High-Temperature Material
Printable
Strong adhesion
Flexible use
Nytex provides a range of high-temperature materials essential in modern industrial applications. These materials possess exceptional heat resistance, low moisture absorption, high rigidity, low warpage, dimensional stability, chemical stability, and impressive mechanical performance. As a result, they are widely utilized in various fields, driving continuous technological innovation and development. These high-temperature materials play a crucial role in numerous industries, meeting the increasing demand for materials that can withstand extreme temperatures.
- High-Temperature Nylon (PA10T、PA6T)
- Liquid Crystal Polymers (LCP)
- Polyphenylene Sulfide (PPS)
These high-temperature materials are well-suited for use in various applications,, including FPC connectors, high-temperature structural components, medical devices, lens modules, EV connectors, fuel conduits, battery modules, and battery O-rings. Their ability to withstand high temperatures and extreme environmental conditions makes them the preferred materials for such purposes.
High-Temperature Nylon (PA10T、PA6T)

| Key Attributes | Description |
| Dimensional Stability | High-temperature nylon demonstrates exceptional dimensional stability, remaining unaltered in humid conditions, guaranteeing accurate measurements and geometric forms. |
Low Moisture Absorption
| Its ability to resist moisture absorption enables it to retain consistent performance even in high humidity, minimizing any distortion caused by moisture. |
| High Rigidity
| High-temperature nylon is known for its exceptional rigidity and strength, enabling it to endure substantial mechanical loads, thus making it ideal for high-rigidity applications. |
| High Heat Resistance
| This substance can retain its stability even in extreme temperatures while preserving its strength and distinctive properties. Consequently, it is well-suited for use in high-temperature operational settings. |
| Low Warpage | The low warpage characteristic of high-temperature nylon enables it to retain its shape stability even when exposed to high temperatures, preventing problems associated with heat deformation and moisture absorption. |
| Applications | Description |
| FPC Connectors
| High-temperature nylon is essential for FPC connectors, offering outstanding heat stability and chemical resistance. This material is ideal for high-density electronic connectors used in SMT processes for high-temperature and high-density electronic applications. |
| High-Temperature Structural Components | High-temperature nylon is applied in high-temperature structural components like engine parts, heat treatment equipment, and high-temperature sealing components. Its exceptional stability at extremely high temperatures renders it ideal for use when resistance to heat deformation is necessary. |
| Aerospace Application Connectors | High-temperature nylon is extensively used in connectors and components within the aerospace industry due to its exceptional resistance to extreme temperatures and environmental conditions. |
| Water Treatment Applications
| High-temperature nylon is preferred in water treatment and chemical industries because of its resistance to corrosion, stability at high temperatures, and low moisture absorption. It is frequently used for equipment such as pipes, valves, filters, and other components. |
| Healthcare | High-temperature nylon has garnered considerable interest within the medical device and healthcare industry, particularly in applications that demand resistance to high temperatures and chemicals. |
Liquid Crystal Polymers (LCP)
| Key Attributes | Description |
Excellent Chemical Resistance | LCP exhibits remarkable chemical stability, effectively resisting both corrosion and chemical erosion. |
Precision Injection Molding | LCP facilitates accurate injection molding, allowing for the creation of intricate structures and complex geometries. |
| High Flow
| LCP demonstrates excellent flow characteristics, enabling it to fill intricate molds and streamline the production of complex components. |
| Flame Retardant UL94V0
| LCP provides exceptional flame-retardant characteristics and meets the UL94V0 standard, rendering it appropriate for various electronic and industrial uses. |
| Low Warpage | LCP possesses excellent resistance to warping even under elevated temperatures, rendering it highly suitable for precision components and environments with high temperatures. |
Low Shrinkage
| The low shrinkage characteristics of LCP guarantee the dimensional stability of the final products. |
| Excellent Dimensional Stability | LCP exhibits remarkable dimensional stability in high temperatures and humidity environments, rendering it ideal for precision-demanding applications. |
| Low Moisture Absorption | LCP’s exceptional resistance to moisture absorption enables it to uphold consistent performance even in environments with high humidity. |
| Applications | Description |
| FPC Connectors
| LCP exhibits outstanding performance in FPC connectors, showcasing remarkable heat resistance, minimal warpage, and exceptional dimensional stability. These qualities render it a perfect material choice for high-density connections. |
Medical Devices
| LCP is used in devices such as high-temperature medical equipment, chemically resistant instruments, and dependable connectors. |
| Motor Coils
| LCP is commonly utilized in motor coils and electrical components due to its exceptional heat resistance and dimensional stability, particularly in environments with high temperatures and humidity. |
| Lens Modules
| LCP’s precise injection molding abilities and dimensional consistency render it appropriate for optical uses such as lens modules. |
| Sim Card Holders
| LCP finds its application in Sim card sockets and various electronic connectors due to its exceptional dimensional stability and resistance to heat, rendering it highly suitable for high-density connections. |
CPU Connectors | LCP is utilized in CPU connectors to ensure fast data transmission and secure connections. |
Polyphenylene Sulfide (PPS)

| Key Attributes | Description |
Excellent Chemical Resistance | PPS demonstrates exceptional chemical stability, effectively withstanding corrosion and chemical erosion. |
| High Heat Resistance | PPS demonstrates outstanding resistance to high temperatures, ensuring structural integrity even in extreme heat conditions. |
| Precision Injection Molding | PPS enables accurate injection molding, facilitating intricate structures and complex geometries. |
| High Flow
| PPS exhibits excellent flow characteristics, enabling it to effectively occupy intricate molds and streamline the production of complex components. |
| Flame Retardant UL94V0
| PPS possesses exceptional flame-retardant characteristics and adheres to the UL94V0 standard, rendering it appropriate for various electronic and industrial applications. |
| Low Warpage | When exposed to elevated temperatures, PPS exhibits minimal warpage characteristics, rendering it ideal for precision components and high-temperature settings. |
Low Shrinkage
| PPS exhibits minimal shrinkage properties, guaranteeing the dimensional stability of the final products. |
| Excellent Dimensional Stability | PPS exhibits exceptional dimensional stability in elevated temperatures and high humidity conditions, rendering it ideal for precision-critical applications. |
| Low Moisture Absorption | PPS’s ability to resist moisture absorption enables it to maintain consistent performance even in high humidity environments. |
| High CTI Value
| PPS demonstrates a high Comparative Tracking Index (CTI) value, showcasing its exceptional insulating capabilities in high-voltage settings. |
| Applications | Description |
| Hot Gas Filtration
| PPS is frequently utilized in hot gas filtration systems for its excellent heat resistance and chemical stability, making it ideal for filtering in harsh conditions with high temperatures and corrosive substances. |
| New Energy Vehicle Connectors
| PPS is commonly used in electric vehicle connectors due to its excellent heat resistance and dimensional stability, making it a perfect option for high-voltage electrical systems. |
| Fuel Conduits
| PPS is frequently utilized in fuel conduits due to its chemical resistance, which helps prevent fuel corrosion and maintain the system’s dependable operation. |
| Coolant Pumps
| Polyphenylene sulfide (PPS) is commonly used in automotive components such as coolant pumps due to its exceptional heat resistance and chemical stability, allowing for reliable performance in harsh conditions with high temperatures and corrosive substances. |
| Battery O-Rings
| PPS is employed in the seals of battery O-rings to effectively separate the internal and external environments of batteries. This is achieved thanks to its remarkable resistance to moisture absorption and chemical stability. |
| Categories | Name | Series |
|
High-Temperature Nylon (PA10T, PA6T)
| UG, UF Series |
|
| Liquid Crystal Polymers (LCP) | LF、LG Series |
|
| Polyphenylene Sulfide (PPS) | JG Series
|
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