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Photoelectric Sensors Empower Lithium Battery Winding Machines for Stable Cell Production

Photoelectric Sensors Empower Lithium Battery Winding Machines for Stable Cell Production

2026-07-31

In lithium battery manufacturing, cell winding serves as the core forming process. Wound cells are conveyed to the intermediate station for casing insertion and welding. The accurate positioning of cells directly determines the quality of subsequent assembly and welding procedures.

Kronz through-beam photoelectric sensors undertake core detection tasks in this process by monitoring cell positioning, ensuring orderly and stable operation of the production line.


Lithium battery production is characterized by highly reflective electrode tabs and fast production tact time. Conventional sensors are prone to false detection and missing detection. In contrast, through-beam photoelectric sensors feature strong anti-interference performance and sensitive induction, making them perfectly suited for the complex working conditions of this station.


I. Application of Through-Beam Photoelectric Sensors in Winding Machines


Through-beam photoelectric sensors are mounted on both sides of the conveying channel to form a fixed sensing area. When a transported cell blocks the light path, the sensor outputs a valid signal to enable continuous process flow; no signal will be sent if there is no cell at the station, locking the equipment in standby mode. The sensors identify the presence and position of cells with zero detection deviation.          111에 대한 최신 회사 뉴스 Photoelectric Sensors Empower Lithium Battery Winding Machines for Stable Cell Production  0    에 대한 최신 회사 뉴스 Photoelectric Sensors Empower Lithium Battery Winding Machines for Stable Cell Production  1


Accurate position recognition effectively prevents equipment idling. Equipped with fast response speed and resistance to light interference, the sensors can operate stably at high speed for a long time, cutting down equipment failures and manual maintenance costs.에 대한 최신 회사 뉴스 Photoelectric Sensors Empower Lithium Battery Winding Machines for Stable Cell Production  2


II. Product Features of BQ25-T15N Through-Beam Photoelectric Sensor


  1. Sensitive response and powerful anti-interference capability

  2. Stable and reliable for long-term continuous operation

  3. Visible red light source for easy installation and commissioning

  4. Wide sensing range of 50 mm to 15 meters, compatible with various application scenar  

    에 대한 최신 회사 뉴스 Photoelectric Sensors Empower Lithium Battery Winding Machines for Stable Cell Production  3

    에 대한 최신 회사 뉴스 Photoelectric Sensors Empower Lithium Battery Winding Machines for Stable Cell Production  4



As critical sensing equipment connecting the winding process to casing insertion and welding processes, through-beam photoelectric sensors deliver precise and consistent detection to guard the first checkpoint of cell transfer. They stabilize production tact time and reduce process defect rates, acting as fundamental core components for automated lithium battery production lines.



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뉴스 세부정보
Created with Pixso. Created with Pixso. 뉴스 Created with Pixso.

Photoelectric Sensors Empower Lithium Battery Winding Machines for Stable Cell Production

Photoelectric Sensors Empower Lithium Battery Winding Machines for Stable Cell Production

2026-07-31

In lithium battery manufacturing, cell winding serves as the core forming process. Wound cells are conveyed to the intermediate station for casing insertion and welding. The accurate positioning of cells directly determines the quality of subsequent assembly and welding procedures.

Kronz through-beam photoelectric sensors undertake core detection tasks in this process by monitoring cell positioning, ensuring orderly and stable operation of the production line.


Lithium battery production is characterized by highly reflective electrode tabs and fast production tact time. Conventional sensors are prone to false detection and missing detection. In contrast, through-beam photoelectric sensors feature strong anti-interference performance and sensitive induction, making them perfectly suited for the complex working conditions of this station.


I. Application of Through-Beam Photoelectric Sensors in Winding Machines


Through-beam photoelectric sensors are mounted on both sides of the conveying channel to form a fixed sensing area. When a transported cell blocks the light path, the sensor outputs a valid signal to enable continuous process flow; no signal will be sent if there is no cell at the station, locking the equipment in standby mode. The sensors identify the presence and position of cells with zero detection deviation.          111에 대한 최신 회사 뉴스 Photoelectric Sensors Empower Lithium Battery Winding Machines for Stable Cell Production  0    에 대한 최신 회사 뉴스 Photoelectric Sensors Empower Lithium Battery Winding Machines for Stable Cell Production  1


Accurate position recognition effectively prevents equipment idling. Equipped with fast response speed and resistance to light interference, the sensors can operate stably at high speed for a long time, cutting down equipment failures and manual maintenance costs.에 대한 최신 회사 뉴스 Photoelectric Sensors Empower Lithium Battery Winding Machines for Stable Cell Production  2


II. Product Features of BQ25-T15N Through-Beam Photoelectric Sensor


  1. Sensitive response and powerful anti-interference capability

  2. Stable and reliable for long-term continuous operation

  3. Visible red light source for easy installation and commissioning

  4. Wide sensing range of 50 mm to 15 meters, compatible with various application scenar  

    에 대한 최신 회사 뉴스 Photoelectric Sensors Empower Lithium Battery Winding Machines for Stable Cell Production  3

    에 대한 최신 회사 뉴스 Photoelectric Sensors Empower Lithium Battery Winding Machines for Stable Cell Production  4



As critical sensing equipment connecting the winding process to casing insertion and welding processes, through-beam photoelectric sensors deliver precise and consistent detection to guard the first checkpoint of cell transfer. They stabilize production tact time and reduce process defect rates, acting as fundamental core components for automated lithium battery production lines.