can achieve high-quality scale markings on the N9 glass surface. Specifically manifested in the following aspects:

 

 

 

1. High-definition scale marks: The RFH 35W picosecond laser can leave high-definition scale marks with neat edges on the surface of N9 glass. This high-definition scale mark can not only meet the requirements of industrial manufacturing, but also improve the added value and market competitiveness of products.

 

2. Fast speed: The processing speed of the 35W picosecond laser is much higher than that of traditional laser marking machines, and it can complete a large number of scale marks in a short time. This high-speed processing capability can greatly improve production efficiency and reduce production costs.

 

3. High reliability: The stability and reliability of the 35W picosecond laser are excellent, ensuring long-term continuous operation and high-quality scale markings. This kind of high-reliability equipment can bring more benefits and value to enterprises.

 

4. Wide range of applications: The 35W picosecond laser has a very wide range of applications. It can not only be used for scale marks on N9 glass, but can also be used for scale marks on the surfaces of various other materials. This wide range of applications can bring more business opportunities and development space to enterprises.

 

 

 

The RFH 35W picosecond laser has significant advantages and broad application prospects in N9 glass marking. Its high definition, high speed, high reliability and wide range of applications bring more benefits and value to enterprises. With the continuous advancement of technology and the growing demand for applications, it is believed that picosecond lasers will be widely used in more fields.

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