Polski

Han's Laser New Product Debuts at 2025 Munich Shanghai Light Expo

474
2025-03-07 15:55:18
Zobacz tłumaczenie

New product launch of "Blue Hurricane" red blue integrated laser



1. Ultra high power: The "red blue integrated" laser, with optimized optical path design and heat dissipation system, can stably output power exceeding industry standards, meeting high demand application scenarios.

2. Dual high brightness: Integrating advanced wavelength modulation technology and materials science, both red and blue lasers exhibit high brightness, achieving deep material penetration processing while reducing processing heat effects.

3. Integrated and convenient design: The red and blue light modules are integrated, simplifying operation, reducing costs, and facilitating transportation and installation.

4. Highly stable and anti attenuation: adopting 3-level peeling and 1-level isolation technology, high-quality blue light chip, precise laser output algorithm and multi-level alarm mechanism, real-time monitoring of operating status. By combining high-speed photoelectric probe sensors, high-precision AD conversion chips, efficient filtering, and multi-stage calibration algorithms, the long-term stability of the laser is ensured to be ≤ 3%, achieving excellent performance and long-lasting stability. Widely used in consumer electronics, medical equipment, lithium-ion machinery, hardware, rail transit, etc.

application area 
Tool manufacturing/engineering machinery, electronics/electrical/semiconductor, automotive engineering, aerospace/aviation, precision instruments


MDF series imaging integrated 3D laser marking machine
YLP-MDF152-20 New Product Launch


Equipment features:
1.3D modeling and marking: Real time 3D modeling, mapping, and marking of the marked object can be directly performed;

2.3D Visual Localization: It can automatically capture the 3D features of the model for the same workpiece, automatically align and mark, saving time, and is applied to 3D item marking on assembly lines;

3. High precision and fast marking: Adopting digital three-axis dynamic focusing technology and high-precision three-dimensional positioning technology, it can achieve high-speed focusing and scanning system, and the marking effect is consistent. The marking speed can reach 10000mm/s, improving processing efficiency;

4. Large scale marking capability: The marking range reaches 200mm * 200mm in the XY direction and ± 25mm in the Z direction.
Overall advantages: Powerful 3D imaging technology, automatic and accurate acquisition of product surface point coordinate information, marking content wrapped around the product surface without any geometric distortion, perfectly presenting the marking effect. Satisfy the production and processing processes of laser marking, marking, punching, deep processing, peeling, etc. for products, and adapt to flat, inclined, curved, conical, stepped, and irregular surfaces.

application area 
1. Automotive industry
Component marking: Used for marking metal components such as engines, brake discs, gears, etc. The marking content includes serial numbers, barcodes, QR codes, etc.
Interior and exterior decorations: 3D curved markings are applied to plastic or metal surfaces such as instrument panels, buttons, and lampshades.

2. Electronics and Semiconductor Industry
Chips and circuit boards: Marking text, patterns, or codes on chips and PCB circuit boards with high precision and without damaging components.
Electronic product casing: Mark the brand logo, pattern, and number on the casing of mobile phones, laptops, and other devices.

3. Medical industry
Medical devices: Permanent labeling of surgical instruments and implants to ensure product traceability and safety.
Drug packaging: Mark QR codes or anti-counterfeiting information on packaging materials such as medication bottles and boxes.

4. Mold processing
Deep carving marks are made on the surface of the mold for the production of complex curved patterns or text, meeting high-precision requirements.

5. Jewelry and luxury goods industry
Fine carving on metal jewelry (such as rings, bracelets) and watch cases, including personalized patterns, text, and serial numbers.

6. Aerospace
Aviation parts: Marking high-value components such as aircraft engine parts and instrument panels.

7. Tools and mechanical equipment
Mark brand identification or serial numbers on metal and plastic components such as tools and mechanical parts to ensure identification and anti-counterfeiting.

8. Home appliance industry
Used to mark the brand name, pattern, or technical specifications on the casing of household appliances.

Powiązane rekomendacje
  • TRUMPF helps upgrade the automation of 3D laser processing for automotive thermoforming

    (Dechengen, Germany, March 24, 2025) - TRUMPF Group in Germany has now provided end customers with a fully automated one-stop solution for laser processing systems. With this solution, customers can not only shorten the production cycle, but also effectively reduce the cost of 3D laser material processing. Our laser equipment has excellent production efficiency. Now, through the automation upgrade...

    04-02
    Zobacz tłumaczenie
  • Ultra fast laser tracking the "ballistic" motion of electrons in graphene

    Figure 1. The setup of Hui Zhao and his team at the University of Kansas Ultra Fast Laser Laboratory.A team of researchers from the University of Kansas's ultrafast laser laboratory recently managed to capture real-time ballistic transmission of electrons in graphene, which could lead to faster, more powerful, and more energy-efficient electronic devices in the future.The motion of electrons is of...

    2024-01-09
    Zobacz tłumaczenie
  • Demonstrating broadband thermal imaging using superoptical technology in a new framework

    The research team used a new reverse design framework to demonstrate ultra optical broadband thermal imaging for applications ranging from consumer electronics to thermal sensing and night vision.The new framework, known as the "Modulation Transfer Function" project, solves the challenges related to broadband metaoptics by determining the functional relationship between image contrast and spatial ...

    2024-03-19
    Zobacz tłumaczenie
  • The improvement of additive manufacturing through artificial intelligence, machine learning, and deep learning

    Additive manufacturing (AM) has made it possible to manufacture complex personalized items with minimal material waste, leading to significant changes in the manufacturing industry. However, optimizing and improving additive manufacturing processes remains challenging due to the complexity of design, material selection, and process parameters. This review explores the integration of artificial int...

    02-24
    Zobacz tłumaczenie
  • Researchers have demonstrated a breakthrough boson sampling method using ultracold atoms in optical lattices

    JILA researcher, National Institute of Standards and Technology (NIST) physicist, physics professor Adam Kaufman and his team at the University of Colorado Boulder, as well as NIST collaborators, demonstrated a new method of cross laser beam lattice sampling using ultracold atoms for boson sampling in two-dimensional optics. This study, recently published in the journal Nature, marks a significant...

    2024-05-10
    Zobacz tłumaczenie