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The "FFMS1 Series" is a one-touch lock connector compatible with 0.3mm FPC. It features a structure that locks simply by inserting the FPC, which streamlines the assembly process and is suitable for automated assembly lines. By covering the connector's outer shape with a metal shell, it achieves high EMI and EMS characteristics, supporting high-speed transmission of up to 20Gbps. With a compact design of 0.5mm pitch, 1.9mm height, and 4.9mm depth, it contributes to improved productivity, miniaturization, and performance enhancement for automotive devices, communication equipment, and industrial machinery. [For concerns like these] ■ Want to improve assembly efficiency ■ Need to withstand harsh environments such as vibration, temperature, and noise ■ Looking for connectors that support high capacity and high-speed transmission for automotive camera modules and communication devices ■ Searching for space-saving, high-reliability connectors for various automotive sensor modules, robots, and FA equipment *For more details, please refer to the materials available for download in the catalog. Feel free to contact us with any inquiries.
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■To use correctly ■Operating principles and terminology ■How to use pressure sensors (Technical Note) ■How to choose pressure sensors ■FAQ ■Installation diagram examples ■Recommended reflow temperature profile *For more details, please refer to the PDF materials or feel free to contact us.*
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■Amplified and Temperature Compensated, Analog & Digital Output This is a two-chip pressure sensor that combines a signal processing IC with amplification and temperature compensation circuits with a sensor chip. The output format can be selected from analog output or digital output (I2C). - AP2 Series - APB2 Series - AG2 Series - AP3 Series - AG3 Series - AP4 Series - AG4 Series I2CTM is a trademark of NXP Semiconductors. ■Non-Amplified and Non-Temperature Compensated This is a pressure sensor that packages only the sensor bridge circuit. For use, separate drive circuits, adjustment circuits, amplification circuits, and temperature compensation circuits are required. - FPN Series - FGN Series - FPM Series - FHM Series - FGM-3 Series - FGM-6 Series ■Custom Support For customers using large quantities, we can accommodate custom specifications upon request. Please consult us regarding product specifications, minimum quantities, etc. *For more details, please refer to the PDF materials or feel free to contact us.*
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【Features】 ■ Compact surface mount style (can choose either a pressure inlet of 3mm or 6mm) ■ Weight: 0.3g ■ Weight: 0.35g RoHS compliant *For more details, please refer to the PDF document or feel free to contact us.
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【Features】 ■ Horizontal pressure inlet style (terminal direction can be selected either up or down) ■ Weight: 0.6g RoHS compliant *For more details, please refer to the PDF document or feel free to contact us.
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【Features】 ■Easy-to-handle DIP terminal style (terminal direction can be selected either up or down) ■Weight: 1.1g RoHS compliant *For more details, please refer to the PDF document or feel free to contact us.
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【Features】 ■ Compact surface mount style ■ Weight: 0.35g RoHS compliant *For more details, please refer to the PDF document or feel free to contact us.
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【Features】 ■Easy-to-handle DIP terminal style (terminal orientation can be selected either up or down) ■Weight: 1.1g RoHS compliant *For more details, please refer to the PDF document or feel free to contact us.
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The AL4 series consists of a silicon piezo-resistive pressure sensor and a signal processing IC. The weak signals from the pressure sensor chip are amplified and temperature compensated by the signal processing IC, converting them into an analog output proportional to the pressure. The AL4 series is a digital output sensor for low pressure. The type of pressure that can be measured is differential pressure. 【Features】 ■ Low pressure range (differential pressure) ■ Amplified and temperature compensated digital output (I2CTM) ■ Overall accuracy ±1.0 %FS ■ Power supply voltage compatible with 3.0, 3.3, 5.0 Vdc ■ Power consumption Max 3.5 mA @ 3.3 Vdc ■ SMD package ■ Dual barb port ■ Operating temperature -40 to 85℃ ■ Temperature compensation range -5 to 65℃ I2C is a trademark of NXP Semiconductors. *For more details, please refer to the PDF document or feel free to contact us.
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The AL4 series consists of a silicon piezo-resistive pressure sensor and a signal processing IC. The weak signals from the pressure sensor chip are amplified and temperature compensated by the signal processing IC, converting them into an analog output proportional to the pressure. The AL4 series is a digital output sensor for low pressure. The type of pressure that can be measured is gauge pressure. 【Features】 ■ Low pressure range (gauge pressure) ■ Amplified and temperature compensated digital output (I2CTM) ■ Overall accuracy ±1.0 %FS ■ Compatible with supply voltages of 3.0, 3.3, 5.0 Vdc ■ Power consumption Max 3.5 mA @ 3.3 Vdc ■ SMD package ■ Dual barb port ■ Operating temperature -40 to 85℃ ■ Temperature compensation range -5 to 65℃ I2C is a trademark of NXP Semiconductors. *For more details, please refer to the PDF document or feel free to contact us.
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The AH3 series consists of a silicon piezo-resistive pressure sensor and a signal processing IC. The weak signals from the pressure sensor chip are amplified and temperature compensated by the signal processing IC, converting them into an analog output proportional to the pressure. The AH3 series is designed to minimize output noise without using A/D and D/A converters. It also features a pressure switch function with any input voltage set as a threshold. The type of pressure that can be measured is gauge pressure. 【Features】 ■ Horizontal port ■ Amplified and temperature-compensated analog output ■ Non-digital correction ■ Pressure switch function ■ Overall accuracy ±1.5 %FS ■ Power supply voltage compatible with 3.0, 3.3, 5.0 Vdc ■ Power consumption Max 6 mA @ 5.0 Vdc ■ Operating temperature -40 to 105℃ ■ Temperature compensation range 0 to 60℃ ■ Custom specifications available *For more details, please refer to the PDF document or feel free to contact us.
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The AG4 series (digital output) consists of a silicon piezo-resistive pressure sensor and a signal processing IC. The weak signals from the pressure sensor chip are amplified and temperature compensated by the signal processing IC, converting them into a digital output proportional to the pressure. The type of pressure that can be measured is gauge pressure. 【Features】 ■ Amplified and temperature-compensated digital output (I2CTM) ■ Overall accuracy ±1.5 %FS ■ Supports supply voltages of 3.0, 3.3, and 5.0 Vdc ■ Low power consumption Max 3.5 mA @ 3.3 Vdc ■ Wide operating temperature -40 to 125℃ ■ Wide temperature compensation range 0 to 85℃ ■ Shape compatible with integrated sensor XFGM series ■ Custom specifications available I2C is a trademark of NXP Semiconductors. *For more details, please refer to the PDF document or feel free to contact us.
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The AP4 series (digital output) consists of a silicon piezo-resistive pressure sensor and a signal processing IC. The weak signals from the pressure sensor chip are amplified and temperature-compensated by the signal processing IC, converting them into a digital output proportional to the pressure. The type of pressure that can be measured is gauge pressure. 【Features】 ■ Amplified and temperature-compensated digital output (I2CTM) ■ Overall accuracy ±1.5 %FS ■ Compatible with supply voltages of 3.0, 3.3, and 5.0 Vdc ■ Low power consumption Max 3.5 mA @ 3.3 Vdc ■ Wide operating temperature -40 to 125℃ ■ Wide temperature compensation range 0 to 85℃ ■ Shape compatible with integrated sensor XFPM series ■ Custom specifications available I2C is a trademark of NXP Semiconductors. *For more details, please refer to the PDF document or feel free to contact us.
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The AG3 series consists of a silicon piezo-resistive pressure sensor and a signal processing IC. The weak signals from the pressure sensor chip are amplified and temperature-compensated by the signal processing IC, converting them into an analog output proportional to the pressure. The AG3 series is designed to avoid using A/D and D/A converters, resulting in low-noise output. It also features a pressure switch function with any input voltage as the threshold. The type of pressure that can be measured is gauge pressure. 【Features】 ■ Amplified and temperature-compensated analog output ■ Non-digital correction ■ Pressure switch function included ■ Overall accuracy ±1.5 %FS ■ Compatible with supply voltages of 3.0, 3.3, and 5.0 Vdc ■ Power consumption Max 6 mA @ 5.0 Vdc ■ Operating temperature -40 to 105℃ ■ Temperature compensation range 0 to 60℃ ■ Compatible terminal arrangement and shape with the integrated sensor XFGM series ■ Custom specifications available *For more details, please refer to the PDF materials or feel free to contact us.
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The AP3 series consists of silicon piezo-resistive pressure sensors and signal processing ICs. The weak signals from the pressure sensor chip are amplified and temperature compensated by the signal processing IC, converting them into an analog output proportional to the pressure. The AP3 series is designed to minimize output noise without using A/D and D/A converters. It also features a pressure switch function with any input voltage as a threshold. The type of pressure that can be measured is gauge pressure. 【Features】 ■ Amplified and temperature compensated analog output ■ Non-digital correction ■ Pressure switch function included ■ Overall accuracy ±1.5 %FS ■ Compatible with supply voltages of 3.0, 3.3, and 5.0 Vdc ■ Power consumption Max 6 mA @ 5.0 Vdc ■ Operating temperature -40 to 105℃ ■ Temperature compensation range 0 to 60℃ ■ Compatible with the terminal arrangement and shape of the integrated sensor XFPM series ■ Custom specifications available *For more details, please refer to the PDF document or feel free to contact us.
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The AG2 series consists of a silicon piezo-resistive pressure sensor and a signal processing IC. The weak signals from the pressure sensor chip are amplified and temperature compensated by the signal processing IC, converting them into an analog output proportional to the pressure. The type of pressure that can be measured is gauge pressure. 【Features】 ■ Amplified and temperature compensated analog output ■ Overall accuracy ±1.5 %FS ■ Compatible with supply voltages of 3.0, 3.3, and 5.0 Vdc ■ Low power consumption Max 2 mA @ 3.3 Vdc ■ Wide operating temperature -40 to 125℃ ■ Wide temperature compensation range 0 to 85℃ ■ Terminal arrangement and shape compatible with the integrated sensor XFGM series ■ Custom specifications can be accommodated *For more details, please refer to the PDF document or feel free to contact us.
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The APB2 series consists of a silicon piezo-resistive pressure sensor and a signal processing IC. The weak signals from the pressure sensor chip are amplified and temperature compensated by the signal processing IC, converting them into an analog output proportional to the pressure. The type of pressure that can be measured is gauge pressure. 【Features】 ■ Amplified and temperature-compensated analog output ■ Barbed port ■ Overall accuracy ±1.5 %FS ■ Compatible with supply voltages of 3.0, 3.3, and 5.0 Vdc ■ Low power consumption Max 2 mA @ 3.3 Vdc ■ Wide operating temperature -40 to 125℃ ■ Wide temperature compensation range 0 to 85℃ ■ Terminal layout compatible with the integrated sensor XFPM series ■ Custom specifications available *For more details, please refer to the PDF document or feel free to contact us.
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The FF14A series features a cable lock mechanism with a 0.5mm pitch and a connector height of 0.9mm. It is compatible with FFC and membranes with a thickness of 0.2mm. 【Features】 - It is compatible with FPC, FFC, and membranes. - The adoption of top and bottom contact points allows for flexibility in the cable insertion direction. - Our unique cam-type back lock ensures reliable operation. - Our proprietary cable lock mechanism resolves issues with insufficient cable retention. - The use of a nickel barrier prevents solder wicking. - The lock does not open even when the cable is pulled upwards. - Delivered in an unlocked state, eliminating the need to open the lever before operation. - It supports automatic mounting with embossed taping supply. - Made from heat-resistant resin, it is compatible with reflow soldering (lead-free temperature profiles can be accommodated). *For more details, please refer to the PDF document or feel free to contact us.
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The AP2 series consists of a silicon piezo-resistive pressure sensor and a signal processing IC. The weak signals from the pressure sensor chip are amplified and temperature compensated by the signal processing IC, converting them into an analog output proportional to the pressure. The type of pressure that can be measured is gauge pressure. 【Features】 ■ Amplified and temperature-compensated analog output ■ Overall accuracy ±1.5 %FS ■ Compatible with supply voltages of 3.0, 3.3, and 5.0 Vdc ■ Low power consumption Max 2 mA @ 3.3 Vdc ■ Wide operating temperature -40 to 125℃ ■ Wide temperature compensation range 0 to 85℃ ■ Pin configuration and shape compatible with the integrated sensor XFPM series ■ Custom specifications available *For more details, please refer to the PDF document or feel free to contact us.
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In the gaming industry, high-definition video display and smooth operation are required to achieve a high level of immersion in VR/AR devices and high-performance gaming consoles. In particular, the reliability of cables that can withstand intense movement and prolonged use is crucial. Cable breakage or signal degradation not only undermines the immersive experience but can also lead to equipment failure. Our ultra-thin coaxial cables, with their high flexibility and bendability, accommodate complex internal wiring of devices and contribute to space-saving designs. 【Usage Scenarios】 - VR/AR headsets - High-performance gaming consoles - Portable gaming devices 【Benefits of Implementation】 - High flexibility prevents cable breakage at movable parts of devices. - Reduced diameter enhances design freedom for devices. - High-speed transmission delivers high-definition video without delay.
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In the security system industry, the confidentiality of data is extremely important to prevent the leakage of sensitive information. Particularly in systems that handle critical information, such as surveillance cameras and access control systems, it is necessary to protect data from unauthorized access and interception from external sources. Our ultra-thin coaxial cables enable high confidentiality data transmission due to their high noise resistance, contributing to the reliability of security systems. 【Usage Scenarios】 - Surveillance camera systems - Access control management systems - Data centers - Security systems for financial institutions 【Benefits of Implementation】 - Reduced risk of data leakage due to high noise resistance - Increased design flexibility of systems due to space-saving wiring - Enhanced installation flexibility due to high bendability and high flexibility
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In the field of wearable devices, miniaturization and high reliability are required. In particular, flexibility that can withstand intense movement and repeated use, as well as efficient wiring within limited space, are important. Our ultra-thin coaxial cables are suitable for wiring to the movable parts of wearable devices due to their high bendability and flexibility. Additionally, their small diameter contributes to the miniaturization of equipment. 【Usage Scenarios】 - Smartwatches - VR/AR headsets - Wearable cameras 【Benefits of Implementation】 - Miniaturization of equipment - Ensuring high reliability - Increased design freedom
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In space applications, miniaturization of equipment is required alongside high reliability in harsh environments. Cables can be affected by various external factors such as temperature changes, vibrations, and radiation, potentially leading to signal transmission interruptions or equipment malfunctions. Our ultra-thin coaxial cables are designed to withstand harsh environments while providing high flexibility and bendability, enabling space-saving wiring. 【Usage Scenarios】 - Space probes - Satellites - Space stations - Rockets 【Benefits of Implementation】 - Ensuring high reliability in harsh environments - Contributing to the miniaturization and lightweighting of equipment - Increasing design flexibility through space-saving wiring
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In the semiconductor manufacturing industry, the miniaturization and high density of manufacturing equipment are advancing, and the reliability of internal wiring is being emphasized. In particular, the performance of cables affects the quality of products in the transmission of high-frequency signals and wiring to moving parts. Our ultra-fine coaxial cables, equipped with high bendability and flexibility, contribute to space-saving wiring, thereby enhancing the reliability of semiconductor manufacturing equipment. 【Usage Scenarios】 - Internal wiring of semiconductor manufacturing equipment - Areas requiring high-frequency signal transmission - Wiring to moving parts 【Benefits of Implementation】 - Contributes to the miniaturization and high density of equipment - Achieves high reliability - Improves wiring workability
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In the measurement instrument industry, minimizing the impact of noise from cables and ensuring stable signal transmission are essential for obtaining high-precision measurement results. This is particularly important for instruments with many moving parts and devices that require space-saving designs, where the flexibility and thinness of cables are crucial. Our ultra-thin coaxial cables offer high bendability and flexibility, contributing to space-saving wiring and enhancing the performance of measurement instruments. 【Usage Scenarios】 - Precision measurement instruments - Inspection devices - Portable measurement instruments 【Benefits of Implementation】 - Improved measurement accuracy through noise countermeasures - Miniaturization and lightweight design of devices - High reliability
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In the broadcasting industry, stable transmission of high-quality video is essential. Particularly in environments where equipment is frequently moved, such as in OB vans and studios, the flexibility and durability of cables become crucial. Cable breakage or signal degradation can lead to interruptions in broadcasting or a decline in image quality, potentially undermining viewer trust. Our ultra-thin coaxial cables offer high bendability and flexibility, enabling stable transmission of high-quality video. 【Usage Scenarios】 - Broadcast cameras - Inside OB vans - Inside studios - Editing equipment 【Benefits of Implementation】 - Stable transmission of high-quality video - Space-saving for equipment - Increased cable lifespan - Improved maintainability
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In the FA industry, the miniaturization and acceleration of equipment are progressing, and as a result, space-saving and high-speed data transmission within the equipment is required. In environments with complex movements, such as robotic arms or those with high vibrations, the durability of cables is also important. Our ultra-thin coaxial cables offer high flexibility and bendability, contributing to the performance improvement of FA systems by supporting high-speed transmission. 【Application Scenarios】 - Industrial robots - Machine tools - Automated transport systems - Image processing systems 【Benefits of Implementation】 - Miniaturization of equipment due to space-saving - Increased cable lifespan due to high flexibility - Overall system acceleration through high-speed transmission
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In the automotive industry, there is a demand for high-performance electronic devices to be installed within limited space. Particularly, as vehicles become more compact, minimizing wiring space is a significant challenge. Our ultra-thin coaxial cables offer high bendability and flexibility, making them suitable for wiring in tight spaces. This enhances the design freedom of devices and contributes to space-saving. 【Usage Scenarios】 - In-vehicle displays - ADAS (Advanced Driver Assistance Systems) - In-vehicle cameras - ECU (Electronic Control Units) 【Benefits of Implementation】 - Miniaturization of devices through space-saving - Improved product lifespan due to high reliability - Increased design freedom through flexible wiring
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In the drone industry, reducing the weight of the aircraft is a crucial challenge for improving flight time and maneuverability. In particular, wiring in tight spaces and accommodating movable parts are required. Our ultra-thin coaxial cables offer high flexibility and bendability, contributing to the lightweight design of drones by enabling space-saving wiring. 【Usage Scenarios】 - Internal wiring of the drone's body - Wiring for gimbals and movable parts - Connections to high-definition cameras and sensors 【Benefits of Implementation】 - Reduction in aircraft weight - Extension of flight time - Improvement in maneuverability
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In the robotics industry, the durability and flexibility of cables for robotic arms and movable parts are crucial. They must withstand frequent movements and bending while maintaining stable signal transmission over long periods. Cable breakage or signal degradation can lead to robot malfunctions or halts, potentially resulting in decreased productivity. Our ultra-thin coaxial cables offer high flexibility and bendability, enhancing the reliability of wiring in robotic movable parts. 【Application Scenes】 - Robotic arms - Mobile robots - Industrial robots with many movable parts 【Benefits of Implementation】 - Increased cable lifespan - Reduced wiring space - Improved operational reliability of robots
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In the medical device industry, there is a simultaneous demand for miniaturization and high functionality. To achieve high reliability and performance within limited space, it is essential to minimize internal wiring. Our ultra-thin coaxial cables, with their high flexibility and bendability, can accommodate complex internal wiring in devices, achieving space-saving solutions. This enhances the design freedom of medical devices and contributes to miniaturization. 【Application Scenes】 - Portable medical devices - Endoscopes - Imaging diagnostic equipment 【Effects of Implementation】 - Miniaturization of devices - Reduction of wiring space - Assurance of high signal transmission quality
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【Features】 ■ Due to its high bending and twisting characteristics, it can accommodate hinges with complex opening and closing mechanisms. ■ Its thin diameter increases design flexibility for devices. ■ It is resistant to noise and suitable for high-speed transmission. ■ Consistent production from cables to assemblies can be achieved in a single factory. ■ Complies with RoHS directives. 【Applications】 ■ Tablet PCs, laptops ■ Digital cameras, digital camcorders ■ Flat displays, head-mounted displays ■ Smartphones, mobile phones ■ Game consoles ■ Surveillance cameras ■ Copying and scanning multifunction devices *For more details, please refer to the PDF document or feel free to contact us.
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In the food processing industry, the safety of manufacturing equipment and hygiene management are the top priorities. Wires that can withstand high-temperature environments and frequent cleaning are required. Inappropriate wires can increase the risk of failure and leakage, potentially leading to a decline in product quality and safety issues. Our heat-resistant vinyl ULCSA wires have a heat resistance of 80°C to 105°C and are certified by UL and CSA. They achieve high reliability and safety even in the harsh environments of food processing equipment. 【Usage Scenarios】 - Food manufacturing machinery - Kitchen equipment - Cleaning machines - Sterilization devices 【Benefits of Implementation】 - Stable operation in high-temperature environments - High safety - Environmental consideration through RoHS2 compliance
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In the machine tool industry, wiring protection is required in harsh environments such as oil, heat, and vibration. In particular, the presence of oil can reduce insulation performance, leading to failures. Our heat-resistant vinyl ULCSA wires excel in oil resistance and maintain stable performance in temperature environments ranging from 80°C to 105°C. This contributes to improving the reliability of machine tools. 【Application Scenarios】 - Hydraulic equipment - Internal wiring of machine tools - Cooling devices 【Benefits of Implementation】 - Suppression of deterioration due to oil - Reduction in maintenance costs due to longer lifespan - Stable machine operation
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In the railway industry, the safety and reliability of vehicle operations are the most important issues. In particular, the vibrations that vehicles experience can damage wiring, leading to delays in signal transmission and equipment failures. In response to this problem, our heat-resistant vinyl ULCSA wire is strong against vibrations and provides stable performance, supporting the safe operation of railway vehicles. 【Usage Scenarios】 - Wiring inside railway vehicles - Signal systems - Control systems 【Benefits of Implementation】 - Suppression of disconnections due to vibrations - Stable operation of systems - Improved safety
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In the solar power generation industry, wiring that is weather-resistant and highly reliable is required because it is installed outdoors. In particular, in environments exposed to temperature changes and ultraviolet rays, the deterioration of electrical wires can lead to a decrease in power generation efficiency and system failures. Our heat-resistant vinyl ULCSA wires excel in heat resistance and flame retardancy, making them suitable for outdoor use. 【Usage Scenarios】 - Wiring for solar power generation systems - Wiring inside control panels installed outdoors - Wiring in high-temperature environments 【Benefits of Implementation】 - Stable operation of the system due to high reliability - Long-term performance maintenance - Ensured safety through UL and CSA certification
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In the telecommunications equipment industry, the reliability of wiring is crucial for maintaining the transmission quality of high-frequency signals. It is particularly important to minimize the effects of signal attenuation and noise. Our heat-resistant vinyl ULCSA wires use heat-resistant PVC as insulation in the 80°C class (UL1007) and 105°C class (UL1015), and they have obtained UL and CSA certifications. They also excel in flame resistance and comply with EU RoHS2. This contributes to the stable operation of high-frequency communication equipment. 【Usage Scenarios】 - Base stations - Wireless LAN access points - Routers - Other communication devices equipped with high-frequency circuits 【Benefits of Implementation】 - Improved transmission quality of high-frequency signals - Enhanced reliability of equipment - Achieving long-term stable operation
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In the semiconductor manufacturing industry, a highly clean environment is required, as contamination from fine dust and gases significantly affects product quality. In particular, wiring within manufacturing equipment demands high reliability and safety under these conditions. Our heat-resistant vinyl ULCSA wires utilize materials and structures suitable for use in cleanroom environments, providing stable performance. 【Usage Scenarios】 - Manufacturing equipment in cleanrooms - Semiconductor production lines - Precision instruments 【Benefits of Implementation】 - High reliability in clean environments - Safety ensured by UL and CSA certification - Environmental consideration through RoHS2 compliance
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In the aerospace industry, reducing the weight of aircraft is essential for improving fuel efficiency and performance. Since wires affect the overall weight of the aircraft, lightweight and highly reliable products are required. Our heat-resistant vinyl ULCSA wires are designed for use in the harsh environments of aerospace applications, achieving both weight reduction and high reliability. 【Application Scenarios】 - Aircraft - Spacecraft - Related Equipment 【Benefits of Implementation】 - Improved fuel efficiency through weight reduction - Enhanced safety due to high reliability
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In the medical device industry, wiring materials that can withstand sterilization processes are required. Especially under high-temperature and high-pressure sterilization conditions, degradation and performance decline of the wiring can compromise the safety and reliability of the equipment. Our "Heat-Resistant Vinyl ULCSA Wires" have a heat resistance of 80°C to 105°C and are certified by UL and CSA, meeting the stringent demands of medical devices. [Application Scenarios] - Medical imaging diagnostic equipment - Surgical robots - Sterilizers - Patient monitoring systems [Benefits of Implementation] - High reliability in sterilization environments - Extended lifespan of equipment - Improved safety
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In the automotive engine industry, the reliability of wiring under harsh conditions such as high temperatures, vibrations, and oil exposure is essential. To maximize engine performance, wiring that can withstand these elements is indispensable. Wiring malfunctions can lead to engine misoperation or performance degradation. Our heat-resistant vinyl ULCSA wire excels in heat resistance and oil resistance, providing stable performance even in severe environments. 【Application Scenarios】 - Wiring in the engine compartment - Sensor wiring - Control unit wiring 【Benefits of Implementation】 - Improved engine reliability - Extended wiring lifespan - Enhanced vehicle safety
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In the home appliance industry, the long-term reliability of products is extremely important. In particular, they must withstand temperature changes and prolonged use. The quality of electrical wires is directly linked to the safety and performance of the products, and defects can lead to product failures or accidents. Our "Heat-Resistant Vinyl ULCSA Wire" is equipped with high heat resistance and flame retardancy, contributing to the reliability of home appliances. [Usage Scenarios] - Home appliances such as refrigerators, washing machines, and air conditioners - Products used in high-temperature environments - Products expected to be used continuously for long periods [Effects of Implementation] - Improved product safety - Extended product lifespan - Increased customer satisfaction
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In the industrial machinery sector, stable operation under high-temperature conditions is required. In particular, the degradation of electrical wires due to heat can lead to malfunction or failure of equipment, resulting in decreased production efficiency and safety issues. Our heat-resistant vinyl ULCSA wires use heat-resistant PVC as insulation for the 80°C class (UL1007) and 105°C class (UL1015), ensuring stable performance even in high-temperature environments. They are certified by UL and CSA and also excel in flame resistance. 【Application Scenarios】 - Manufacturing machinery and equipment - Communication and industrial equipment control systems 【Benefits of Implementation】 - Stable operation of equipment in high-temperature environments - Improved product reliability - Reduced maintenance costs
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【Features】 - Widely used for wiring in electronic devices, communication equipment, manufacturing machinery, communication, and control devices. - Insulated with heat-resistant PVC in the 80°C class (UL1007) and 105°C class (UL1015). - Certified by UL and CSA. - Flame retardant, UL VW-1. - Compliant with EU RoHS2 (restrictions on the use of 6 substances and specific phthalates (DEHP, BBP, DBP, DIBP)). 【Applications】 - Manufacturing machinery and equipment. - Communication and industrial equipment control systems. - Entertainment equipment. - PCs. *For more details, please refer to the PDF document or feel free to contact us.
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A heat pipe is a thermal transport element that utilizes the latent heat of evaporation and condensation, capable of transporting a large amount of heat with a small temperature difference. It can also be supplied as a cooling module equipped with heat pipes, heat receiving plates, fins, fans, and so on. 【Features】 ■ Excellent thermal conductivity ■ Fast thermal response ■ High temperature uniformity ■ Large design flexibility ■ Maintenance-free & zero running costs ■ Lightweight and compact *For more details, please refer to the PDF document or feel free to contact us.*
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