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3.0 W/m·K High Thermal Conductivity Silicone Potting Compound Manufacturer | RTV-2 Addition-Cure Encapsulation Gel (HN-8830A/B)

3.0 W/m·K High Thermal Conductivity Silicone Potting Compound Manufacturer | RTV-2 Addition-Cure Encapsulation Gel (HN-8830A/B)

Product Details:
Place of Origin: china dongguang
Brand Name: hanast
Certification: Rohs、UL
Model Number: HN-8830A/B
Document: HANAST_TDS_HN-8830( 3.0W_mÂ...K).pdf
Detail Information
Place of Origin:
china dongguang
Brand Name:
hanast
Certification:
Rohs、UL
Model Number:
HN-8830A/B
Specific Gravity:
0.98
Volumeresistivity:
1 X 10^14 Ohm·cm
Full Cure Time:
4-8 Hours
Flameretardant:
UL94 V-0 Rated (optional)
Operatingtemperaturerange:
-50°C To 200°C
Package:
25kgs/200kgs/bag
Color Options:
Grey、White、Black
Curing Condition:
4-12 Hours At 25 C; 0.2 Hour At 80 C
Hardness After Cure:
35±5 Shore A
Tensilestrength:
1.5 - 3.0 MPa
Mixing Ratio:
1:1 (A:B By Weight)
Operating Time:
30-40 Min At 25°C
Exterior:
Liquid
Thermal Conductivity:
3.0 W/m.K
Curingmethod:
Room Temperature Vulcanizing (RTV) Or Heat Curing
Volume Resistivity:
1 X 10^14 Ohm·cm
Operating Temperature:
-50°C To 200°C
Tensile Strength:
1.5 - 3.0 MPa
Hardness:
35±5 Shore A
Highlight:

High Light

Highlight:

high thermal conductivity silicone potting compound

,

RTV-2 addition-cure encapsulation gel

,

silicone potting compound with warranty

Trading Information
Minimum Order Quantity:
50
Price:
$7-$12
Packaging Details:
50KG/set
Delivery Time:
5-8work day
Payment Terms:
T/T
Supply Ability:
100ton/month
Product Description

3.0 W/m·K High Thermal Conductivity Silicone Potting Compound Manufacturer | RTV-2 Addition-Cure Encapsulation Gel (HN-8830A/B)

Product Overview:

Shenzhen Hanast New Materials Co., Ltd. is a professional China-based chemical manufacturer specializing in HN-8830A/B, a premium two-component, addition-cure (platinum-catalyzed) 3.0 W/m·K high thermal conductivity silicone potting compound. Designed for high-power electronics requiring rapid heat dissipation and electrical isolation, HN-8830 features a 1:1 mix ratio by weight, low mixed viscosity (11,000 mPa·s), and self-leveling fluidity for deep-section potting.

HN-8830 maintains long-term flexible elastomeric protection across a broad operating temperature range from -40°C to +200°C, achieving UL 94 V-0 flame retardancy and superior dielectric insulation (volume resistivity ≥ 1.0 × 10¹⁴ Ω·cm). It offers versatile curing options—flexible room-temperature curing (4–8 hours at 25°C) or rapid heat-accelerated curing (30 minutes at 80°C). Engineered as a factory-direct alternative to imported high-thermal encapsulation adhesives, HN-8830 is ideal for EV DC-DC converters, switching power supplies, LED drivers, and automotive ignition modules. Supplied in standard 50 kg sets (25 kg Component A + 25 kg Component B plastic barrels), we provide complete SDS/MSDS for non-dangerous goods sea freight and full origin certificate support (Form E / RCEP).

2. Technical Specifications & Performance Matrix

Technical Data Sheet (HANAST HN-8830A/B TDS)

2.1 Liquid Uncured Properties (at 25°C)

Property Test Method / Condition Unit Component A Component B Mixed (A+B)
Appearance Visual — White liquid Grey liquid Grey elastomer (cured)
Base Chemistry — — Polysiloxane Polysiloxane Addition-cure (Platinum-catalysed)
Mix Ratio By Weight — — — 1 : 1
Viscosity GB/T 2794 (25°C) mPa·s 10,500 ± 2,000 9,500 ± 2,000 11,000 ± 2,000
Density GB/T 13354 (25°C) g/cm³ 2.95 ± 0.02 2.95 ± 0.02 2.95 ± 0.02
Pot Life / Operating Time 25°C / 100g mix Minutes — — 60 – 180 mins

2.2 Physical & Electrical Cured Properties

Cured Property Test Method / Condition Unit Technical Specification Value
Thermal Conductivity GB/T 38712-2020 W/m·K 3.0 ± 0.1 W/m·K
Hardness GB/T 531.1 Shore A 35 ± 8 Shore A
Volume Resistivity GB/T 31838.2-2019 / DC 500V Ω·cm ≥ 1.0 × 10¹⁴ Ω·cm
Flame Retardancy Rating UL 94 Class UL 94 V-0 Certified
Operating Temperature Range Continuous °C -40°C to +200°C
Room Temp. Cure Time 25°C Hours 4 – 8 Hours
Heat-Accelerated Cure Time 80°C Minutes 30 Minutes

3. Direct Factory Alternatives & Performance Cross-Reference

Specification Feature Standard 1.0–1.5 W/m·K Potting Silicone HANAST HN-8830A/B (3.0 W/m·K) PDF Key Procurement Advantage
Thermal Conductivity 1.0 – 1.5 W/m·K 3.0 ± 0.1 W/m·K 2x to 3x higher heat dissipation efficiency for high-power electronics
Mix Ratio (A:B) Often 10:1 (Complex weighing) 1:1 by weight Prevents mixing ratio errors; easier automated dispensing
Cure Flexibility Requires elevated oven heat 25°C RT (4-8h) or 80°C (30 min) Saves factory energy costs and simplifies line processes
Specific Gravity / Density ~1.6 – 2.2 g/cm³ 2.95 ± 0.02 g/cm³ Formulated with high-purity thermal ceramic fillers
Flame Rating UL 94 V-1 / Non-rated UL 94 V-0 High-level fire protection for automotive & industrial power units

4. Key Application Scenarios

  • New Energy Vehicles (NEV) & EV Power: Potting for DC-DC converters, OBCs (On-Board Chargers), automotive HID lamp modules, and ignition system power units.

  • Power Supplies & Inverters: Encapsulation of high-power switching power supplies, industrial driver power supplies, and outdoor energy storage units.

  • Home Appliance & Industrial Controllers: Thermal management for high-power appliance control boards operating under continuous high temperature.

  • Power Modules & Circuit Board Encapsulation: Protection of sensitive power modules and densely packed PCB components needing shock resistance and heat release.

5. Frequently Asked Questions (FAQ) Module

Q1: What makes HN-8830 suitable for high-power EV power modules and DC-DC converters?

A: HN-8830 delivers an elevated thermal conductivity of 3.0 ± 0.1 W/m·K, which rapidly transfers heat away from high-power electronic components to heat sinks. Combined with its 1:1 mix ratio, low viscosity (11,000 mPa·s), UL 94 V-0 flame retardancy, and reliable continuous thermal stability from -40°C to +200°C, it guarantees electrical insulation and structural integrity under severe thermal shock and vibration.

Q2: What is the recommended curing schedule for HN-8830 silicone potting compound?

A: HN-8830 offers flexible curing options:

  1. Room Temperature Cure: Cures within 4–8 hours at 25°C.

  2. Heat-Accelerated Cure: Fully cures in just 30 minutes at 80°C.

  3. Two-Stage Cure (Recommended): Allow the compound to stand at room temperature until tack-free, followed by 30 minutes at 80°C for optimal flow, stress relief, and ultimate physical performance.

Q3: How do I avoid cure inhibition ("poisoning") when using this addition-cure silicone?

A: Because HN-8830 utilizes a platinum catalyst, contact with certain chemical contaminants can inhibit curing (leaving a tacky or uncured layer). Avoid contact with:

  • Organotin or tin-containing silicones (condensation-cure silicones).

  • Sulfur, polysulfides, or sulfur-vulcanized rubber.

  • Amines, polyurethane rubber, or ammonia derivatives.

  • Phosphorus compounds, organic acids, solder flux residues, and epoxy resins. Ensure all mixing tools, dispensers, and component substrates are thoroughly cleaned prior to potting.

Q4: How is HN-8830 packaged, and what are its export shipping classifications?

A: HN-8830 is supplied in a 50 kg/set kit containing 25 kg Component A (plastic barrel) and 25 kg Component B (plastic barrel). It has a shelf life of 6 months when stored between 5–25°C in tightly sealed original containers. For export logistics, HN-8830 is classified as non-dangerous goods (general chemicals) for ocean container shipping. Shenzhen Hanast provides full export documentation including GHS MSDS/SDS, Certificate of Analysis (COA), and origin certificates (Form E / RCEP).

Ratings & Review

Overall Rating

5.0
Based on 50 reviews for this supplier

Rating Snapshot

The following is the distribution of all ratings
5 stars
100%
4 stars
0%
3 stars
0%
2 stars
0%
1 stars
0%

All Reviews

M
m*m
South Korea Aug 5.2026
High quality,very fast response,recommend
S
S*r
Germany Jun 3.2026
We’ve been using Hanast’s thermal conductive potting compound (2.0 W/m·K) for our energy storage system (ESS) modules for over a year. It performs exceptionally well in thermal management and has successfully passed rigorous UL94 V-0 flame-retardant and thermal shock tests