PV & New Energy

Laser Cutting and Drilling for Photovoltaic New Energy Glass

Laser processing delivers non‑contact, high‑precision solutions for photovoltaic glass and enables easy integration with automated production lines. CKD offers diversified equipment configurations for laser cutting, laser drilling and other processes. It helps photovoltaic manufacturers improve glass cutting and hole‑making quality, enhance production flexibility, and reduce maintenance and wear costs caused by conventional mechanical tooling. High‑yield, low‑damage and high‑precision automated mass production can be achieved.

Typical Applications of Laser Cutting & Drilling for PV New‑Energy Glass

Laser Cutting, Dicing and Splitting for Glass‑Based Workpieces

  • Large‑format PV low‑iron cover glass: Cutting & dicing
  • Laminated glass for double‑glass PV modules: Cutting & dicing
  • Energy‑storage cabinet observation window glass: Special‑shape contour cutting
  • Inverter display panel glass: Special‑shape contour cutting

Precision Laser Drilling for Glass‑Based Workpieces

  • Mounting holes for PV glass frame fixation
  • Vent & moisture‑proof micro‑holes for PV modules
  • Small wiring holes for energy‑storage cabinet glass
  • Positioning holes for PV terminal boards

CKD激光可标记或切割的物品示例

我们的激光系统非常适合汽车用途,因为它们保证所有标记都是永久性的、清晰易读的,并且能够抵抗恶劣环境的影响。

Automotive Display Glass

Laser cutting for LCD, OLED, and curved display panels with excellent edge quality.

HUD Windshield Glass

High-precision laser processing for head-up display windshields.

Camera Cover Glass

Micro-cutting and drilling for ADAS camera protection glass.

LiDAR Protective Glass

Precision machining for autonomous driving optical components.

Dashboard Glass Panels

Laser cutting of decorative and functional interior glass.

Automotive Sensor Glass

Ultra-thin glass machining for intelligent sensing systems.

Side Mirror Glass

Clean-edge cutting with minimal thermal damage.

Instrument Cluster Cover Lens

High-quality contour cutting for automotive instrument panels.

案例或实际加工场景

XX汽车公司将什么变为现实

在最近的一个项目中,我们的团队将普通的卫生间标识牌改造成了精致醒目的设计。我们利用专为激光应用而设计的Rowmark塑料,以及配备150瓦激光管(功率设置为20%,速度设置为300毫米/秒)的Boss HP2440激光切割机,将我们的创意变为现实。从简洁流畅的设计到醒目亮丽的标语,我们的卫生间标识牌充分展现了创意与尖端激光技术相结合的无限可能。

图片或视频

PV New‑Energy Glass Cutting & Drilling: Challenges and Requirements

PV and new‑energy equipment increasingly use large‑size glass parts with functional holes and tight dimensional requirements. PV large‑format cover glass, laminated glass for double‑glass modules and energy‑storage functional glass require not only cutting and drilling, but also stable dimensions, edge quality and hole‑position accuracy throughout mass production.

Large‑size Glass Machining PV cover glass comes in large formats, which places high demands on motion‑platform stability, positioning accuracy and full‑panel processing consistency.

Laminated Glass Machining Double‑glass PV modules adopt laminated glass structures. Suitable processing solutions must be selected to realize glass separation and subsequent operations while ensuring machining performance.

Functional Hole Machining Mounting holes, positioning holes, vent holes and wiring holes are machined on PV and energy‑storage glass according to structural designs.

Stable Mass Production Producing qualified samples is only the first step; consistency in volume manufacturing matters equally. Equipment selection shall comprehensively evaluate positioning, motion control, process parameters and automation compatibility.

Recommended Laser Machines

To satisfy the above processing requirements for PV and new‑energy glass, CKD provides two core solutions for splitting‑cutting and contour drilling.

1.Picosecond Infrared Laser Cutting & Dicing All‑in‑One Machine For large‑format PV cover glass and double‑layer laminated glass. It applies laser‑scribing and cleaving technology. Marble base and linear‑motor platform ensure full‑panel consistency with minimal chipping and high yield. Automation‑ready for high‑volume splitting production.

2.Infrared Laser Drilling Machine For energy‑storage observation‑window glass and inverter panel glass. Using Bessel‑beam cold processing, it produces mounting, vent, wiring and positioning holes with precise hole geometry and fine edge quality. Suitable for multi‑spec, small‑batch and custom parts.

3C‑Electronic Glass Cutting & Drilling | Common FAQs

Absolutely not. As a non‑contact cold‑processing technology, the ultrafast laser features ultra‑short pulses with heat‑affected zone <2 μm, removing material at molecular level. It will not burn screen‑printing ink and prevents AF coating edges from peeling or chipping, complying with high‑standard cosmetic inspection.

Highly flexible. As a digitally‑controlled processing solution operated purely by software:

Zero tooling costs: No new molds needed for product change‑overs. Simply load new CAD/DXF drawings and adjust the beam path.

Rapid NPI roll‑out: Sampling and process validation can be finished within hours, greatly accelerating R&D and time‑to‑market for new 3C mass‑production products.

  • The optical path of the equipment is calibrated regularly to ensure positioning accuracy of the motion platform.
  • Parameters are tuned for micro‑hole processes to control single‑pulse energy output.
  • Temperature is strictly controlled in the processing environment to minimize dimensional drift caused by thermal deformation.
  • Aperture dimension inspection is performed on the first article, with periodic sampling inspections during mass production.

It depends on the end‑product requirements for drop resistance and bending strength.

For most internal structural parts, micro‑holes and general special‑shaped profiles, no secondary mechanical grinding or polishing is needed after laser processing. Parts can go directly to cleaning or assembly.

For cover glass or foldable‑display UTG with high‑stress and high drop‑resistance requirements, only mild chemical strengthening or rapid etching is required after laser processing to achieve excellent bending and impact resistance, significantly shortening the overall process chain.

Get Your Custom Laser Processing Proposal

Whatever material and precision standards you require, we configure suitable laser equipment for your production scenarios.