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Newlas Black Technology for Cell Welding Inspection: Say Goodbye to Misjudgment, 100% Non-Destructive Full Inspection

Time:2025-8-30

Three major pain points in the battery cell industry:

  • Destructive testing: Traditional sampling inspection requires cutting samples, causing waste;
  • Delayed results: Inspection reports take several hours to wait for;
  • High Misjudgment Rate: A 30% error rate poses potential safety hazards.

Revolutionary solution

Newlas Black Technology for Cell Welding Inspection: Say Goodbye to Misjudgment, 100% Non-Destructive Full Inspection

Three Breakthroughs of the Newlas NewOCT Detection System:

Non-destructive Full Inspection: Optical scanning technology with micrometer-level precision;
Real-time Regulation: Millisecond-level data feedback for automatic parameter optimization;
Zero Missed Inspection: 100% full inspection, making false welding impossible to hide.

Newlas Black Technology for Cell Welding Inspection: Say Goodbye to Misjudgment, 100% Non-Destructive Full Inspection

Core Advantages

  1. Backed by 12 Patented Technologies: Including optical path compensation, dual-control system, etc.;
  2. Intelligent Early Warning System: Detects equipment abnormalities in advance to reduce downtime;
  3. Full Process Compatibility: Compatible with prismatic, cylindrical and pouch batteries.
Newlas Black Technology for Cell Welding Inspection: Say Goodbye to Misjudgment, 100% Non-Destructive Full Inspection

Visible Benefits

  • Cost Savings: Reduces manual inspection costs;
  • Quality Assurance: Inspection error ≤ 10%, eliminating batch defects;
  • Efficiency Improvement: Real-time inspection for smoother production processes.

Applications

  • Product Introduction Of Newlaz 3D Visual Weld Seam Guidance System

    With the development of times and advancements in technology, the industrial sector, which strives for high-efficiency, high-precision production, is constantly raising its requirements for welding quality, efficiency, and precision. Newlaz 3D vision weld seam guidance system employs cutting-edge 3D vision technology to adapt to complex environments through flexible multi-point guidance, and one-click high-precision hand-eye calibration […]

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  • NewScan-3D of Newlas: A High-Precision Welding “Optical Engine” Made in China

    Figure 1 NewScan-3D galvanometer flight welding joint (left) NSC galvanometer control cabinet (right) 01 Technological upgrade: Collaborative breakthrough of high efficiency and high precision to build a precision welding value chain Laser flight welding technology is a high-precision welding process based on high-speed galvanometer and dynamic focus control. Its core lies in controlling the deflection […]

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  • NewOCT Laser Penetration Detection Subsystem Application In The Manufacturing Of New Energy Vehicles

    NewOCT Laser Penetration Detection Subsystem uses optical coherence tomography (OCT) to rapidly scan the workpiece at the welding location. Through artificial intelligence algorithms, 3D scanning imaging is achieved, enabling real-time micron-level measurement of the weld penetration inside the keyhole during the welding process. This article presents NewOCT Laser Penetration Detection Subsystem on the structural composition, functional characteristics, and applications in the manufacturing of new energy vehicles.

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  • Newlas established the Optoelectronic Advanced Manufacturing Technology Research Institute!

    In order to vigorously promote the industrial upgrading of high-end laser core technology and equipment, cultivate cutting-edge R&D talents to accelerate corporate technological innovation, enhance endogenous development momentum, and create a new ecology of the new energy vehicle manufacturing industry chain. On January 15, 2025, Institute of Advanced Manufacturing Technology for Optoelectronics-Wuhan Newlas (hereinafter referred to […]

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Customer-centric, providing world-class laser application solutions
Newlas adheres to the cooperation concept of innovation, focus, efficiency and win-win,
committed to the development of laser applications and independently researches and develops core components

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