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  3. JFE商事エレクトロニクス プロセスソリューション営業部 実装プロセス営業室
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JFE商事エレクトロニクス プロセスソリューション営業部 実装プロセス営業室

EstablishmentOctober 2004
capital100000Ten thousand
addressTokyo/Chiyoda-ku/6th Floor, Shin Otemachi Building, 2-2-1 Otemachi
phone03-5203-5643
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last updated:Mar 23, 2026
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JFE商事エレクトロニクス Product Lineup

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Smart Reel Rack Smart Reel Rack
Laser marker, laser cutter Laser marker, laser cutter
Substrate cutting machine Substrate cutting machine
Appearance inspection machine (SPI・AOI) Appearance inspection machine (SPI・AOI)
Semiconductor materials Semiconductor materials
Ultrasonic cutting device Ultrasonic cutting device
Washing and drying device Washing and drying device
Implementation-related equipment Implementation-related equipment
Implementation-related systems Implementation-related systems
Implementation-related

Implementation-related equipment

This is the page for implementation-related devices.

Automatic packaging equipment for semiconductors

Bringing future manufacturing to your workplace! Solutions for issues such as labor shortages, quality variability, and work efficiency.

Our "automated packaging equipment for semiconductors" achieves an appropriate balance between high quality and cost performance. Flexible customization is possible according to your application, and we can propose an optimal configuration based on your budget and transportation method. With our detailed support system, you can use our equipment with peace of mind even after installation. [For concerns like these] ■ Labor shortages and reliance on specific individuals - It is difficult to secure skilled workers, leading to a reliance on specific individuals in the work system. ■ Limits on work efficiency and productivity - Manual processes have limitations in processing capacity and cannot meet increasing demand. ■ Human error and quality variation - Inspection errors and instability in packaging quality due to manual work are causing quality issues. *For more details, please download the PDF or feel free to contact us.

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Automotive PCB Inline Laser Marker

Simultaneous dual-side marking for reduced takt time. MES integration support.

In the automotive industry, ensuring the traceability of parts is crucial. High-precision marking is required to enable tracking from the manufacturing of parts to the final product. The quality of marking affects the reliability and safety of the product and is also important for suppressing the occurrence of defective products. Our PCB inline laser marker realizes traceability management through MES integration and supports quality control of automotive parts with high-precision marking. 【Usage Scenarios】 - Marking serial numbers and manufacturing information on automotive parts - Tracking parts on inline production lines - Collecting and managing manufacturing data through MES integration 【Benefits of Implementation】 - Improved quality through high-precision marking - Ensured traceability - Reduced takt time - Efficient data management through MES integration

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Inline Laser Marker for Home Appliances PCB

Simultaneous dual-side marking for reduced takt time. High-precision PCB laser marking system compatible with MES integration.

In the home appliance industry, there is a demand for improved product quality control and traceability. Particularly in electronic circuit boards, where miniaturization and high density are advancing, accurate marking for individual identification is crucial. Low marking accuracy can lead to misidentification during the manufacturing process and the occurrence of defective products, potentially resulting in increased costs. Our PCB inline laser marker achieves high-precision marking and traceability management through MES integration, contributing to the improvement of quality in home appliances. 【Usage Scenarios】 - Individual identification of circuit boards on home appliance production lines - Marking of product model numbers and manufacturing dates - Traceability management 【Benefits of Implementation】 - Quality improvement through high-precision marking - Realization of traceability management through MES integration - Reduction of takt time

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PCB Inline Laser Marker for the Telecommunications Industry

Simultaneous dual-side marking shortens the takt time. Contributes to the acceleration of communication equipment manufacturing.

In the telecommunications industry, the demand for high-speed and high-density PCB substrates is expanding with the proliferation of 5G and IoT. In the manufacturing process, there is a need to efficiently produce high-quality products, and the acceleration of the marking process is particularly important. Traditional marking methods posed risks of quality degradation due to increased tact time and positional misalignment. Our PCB inline laser marker significantly reduces tact time by marking both sides of the substrate simultaneously with its dual-head structure. With XY drive heads and CCD substrate recognition, it achieves high-precision marking, contributing to the reliability of communication devices. 【Usage Scenarios】 - 5G-compatible base stations - High-speed communication routers - IoT devices 【Benefits of Implementation】 - Increased productivity through reduced tact time - Improved quality through high-precision marking - Traceability management through MES integration

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Inline Laser Marker for Medical Devices

Simultaneous dual-side marking for reduced takt time. High-precision marking system compatible with MES integration.

In the medical device industry, the miniaturization and enhancement of product functionality require precision in the marking of PCB substrates. Particularly, since medical devices demand high reliability, the quality of marking is crucial. Low marking accuracy can lead to incorrect information being displayed or affect the quality of the product. Our PCB inline laser marker achieves high-precision marking and traceability management through MES integration, contributing to quality improvement in medical device manufacturing. 【Usage Scenarios】 - Medical electronic devices - Precision measuring instruments - Marking on high-precision components 【Benefits of Implementation】 - Quality improvement through high-precision marking - Traceability management through MES integration - Increased productivity by reducing takt time

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Aerospace PCB Inline Laser Marker

Simultaneous dual-side marking for reduced takt time. High-precision PCB laser marking system compatible with MES integration.

In the aerospace industry, reducing the weight of products is an important challenge. High precision and efficient work are also required for marking PCB substrates. Weight reduction of substrates contributes to improved fuel efficiency in aircraft. Our PCB inline laser marker significantly shortens tact time by marking both sides of the substrate simultaneously with its dual-head structure. 【Usage Scenarios】 - Marking part numbers and manufacturing information on aerospace-related PCB substrates - Marking on substrates aimed at weight reduction 【Benefits of Implementation】 - Increased productivity due to reduced tact time - Realization of traceability management through MES integration - Improved quality through high-precision marking

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PCB Inline Laser Marker for Semiconductors

Simultaneous dual-side marking for reduced takt time. High-precision laser marking system compatible with MES integration.

In the semiconductor industry, precise marking on substrates is essential for fine processing. Especially as products become smaller and more densely packed, ensuring the accuracy of marking and traceability is crucial for quality control and yield improvement. Misalignment and marking defects not only undermine product reliability but also lead to increased manufacturing costs. Our PCB inline laser marker achieves high-precision marking while correcting substrate misalignment through an XY drive head and CCD substrate recognition. It also enables traceability management through MES integration, contributing to quality control and efficiency in semiconductor manufacturing. 【Usage Scenarios】 - Marking of model numbers, serial numbers, logos, etc., on semiconductor substrates - High-speed marking on inline production lines - Management of manufacturing history through MES integration 【Benefits of Implementation】 - Quality improvement through high-precision marking - Reduction of tact time with dual heads - Strengthening of traceability through MES integration - Prevention of substrate contamination with dust suction mechanisms

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Inline Laser Marker for Industrial Machinery

Simultaneous dual-side marking for reduced takt time. High-precision PCB laser marking system compatible with MES integration.

In the industrial machinery sector, precise marking on parts is crucial to ensure product durability and reliability. Products designed to withstand harsh environments require markings that offer high visibility and durability. The quality of the marking also affects product traceability and maintainability, ultimately influencing the overall quality of the final product. Our PCB inline laser marker achieves high-precision marking and traceability management through MES integration, contributing to the enhancement of industrial machinery product quality. 【Usage Scenarios】 - Marking on industrial machine parts used in harsh environments - Marking on parts that require traceability management - Reducing tact time on production lines 【Benefits of Implementation】 - Improved product quality through high-precision marking - Strengthened traceability through MES integration - Reduced tact time with dual-head technology - Extended equipment lifespan through dust suction mechanisms

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PCB Inline Laser Marker for the Security Industry

Simultaneous dual-side marking to prevent counterfeiting. High-precision PCB laser marking system compatible with MES integration.

In the security industry, tamper-resistant marking is required to ensure the authenticity of products. In particular, high-precision marking plays a crucial role in counterfeit prevention. Blurry markings or markings that can be easily erased increase the risk of counterfeiting. Our PCB inline laser marker contributes to counterfeit prevention through high-precision marking and traceability management in collaboration with MES. 【Use Cases】 - Marking serial numbers and manufacturing information on electronic devices - Marking logos and identification information on security devices - Marking special codes for counterfeit prevention on circuit boards 【Benefits of Implementation】 - Counterfeit deterrence through high-precision marking - Tracking and management of manufacturing history through MES integration - Increased productivity with dual heads

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PCB Inline Laser Marker for Wearables

Simultaneous dual-side marking reduces takt time. Contributes to the manufacturing of small wearable devices.

In the wearable device industry, there is a trend towards miniaturization and increased functionality of products, which requires high-precision marking on circuit boards. Particularly, since there is a need to display a lot of information in a limited space, the accuracy and efficiency of marking are crucial. By correcting the misalignment of the circuit board position and achieving high-precision marking, we contribute to the improvement of the quality of wearable devices. 【Usage Scenarios】 - Marking of model numbers, serial numbers, logos, etc., on the circuit boards of small wearable devices - Marking on high-density mounted circuit boards - Traceability management on production lines 【Effects of Implementation】 - Improvement in product quality through high-precision marking - Reduction of takt time through dual heads - Visualization and efficiency of the manufacturing process through MES integration

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Inline Laser Marker for IoT Devices

Simultaneous dual-side marking for reduced takt time. High-precision PCB laser marking system compatible with MES integration.

In the IoT device industry, miniaturization and multifunctionality are advancing, leading to a demand for high-density component mounting on circuit boards. Consequently, marking on circuit boards plays a crucial role in product traceability management. High-precision marking and information management through MES integration are essential for reducing defective products and improving production efficiency. Our PCB inline laser marker addresses these challenges. 【Usage Scenarios】 - Marking on circuit boards of multifunctional IoT devices - Traceability management in the manufacturing process - Reduction of takt time through simultaneous marking on both sides of the circuit board 【Benefits of Implementation】 - Quality improvement through high-precision marking - Strengthened traceability through MES integration - Reduced takt time with dual heads

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Inline Laser Marker for the Energy Industry

Simultaneous dual-side marking for reduced takt time. High-precision PCB laser marking system compatible with MES integration.

In the energy industry, the quality of products and an efficient production system are required. Particularly in fields such as solar power generation systems and storage batteries, accurate marking on PCB substrates is essential for ensuring product reliability. Delays or inaccuracies in marking can lead to decreased production efficiency and quality issues. Our inline laser marker for PCBs achieves high-precision marking and traceability management through MES integration, contributing to improved manufacturing efficiency of energy-related products. 【Application Scenes】 - PCB substrates for solar power generation systems - PCB substrates for storage batteries - PCB substrates for power conditioners 【Benefits of Implementation】 - Reduction of tact time - Improvement of traceability - Strengthening of quality control

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Inline Laser Marker for Robotics PCB

Simultaneous dual-side marking for reduced takt time. High-precision PCB laser marking system compatible with MES integration.

In the robotics industry, high-precision marking of circuit boards is essential to ensure product quality and reliability. Particularly in miniaturized electronic devices, the accuracy of marking directly affects product performance. Misalignment or deficiencies in marking can lead to product malfunctions or the occurrence of defective products. Our PCB inline laser marker achieves high-precision marking and contributes to the improvement of robotics product quality. 【Usage Scenarios】 - Marking on robotic arms and control boards - Marking on circuit boards requiring high-precision positioning - Traceability management through MES integration 【Benefits of Implementation】 - Improved product quality through high-precision marking - Reduced tact time with dual heads - Increased efficiency in production management through MES integration

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