As a national high-tech enterprise, TST CABLE adheres to the development philosophy of “quality first, technology-led,” and has assembled a professional R&D team relying on university research resources to build a high-end special cable product line covering multiple scenarios and needs. The company has successively passed multiple system and product certifications, including GJB9001C weapon equipment quality system certification, China Classification Society (CCS) certification, CRCC China Railway certification, IRIS international railway industry standard certification, and CE EU certification. Its standardized production system and stringent quality control processes provide stable and compliant product guarantees for applications in various high-end fields.

The newly launched products are precisely designed to meet the transmission needs of different extreme environments, making them the preferred choice for transmission in demanding scenarios.
High vacuum (HV) and ultra-high vacuum (UHV) series cables are considered “dedicated connection solutions” for vacuum environments.
The HV series uses high-quality conductors such as oxygen-free copper and silver-plated copper, combined with high-performance insulation materials such as PEEK and PTFE. It can operate stably under vacuum pressures from 10⁻³mbar to 10⁻⁷mbar, with a temperature range of 80℃-150℃, making it suitable for diverse applications such as precision instruments and industrial coating. The UHV series further breaks through performance boundaries, achieving compatibility with ultra-high vacuums from 10⁻⁷mbar to 10⁻¹²mbar, with a temperature range of 4K-300℃, excellent radiation resistance, and has passed professional vacuum performance testing, making it a suitable choice for high-end experimental applications such as semiconductor manufacturing and particle accelerators.
Focusing on the aerospace and military industries, TST CABLE’s aerospace-grade polyimide lightweight wires stand out.
Aerospace-grade polyimide lightweight conductors have a wide temperature range, can operate normally in environments from ultra-low temperatures to 260°C, and can withstand even higher temperatures in the short term. They also exhibit excellent radiation resistance. At the same time, their structural design achieves lightweight optimization, reducing weight and outer diameter compared to traditional products, making them suitable for the internal wiring and connection requirements of spacecraft, satellites, and other high-radiation vacuum environments. Ultra-low temperature ultra-vacuum polyimide cables , with their performance stability in ultra-low temperature environments, have become the core transmission and matching choice for military, vacuum medical, and other scenarios.
For the marine engineering and shipbuilding sector, TST CABLE ‘s liquid nitrogen 77K polyimide cables and submersible motor polyimide copper round wires are precisely matched to the special requirements of the marine environment.
Liquid nitrogen 77K polyimide cables can operate stably in a wide temperature range of -196℃ to 260℃, and are characterized by low noise and scratch resistance, making them suitable for equipment such as LNG ship submersible motor sensors; while submersible motor polyimide copper round wires have high strength, oil and water resistance, and excellent electrical performance, providing reliable connection support for marine engineering and submersible equipment.
From ultra-high vacuum high-end experimental platforms to high-radiation aerospace scenarios and highly weather-resistant marine environments, TST CABLE cables have achieved breakthroughs in core technologies such as extrusion molding, continuously setting new performance records for specialty cables in extreme environments. In the future, TST CABLE cables will continue to deepen technological innovation, focusing on the personalized needs of various high-end fields, creating specialty cable solutions that better suit practical applications, and leveraging its professional strength to support the development and upgrading of the high-end equipment manufacturing sector.
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