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五輪パッキング

capital8000Ten thousand
number of employees170
addressSaitama/Iruma-shi/Noda 1804-25
phone04-2932-5551
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last updated:Jan 15, 2026
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打ち抜き加工技術 打ち抜き加工技術
お客様成功事例のご紹介 お客様成功事例のご紹介
素材別/用途別加工事例 素材別/用途別加工事例
お客様成功事例のご紹介

お客様成功事例のご紹介

製造現場で発生するムダ・手戻り・品質ばらつきを、打ち抜き加工技術の最適化で根本から解消します。五輪パッキングの知見を基に、お客様の課題を可視化し、安定生産とコスト低減を同時に実現すをご提案します。

Olympic packing production support service

From prototype to mass production, we provide optimal solutions! We also accommodate factory tours, material procurement, and inventory management.

We would like to introduce our production support services for Olympic packing. Leveraging our strong network with material manufacturers, we propose materials that are suitable for the balance of functionality, specifications, and cost. Additionally, we specifically suggest improvement points for designs, taking into account raw material sizes, processability, and component shapes, to support designs that enhance QCD (Quality, Cost, Delivery). 【Design Support】 ■ Material Proposals ■ Design Assistance ■ Plotter Cutting ■ Composite Proposals *For more details, please download the PDF or feel free to contact us.

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Acrylic foam tape die-cutting process

Good workability, easy to apply! No welding, screws, or rivets needed, capable of bonding different materials.

We would like to introduce the punching processing of acrylic foam tape. Acrylic foam tape is a product with features such as shock absorption, vibration dampening, flexibility, sealing properties, and long-term durability. It can be used to bond aluminum panels on exterior walls with steel reinforcements using acrylic foam tape, or to secure automotive emblems, contributing to maintaining aesthetics and enhancing design quality. 【Features】 ■ High adhesion ■ Weather resistance ■ Waterproof ■ Heat resistance ■ Light-blocking and transparency *For more details, please download the PDF or feel free to contact us.

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Multi-process and multi-layer bonded complex precision parts processing

Our packing integration technology achieves cost reduction through component integration!

We would like to introduce our "Multi-Process and Multi-Layer Bonded Composite Precision Parts Processing." By laminating double-sided tape, films, cushioning materials, conductive and insulating materials, we combine the functions of each layer to achieve high performance. Our processing technologies, such as pressing, half-cutting, and full cutting, accommodate various specifications and delivery forms. Additionally, we manufacture products that are ultimately aligned through multiple slitting, laminating, and punching processes. 【Features】 ■ Multi-layer structure ■ High-precision punching processing ■ Multi-process compatibility ■ Customization available *For more details, please download the PDF or feel free to contact us.

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[Usage Example] Plotter Cutting Processing

Developing without molds in just a few days instead of weeks! Introducing a case study that reduced prototype costs by up to 50%.

Our "Plotter Cutting Processing" service enables the realization of prototype shapes without the need for molds, achieving short lead times and low costs. We quickly verify fit, optimize shapes, and evaluate assembly during the design phase, dramatically shortening the validation cycle before mass production starts. We accommodate multiple materials and offer a wide range of products, from punched items to various films, sponges, and tapes. We expedite initial validation through sample processing from our existing inventory. [Case Overview] ■ Issue: Mold production takes 2-3 weeks, resulting in cost and time losses with each shape change. ■ Issue: Delays in sample procurement disrupt evaluation schedules. ■ Solution: Reduced validation lead time to as short as 2-3 days (zero waiting for molds). ■ Solution: Cut prototype costs by up to 50% (zero mold costs plus cost reductions with each shape change). ■ Solution: Material comparisons completed in one cycle (immediate judgment through comparisons of multiple materials with the same shape). *For more details, please download the PDF or feel free to contact us.

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[Use Case] Material Proposal Service

Shortening the material selection period from the conventional 3 weeks to as little as 2 days! Choosing materials without failure from 14,000 types.

Our "Material Proposal Service" leverages a unique network of over 300 material manufacturers and more than 14,000 types of materials to propose suitable materials for development themes in as little as one day. We provide an environment for immediate decision-making by summarizing functional comparisons, performance comparisons, and price comparisons in a single document. Same-day sample shipments are possible from our stock inventory. We offer professional advice on optimal material solutions based on application (insulation, sealing, cushioning, heat dissipation, etc.), contributing to improvements in durability and performance as well as resolving issues. [Case Overview] ■ Challenge: Too many material candidates hindered selection, halting development for several weeks. ■ Challenge: Rising costs of existing materials year after year pressured product profit margins. ■ Challenge: Information from material manufacturers was scattered, requiring enormous time for comparison. ■ Solution: Achieved "up to 30% reduction" through cost optimization via material changes. ■ Solution: Improved development lead times, allowing for earlier market launch timing. *For more details, please download the PDF or feel free to contact us.

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[Usage Example] Jig Development and Design Services

Reduce takt time by up to 40% and improve defect rate by up to 50%! A case study of providing jigs and punched products in bulk.

Our "Jig Development and Design Service" offers a one-package solution for the development and design of dedicated jigs for bonding, as well as the supply of punched products. By simultaneously optimizing jigs and components, we achieve one-action operation, standardization, and reproducibility. The sheet layout design synchronizes the positioning of the jig with the handling, pitch, margins, reference holes, and landmarks. The design of release tabs for double-sided tape (shape, length, orientation, position) is linked to the holding position, addressing issues such as reduced release stress, breakage, and adhesive residue prevention. 【Case Summary】 ■ Issue: Quality variations due to dependence on operators, resulting in misalignment, bubbles, and insufficient pressure. ■ Issue: Sheet layout not suited for the site, leading to unnecessary hand movements and reorientations. ■ Issue: Disconnection between component suppliers and jig manufacturing, causing rework without proper fit. ■ Solution: Takt time reduced by 20-40% (one-action process for release → positioning → pressing). ■ Solution: Defect rate improved by up to 50% (stabilization of surface pressure, addressing sources of tab breakage and adhesive residue). ■ Solution: Training time reduced by 30-60% (jig guides + SOP enable consistent quality reproduction even for newcomers and temporary staff). *For more details, please download the PDF or feel free to contact us.

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[Use Case] Design Support Service

Reduce processing costs by up to 40% and improve defect rates by up to 50%! Optimize raw materials and leverage processing knowledge for comprehensive improvement of QCD.

Our "Design Support Service" identifies "waste" starting from raw material size, processability, and part shape, and concretizes improvement points in the drawings with specialized knowledge in punching processing. We optimize the design by delving into material usage, shape, tolerances, and methods, simultaneously enhancing QCD (Quality, Cost, Delivery). The prototype testing using a plotter accelerates the improvement cycle through mold-less verification. Since confirmation can be done in a short time, we can preemptively suppress the manifestation of risks such as dimensional variation and warping during the transition to mass production. 【Case Overview】 ■ Issue: Although the drawings are complete, processing costs remain high. ■ Issue: Yield is not improving, and material loss and defects are impacting productivity. ■ Issue: The shape is complex, and the processing site points out that "stable production is difficult as it is." ■ Solution: Material yield: from 70% to the 90% range (effect of optimizing raw materials and improving handling). ■ Solution: Processing costs: reduced by up to 30-40% (synergistic effects of shape simplification, labor reduction, and waste reduction). *For more details, please download the PDF or feel free to contact us.

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[Usage Example] Composite Proposal Service

Consolidated the number of parts from 3 to 1 and reduced costs by up to 35%! Achieved a 30% cost reduction through integrated design.

Our "Integration Proposal Service" achieves both cost reduction and assembly labor reduction through the integration of multiple components (lamination, bonding, simultaneous punching). We present designs based on mass production considerations that take into account material properties, processing sequences, and positioning accuracy, thereby comprehensively improving QCD (Quality, Cost, Delivery). By optimizing the processing sequence, we can punch composite materials together, reducing the number of parts and assembly labor. We also design pre-positioning jigs according to tolerance requirements. Our quality assurance framework complies with automotive standards (APQP, PPAP) for process design and traceability. 【Case Summary】 ■ Issue: A large number of parts, leading to increased assembly labor, personnel costs, and management costs. ■ Issue: Misalignment between parts and errors in stacking order are major causes of defects. ■ Issue: Coordination is complicated due to multiple processes and suppliers, resulting in high delivery risks. ■ Solution: Consolidated the number of parts from 3 to 1 (reducing assembly labor by 40-60%). ■ Solution: Reduced costs (materials + labor) by up to 30-35% (in-house bonding and simultaneous punching effects). *For more details, please download the PDF or feel free to contact us.

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Punching processing of acrylic foam double-sided tape for automotive exterior.

Excellent workability! For fixing exterior parts. No welding or screws needed, enhancing design.

In automotive exterior parts, it is essential to secure components without compromising aesthetics and with high durability. Particularly for exterior parts exposed to vibrations and weather conditions while driving, strong adhesion and weather resistance are crucial. Using welding or screws can lead to rust formation and a decrease in design quality. Acrylic foam tape addresses these challenges and facilitates the securing of exterior parts. 【Usage Scenarios】 - Securing emblems - Adhesion of exterior panels - Installation of moldings and other components 【Benefits of Implementation】 - Eliminates the need for welding or screws, improving work efficiency - Secures components without compromising design quality - Provides high durability, protecting exterior parts over the long term

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Punching processing of acrylic foam double-sided tape for railway interior decoration.

Good workability, easy to apply! Beautifying and ensuring safety in the interior of railway vehicles.

In the railway interior industry, a balance between safety and aesthetics is required. Particularly in the interior of vehicles exposed to vibrations and shocks, secure fastening of components and long-term durability are crucial. Fixing with welding or riveting can be labor-intensive and may compromise design aesthetics. The punching processing of acrylic foam tape addresses these challenges. 【Usage Scenarios】 * Fixing interior panels * Adhesion of decorative panels * As cushioning material in areas requiring vibration absorption * Fixing emblems and decorative items 【Benefits of Implementation】 * Reduction in work time * Improvement in design aesthetics * Assurance of long-term durability * Ability to bond dissimilar materials

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Acrylic foam double-sided tape die-cutting process for construction.

Good workability, easy to apply! Solving sealing issues.

In the construction industry, sealing work requires durability and work efficiency. Particularly in securing exterior wall materials and sealing gaps, maintaining long-term performance and reducing construction time are crucial. Improper sealing can lead to leaks and structural issues. Our acrylic foam tape punching process offers high adhesion, weather resistance, and waterproofing, addressing these challenges. 【Usage Scenarios】 - Fixing sashes - Securing exterior wall panels - Alternative to sealing materials - Ensuring waterproofing and airtightness 【Benefits of Implementation】 - Shortened construction time without the need for welding, screws, or rivets - Conformability to curved surfaces - Ability to bond dissimilar materials

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Fixing with acrylic foam double-sided tape for home appliances.

Good work efficiency! Streamlining the assembly of home appliances.

In the home appliance industry, the fixation of parts during the assembly process is a crucial factor that affects quality and productivity. Particularly for products exposed to vibrations and shocks, the reliability of the fixation method is essential. Using welding, screws, or rivets can increase labor hours and potentially lead to higher costs. Acrylic foam tape addresses these challenges and streamlines the assembly of home appliances. 【Usage Scenarios】 * Fixing emblems and nameplates of home appliances * Fixing speaker and display components * Fixing cables and cords 【Benefits of Implementation】 * Reduction in work time * Cost savings * Improvement in design quality

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Fixing and assembling with double-sided acrylic foam tape for furniture.

Improved work efficiency! Easy assembly of furniture without screws or rivets.

In the furniture industry, the quality of products and ease of assembly are important. In particular, there is a demand for improved work efficiency in the assembly process and ensuring the durability of products. Traditional methods of fastening with screws and rivets can be time-consuming and labor-intensive, and may compromise the design aesthetics. Acrylic foam tape addresses these challenges. 【Usage Scenarios】 * Adhesion of furniture frames and panels * Fixing emblems and decorative parts * Bonding dissimilar materials (wood, metal, plastic, etc.) 【Benefits of Implementation】 * Reduction in work time * Beautiful finish * Improved product durability due to high adhesive strength

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Punching processing of acrylic foam double-sided tape for signage.

Good workability, easy to apply! Ideal for attaching signs.

In the signage industry, it is essential to balance durability and design. Particularly for outdoor signs, it is important to maintain aesthetics over the long term without the adhesive parts peeling off, even in harsh environments exposed to wind, rain, and UV rays. Traditional methods of fixing, such as welding, screwing, and riveting, not only require considerable effort during installation but also risk compromising the design of the sign. Our acrylic foam tape punching process addresses these challenges. 【Application Scenes】 - Fixing metal signs - Fixing acrylic signs - Securing components of illuminated signs - Adhesion of outdoor signs - Adhesion of internally illuminated signs 【Benefits of Implementation】 - Eliminates the need for welding, screws, and rivets, improving work efficiency - Enhanced design freedom due to conformity to curved surfaces - Enables adhesion of dissimilar materials, expanding material options - Excellent weather resistance, waterproofing, and heat resistance, improving the durability of signs

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Punching processing of acrylic foam double-sided tape for medical devices.

Good workability, easy to attach! For joining medical devices. No welding, screws, or rivets needed.

In the medical device industry, reliable bonding of components is essential to ensure product safety and reliability. Particularly in medical devices that directly affect patient health, the strength and durability of joints are critical. Improper bonding can lead to equipment failure or performance degradation, potentially jeopardizing patient safety. The die-cutting process of acrylic foam tape allows for strong adhesion of dissimilar materials without the use of welding, screws, or rivets. This simplifies the manufacturing process of medical devices and enhances product reliability. 【Application Scenarios】 - Bonding of medical device housings and components - Assembly of surgical instruments - Fixing of electronic devices 【Benefits of Implementation】 - Elimination of the need for welding, screws, and rivets, leading to improved work efficiency - Capability to bond dissimilar materials, increasing design flexibility - Enhanced product reliability due to shock absorption, vibration dampening, sealing properties, and long-term durability

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Acrylic foam double-sided tape die-cutting process for electronic devices.

Good workability, easy to apply! For heat dissipation measures in electronic devices.

In the electronics industry, as products become smaller and more high-performance, heat dissipation measures have become an important issue. Particularly for electronic components that are prone to heating, effective heat dissipation measures can significantly affect the reliability and lifespan of the products. Low heat dissipation performance can lead to component failure or performance degradation. Our acrylic foam tape die-cutting process contributes to heat dissipation measures in electronic devices with excellent adhesion and adaptability to various shapes. 【Usage Scenarios】 - Fixing electronic components - Bonding heat sinks - Heat dissipation measures within enclosures 【Benefits of Implementation】 - Improved thermal conductivity - Extended component lifespan - Enhanced product reliability

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Punching processing of acrylic foam double-sided tape for aerospace applications.

Achieving lightweight and high strength! For bonding dissimilar materials.

In the aerospace industry, reducing the weight of aircraft is essential for improving fuel efficiency and performance. In particular, it is necessary to achieve weight reduction while maintaining structural strength. Traditional joining methods such as welding and riveting not only lead to increased weight but also carry the risk of damage due to stress concentration. Acrylic foam tape is lightweight yet exhibits high adhesive strength, enabling the bonding of dissimilar materials, thus achieving both weight reduction and high strength. 【Application Scenarios】 - Bonding of aircraft exterior panels - Fixing of interior components - Joining of composite materials 【Benefits of Implementation】 - Improved fuel efficiency due to weight reduction - Reduced working time - Enhanced design quality

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Punching processing of acrylic foam double-sided tape for sports equipment.

Good workability, easy to apply! Contributes to shock absorption in sports equipment.

In the sports equipment industry, the durability and safety of products are important. In particular, materials that absorb impact and reduce the risk of injury are in demand. Acrylic foam tape excels in shock absorption and vibration dampening, contributing to the performance enhancement of sports equipment. Our punching processing technology allows us to provide shapes and sizes tailored to customer needs. 【Usage Scenarios】 * Cushioning material for helmets * Shock-absorbing pads for protectors * Shock-absorbing materials for sports shoes 【Benefits of Implementation】 * Improved product durability * Reduced risk of injury * Enhanced comfort

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Punching processing of acrylic foam double-sided tape for the energy industry.

Good workability, easy to apply! Ideal acrylic foam tape for insulation purposes.

In the energy industry, insulation is essential for ensuring both safety and efficiency. Particularly in power equipment and renewable energy-related devices, high insulation performance is required. Acrylic foam tape meets these needs with excellent insulation properties and long-term durability, contributing to the reliability of the equipment. 【Application Scenarios】 * Insulation of transformers * Fixing and protecting electrical cables * Securing solar panels 【Effects of Implementation】 * Improved safety due to high insulation performance * Reduced maintenance costs due to long-term durability * Shortened construction time due to improved workability

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Automotive Olympic Packing Production Support Service

Deriving optimal solutions from prototyping to mass production, contributing to the lightweighting of automobiles [punching processing of films, double-sided tape, cushions, rubber sheets, and heat dissipation sheets].

In the automotive industry, reducing weight of components has become a crucial challenge for improving fuel efficiency and reducing environmental impact. To achieve weight reduction, optimal solutions are required from material selection to design and manufacturing processes. Our production support service for Olympic packing proposes materials that balance functionality and cost through collaboration with material manufacturers, and supports QCD improvement through design enhancements. 【Usage Scenarios】 - Weight reduction of body and interior components - Weight reduction of engine and drivetrain components - Protection and weight reduction of electrical components 【Benefits of Implementation】 - Improved fuel efficiency due to weight reduction - Cost reduction through a decrease in the number of parts - Shortened development time through support from the design stage

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Production support service for Olympic packing for electronic devices.

From prototype to mass production, we derive optimal solutions! Contributing to heat dissipation measures [punching processing of films, double-sided tape, cushions, rubber sheets, and heat dissipation sheets].

In the electronics industry, as products become smaller and more high-performance, heat dissipation measures have become an important issue. In particular, electronic components with high-density mounting have an increased risk of performance degradation and failure due to heat generation. Appropriate heat dissipation measures are essential for improving product reliability and extending lifespan. Our Olympic packing production support service provides optimal heat dissipation solutions tailored to customer needs, contributing to the enhancement of product quality. 【Usage Scenarios】 - Heat dissipation measures for electronic devices - Selection of thermal conductive sheets - Design tailored to component shapes 【Benefits of Implementation】 - Improved product reliability - Cost reduction - Short delivery times

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Aerospace-oriented Olympic packing production support service

From prototyping to mass production, we derive optimal solutions! [Punching processing of film, double-sided tape, cushioning, rubber sheets, and heat dissipation sheets]

In the aerospace industry, shock resistance is extremely important to ensure the safety and reliability of products. Particularly in aircraft components and spacecraft equipment, it is essential to prevent damage from impacts and maintain the functionality of the equipment. Improper packing can lead to equipment failure or performance degradation. Our support service for the production of Olympic packing provides optimal material selection and design assistance tailored to customer needs, enhancing shock resistance. 【Application Scenarios】 - Aircraft components - Spacecraft equipment - Various products requiring shock resistance 【Benefits of Implementation】 - Improved shock resistance - Enhanced product reliability - Cost optimization - Quality improvement

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Production support service for Olympic packing for the energy industry.

From prototype to mass production, we provide optimal solutions! Supporting problem-solving for insulation applications [punching processing of films, double-sided tape, cushions, and rubber sheets].

In the energy industry, particularly in insulation applications, high reliability and safety are required. The selection of insulation materials and processing accuracy significantly influence the performance and safety of products, making appropriate material selection and design essential. Inappropriate materials or processing can lead to insulation failures, potentially resulting in serious accidents. The production support service for Olympic packing contributes to the improvement of insulation performance through optimal material proposals leveraging a network with material manufacturers and support from the design stage. 【Usage Scenarios】 * High voltage equipment * Electric cables * Transformers 【Benefits of Implementation】 * Improved insulation performance * Enhanced product reliability * Cost optimization

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Production support service for Olympic packing for sports equipment

From prototype to mass production, we provide optimal solutions! Proposing materials ideal for shock absorption [die-cut processing of films, double-sided tape, cushions, and rubber sheets].

In the sports equipment industry, shock absorption performance is crucial for enhancing product safety and durability. Particularly in sports gear that supports athlete performance, it is essential to effectively absorb shocks and reduce the risk of injury. Inappropriate material selection or design can lead to decreased product performance or damage. Our Olympic packing production support service leverages a strong network with material manufacturers to propose materials with excellent shock absorption performance. 【Application Scenarios】 - Cushioning materials for sports shoes - Shock-absorbing pads for protectors - Padding materials for helmets - Shock mitigation materials for sports equipment 【Benefits of Implementation】 - Improved shock absorption performance of products - Enhanced safety for athletes - Increased durability of products - Cost optimization

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Composite precision parts processing for electronic devices with multi-process and multi-layer bonding.

Achieving cost reduction through component integration! Contributing to the miniaturization of electronic devices [Punching processing of film, double-sided tape, cushioning, heat dissipation sheets, and copper foil tape].

In the electronics industry, there is a constant demand for miniaturization and high performance of products. To efficiently achieve multiple functions within a limited space, it is important to increase the integration of components. Traditional configurations with a large number of parts have faced challenges such as increased assembly labor, complexity in material management, and rising costs. Our "multi-process, multi-layer composite precision parts processing" addresses these issues and contributes to the miniaturization and performance enhancement of electronic devices. 【Application Scenes】 - Smartphones - Tablet devices - Wearable devices - Other small electronic devices 【Benefits of Implementation】 - Realization of integration and miniaturization - Reduction in assembly labor - Simplification of material management - Cost reduction (lower manufacturing costs)

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[For Communication] Multi-process and Multi-layer Bonding of Composite Precision Parts Processing

Our packing composite technology achieves cost reduction through component integration! [Punching processing of film, double-sided tape, cushioning, and heat dissipation sheets]

In high-speed transmission systems within the telecommunications industry, the stability and reliability of signals are extremely important. Particularly for components that handle high-frequency signals, it is necessary to minimize the effects of electromagnetic interference and heat. To address these challenges, precise component processing technology and a multilayer structure that combines the functions of each layer are essential. Our "multi-process, multilayer bonded composite precision component processing" has been developed to meet these needs. 【Application Scenarios】 * High-speed communication equipment * Fiber optic communication * Data centers 【Benefits of Implementation】 * Improved signal quality * Miniaturization and lightweight design * Cost reduction

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Multi-process and multi-layer bonding of composite precision parts processing for wearable devices.

Achieving thinner wearable devices through component integration! [Punching processing of film, double-sided tape, cushioning, heat dissipation sheets, and copper foil tape]

In the wearable device industry, miniaturization and lightweight design are always in demand. To achieve a slim profile, it is essential to reduce the number of components and to thin each component. Our multi-process, multi-layer laminated composite precision parts processing combines double-sided tape, films, cushioning materials, and conductive/insulating materials, enabling the integration and thinning of components. This contributes to the miniaturization and lightweight design of wearable devices. 【Usage Scenarios】 - Housing for wearable devices - Battery protection - Display protection - Protection for various sensors 【Benefits of Implementation】 - Thinning of devices - Reduction in the number of components - Reduction in assembly labor - Cost reduction

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Composite precision parts processing for multi-process and multi-layer applications in environmental measurement.

Our packing integration technology achieves cost reduction through component integration! [Punching processing of film, double-sided tape, cushioning, and heat dissipation sheets]

In the environmental measurement industry, the precision of sensor and measuring instrument components is crucial for achieving high-sensitivity measurements. In particular, to capture minute signals, fine structures and high reliability of the components are required. Inappropriate components can lead to measurement errors and noise, potentially hindering accurate data acquisition. Our multi-process and multi-layer bonded composite precision parts processing contributes to the performance enhancement of high-sensitivity environmental measurement devices through high-precision punching and multi-layer structures. 【Application Scenarios】 - High-sensitivity sensors - Precision measuring instruments - Environmental monitoring systems 【Benefits of Implementation】 - Achievement of high-precision measurement results - Miniaturization and lightweighting of products - Assurance of long-term reliability

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[For Robots] Multi-process and Multi-layer Bonding of Composite Precision Parts Processing

Achieving high performance in robots through component integration! [Punching processing of film, double-sided tape, cushioning, heat dissipation sheets, and copper foil tape]

In the robotics industry, miniaturization, lightweight design, and high functionality are in demand. In particular, improving the durability of moving parts and protecting sensors and electronic components are crucial. Traditional structures with a large number of components can lead to increased assembly labor and a higher risk of failure. Our "multi-process, multi-layer bonded composite precision parts processing" addresses these challenges through component integration. 【Application Scenarios】 - Robot joints - Sensor protection - Insulation of electronic circuit boards - Battery protection 【Benefits of Implementation】 - Space-saving through integration and miniaturization - Cost reduction through decreased assembly labor - Performance improvement of robots through performance optimization - Simplification of material management - Cost reduction (lower manufacturing costs)

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Composite precision parts processing for multi-process and multi-layer bonding in semiconductor manufacturing.

Our packing integration technology achieves cost reduction through component integration! [Punching processing of film, double-sided tape, cushioning, and heat dissipation sheets]

In the semiconductor manufacturing industry, there is a demand for miniaturization and high performance of products. In microfabrication, the precision and reliability of components are crucial, as even slight misalignments or foreign objects can significantly impact product performance. Our "multi-process, multi-layer bonded composite precision parts processing" addresses these challenges and provides high-quality products. 【Application Scenarios】 - Packing for wafer transport - Gaskets for semiconductor manufacturing equipment - Protective materials for fine components 【Benefits of Implementation】 - High-precision component supply in microfabrication - Reduced risk of foreign object contamination - Improved product yield

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Aerospace-oriented multi-process and multi-layer composite precision parts processing

Achieving weight reduction and cost savings through component integration! 【Punching processing of film, double-sided tape, cushioning, heat dissipation sheets, and copper foil tape】

In the aerospace industry, reducing the weight of aircraft is essential for improving fuel efficiency and, consequently, reducing operational costs. In particular, aircraft components require high durability and functionality while being lightweight. Traditionally, functionality was achieved by combining multiple parts, which led to increased weight and assembly labor. Our "multi-process, multi-layer composite precision parts processing" achieves both weight reduction and enhanced functionality through the integration of components. 【Application Scenarios】 * Aircraft interior components * Avionics * Parts for space exploration vehicles 【Benefits of Implementation】 * Improved fuel efficiency through weight reduction * Cost reduction by decreasing the number of parts * Increased efficiency by reducing assembly labor

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Optical and high-resolution multi-process and multi-layer bonded composite precision parts processing.

Our packing composite technology achieves cost reduction through component integration! [Punching processing of film, double-sided tape, cushioning, and heat dissipation sheets]

In the field of optics and high resolution, high-precision components are required and become a crucial factor that influences product performance. In particular, achieving high resolution necessitates precise alignment of components and the selection of materials that optimize optical properties. Inappropriate component selection or processing can lead to image distortion and reduced contrast. Our "multi-process, multi-layer bonded composite precision machining" addresses these challenges. 【Application Scenarios】 - High-resolution cameras - Optical lenses - Displays 【Benefits of Implementation】 - Supply of high-precision components - Optimization of optical performance - Improvement of product reliability

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Composite precision parts processing with multi-process and multi-layer bonding for the energy industry.

Achieve cost reduction through component integration! Contributing to energy efficiency. [Punching processing of films, double-sided tape, cushions, and heat dissipation sheets]

In the energy industry, energy conservation and cost reduction are important challenges. In particular, in power supply systems and renewable energy equipment, there is a demand for miniaturization, lightweight design, and high performance of components. Multi-layered components are essential to meet these needs. Our "multi-process, multi-layer bonding of composite precision parts processing" addresses these challenges through component integration, contributing to improved energy efficiency. 【Application Scenes】 - Solar power panels - Wind power turbines - Battery storage systems - Power supply systems 【Effects of Implementation】 - Reduction in the number of components - Reduction in assembly man-hours - Cost reduction - Performance optimization

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Automotive multi-process and multi-layer bonded precision parts processing

Our packing integration technology achieves cost reduction through component integration! [Punching processing of film, double-sided tape, cushioning, and heat dissipation sheets]

In the automotive industry, high-precision part processing is required to enhance product reliability and safety. Particularly for automotive components exposed to vibrations and temperature changes, dimensional accuracy and durability are essential for maintaining product performance. Improper processing can lead to component failure or performance degradation. Our "multi-process, multi-layer bonded composite precision part processing" achieves high performance by laminating double-sided tape, films, cushioning materials, conductive and insulating materials, and combining the functions of each layer. We accommodate various specifications and delivery forms through processing technologies such as press processing, half-cutting, and full cutting. 【Application Scenarios】 - Automotive electronic components - Body joints - Interior parts 【Benefits of Implementation】 - Integration and miniaturization - Reduction in assembly man-hours - Performance optimization

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