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In the field of renewable energy, particularly in grid interconnection, stable power supply and system reliability are required. Reliable transmission of large currents is essential for maintaining generation efficiency and the stable operation of the entire system. Connection work in narrow spaces that are difficult to see and ensuring the reliability of connection points are significant challenges in system construction. Our "PowerWize BMI Connector" addresses these challenges and enables safe and efficient grid interconnection. 【Usage Scenarios】 - Connection between power conditioners and transformers in mega-solar systems - Connection between blade control systems and main circuits in wind power generation facilities - Connection between charge and discharge control units and the grid in battery storage systems 【Benefits of Implementation】 - Maintenance of system efficiency through large current transmission - Reliable connections in confined spaces due to blind mating design - Reduction of voltage drop and heat generation by lowering contact resistance
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In the field of industrial machinery, particularly in robot control, there is a demand for stable transmission of large currents due to increased power output, as well as reliable connections in limited spaces. Inadequate connections can lead to equipment malfunctions, performance degradation, and even failures. Our "PowerWize BMI Connector" utilizes Molex's COEUR socket technology to achieve large current transmission through right-angle/vertical headers. The blind mating design enables reliable connections even in hard-to-see narrow spaces, supporting high-reliability connections in areas with limited installation space, such as inside robot arms. 【Application Scenarios】 - Wiring inside robot arms - Power supply to servo motors - Wiring inside control panels of industrial robots - Power connections for automation equipment 【Benefits of Implementation】 - Increased design and implementation flexibility due to reliable connections in tight spaces - Support for high performance and high output of robots through large current transmission - Reduction of voltage drop and heat generation by lowering contact resistance - Decreased work errors and improved reliability through mis-mating prevention features
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In the aerospace field, power supply requires high reliability and secure connections. Particularly in wiring tasks within narrow spaces where visibility is limited, it is crucial to reduce the risk of incorrect connections and ensure safe and efficient work. Our "PowerWize BMI Connector" utilizes Molex's COEUR socket technology to achieve high current transmission through right-angle/vertical headers. The blind mating design allows for secure connections even in hard-to-see narrow spaces, contributing to solving power supply challenges in the aerospace sector. 【Usage Scenarios】 - Power wiring in limited spaces within aircraft and spacecraft - Secure connector connections during maintenance or renovations - Construction of power systems requiring high current 【Benefits of Implementation】 - Improved work efficiency through secure connections in confined spaces - Assurance of reliability by reducing the risk of incorrect connections - Maintenance and enhancement of system performance through high current transmission
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In railway vehicle power systems, stable transmission of high current and reliable connections in limited spaces are required. Especially in harsh environments exposed to vibrations and temperature changes, the reliability of connections directly impacts the overall safety and performance of the vehicle. Uncertain connections can lead to instability in power supply and failures, potentially affecting operations. Our PowerWize BMI connector utilizes Molex's COEUR socket technology to address these challenges. 【Application Scenarios】 - Power transmission systems of vehicles - Wiring in narrow installation spaces - Connections to equipment requiring high current 【Benefits of Implementation】 - Minimizes contact resistance between wires and crimp barrels, achieving stable high current transmission - Blind mating design allows for reliable connections even in hard-to-see locations - Tolerance-allowing design improves workability during assembly
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In the automotive industry, particularly in EV charging systems, stable transmission of high voltage and large current, as well as reliable connections under space constraints, are essential. Reducing charging time and improving system reliability require low contact resistance and secure mating. Insufficient connections can lead to heat generation and voltage drops, potentially resulting in decreased charging performance and safety issues. Our "PowerWize BMI Connector" utilizes Molex's COEUR socket technology to address these challenges. 【Usage Scenarios】 - Internal wiring of EV charging stations - Connection between onboard chargers and batteries - High-power charging infrastructure 【Benefits of Implementation】 - Reduced charging time through large current transmission - Ease of installation due to reliable connections in tight spaces - Heat generation suppression and improved energy efficiency through low contact resistance
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The "PowerWize BMI Connector" utilizes Molex's COEUR socket technology to achieve high current transmission through right-angle/vertical headers. It features a blind-mating design available in three sizes: 3.40 millimeters (75.0A), 6.00 millimeters (110.0A), and 8.00 millimeters (185.0A), allowing for reliable connections even in hard-to-see, tight spaces. The 8.00 millimeter connector offers a vertical header option. 【Features】 ■ Provides an option to connect vertical headers and panel mount receptacles as needed ■ Allows for +/-2.00 millimeter radial float in panel mount receptacles to mitigate tolerance stacking issues ■ Supports correct orientation for right-angle headers when mounted on printed circuit boards or busbars *For more details, please download the PDF or feel free to contact us.
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In the field of energy storage, particularly in the design of battery packs, reliable connections that can handle high currents are essential. As battery packs become smaller and more densely packed, precise positioning between substrates and addressing cumulative errors during assembly become increasingly important. To tackle these challenges, connectors with flexible designs and assured electrical performance are indispensable. Our "Sentrality High Current Pin & Socket Interconnection System" is a product that meets these demands. 【Usage Scenarios】 - Interconnection between substrates in battery packs - Electrified equipment handling high currents - Designs with restrictions on stack height 【Benefits of Implementation】 - Improved design flexibility - Maintenance of electrical performance - Streamlined assembly processes
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In the military and defense sector, particularly in the electrification of armored vehicles, high reliability under harsh conditions and efficient design in limited spaces are required. Robustness to vibrations and shocks, as well as reliable power supply, are critical factors directly linked to the operational capability of the vehicle. Our "Sentrality High Current Pin & Socket Interconnection System" is a product that meets these demands. 【Usage Scenarios】 - Power systems for armored vehicles - Power supply for radar systems and communication equipment - Electrified subsystems 【Benefits of Implementation】 - Stable power supply under harsh conditions - Space-saving through increased design flexibility - Improved overall system performance due to reliable connections
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In the mining sector, electric drills require stable power supply and reliability of equipment in harsh environments. Particularly for electric drills handling high currents, secure connections and long-term performance maintenance are essential. Issues at connection points can lead to work interruptions or equipment damage. Our "Sentrality High Current Pin & Socket Interconnection System" allows for three types of mating configurations: vertical, horizontal, and rear mating, and features a +/-1.00mm self-adjusting function to alleviate cumulative misalignment in the socket assembly. This provides the flexibility required in product design and contributes to the manufacturing of products with excellent electrical performance. 【Usage Scenarios】 - Electric drills at mining sites - Various industrial equipment requiring high currents - Use in environments with vibrations and impacts 【Benefits of Implementation】 - Improved work efficiency due to stable power supply - Enhanced equipment reliability and reduced maintenance costs - Design capable of withstanding long-term use in harsh environments
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In the field of ship propulsion systems, high reliability and durability are required. Especially as electrification progresses, it is important to maintain stable electrical performance under harsh environmental conditions while accommodating high currents. In the maritime environment, which is susceptible to vibrations, temperature changes, and humidity, poor contact or damage to connectors poses a risk of system shutdowns or serious accidents. Our "Sentrality High Current Pin & Socket Interconnection System" addresses these challenges and contributes to the manufacturing of products with excellent electrical performance. 【Usage Scenarios】 - High current transmission in electric propulsion systems of ships - Use in harsh marine environments - Improved reliability of board-to-board connections 【Benefits of Implementation】 - Reduction of power loss due to decreased contact resistance - Mitigation of issues during assembly through cumulative cross-relief - Protection of contact beams through the self-adjusting function of sockets - Shortened development time due to enhanced design flexibility
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In the construction machinery industry, particularly in the field of electric excavators, there is a demand for stable supply of high currents due to increased power output and reliability in harsh environments. In challenging operating conditions exposed to vibrations and temperature changes, secure electrical connections are essential for maintaining equipment performance and ensuring safe operation. Improper connections can lead to equipment failure, performance degradation, and even safety issues. Our "Sentrality High Current Pin & Socket Interconnection System" addresses these challenges and contributes to the manufacturing of products with excellent electrical performance. 【Application Scenarios】 - Motor drive units of electric excavators - Connections with battery systems - Various control units requiring high currents 【Benefits of Implementation】 - Reliable high current transmission - Stable connections in harsh environments - Reduced development time due to increased design flexibility
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In the medical device industry, particularly in MRI drive systems, stable supply of high current and high reliability are required. Accurate transmission of fine signals and flexible design capable of accommodating miniaturization and high density are essential. If these requirements are not met, it may lead to a decline in equipment performance or unexpected failures. Our "Sentrality High Current Pin & Socket Interconnection System" addresses these challenges and contributes to the manufacturing of products with excellent electrical performance. 【Usage Scenarios】 - High current transmission in MRI drive systems - Board-to-board connection applications - Designs with height restrictions 【Benefits of Implementation】 - Improved electrical performance through reduced contact resistance - Enhanced reliability by alleviating cumulative cross issues - Increased design flexibility to accommodate miniaturization and high density
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In data center server power supply, it is essential to provide high current stably and maintain system reliability. Particularly during server expansion or maintenance connection work, reliable mating and flexibility to absorb slight positional misalignments between boards are crucial. Improper connections can lead to unstable power supply or equipment failure. Our "Sentrality High Current Pin & Socket Interconnection System" offers three configurations: vertical, horizontal, and rear mating, and features a self-adjusting function to mitigate cumulative misalignment, addressing these challenges. 【Usage Scenarios】 - High current power supply within server racks - Server designs involving board-to-board connections - Areas requiring easy attachment and detachment during maintenance 【Benefits of Implementation】 - Reduced development time due to improved design flexibility - Enhanced system reliability through secure connections - Reduced risk of mating failures due to cumulative misalignment
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In the field of renewable energy, particularly in solar power integration systems, there is a demand for flexible designs that can accommodate high currents while adapting to the installation environment. To maintain the reliability of the system, secure electrical connections and connectors that can handle space and layout constraints are essential. Inadequate connections can increase the risk of power loss and system downtime. Our "Sentrality High Current Pin & Socket Interconnection System" offers three mating configurations—vertical, horizontal, and rear mating—and features a self-adjusting function to mitigate cumulative cross, addressing these challenges. 【Usage Scenarios】 - Interconnection between substrates in solar power generation systems - High current transmission in energy storage systems - Internal connections in inverters and power conditioners 【Benefits of Implementation】 - Space-saving due to increased design flexibility - Improved reliability through secure electrical connections - Enhanced maintainability
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In the field of industrial machinery, particularly with robotic arms, there is a demand for precise wiring designs that can handle high currents while fitting into limited spaces. Additionally, it is important to achieve both robustness to withstand vibrations and shocks during operation and ease of maintenance. To meet these requirements, reliable electrical connections and connectors that ensure design flexibility are essential. The "Sentrality High Current Pin & Socket Interconnection System" addresses these challenges. 【Usage Scenarios】 - High current transmission at the joints of robotic arms - Interconnection between control boards of multi-joint robots - Use in environments with vibrations and shocks 【Benefits of Implementation】 - Realization of more compact and high-functioning robotic arms due to increased design flexibility - Improved reliability of robots through secure electrical connections - Enhanced workability during maintenance tasks
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In the field of aerospace power supply, high reliability and stable performance are required. Particularly in harsh environments and complex system configurations, ensuring secure connections and maintaining electrical performance are crucial. Improper connections can lead to system malfunctions or performance degradation. Our "Sentrality High Current Pin & Socket Interconnection System" offers three mating configurations: vertical, horizontal, and rear mating, and is equipped with a self-adjusting feature that mitigates cumulative cross-over, addressing these challenges. 【Application Scenarios】 - Power supply systems for aircraft and spacecraft - Electronic devices requiring high current - Board-to-board connection applications 【Benefits of Implementation】 - Improved design flexibility - Stabilization of electrical performance - Realization of reliable power supply
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In the field of traction power for railway vehicles, there is a demand for reliable connections and long-term reliability under harsh environmental conditions while accommodating high currents. Particularly in vehicle design, the arrangement of components in limited space and the ability to withstand vibrations and temperature changes are crucial. In response to these challenges, our "Sentrality High Current Pin & Socket Interconnection System" offers excellent electrical performance and design flexibility, contributing to the reliable manufacturing of vehicles. 【Application Scenarios】 - Traction power systems for railway vehicles - Various railway equipment requiring high currents - Onboard equipment expected to experience vibrations and temperature changes 【Benefits of Implementation】 - Improved system reliability through secure high current connections - Space-saving and layout optimization due to increased design flexibility - Enhanced maintainability
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In the EV charging system industry, connectors that can handle high voltage and high current while being implemented in limited spaces and meeting diverse design requirements are in demand. In particular, to ensure safety and reliability during charging, secure connections and excellent electrical performance are essential. Our "Sentrality High Current Pin & Socket Interconnection System" addresses these challenges and contributes to the manufacturing of products with superior electrical performance. 【Usage Scenarios】 - Interconnection between PCBs of EV chargers - Battery Management Systems (BMS) - Inverters and converters 【Benefits of Implementation】 - Space-saving through increased design flexibility - Realization of reliable electrical connections - Streamlining of manufacturing processes
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The "Sentrality High Current Pin & Socket Interconnection System" is a product equipped with a self-adjusting function of +/-1.00mm to alleviate cumulative misalignment in socket assemblies, allowing for three types of mating configurations: vertical, horizontal, and rear mating. It provides the necessary flexibility required in product design and contributes to the manufacture of products with excellent electrical performance. The socket position self-adjusts due to the rebound of the wave spring. 【Features】 ■ Low contact resistance ■ Adopts a conical socket assembly, reducing dimensions compared to many equivalents ■ Applicable to board-to-board connection applications with height restrictions ■ The socket can move freely in the radial direction by +/-1.00mm within the assembly, ensuring that deformation of the contact beam during mating operations is reliably avoided. *For more details, please download the PDF or feel free to contact us.
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In weapon systems, high reliability and stable operation in harsh environments are required. Particularly in system construction within limited spaces, compact connectors with high current capacity are essential. The use of inappropriate connectors can lead to decreased system performance and potential failures. The SW1 connector achieves high current capacity in three sizes through COEUR socket technology, enabling secure mating and easy cable management. 【Usage Scenarios】 - Power supply lines for weapon systems - Mounting on radar, communication equipment, etc. - Integration into vehicles, aircraft, and ships 【Benefits of Implementation】 - Easier system design in limited spaces - Improved system reliability through secure power supply - Enhanced maintainability
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As the automation of agricultural machinery progresses, there is a demand for connectors that balance high current capacity and compactness. In particular, building systems in limited spaces and handling complex wiring can pose challenges. Our "SW1 Connector" significantly enhances design flexibility for applications with space constraints by achieving high current capacity in three sizes through COEUR socket technology. 【Usage Scenarios】 - Power supply for autonomous tractors - Connection of high-power equipment for pesticide spraying drones - Power supply to sensors and control units 【Benefits of Implementation】 - Facilitates system design in limited spaces - Improves cable routing and enhances work efficiency - Ensures safe and reliable power supply
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In the mining sector, particularly in excavation equipment, high reliability under harsh conditions and the construction of efficient systems in limited spaces are required. High current capacity and safe connections are essential for the stable operation of equipment, and the ease of cable management directly impacts the efficiency of installation and maintenance. The SW1 connector was developed to meet these needs. 【Usage Scenarios】 - Heavy machinery and excavation equipment at mining sites - Mineral transport vehicles - Underground work robots 【Benefits of Implementation】 - Improved equipment reliability - Optimization of installation space - Increased efficiency of maintenance work
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In ship propulsion systems, high current capacity and safe connections are required. Additionally, efficient wiring work in limited spaces is also important. Our "SW1 Connector" achieves high current capacity in three sizes—6.00mm (120.0A), 8.00mm (185.0A), and 11.00mm (300.0A)—thanks to COEUR socket technology, enabling secure mating. Furthermore, the cable assembly can rotate 360° around the pin, making cable wiring during system integration easier. 【Usage Scenarios】 - High current connections in electric propulsion systems for ships - Efficiency improvements in wiring work in limited spaces - Use in marine environments where high reliability is required 【Benefits of Implementation】 - Improved design flexibility, allowing for space-efficient system construction - Maintenance of system reliability through safe and secure connections - Reduction in man-hours due to simplification of cable wiring tasks
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In the electrification of construction machinery, connectors that can safely and reliably supply high current in limited spaces are required. In particular, reliability under harsh environmental conditions and improved work efficiency during maintenance are also important factors. The SW1 connector addresses these challenges and enhances design flexibility during system integration. 【Usage Scenarios】 - Powertrains for electric construction machinery and electric forklifts - Battery systems - Inverters and converters 【Benefits of Implementation】 - Equipment miniaturization due to improved space efficiency - Increased reliability through secure connections - Enhanced workability due to ease of cable management
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In high-power medical devices, stable power supply and safety are essential. Particularly as devices become more compact and high-performance, reliable connections in limited spaces become crucial. Inadequate connections can lead to device malfunctions, performance degradation, and even safety risks. The SW1 connector addresses these challenges by utilizing COEUR socket technology to achieve high current capacity in a compact design, ensuring safe mating and easy cable wiring. 【Usage Scenarios】 - Power connections for high-power medical devices - Medical devices requiring compact design - Equipment needing frequent maintenance or connection changes 【Benefits of Implementation】 - Improved space efficiency - Enhanced device reliability through stable power supply - Increased efficiency in installation and maintenance tasks
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In data center server power supplies, high density and stable power supply are required. In particular, efficient wiring in limited space and power connections with high reliability are essential for the stable operation of the entire system. The use of inappropriate connectors can increase the risk of downtime due to heat generation and connection failures. The SW1 connector addresses these challenges by providing high current capacity and excellent design flexibility. 【Usage Scenarios】 - Power units in server racks - Equipment requiring high-density implementation - Areas needing improved maintainability 【Benefits of Implementation】 - Improved space efficiency - Stable operation due to reliable power supply - Increased work efficiency through easy cable wiring
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In the field of renewable energy, particularly in grid interconnection, stable power supply and system reliability are essential. Therefore, selecting connectors that can safely and reliably transmit high currents is crucial. The use of inappropriate connectors can lead to increased power loss and, in the worst case, system-wide failure. Our "SW1 Connector," utilizing COEUR socket technology, addresses these challenges by achieving high current capacity even in limited spaces, providing secure mating and easy cable wiring. 【Use Cases】 - Connection between power conditioners and the grid in solar power generation systems - Connection between battery storage systems and the grid - High current transmission in wind power generation facilities 【Benefits of Implementation】 - Facilitates system construction in limited spaces. - Achieves safe and reliable power transmission. - Contributes to the efficiency of overall system design and installation work.
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In the field of industrial equipment, particularly in robot control, there is a demand for high-power and safe power supply within limited space. Complex wiring and cable management in movable parts can pose design challenges. In response to these issues, the SW1 connector achieves high current capacity while remaining compact, enhancing flexibility during system integration. 【Usage Scenarios】 - Arm section of industrial robots - Drive section of automated transport devices - Power supply to servo motors - Power connection for FA equipment 【Benefits of Implementation】 - Miniaturization of equipment due to space-saving - Simplification of cable wiring and improved work efficiency - Assurance of reliability through secure connections - Increased design flexibility
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In the aerospace field, power supply requires high reliability and safety. In particular, building systems in limited spaces and providing stable power supply under harsh environmental conditions are essential for mission success. Improper connector selection can lead to overall system performance degradation and unexpected troubles. The SW1 connector, with COEUR socket technology, achieves high current capacity while being compact, supporting solutions to challenges in aerospace power supply. 【Usage Scenarios】 - Power systems for aircraft and spacecraft - Ground support equipment - Testing equipment 【Benefits of Implementation】 - Increased design flexibility in space-constrained applications - Assurance of reliability through safe and secure mating - Improved work efficiency through easier cable wiring
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In the power systems of railway vehicles, high current capacity and safe connections are required. Particularly, considering the design in limited spaces and future maintainability, flexible cable wiring becomes crucial. Conventional connectors may struggle to meet these demands. The SW1 connector addresses these challenges by achieving high current capacity in three sizes through COEUR socket technology, enabling secure mating and 360° rotation of cable assemblies. 【Usage Scenarios】 - Power transmission systems for railway vehicles - Power supply to onboard equipment - Cable routing during maintenance 【Benefits of Implementation】 - Increased design flexibility - Contribution to space-saving - Improved workability
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In the automotive industry, particularly in EV charging systems, there is a demand for high current capacity, safe connections, and implementation in limited spaces. As the miniaturization and high output of EV chargers progress, the importance of connectors that meet these requirements is increasing. Our "SW1 Connector" addresses these challenges and significantly enhances design flexibility during system integration. 【Usage Scenarios】 - EV charging stations - Onboard chargers - High output power systems 【Benefits of Implementation】 - Improved space efficiency - Safe and reliable connections - Simplified system design
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The "SW1 Connector" adopts COEUR socket technology and achieves high current capacity in three sizes: 6.00mm (120.0A), 8.00mm (185.0A), and 11.00mm (300.0A). Its unique positive lock design allows for secure mating. The cable assembly can be rotated 360° around the pin, making it easier to dress the cable assembly during system integration. 【Features】 ■ Low contact resistance ■ Compact design ■ User-friendly positive lock ■ Positive lock allowing 360° rotation of the cable assembly *For more details, please download the PDF (English version) or feel free to contact us.
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In the field of energy storage, particularly in battery connections, it is essential to transmit high currents safely and efficiently. If the resistance at the connection points is high, it can lead to increased heat generation, which may cause a decrease in system reliability or even failure. Additionally, wiring design in limited spaces is also a significant challenge. Our UltraWize high-current connectors provide excellent power distribution performance and design flexibility to address these issues. [Usage Scenarios] - High current connections in battery systems - Internal wiring of energy storage devices - Power units requiring high-density implementation [Benefits of Implementation] - Reduces heat generation and improves system reliability - Increases density by reducing wiring space - Enhances design freedom
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In the field of robotics, particularly in arm drive systems, a stable power supply to high-output motors and efficient wiring in limited spaces are essential. To ensure the range of motion and design flexibility of the arm, the routing of cables and the compactness of connectors are crucial. Insufficient power supply or constraints on wiring space can lead to decreased robot performance and design challenges. Our UltraWize high-current connectors eliminate the need to consider cable bend radius due to their cable side exit design, minimizing wiring space and contributing to the design flexibility and high efficiency of robotic arms. 【Application Scenarios】 - Drive units of industrial robotic arms - Drive units of automated guided vehicles (AGVs) - Joint sections of collaborative robots 【Benefits of Implementation】 - Stable supply of high currents required for arm drive - Easier cable routing, reducing wiring space - Contributes to the miniaturization and lightweight design of robots - Improved design flexibility
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In the mining sector, excavation equipment requires stable power supply in harsh environments and efficient wiring in limited spaces. In particular, reliable high-current transmission is essential for the operation of high-power equipment, and minimizing equipment downtime is crucial. Our UltraWize high-current connectors provide excellent power distribution performance, developed through data center applications, to address these challenges for excavation equipment. 【Use Cases】 - Power supply for mining machinery - Control systems for drilling equipment - Infrastructure facilities within mines 【Benefits of Implementation】 - Stable operation through high-current transmission - Space-saving design with lateral cable exit - Reduced risk of failure by minimizing misalignment on-site
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In ship propulsion systems, it is essential to provide a stable supply of high current and ensure the reliability of the system. Particularly in modern vessels where electrification is advancing, high-efficiency power transmission and space-saving design have become critical challenges. The use of inappropriate connectors can increase the risk of performance degradation and failure due to heat generation. Our UltraWize high-current connectors utilize the well-established conical COEUR socket technology to suppress contact resistance and voltage drop, enabling the transmission of high current while minimizing heat generation. Additionally, the cable side exit design minimizes wiring space, offering high efficiency and design flexibility. 【Usage Scenarios】 - High current wiring in electric propulsion systems of vessels - Wiring efficiency in limited onboard spaces - Improved system reliability and reduced maintenance burden 【Benefits of Implementation】 - Maintenance of propulsion system performance through stable supply of high current - Increased design freedom due to reduced wiring space - Enhanced safety and reduced risk of failure through heat suppression
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In the electrification of construction machinery, high-efficiency power supply and reliable wiring are essential. Particularly in harsh environments and designs with limited space, secure connections and compact wiring are crucial. The use of inappropriate connectors can increase the risk of performance degradation and failure due to heat generation. Our UltraWize high-current connectors provide excellent power distribution performance, cultivated in data center applications, to address these challenges for the electrification of construction machinery. 【Application Scenarios】 - Electric powertrains for construction machinery - Power supply to high-output motors - Connection with battery systems 【Benefits of Implementation】 - Increased efficiency of electric drive systems through stable supply of high current - Space-saving and improved design flexibility due to compact design - Reduced maintenance costs through reliable connections
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In high-power medical devices, stable high current supply and safety are required. Particularly, as devices become smaller and high-density mounting progresses, reliable wiring in limited space becomes crucial. Inadequate wiring design can lead to heat generation and voltage drop, potentially causing performance degradation or failure of the device. Our UltraWize high-current connector, developed for data centers, offers excellent power distribution performance and contributes to solving challenges in high-power medical devices. 【Usage Scenarios】 - High-power laser devices - Power supply units for MRI machines - Power supply for imaging diagnostic devices - Drive units for surgical support robots 【Benefits of Implementation】 - Maintenance of device performance through stable high current supply - Improved safety through heat suppression - Miniaturization of devices through space-saving design - Reduced risk of failure through reliable mating on-site
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In data center server power supplies, stable high current supply and efficient wiring in limited space are required. Particularly in server racks where high density is progressing, managing cables and suppressing heat generation are essential for maintaining system reliability. Improper design can increase the risk of unstable power supply and failures due to overheating. Our UltraWize high current connectors are specifically developed for data center applications, addressing these challenges with excellent power distribution performance and cable exit design. 【Usage Scenarios】 - Power supply within server racks - Wiring in high-density implementation environments - Systems requiring heat generation suppression 【Benefits of Implementation】 - Increased density by minimizing wiring space - Reduced heat generation by suppressing contact resistance and voltage drop - Improved design flexibility
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In the field of renewable energy, particularly in grid interconnection, stable power supply and high reliability are required. Due to the handling of large currents, reducing contact resistance and suppressing heat generation are essential for the safe and efficient operation of the system. Inadequate wiring design can lead to space constraints and decreased maintainability. Our UltraWize high-current connectors have excellent power distribution performance developed for data centers, addressing these challenges. 【Usage Scenarios】 - Connection between power conditioners and the grid in solar power generation systems - Connection between battery storage systems and the grid - Connection of high-voltage cables in wind power generation systems 【Benefits of Implementation】 - Suppresses contact resistance and voltage drop, minimizing heat generation - Cable side exit design minimizes wiring space and improves design flexibility - Minimizes stack height, contributing to efficient use of installation space - Reduces the risk of misalignment on-site, lowering the risk of failure
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In the field of industrial equipment, particularly in robot control, there is a demand for stable supply of high currents due to increased power output, as well as efficient wiring in limited spaces. Inadequate wiring design can lead to decreased performance and potential failures of the equipment. Our UltraWize high-current connectors offer excellent power distribution performance developed through data center applications, supporting powerful robot operations. The design that allows cables to exit sideways minimizes wiring space, achieving design flexibility and high efficiency. 【Usage Scenarios】 - Drive units of industrial robots - Power supply for automation lines - Control of high-output motors 【Benefits of Implementation】 - Maintenance of robot performance through stable supply of high currents - Increased design freedom due to space-saving - Improved efficiency in wiring work
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In the aerospace field, power supply requires high reliability and efficiency. In particular, reliable power transmission in limited space is essential for the stable operation of systems. The use of inappropriate connectors increases the risk of contact failure and overheating, which can impact mission execution. Our UltraWize high-current connectors provide excellent power distribution performance and design flexibility to address these challenges. 【Application Scenarios】 - Power systems within aircraft - Power connections for satellite-mounted equipment - Power supply for ground support equipment 【Benefits of Implementation】 - Stable supply of high current - Efficient use of wiring space - Improved reliability
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In railway vehicle power systems, high-efficiency and reliable power supply is essential. Particularly as vehicle electrification advances, the importance of connectors that can safely and stably transmit high currents is increasing. Insufficient wiring design and issues caused by heat generation can lead to operational delays and vehicle failures. Our UltraWize high-current connectors provide excellent power distribution performance developed in data center applications, tailored for railway vehicles to address these challenges. 【Usage Scenarios】 - Electric drive systems for vehicles - Battery systems - Inverter and converter connections 【Benefits of Implementation】 - High-efficiency power transmission - Improved reliability through heat generation suppression - Increased design flexibility through space-saving wiring
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In the automotive industry, particularly in the EV charging sector, there is a demand for reliable connectors that can safely and efficiently transmit high voltage and high current. With the spread of EVs, enhancing charging infrastructure and improving charging performance on the vehicle side have become important, making technology that suppresses heat generation and ensures stable power supply essential. Inappropriate connectors can lead to reduced charging efficiency and, in the worst case, safety issues. Our UltraWize high-current connectors have been optimized for EV charging to address these challenges, leveraging excellent power distribution performance developed in data center applications. 【Usage Scenarios】 - EV charging stations - On-board charging systems - Battery management systems 【Benefits of Implementation】 - High-efficiency power transmission - Improved safety through heat suppression - Increased design flexibility
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"UltraWize High Current Connectors and Cable Assemblies" are products developed specifically for data center applications, featuring excellent power distribution performance. Utilizing the well-established conical COEUR socket technology, which ensures a wide conductive area. The conical structure minimizes contact resistance and voltage drop, reducing heat generation and enabling the transmission of high currents. Additionally, by routing the cables sideways, wiring space is minimized, providing further high efficiency and design flexibility. 【Features】 ■ Minimizes stack height ■ Reduces processing costs and shortens time to market ■ Ensures reliable connector mating ■ Minimizes PCB footprint requirements ■ Reduces misalignment on-site and decreases failures *For more details, please download the PDF or feel free to contact us.
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