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Thermal Grizzly Kryonaut Thermal Paste, 1g syringe — non‑conductive (0 pS/m), density 3.7 g/cm³, viscosity 130–170 Pa·s, operating −250°C to +350°C, silver‑matt color; engineered for extreme overclocking with excellent thermal conductivity

Thermal Grizzly Kryonaut Thermal Paste, 1g syringe — non‑conductive (0 pS/m), density 3.7 g/cm³, viscosity 130–170 Pa·s, operating −250°C to +350°C, silver‑matt color; engineered for extreme overclocking with excellent thermal conductivity
Thermal Grizzly Kryonaut Thermal Paste, 1g syringe — non‑conductive (0 pS/m), density 3.7 g/cm³, viscosity 130–170 Pa·s, operating −250°C to +350°C, silver‑matt color; engineered for extreme overclocking with excellent thermal conductivity
Thermal Grizzly Kryonaut Thermal Paste, 1g syringe — non‑conductive (0 pS/m), density 3.7 g/cm³, viscosity 130–170 Pa·s, operating −250°C to +350°C, silver‑matt color; engineered for extreme overclocking with excellent thermal conductivity
Thermal Grizzly Kryonaut Thermal Paste, 1g syringe — non‑conductive (0 pS/m), density 3.7 g/cm³, viscosity 130–170 Pa·s, operating −250°C to +350°C, silver‑matt color; engineered for extreme overclocking with excellent thermal conductivity
Thermal Grizzly Kryonaut Thermal Paste, 1g syringe — non‑conductive (0 pS/m), density 3.7 g/cm³, viscosity 130–170 Pa·s, operating −250°C to +350°C, silver‑matt color; engineered for extreme overclocking with excellent thermal conductivity
Thermal Grizzly Kryonaut Thermal Paste, 1g syringe — non‑conductive (0 pS/m), density 3.7 g/cm³, viscosity 130–170 Pa·s, operating −250°C to +350°C, silver‑matt color; engineered for extreme overclocking with excellent thermal conductivity
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Thermal Grizzly Kryonaut Thermal Paste, 1g syringe — non‑conductive (0 pS/m), density 3.7 g/cm³, viscosity 130–170 Pa·s, operating −250°C to +350°C, silver‑matt color; engineered for extreme overclocking with excellent thermal conductivity
Thermal Grizzly Kryonaut Thermal Paste, 1g syringe — non‑conductive (0 pS/m), density 3.7 g/cm³, viscosity 130–170 Pa·s, operating −250°C to +350°C, silver‑matt color; engineered for extreme overclocking with excellent thermal conductivity
Thermal Grizzly Kryonaut Thermal Paste, 1g syringe — non‑conductive (0 pS/m), density 3.7 g/cm³, viscosity 130–170 Pa·s, operating −250°C to +350°C, silver‑matt color; engineered for extreme overclocking with excellent thermal conductivity
Thermal Grizzly Kryonaut Thermal Paste, 1g syringe — non‑conductive (0 pS/m), density 3.7 g/cm³, viscosity 130–170 Pa·s, operating −250°C to +350°C, silver‑matt color; engineered for extreme overclocking with excellent thermal conductivity
Thermal Grizzly Kryonaut Thermal Paste, 1g syringe — non‑conductive (0 pS/m), density 3.7 g/cm³, viscosity 130–170 Pa·s, operating −250°C to +350°C, silver‑matt color; engineered for extreme overclocking with excellent thermal conductivity
Thermal Grizzly Kryonaut Thermal Paste, 1g syringe — non‑conductive (0 pS/m), density 3.7 g/cm³, viscosity 130–170 Pa·s, operating −250°C to +350°C, silver‑matt color; engineered for extreme overclocking with excellent thermal conductivity
Thermal Grizzly Kryonaut Thermal Paste, 1g syringe — non‑conductive (0 pS/m), density 3.7 g/cm³, viscosity 130–170 Pa·s, operating −250°C to +350°C, silver‑matt color; engineered for extreme overclocking with excellent thermal conductivity
425 EGP
Ex Tax: 425 EGP
  • Stock: In Stock
  • Model: TG-K-001-RS
  • Product: 1 g syringe; color: silver‑matt; intended for CPUs/GPUs and industrial cooling where maximum heat transfer is required.

  • Electrical properties: Electrically non‑conductive at 0 pS/m, reducing short‑circuit risk around exposed SMDs and traces.

  • Physical properties: Density 3.7g/cm3; viscosity 130170Pa\cdotps for stable application and gap filling of micro‑imperfections between IHS and cooler base.

  • Temperature range: Operational from −250°C to +350°C, suitable for cryogenic benching up to sustained high‑temperature environments; carrier structure resists drying up to around 80°C in typical long‑term service.

  • Thermal performance: Market listings commonly cite thermal conductivity around 12.5 W/m·K for this formulation, aligning with retailer and distributor specifications for the 1 g variant.

  • Application behavior: No curing required; delivers peak performance immediately after application and maintains stability over time under normal operating conditions.

  • Use cases: Extreme overclocking, high‑density workstations, and scenarios demanding excellent thermal interface performance without electrical conductivity risk; compatible with air and liquid coolers.