Guangzhou Eric Wei Chemical Co., Ltd.
Guangzhou Eric Wei Chemical Co., Ltd.

Albemarle SAYTEX HP-900 Flame Retardant

Albemarle SAYTEX HP-900 is a brominated flame retardant designed for high-performance engineering thermoplastics like PBT and PC blends. It delivers excellent thermal stability, low volatility, and superior flame resistance (UL94 V-0). This halogenated additive ensures consistent processing, minimal plate-out, and compliance with global safety standards—ideal for automotive, electronics, and electrical applications requiring reliable fire protection.
  • albemarle saytex hp 900 flame retardant_48d83c38
  • albemarle saytex hp 900 flame retardant_48d83c38

Features Of Albemarle SAYTEX HP-900 Flame Retardant

  1. High-performance brominated flame retardant based on decabromodiphenyl ethane (DBDPE) chemistry.

  2. Excellent thermal stability, supporting processing temperatures up to 320 °C without significant decomposition.

  3. Low volatility and minimal plate-out tendency in extrusion and injection molding operations.

  4. Compatible with a broad range of engineering thermoplastics, including ABS, HIPS, and PC/ABS blends.

  5. Meets stringent regulatory requirements for restricted substances, including RoHS compliance (exemption 7a) and absence of polybrominated biphenyls (PBB) and polybrominated diphenyl ethers (PBDE).

Typical Applications Of Albemarle SAYTEX HP-900 Flame Retardant

  1. Electrical and electronic housings requiring UL 94 V-0 rating at thin wall sections.

  2. Connectors, switches, and circuit breaker components in industrial and consumer power distribution systems.

  3. Automotive interior parts such as center consoles, trim panels, and control modules.

  4. Business equipment enclosures, including printers, copiers, and network infrastructure devices.

Specifications Of Albemarle SAYTEX HP-900 Flame Retardant

Chemical TypeDecabromodiphenyl ethane (DBDPE)
Product FormFree-flowing white granules
AppearanceOff-white to light beige granules
Bromine Content (by weight)≥82.0%
Onset Decomposition Temperature (TGA, 10 °C/min, N₂)≥320 °C
Primary ApplicationsFlame retardancy in engineering thermoplastics
Key FeaturesThermal stability, low volatility, RoHS-compliant formulation
BenefitsConsistent flame performance, reduced processing defects, regulatory confidence


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