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  3. レスター 本社
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レスター 本社

EstablishmentOctober 1, 2009
capital438300Ten thousand
addressTokyo/Minato-ku/10-9 Konan 2-chome, Restar Building
phone03-5781-1011
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last updated:Aug 22, 2025
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高速FAKRA-Mini(HFM)相互接続システム 高速FAKRA-Mini(HFM)相互接続システム
Molex Molex
コラム コラム
OCP ORV3 Rack Coeur(大電流コネクター) OCP ORV3 Rack Coeur(大電流コネクター)
SoC(ASIC)基板用メザニンコネクタ接続 SoC(ASIC)基板用メザニンコネクタ接続
内部配線“BiPass”技術 内部配線“BiPass”技術
MX-DaSHコネクター MX-DaSHコネクター
NearStackコネクター システム NearStackコネクター システム
KickStartコネクターシステム KickStartコネクターシステム
Sliverカードエッジコネクター Sliverカードエッジコネクター
Perceptロードノイズ キャンセリング(RNC)センサー Perceptロードノイズ キャンセリング(RNC)センサー
光トランシーバー 光トランシーバー
セミナー セミナー
静電スイッチ 静電スイッチ
Mirror Mezzコネクター Mirror Mezzコネクター
Micro-Lock Plusコネクター Micro-Lock Plusコネクター
FPC/FFCコネクタ FPC/FFCコネクタ
Coeur (大電流コネクタ) Coeur (大電流コネクタ)
ヴァーチャルショールーム ヴァーチャルショールーム
手動圧着工具 手動圧着工具
防水電線対電線用コネクターシステム (Squbaコネクター) 防水電線対電線用コネクターシステム (Squbaコネクター)
FiTファミリー FiTファミリー
class="retina-image"

[For Finance and Transactions] NearStack PCIe Connector

High-density, thin SI solutions that support the acceleration of financial transactions.

In the financial industry, transaction systems require high-speed and stable data communication. Particularly in high-frequency trading and real-time analysis, even slight delays are unacceptable, and the ability to process vast amounts of data instantaneously is essential. Ensuring signal integrity (SI) between components is crucial for maintaining system reliability and performance. Our "NearStack PCIe Connector" offers a high-density and thin solution that interconnects your financial system components with top-level SI performance, designed to meet the requirements of PCIe Generation 5. [Use Cases] - Interconnection between servers in high-frequency trading systems - Building a real-time data analysis infrastructure - Establishing high-speed networks within financial data centers [Benefits of Implementation] - Improved transaction processing speed - Stable operation of the entire system - Enhanced data center efficiency through space-saving design

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[Medical Use] OCP Compatible NearStack PCIe Connector

Connection solutions that support the acceleration and high density of medical image processing.

In the field of medical imaging, rapid acquisition and processing of high-resolution data are essential. In particular, high-speed and stable data transfer is crucial for improving diagnostic accuracy and real-time analysis. Insufficient data transfer capability can lead to delays in diagnosis and reduced processing power, potentially compromising the efficiency of medical settings. Our "OCP-Compatible NearStack PCIe Connector" supports high-speed data transfer of PCIe Generation 5, contributing to the performance enhancement of medical imaging processing systems. 【Use Cases】 - Real-time processing of high-resolution medical images (CT, MRI, etc.) - Development of AI-assisted image diagnostic support systems - Medical devices requiring high-speed data logging 【Benefits of Implementation】 - Reduction in diagnosis time and increased efficiency - Improved diagnostic accuracy through more detailed image analysis - Enhanced overall processing capability of the system

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NearStack PCIe Connector for Autonomous Driving

High-density, thin SI performance connections that support real-time processing.

In autonomous driving systems, real-time processing of sensor data and control signals is essential. In particular, to transmit vast amounts of data quickly and accurately, high signal integrity (SI) and reliable interconnections are required. Inadequate connections can lead to data delays or errors, potentially affecting the safety of the system. Our OCP-compliant NearStack PCIe connector provides a high-density and slim solution to interconnect your autonomous driving system components with top-level SI performance, thanks to its design that meets the requirements of PCIe Generation 5. 【Use Cases】 - High-speed data transmission between in-vehicle computers and sensors - Building real-time control systems - In-vehicle ECUs that require high-density implementation 【Benefits of Implementation】 - Improved real-time performance - Enhanced overall system reliability - Contribution to space-saving design

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NearStack PCIe for Edge Computing

Achieving the required SI performance for distributed processing in a compact and thin design.

In the field of edge computing, particularly in distributed processing, it is essential for numerous components to work together to achieve fast and stable data communication. Maintaining signal integrity (SI) between each component and high-density implementation in limited space are crucial. Inadequate SI performance can lead to data errors and communication delays, potentially decreasing the reliability of distributed systems. The OCP-compliant NearStack PCIe connector supports the requirements of PCIe Generation 5 and addresses these challenges with top-level SI performance and a high-density, slim design. 【Usage Scenarios】 - Interconnection between components of edge servers - Distributed data processing nodes - IoT gateways 【Benefits of Implementation】 - Improved processing capability through high-speed data transfer - Increased flexibility in system design due to space-saving - Assurance of system reliability through stable communication

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[For Communication] OCP Compatible NearStack PCIe Connector

High-density, thin solutions that achieve low latency in the communications field.

In the telecommunications industry, it is important to minimize data transmission delays in services that require real-time capabilities. Particularly in systems that demand high-speed data processing and response times, even slight delays can impact the quality of service. Our OCP-compliant NearStack PCIe connector supports the requirements of PCIe Generation 5 and contributes to low latency by interconnecting system components with top-level SI performance. 【Use Cases】 - High-speed networking equipment - Data center infrastructure - Real-time processing systems 【Benefits of Implementation】 - Reduction of data transmission delays - Improvement of overall system response times - Space-saving through high-density implementation

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OCP-Compatible NearStack PCIe Connector for HPC

High-density, thin SI performance connections that support parallel processing in HPC.

In the field of HPC (High-Performance Computing), high-speed and stable data transfer among numerous components is essential for parallel processing. Particularly in PCIe Generation 5 systems, high signal integrity (SI) and a large number of pin connections are required; if these are not met, it can lead to reduced processing speeds and overall system instability. Our "OCP Compliant NearStack PCIe Connector" is a cable solution designed to meet the requirements of PCIe Generation 5 to address these challenges. It provides a high-density and slim solution for interconnecting your HPC system components with top-level SI performance. 【Use Cases】 - High-speed data transfer between servers in HPC clusters - Maximizing bandwidth in GPU computing environments - Stabilizing data transfer in large-scale simulations 【Benefits of Implementation】 - Maximizes the performance of PCIe Generation 5, improving processing speeds - Achieves space-saving through high-density implementation - Enhances overall system reliability with stable SI performance

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NearStack PCIe Connector for AI/ML

High-density solutions for AI/ML computations that interconnect with SI performance.

In the field of AI/ML, computational processing requires fast and stable data transfer. In particular, data communication between computational units such as GPUs is crucial for maximizing processing capabilities. Insufficient interconnections can become a bottleneck, potentially leading to a decline in computational performance. Our OCP-compliant NearStack PCIe connector supports the requirements of PCIe Gen 5 and provides a high-density, thin solution for interconnecting system components with top-level signal integrity performance. 【Use Cases】 - GPU interconnection in AI/ML servers - High-performance computing systems - Interconnection between computational nodes in data centers 【Benefits of Implementation】 - High-speed data transfer supporting PCIe Gen 5 (32Gbps) - Space-saving through high-density implementation - Maintenance of computational performance through stable signal integrity

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NearStack PCIe Connector for Data Centers

High-density, thin-profile SI performance solutions that support the acceleration of data centers.

In the acceleration of data centers, maintaining signal integrity (SI) between system components and high-density implementation in limited space are required. Especially with high-speed interfaces from PCIe Generation 5 onwards, a decline in signal quality can impact the overall performance of the system. Our "NearStack PCIe Connector" is a specially designed cable solution that supports PCIe Generation 5 requirements to address these challenges. 【Use Cases】 - High-speed data transfer between servers, storage, and networking equipment - Data center environments requiring high-density implementation - System expansion to PCIe Generation 5 and 6 【Benefits of Implementation】 - Stable high-speed communication with top-level SI performance - Space-saving design due to high density and slim profile - Roadmap support for future generations

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NearStack 100 Ohm for Industrial Automation

Implement an optimized direct-to-cable connector system to maximize system performance!

In the field of industrial automation, it is essential to maintain stable signal quality that is resistant to noise in control signal transmission. Particularly in control systems that require real-time performance, delays or degradation of signals can directly lead to malfunctions or decreased productivity. Therefore, a connector system that achieves both high reliability and high-speed transmission is indispensable. Our "OCP Compliant NearStack 100 Ohm Connector" has been developed to meet such needs. 【Usage Scenarios】 - Control lines for industrial robots - Sensor connections in automated production lines - Communication between PLCs (Programmable Logic Controllers) 【Benefits of Implementation】 - Improved system reliability through stable control signal transmission - Enhanced production efficiency through high-speed data transfer - Space-saving design due to compact packaging

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NearStack 100 Ohm Connector for Medical Devices

Connector system to maximize the imaging diagnostic performance of medical devices.

In the field of medical devices, particularly in imaging diagnostics, high-resolution data transmission and stable signal quality are essential. Deterioration of fine signals can impact diagnostic accuracy, making reliable data transfer indispensable. Our "OCP-compliant NearStack 100 Ohm Connector" is designed to meet these demands. It is compatible with Molex's BiPass I/O and achieves high-speed data transmission in a compact package. 【Application Scenarios】 - High-resolution imaging diagnostic devices - Real-time image processing systems - Data loggers 【Benefits of Implementation】 - Faithful transmission of image data - Support for improved diagnostic accuracy - Enhanced overall system reliability

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[For Broadcasting and Media] NearStack 100 Ohm

An optimized direct-to-cable connector system that supports high-quality transmission.

In the broadcasting and media industry, high-quality transmission requires minimizing signal degradation and achieving stable data transfer. Particularly when handling large-capacity data such as high-resolution video and multi-channel audio, the impedance matching of connectors and the quality of connections with cables can directly lead to issues like video distortion and audio dropouts. To address these challenges, our "NearStack 100 Ohm Connector" is optimized for applications requiring 100-ohm impedance, featuring a compact package compatible with Molex's BiPass I/O. 【Usage Scenarios】 - High-quality video transmission - Interconnection between devices in the studio - Signal transmission during live broadcasts 【Benefits of Implementation】 - Maintenance of signal quality - Stable data transfer - Improved system performance

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[For IoT Platform] NearStack 100 Ohm

Implement an optimized direct-to-cable connector system to maximize system performance!

In the field of IoT platforms, there is a demand for stable and high-speed connections for a large number of devices. In particular, the reliability and efficiency of data transmission are directly linked to the overall performance of the platform. Inadequate connections can lead to data loss and communication delays, potentially resulting in a decline in the functionality of the entire system. Our OCP-compliant NearStack 100-ohm connector provides a solution to these challenges, offering compatibility with Molex's BiPass I/O in a compact package. 【Use Cases】 - Aggregation of IoT devices - High-speed communication within data centers - Edge computing environments 【Benefits of Implementation】 - Improved system performance - Reliable data transmission - Space-saving design

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NearStack 100 Ohm Connector for Autonomous Driving

Connector for optimizing sensor integration in autonomous driving systems.

In autonomous driving systems, high-precision data integration from numerous sensors is required. In particular, impedance matching in signal transmission between sensors directly affects the accuracy of the data and the overall reliability of the system. Improper impedance can lead to signal degradation and noise interference, potentially resulting in malfunctions of the autonomous driving system. Our OCP-compliant NearStack 100-ohm connector is optimized for applications requiring 100-ohm impedance, ensuring stable signal transmission in high-density sensor integration. 【Use Cases】 - Sensor harnesses for autonomous vehicles - ECU connections for ADAS (Advanced Driver Assistance Systems) - Inter-sensor communication for LiDAR, cameras, radar, etc. 【Benefits of Implementation】 - Improved reliability of sensor data - Stabilization of overall system performance - Efficient use of wiring space

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[For HPC] NearStack 100 Ohm Connector

Direct-to-Cable Connector System to Maximize System Performance

In the field of high-performance computing (HPC), parallel processing requires the transmission of large amounts of data quickly and reliably. In particular, maintaining signal quality and low latency is crucial to avoid becoming a bottleneck in computational processing. Our OCP-compliant NearStack 100-ohm connector is designed to meet these demands and contributes to the overall performance improvement of the system. 【Use Cases】 - Large-scale scientific and technical calculations - AI/machine learning training and inference processing - Inter-server connections within data centers 【Benefits of Implementation】 - Reduced processing time through high-speed data transmission - Improved computational accuracy by maintaining signal quality - Optimization of overall system performance

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NearStack 100 for Edge Computing

Direct-to-Cable Connector System for Maximizing System Performance

In real-time processing of edge computing, it is essential to minimize data transmission delays and enhance system responsiveness. In particular, the fast and stable transmission of sensor data and control signals is crucial for real-time decision-making and execution. Transmission loss and noise can lead to processing delays and malfunctions, potentially affecting the overall performance of the system. Our OCP-compliant NearStack 100 Ohm connector addresses these challenges by providing a direct-to-cable connector system compatible with Molex's BiPass I/O in a compact package. 【Use Cases】 - High-speed data communication between edge devices - Building real-time control systems - High-density wiring within data centers 【Benefits of Implementation】 - Improved overall system response speed - Ensured stability of data transmission - Increased flexibility in equipment placement due to space-saving design

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NearStack 100 for Cloud Computing

Optimized direct-to-cable connector system to maximize system performance.

In a cloud computing environment, system scalability is required to handle the increasing volume of data and traffic. In particular, fast and stable data transfer directly impacts the reliability and performance of service delivery. Insufficient connectivity can lead to delays and data loss, potentially resulting in a decline in user experience and an increase in operational costs. Our OCP-compliant NearStack 100 Ohm connector provides an optimized direct-to-cable connector system that maximizes system performance in response to such challenges. 【Usage Scenarios】 - Interconnection between servers in data centers - High-speed data transfer between network devices - Collaboration with storage systems 【Benefits of Implementation】 - Improved scalability through high-speed data transfer - Optimization of overall system performance - Stabilization of operations through reliable connectivity

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[For 5G/6G] NearStack 100 Ohm Connector

Direct-to-Cable Connector System for Maximizing System Performance

In 5G/6G communication systems, achieving low latency requires minimizing signal loss and ensuring high-speed, stable data transmission. Particularly in infrastructure such as base stations and data centers, high-density implementation and reliable connections are essential. Improper connectors can lead to signal degradation and delays, potentially resulting in a decrease in overall system performance. Our OCP-compliant NearStack 100-ohm connector is designed to address these challenges. 【Usage Scenarios】 - 5G/6G base station infrastructure - Intra-data center networks - Connections between high-speed communication devices 【Benefits of Implementation】 - Improved signal quality - Reduced system latency - Support for high-density implementation

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[For AI/ML] NearStack 100 Ohm Connector

Direct connector for optimizing data transfer in AI/ML.

In the AI/ML field, transferring large amounts of data quickly and reliably is crucial for maximizing system performance. Particularly in the training and inference of complex models, bottlenecks in data transfer can impact processing speed. Our "OCP-Compatible NearStack 100 Ohm Connector" is designed as a compact package compatible with Molex's BiPass I/O to address these data transfer challenges. Utilizing 34AWG Twinax cables, we offer high-speed jumper products in variations of 8 differential pairs and 16 differential pairs, contributing to improved data transfer performance in AI/ML systems. 【Use Cases】 - High-speed data transfer for AI/ML systems - Data integration between servers - Connection with storage systems 【Benefits of Implementation】 - Improved system performance - Stabilization of data transfer - Enhanced installation efficiency through space-saving design

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[For Communication Infrastructure] NearStack 100 Ohm Connector

Direct-to-Cable Connector System for Maximizing System Performance

In the telecommunications infrastructure industry, high-speed and stable signal transmission is required. Particularly in data centers and network equipment, it is important to prevent signal degradation and maintain the overall performance of the system. Inadequate connector systems can lead to increased signal noise and transmission errors, potentially resulting in a decline in communication quality. Our "NearStack 100 Ohm Connector" is compatible with Molex's BiPass I/O and addresses these challenges in a compact package. 【Usage Scenarios】 - Network equipment requiring high-speed data transmission - Server backplanes where signal stability is crucial - Infrastructure development within data centers 【Benefits of Implementation】 - Optimization of system performance - Improvement of signal quality - Achievement of reliable connections

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NearStack 100 Ohm for Data Centers

Direct-to-Cable Connector System for Maximizing System Performance

In a high-speed communication environment of data centers, the stability of signals and the maintenance of transmission quality are required. Particularly within server racks, where density is increasing, efficient wiring in limited space and reliable connections are essential. Inadequate connector systems can lead to signal loss and increased noise, potentially resulting in a decline in overall system performance. Our "OCP-compliant NearStack 100 Ohm Connector" addresses these challenges with a compact package that is compatible with Molex's BiPass I/O. 【Usage Scenarios】 - Interconnection between servers in data centers - High-speed data transmission between network devices - High-density wiring environments

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OCP-Compatible KickStart Connector System for Manufacturing Industry

An OCP-recommended internal I/O connector solution that contributes to productivity improvement.

In the manufacturing industry, there is a demand for increased efficiency and stable operation of production lines. Particularly in the construction of servers and storage systems, the complexity of cable management can lead to decreased work efficiency and potential issues. In response to these challenges, our OCP-compliant KickStart connector system simplifies cable management by integrating power circuits and signal circuits into a single cable, contributing to improved efficiency and reliability in implementation tasks. 【Usage Scenarios】 - Construction and maintenance of servers and storage systems - Automation and labor-saving of production lines - Equipment enhancement and upgrades in data centers 【Benefits of Implementation】 - Reduction in work time due to simplified cable management - Decreased risk of wiring errors and contact failures - Improved overall system reliability and reduced downtime

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Medical OCP-Compatible KickStart Connector System

Internal I/O connector recommended by OCP that supports medical data sharing.

In the healthcare industry, the accurate and rapid sharing of patient data is essential for improving the quality of diagnosis and treatment. Particularly in the data integration between medical devices, reliable connections and the reduction of the complexity of managing multiple cables are required. To maintain data integrity and enhance the operational efficiency of the entire system, simple and robust connection solutions are necessary. The OCP-compliant KickStart connector system provides an all-in-one cable-based connection system that meets the needs of medical settings. 【Use Cases】 - Data transfer between medical devices - Server boot drive connections - Building data sharing systems 【Benefits of Implementation】 - Reduction of multiple cable management - Ease of implementation - Reliable data transfer

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[For Finance] OCP-Compatible KickStart Connector System

A boot drive connection solution recommended by OCP that supports high availability of the financial system.

High availability of systems in the financial industry is extremely important from the perspective of business continuity. Unexpected system outages can lead not only to operational interruptions but also to a loss of trust from customers. In particular, the server's boot drive is a core component responsible for system startup, and its connection requires stability and reliability. Our "OCP-compliant KickStart Connector System" is an OCP-recommended internal I/O connector solution designed to support high availability in such financial systems. 【Use Cases】 - Boot drive connections in core servers of financial institutions - Ensuring high reliability in mission-critical systems - Improving server maintenance efficiency in data centers 【Benefits of Implementation】 - Reduced risk of system downtime through stabilization of boot drive connections - Increased efficiency in installation and maintenance tasks through simplified cable management - Easier system design and procurement through standardized connections

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KickStart Connector System for Smart Cities

OCP-recommended internal I/O connectors that support infrastructure collaboration for smart cities.

In the infrastructure integration of smart cities, stable data communication and power supply between diverse devices are required. In particular, reliable connections are crucial for sensor networks and control systems that are essential for maintaining and improving urban functions. Inadequate connections can lead to a decline in overall system performance and unexpected downtime. The OCP-compliant KickStart connector system offers a flexible and easy-to-implement all-in-one connection solution to address these challenges. 【Use Cases】 - Urban infrastructure monitoring systems - Traffic management systems - Energy management systems - Public facility management systems 【Benefits of Implementation】 - Simplification of multiple cable management - Increased efficiency of installation work - Improved overall system reliability - Enhanced flexibility in equipment placement due to space-saving design

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KickStart Connector System for Autonomous Driving

OCP recommended connector optimized for real-time data processing.

In autonomous driving systems, it is essential to process vast amounts of real-time data quickly and reliably. In particular, reliable connections are crucial for data collection from sensors and communication between ECUs. Delays or interruptions in data can directly lead to system malfunctions or decreased safety. The OCP-compliant KickStart connector system is an OCP-recommended internal I/O connector solution designed specifically for boot drive applications to address these challenges. 【Use Cases】 - Boot drive connections for autonomous driving ECUs - Connections to sensor data processing units - Stabilization of in-vehicle networks 【Benefits of Implementation】 - Space-saving through simplified management of multiple cables - Streamlined wiring work by consolidating power and signals into a single cable - Easier system design through standardized connections

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KickStart Connector System for IoT Device Management

OCP-recommended internal I/O connector optimized for IoT device management.

In the field of IoT device management, stable operation and efficient management of numerous devices are required. In particular, the reliable connection of server boot drives is a crucial factor that affects the overall reliability of the system. Uncertain connections can increase the risk of data loss and system downtime, potentially leading to higher management costs. The OCP-compliant KickStart connector system provides a standardized connection solution to address these challenges, contributing to the efficiency and reliability of device management. 【Use Cases】 - Boot drive connection for IoT gateways - Power and signal supply for edge computing devices - Installation and maintenance of IoT devices within data centers 【Benefits of Implementation】 - Space-saving through simplified cable management - Increased efficiency in implementation work and reduced labor costs - Improved overall system reliability

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KickStart Connector for Edge Computing

A boot drive connection solution recommended by OCP that achieves low latency.

In the field of edge computing, real-time processing is required, making the system's response speed, or low latency, extremely important. Edge devices that collect, analyze, and process data on-site must have rapid startup and stable operation, and a reliable and efficient connection to the boot drive directly impacts system performance. Insufficient connections can lead to delays and a decrease in overall system responsiveness. The OCP-compliant KickStart connector system is an OCP-recommended internal I/O connector solution designed specifically for boot drive applications, addressing this challenge. 【Use Cases】 - Rapid startup of edge servers - Acceleration of data processing - Improvement of real-time analysis accuracy 【Benefits of Implementation】 - Enhanced overall system response speed - Assurance of real-time capability through reduced latency - Increased reliability through stable boot drive connections

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OCP-Compatible KickStart Connector System for HPC

Optimized OCP recommended boot drive connection solution for parallel processing.

In the field of HPC and parallel processing, a large number of servers work together to efficiently perform vast computational tasks, requiring stable system operation and ease of management. Particularly, the connection of boot drives is directly linked to system startup and data access, making reliability and ease of implementation crucial. Improper cable management and connections can lead to decreased performance and potential issues for the entire system. The OCP-compliant KickStart connector system addresses these challenges by integrating power and signal circuits into a single cable and providing standardized connections, simplifying and enhancing the efficiency of boot drive connections in HPC environments. 【Use Cases】 - Building large-scale parallel computing clusters - Server maintenance in high-performance computing environments - Expansion and replacement of boot drives in data centers 【Benefits of Implementation】 - Reduction of management workload through simplified cable wiring - Increased efficiency and reduced time for implementation tasks - Improved overall system reliability and stable operation

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KickStart Connector System for AI/ML

An internal I/O connector solution recommended by OCP to enhance computational efficiency.

Improving computational efficiency in the AI/ML field is an extremely important factor in today's world, where large-scale data processing and high-speed computing capabilities are required. In particular, in server boot drive applications, rapid startup and stable data access affect the processing start time and overall throughput. Managing multiple cables can lead to wiring complexity and hinder airflow, potentially impacting the overall performance of the system. Our OCP-compliant KickStart connector system provides an all-in-one solution that is flexible, easy to implement, and integrates power and signal circuits into a single cable to address these challenges. 【Use Cases】 - Boot drive connections for AI/ML processing servers - Server construction and maintenance in data centers - Simplifying wiring in high-density server environments 【Benefits of Implementation】 - Accelerated processing due to reduced server startup time - Improved work efficiency through simplified cable management - Contribution to stable operation by enhancing airflow within the system

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KickStart Connector for Cloud Computing

An OCP-recommended internal I/O connector solution that supports scalability.

In a cloud computing environment, frequent server expansions and configuration changes make ensuring scalability crucial. Particularly in the connection of boot drives, rapid and reliable connections are required, and the complexity of cable management can lead to decreased operational efficiency. Our OCP-compliant KickStart connector system is designed specifically for boot drive applications as an OCP-recommended internal I/O connector solution to address these challenges. 【Use Cases】 - Server expansions and configuration changes in data centers - Expansion of cloud infrastructure - Streamlining cable management in high-density server environments 【Benefits of Implementation】 - Simplification and acceleration of boot drive connections - Improved operational efficiency through reduced cable management burden - Easier system design through standardized connections

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OCP-Compatible KickStart Connector System for the Telecommunications Industry

OCP recommended connectors to enhance the reliability of communication infrastructure.

In the telecommunications industry, high reliability is required for the stable operation of infrastructure and the continuous provision of services. In particular, reliable power supply and signal transmission are essential for server boot drive connections, and the complexity of cable management can hinder maintainability and prompt responses during failures. The OCP-compliant KickStart connector system addresses these challenges by integrating power and signal circuits into a single cable, contributing to improved reliability of telecommunications infrastructure while ensuring ease of implementation and robustness. 【Usage Scenarios】 - Server boot drive connections - Infrastructure construction within data centers - Maintenance of network equipment 【Benefits of Implementation】 - Improved work efficiency through simplified cable management - Enhanced system stability due to increased connection reliability - Improved equipment installation efficiency through space-saving design

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KickStart Connector System for Data Centers

OCP-recommended internal I/O connector that supports high-speed connections in data centers.

In data centers, reliable internal connections are essential to achieve stable server operation and high-speed data transfer. Particularly in environments with numerous servers, efficient cable management and secure connections are crucial for reducing operational costs and preventing downtime. Improper cable connections can lead to signal instability and failures, potentially impacting the overall performance of the data center. The OCP-compliant KickStart connector system addresses these challenges by integrating power and signal circuits into a single cable, balancing ease of implementation with robustness. 【Usage Scenarios】 - Connection of server boot drives - Internal I/O connections within the data center - System construction in OCP environments 【Benefits of Implementation】 - Simplification of cable management - Increased efficiency in implementation tasks - Achievement of reliable connections

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OCP-Compatible Sliver Card Edge Connector for Medical Devices

High-speed, space-saving connector for medical device image processing.

In the field of medical device image processing, high-resolution data requires fast and stable transmission. Particularly in real-time image analysis and large data processing, a reliable interface is essential. Insufficient data transfer speeds and unstable connections can lead to delays in diagnosis and decreased accuracy. The OCP-compliant Sliver card edge connector meets the demands of high-speed image processing with a data transfer speed of 32Gbps and a roadmap to 56Gbps. 【Use Cases】 - High-resolution medical imaging devices - Real-time image analysis systems - Data loggers 【Benefits of Implementation】 - Improved image processing performance - Overall system acceleration - Reliable data transmission

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Sliver card edge connector for industrial automation

High-speed, space-saving connectors for industrial automation control.

In the field of industrial automation control, there is a demand for high density and high-speed data transmission. Especially in control systems that require real-time performance, reliable data communication is essential. Delays or errors in communication can directly lead to production line stoppages or a decline in product quality. Our OCP-compliant Sliver card edge connector addresses these challenges and enables stable high-speed communication. 【Use Cases】 - Interconnection between industrial PC boards - High-speed data logging systems - Robot control systems 【Benefits of Implementation】 - High-density mounting of equipment due to space-saving design - Improved real-time control through high-speed data transfer - High reliability due to OCP certification

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Sliver Card Edge Connector for Network Storage

Bandwidth expansion, high-speed transmission solution.

In the network storage industry, high-speed and large-capacity data transfer is required to cope with increasing data traffic. In particular, securing bandwidth is essential to maximize the performance of storage systems. A lack of bandwidth can lead to reduced data access speeds and potential bottlenecks in the entire system. The OCP-compliant Sliver card edge connector addresses these challenges as a high-speed solution that demonstrates SI performance of up to 32Gbps, with a roadmap to 56Gbps. 【Usage Scenarios】 - Storage systems requiring high-speed data transfer - Board-to-board connections - Copper flex and cable connections 【Benefits of Implementation】 - Improved data transfer speeds - Enhanced system performance - Increased space efficiency

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Sliver card edge connector for IoT gateway

Accelerate data aggregation for IoT gateways! 32Gbps compatible connector.

In the field of IoT gateways, there is a demand for the stable and timely processing of vast amounts of data aggregated from numerous sensors and devices. This is especially critical for applications that require real-time capabilities and in scenarios that utilize edge computing, where high-speed and reliable data transmission is essential. Insufficient data transfer capacity can lead to processing delays and data loss, potentially resulting in a decrease in overall system performance. The OCP-compliant Sliver card edge connector addresses the challenges of data aggregation in such IoT gateways with high-speed transmission performance and a space-saving design. 【Usage Scenarios】 - IoT gateways that aggregate data from numerous sensors - Data processing in edge computing environments - High-speed data backplane connections 【Benefits of Implementation】 - Improved transmission speed in data aggregation - Miniaturization of devices due to space-saving design - Reduced data loss through reliable connections

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OCP-Compatible Sliver Card Edge Connector for Autonomous Driving

High-speed, space-saving connectors that support real-time processing.

In autonomous driving systems, it is essential to process vast amounts of data from sensors in real-time to ensure the safe operation of vehicles. In particular, high-speed and stable data transmission between each unit within the onboard system directly impacts the system's responsiveness and reliability. Insufficient data transfer capabilities can lead to delays in decision-making and malfunctions. The OCP-compliant Sliver card edge connector features a data transfer speed of 32Gbps and a roadmap to 56Gbps, enabling the high-speed transmission essential for real-time processing. Additionally, with a 0.60mm pitch, it allows for a 30% reduction in space compared to conventional connectors, contributing to the miniaturization of onboard systems. 【Use Cases】 - High-speed data communication between vehicle ECUs - Sensor fusion processing - Real-time control of ADAS (Advanced Driver Assistance Systems) 【Benefits of Implementation】 - Enhanced safety through improved real-time capabilities - Miniaturization and weight reduction of the entire system - Stabilization of the system through reliable data transmission

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OCP-Compatible Sliver Card Edge Connector for 5G/6G

A high-speed transmission OCP-compatible connector that enables low-latency communication.

In the field of 5G/6G communications, low latency and high-speed data transfer are essential. Particularly in applications that require real-time performance, signal delay and noise significantly impact communication quality. To address these challenges, high-performance connector solutions are necessary. Our "OCP-Compatible Sliver Card Edge Connector" has been developed to meet these demands. 【Usage Scenarios】 - Next-generation communication infrastructure - High-speed data processing systems - Network equipment requiring low latency 【Benefits of Implementation】 - Improved communication quality through high-speed data transfer - Enhanced overall system response speed - Compatibility with future communication standards

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Sliver Card Edge Connector for Edge Computing

High-speed transmission solution that achieves low latency!

In the field of edge computing, real-time data processing and low latency are required. Particularly in applications that demand responsiveness, such as rapid analysis of sensor data and video data, as well as AI processing, bottlenecks in data transfer significantly affect system performance. Increased latency can lead to delays in decision-making and potential failures in systems where real-time functionality is crucial. The OCP-compliant Sliver card edge connector, with a data transfer speed of 32Gbps and a roadmap to 56Gbps, meets the demand for low latency in edge computing by enabling high-speed and stable data transmission. 【Use Cases】 - Interconnection between edge server circuit boards - Embedded systems requiring high-speed data processing - Devices performing real-time analysis 【Benefits of Implementation】 - Accelerated data processing - Improved system responsiveness - Enhanced performance of real-time applications

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Sliver Card Edge for Cloud Computing

High-speed connector supporting 32Gbps scalability.

In a cloud computing environment, system scalability is required to handle the increasing volume of data and traffic. In particular, high-speed and stable data transmission between servers and storage is essential for maintaining performance. A decrease in transmission speed or instability in connections can lead to system response delays and downtime. The OCP-compliant Sliver card edge connector supports scalable cloud infrastructure construction with data transfer speeds of up to 32Gbps and a roadmap to 56Gbps. 【Use Cases】 - High-speed data transfer between servers - Expansion of storage systems - High-density wiring within data centers 【Benefits of Implementation】 - Construction of highly scalable infrastructure - Improved data processing capabilities - Enhanced installation efficiency through space-saving design

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OCP-Compatible Sliver Card Edge Connector for Communication Infrastructure

A high-speed solution compatible with 32Gbps that contributes to bandwidth expansion.

In the telecommunications infrastructure industry, there is a demand for faster and more efficient data transmission to accommodate the increasing data traffic. Particularly in bandwidth expansion, maintaining signal quality while achieving space efficiency is crucial. Traditional connectors can face challenges such as signal degradation due to higher speeds and constraints on installation space. The OCP-compliant Sliver card edge connector addresses these issues by delivering SI performance of up to 32Gbps and providing a roadmap for future 56Gbps high-speed transmission solutions. This contributes to the expansion of bandwidth in telecommunications infrastructure. 【Usage Scenarios】 - Board-to-board connections - Copper flex connections - Cable connections 【Benefits of Implementation】 - Realization of high-speed data transfer - Improved space efficiency - Reliable connections

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OCP-Compatible Sliver Card Edge Connector for HPC

A high-speed, space-saving connector that contributes to improved computing power.

In the field of HPC (High-Performance Computing), as computational power increases, there is a demand for faster data transfer speeds and efficient implementation within limited space. In particular, maintaining signal quality and space-saving in inter-board communication and cable connections within servers are critical challenges that directly impact the overall performance of the system. Our "OCP-compliant Sliver Card Edge Connector" addresses these challenges by providing high-speed transmission performance of 32Gbps and a roadmap to 56Gbps, achieving a 30% space reduction compared to conventional connectors. This supports the densification and enhancement of HPC systems. 【Usage Scenarios】 - Board-to-board connections within servers - Copper flex and cable connections - HPC systems requiring high-density implementation 【Benefits of Implementation】 - Enhanced computational power through improved data transfer speeds - Increased system density through improved space efficiency - Assurance of reliability through OCP certification

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[For AI/ML] OCP-Compatible Sliver Card Edge Connector

A 32Gbps compatible connector that supports high-speed processing for AI/ML.

In the AI/ML field, there is a demand for processing vast amounts of data quickly and efficiently. Particularly in advanced processing such as deep learning, data transfer speed significantly impacts the overall performance of the system. To eliminate processing capacity bottlenecks and achieve faster analysis and model building, a reliable interface that supports high-speed transmission is essential. The "OCP Compliant Sliver Card Edge Connector" has been developed to meet the high-speed processing needs of AI/ML. It demonstrates SI performance of up to 32Gbps and has a roadmap for future 56Gbps capabilities. This minimizes data transfer latency and contributes to the performance enhancement of AI/ML systems. [Use Cases] - High-speed data transfer between servers in AI/ML development environments - Reduction of data load times in GPU-equipped systems - Real-time processing of large datasets [Benefits of Implementation] - Shortened training time for AI/ML models - Enhanced real-time data analysis capabilities - Improved overall processing efficiency of the system

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Sliver Card Edge Connector for Data Centers

High-density, 32Gbps compatible high-speed connector.

In the data center industry, there is a demand for higher density to install more equipment in limited space and enhance data processing capabilities. In particular, high-speed data transmission directly affects communication between servers and access speed to storage, influencing the overall performance of the system. Insufficient transmission performance and poor space efficiency can lead to limitations in scalability and increased operational costs. The OCP-compliant Sliver card edge connector achieves a 30% space reduction compared to the conventional 0.80mm pitch due to its 0.60mm pitch, contributing to higher density. 【Usage Scenarios】 - Servers and storage devices - Network equipment - Systems requiring high-density implementation 【Benefits of Implementation】 - Efficient use of installation space - Contribution to overall system high density - Performance improvement through high-speed data transmission

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High speed FAKRA-Mini (HFM) for railways

Ideal for high-speed data connections for onboard Wi-Fi in railway vehicles!

In the onboard Wi-Fi environment of railway vehicles, providing a comfortable internet connection for passengers is essential. In particular, situations where many passengers connect simultaneously and stable communication during high-speed travel are crucial factors directly linked to user satisfaction. A decrease in communication speed or interruptions can lead to passenger dissatisfaction. Our High Speed FAKRA-Mini (HFM) high-speed communication system is a compact and high-performance data connection solution that meets the unique needs of railway vehicles. 【Usage Scenarios】 - Wi-Fi access point connections within railway vehicles - Providing internet services for passengers - Data supply to onboard entertainment systems 【Benefits of Implementation】 - Providing stable high-speed Wi-Fi connections for passengers - Improving customer satisfaction through enhanced communication quality - Scalability to accommodate future increases in communication capacity

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