Aluminum Housing Laser Marking System Fiber

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Product Description

Basic Specifications

Model NO.YY-500W-F
TypeLaser Machine Frame
Camera TypeGigabit Network Industrial Camera / Flying-Shot
Lens Focal Length12mm/16mm
Annotation ModeEqual-Flow / Induction / Xy Platform / Dual-Flow L
Standard SoftwareStandard Visual Marking Software / Flight Marking
Control Card TypeV1 Single-Axis / V2 Dual-Axis / Flight Marking Car
Optional AccessoriesAssembly Line / Uplight / Circular Light / Bar Lig
Protection TypeOptical Fiber Laser Lens
Specification51mm x 51mm x 41mm

Product Description

Visual Laser Marking System

Visual Laser Marking System

The independently developed visual laser marking system deeply integrates laser marking, motion control, and automatic loading and unloading technologies, enabling unmanned automatic marking processing. The software system supports customized assembly lines (x, y dual-axis platforms), and supports flying marking, pseudo-coaxial mode, and off-axis mode. Through visual automatic recognition, positioning, and motion control, it achieves dynamic marking on assembly lines (xy platforms). Using visual positioning technology to guide the laser for precise marking of workpieces, it solves problems such as difficulty in manual positioning and low marking efficiency.

Core Advantages

Laser Advantages
  • 1
    High quality rate over 99.9% with repeatability accuracy up to 0.01mm.
  • 2
    Supports various laser types including fiber optic, CO2, and ultraviolet lasers.
  • 3
    Visual software with strong compatibility, user-friendly interface, and customized solutions.
  • 4
    Simultaneous recognition and positioning with multiple templates and automatic switching.
  • 5
    Adaptable to various environments: conveyor belts, XY platforms, and vibratory feeders.
  • 6
    Barcode reading, grayscale recognition, and missed-marking alarms for high accuracy.

System Solutions

XY dual-axis system
XY dual-axis platform system
Flying vision system
Flying vision marking system

XY Platform Marking: Suitable for large processing ranges, typically used with trays or entire boxes. Supports pseudo-coaxial and off-axis modes for industries like 3C, metal nameplates, and hardware tools.

Flying Vision Marking: Accurately locates and processes products continuously moving on production lines. Offers higher efficiency compared to static marking, ideal for pipe fittings, automotive parts, and pharmaceutical packaging.

Case Studies

Case 1
Case 2
Case 3

Technical Expertise

Manufacturing
Testing

With over a decade of experience in industrial camera hardware and machine vision application solutions, the technical team focuses on the design, manufacturing, and commercialization of advanced industrial cameras. Supporting interfaces like USB3.0, GigE, and GMSL2, our solutions are integrated into real-world scenarios across global industries. Our products are widely used in machine vision, industrial inspection, robotics, and automated manufacturing, serving both commercial and research-driven applications.

Frequently Asked Questions

Q1: What is the lead time for orders?
A: Standard products typically ship within approximately one month. Custom product lead times are determined based on technical specifications and material availability.
Q2: Do your products come with a warranty?
A: Yes, our products feature high reliability and energy saving. Standard equipment includes a warranty period of 3 years.
Q3: Are you a manufacturer or a trading company?
A: We are a professional industrial camera manufacturer integrating R&D, production, and sales, with our own technical team and production facilities.
Q4: Which sensor brands do you use?
A: We mainly use internationally recognized sensor brands such as Sony and ON Semiconductor to ensure high image quality.
Q5: Do you provide SDK and technical support?
A: Yes, we offer a complete SDK, development documentation, and support for secondary development along with remote technical assistance.
Q6: What industries are your industrial cameras used in?
A: Our cameras are widely used in machine vision, automated inspection, vision positioning, laser marking, robot guidance, and electronics manufacturing.

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