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LOCTITE® ABLESTIK 8700E – Epoxy-based adhesive – Hybrid component attach for gold and gold-plated surfaces

  • Item Name: LOCTITE ABLESTIK 8700E
  • Manufacturer: Henkel
  • Product Category: Electrically & Thermally Conductive Epoxy Adhesive
  • Technologies: Epoxy, Electrically Conductive, Thermally Conductive
  • Applications: Hybrid component attach, component attach on gold/gold-plated surfaces
  • Color: Silver
  • Cure Type: Heat cure
  • Package Size: Contact Techniq VN for details
  • Shelf Life: 12 months (at -40°C)

1. Product Overview
LOCTITE ABLESTIK 8700E is a silver-colored, electrically and thermally conductive epoxy adhesive designed for hybrid component attachment. It offers excellent adhesion, high shear strength after thermal cycling, and superior dispensing and printing characteristics. It meets MIL-STD-883, Method 5011 requirements.

2. Applications

  • Hybrid component attach
  • Suitable for gold/gold-plated surfaces

3. Typical Properties

Property Value
Uncured Properties
Thixotropic Index (0.5/5 rpm) 3.0
Viscosity (Brookfield, 25°C, 5 rpm) 18,000 mPa·s (cP)
Work Life @ 25°C 7 days
Shelf Life @ -40°C 365 days
Curing Performance
Standard Cure 2 hours @ 160°C
Alternate Cure 15 min ramp to 130°C + 1 hour @ 130°C + 15 min ramp to 160°C + 1 hour @ 160°C
Weight Loss on Cure 2.6%
Cured Properties
Coefficient of Thermal Expansion (ppm/°C) 45 (Below Tg), 120 (Above Tg)
Glass Transition Temperature (Tg) 160°C
Thermal Conductivity @ 121°C 1.6 W/(m-K)
Tensile Modulus @ 25°C 4,414 N/mm² (640,000 psi)
Extractable Ionic Content (ppm) Cl-: 35, Na+: 5, K+: None Detected
Moisture Absorption @ 85°C/85% RH 0.62%

BERGQUIST microTIM mTIM 1028 Thermal Interface Coating High performance thermal management solution for nickel finished heat sinks, optical transceivers, and data center liquid cooling systems

BERGQUIST microTIM mTIM 1028 is purpose built for riding cage assemblies in servers, switches, and routers, interfacing with electroless nickel plated copper or aluminum heat sinks. It ensures stable operation in high power transceiver modules while also extending applicability to liquid cooling components, heat pipes, and fin based dissipative structures.

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