INTELLISCANDE III14-532NM SCANLAB

光学性能:

波长适配:采用532纳米波长激光,兼容YAG、光纤激光、绿光激光等常见激光系统,支持多波长镀膜选项。

通光孔径:标准通光孔径设计,适配不同激光光斑尺寸需求。

控制与通信:

协议支持:兼容Modbus/TCP、Modicon Modbus等工业通信协议,实现与上位机或数据采集系统的无缝对接。

远程诊断:通过电子元件实现状态参数实时监控,支持远程故障诊断与参数调整。

结构与散热:

紧凑设计:外形尺寸200×200×100毫米,重量2.5千克,便于集成至激光加工设备。

散热选项:提供风冷或水冷方案,适应高功率激光加工场景的散热需求。

描述

INTELLISCANDE III14-532NM SCANLAB是一款高性能的振镜扫描仪,以下为其产品详情:

核心功能

激光加工应用:

微加工与打标:适用于微结构处理、精密打标、雕刻等高精度加工需求,光斑尺寸可小于30微米,满足微米级加工精度。

3D打印与焊接:支持快速成型、3D打印技术及金属焊接,通过动态扫描系统实现复杂三维结构的激光加工。

动态性能优化:

高速扫描:最大扫描速度达10米/秒,配合±20度的最大扫描角度,提升加工效率。

动态稳定性:集成温度补偿功能,降低长时间工作下的漂移误差,确保加工一致性。

技术参数

光学性能:

波长适配:采用532纳米波长激光,兼容YAG、光纤激光、绿光激光等常见激光系统,支持多波长镀膜选项。

通光孔径:标准通光孔径设计,适配不同激光光斑尺寸需求。

控制与通信:

协议支持:兼容Modbus/TCP、Modicon Modbus等工业通信协议,实现与上位机或数据采集系统的无缝对接。

远程诊断:通过电子元件实现状态参数实时监控,支持远程故障诊断与参数调整。

结构与散热:

紧凑设计:外形尺寸200×200×100毫米,重量2.5千克,便于集成至激光加工设备。

散热选项:提供风冷或水冷方案,适应高功率激光加工场景的散热需求。

产品特点

高精度与稳定性:

定位精度:重复精度优于2微弧度,非线性误差小于0.9毫弧度/44度,满足精密加工需求。

长期稳定性:长时间漂移小于100微弧度,温度漂移低于15微弧度/开尔文,保障加工质量一致性。

灵活性与扩展性:

模块化设计:支持客户定制调谐,优化速度或定位精度参数,适配不同加工场景。

多系统兼容:可集成至激光器、激光量测、光学元件等精密光机系统,扩展应用范围。

可靠性与维护性:

工业级防护:适应高温、高湿、粉尘等恶劣环境,保障设备长期稳定运行。

易维护性:模块化结构便于快速更换组件,降低维护成本与停机时间。

INTELLISCANDE III14-532NM SCANLAB is a high-performance galvanometer scanner.The following is its product details:

Core functions

Laser processing applications:

Micromachining and marking:Suitable for high-precision processing requirements such as microstructure processing,precision marking,and engraving.The spot size can be less than 30 microns,meeting micron-level processing accuracy.

3D printing and welding:Supports rapid prototyping,3D printing technology and metal welding,and realizes laser processing of complex three-dimensional structures through a dynamic scanning system.

Dynamic performance optimization:

High-speed scanning:The maximum scanning speed reaches 10 meters per second,and the maximum scanning angle of±20 degrees improves processing efficiency.

Dynamic stability:Integrated temperature compensation function reduces drift errors under long-term work and ensures processing consistency.

Technical parameters

Optical performance:

Wavelength adaptation:Using 532 nanometer wavelength laser,compatible with common laser systems such as YAG,fiber laser,green laser,and supports multi-wavelength coating options.

Clear aperture:Standard clear aperture design,adapted to different laser spot size requirements.

Control and communication:

Protocol support:compatible with industrial communication protocols such as Modbus/TCP,Modicon Modbus,etc.,to achieve seamless connection with the host computer or data acquisition system.

Remote diagnosis:Real-time monitoring of status parameters is achieved through electronic components,supporting remote fault diagnosis and parameter adjustment.

Structure and heat dissipation:

Compact design:The overall dimensions are 200×200×100 mm and the weight is 2.5 kg,which is easy to integrate into laser processing equipment.

Cooling options:Provide air cooling or water cooling solutions to meet the heat dissipation requirements of high-power laser processing scenarios.

Product features

High precision and stability:

Positioning accuracy:The repeatability is better than 2 micro-radians,and the nonlinear error is less than 0.9 milliradians/44 degrees,which meets the requirements of precision processing.

Long-term stability:Long-term drift is less than 100 micro-radians,and temperature drift is less than 15 micro-radians/Kelvin,ensuring the consistency of processing quality.

Flexibility and scalability:

Modular design:Supports customer-customized tuning,optimizes speed or positioning accuracy parameters,and adapts to different processing scenarios.

Multi-system compatibility:can be integrated into precision optical and mechanical systems such as lasers,laser measurement,and optical components to expand the scope of application.

Reliability and maintainability:

Industrial-grade protection:adapt to harsh environments such as high temperature,high humidity,and dust to ensure long-term stable operation of the equipment.

Easy to maintain:modular structure facilitates quick replacement of components,reducing maintenance costs and downtime.

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