Hysol GR2330 | Orange Epoxy Mold Compound
- For MnO Tantalum Capacitors
- Orange Colored
- Orange version of GR2310 and GR2320
Product Description
Hysol GR2330 is an orange semiconductor epoxy molding compound designed for the encapsulation and protection of Manganese Oxide or MnO2 tantalum capacitors and other automotive packages. Once molded and post-mold cured, this product provides optimum protection and reliability for these capacitor devices.
Hysol GR2330 is a laser markable environmentally "green" product, that doesn't contain any halogens including bromine, antimony or phosphorus flame retardants. Hysol's MG-series epoxy molding compounds dominated the space for tantalum capacitors but used halogen-containing flame retardants. This next generation epoxy mold compound replaces these older generation products. This material is designed to achieve JEDEC Level 1 requirements at 260°C reflow temperature on Maganese Oxide MnO2 capacitors. Its fast cure time also ensures that it is compatible with the latest automold manufacturing equipment. Hysol GR2330 meets UL 94 V-0 Flammability at 1/4 inch (6.35mm) thickness.
Technical Specifications
General Properties | |||||||||
Color Color The color | Orange | ||||||||
Filler Content | 74 % | ||||||||
Specific Gravity Specific Gravity Specific gravity (SG) is the ratio of the density of a substance to the density of a reference substance; equivalently, it is the ratio of the mass of a substance to the mass of a reference substance for the same given volume. For liquids, the reference substance is almost always water (1), while for gases, it is air (1.18) at room temperature. Specific gravity is unitless. | 1.83 | ||||||||
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Physical Properties | |||||||||
Spiral Flow @ 175°C | 81 cm | ||||||||
Chemical Properties | |||||||||
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Moisture absorption | 0.45 % | ||||||||
Electrical Properties | |||||||||
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Volume Resistivity Volume Resistivity Volume resistivity, also called volume resistance, bulk resistance or bulk resistivity is a thickness dependent measurement of the resistivity of a material perpendicular to the plane of the surface. | 3.0x1017 Ohms⋅cm | ||||||||
Mechanical Properties | |||||||||
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Molded Shrinkage | 0.17 % | ||||||||
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Thermal Properties | |||||||||
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Glass Transition Temperature (Tg) Glass Transition Temperature (Tg) The glass transition temperature for organic adhesives is a temperature region where the polymers change from glassy and brittle to soft and rubbery. Increasing the temperature further continues the softening process as the viscosity drops too. Temperatures between the glass transition temperature and below the decomposition point of the adhesive are the best region for bonding. The glass-transition temperature Tg of a material characterizes the range of temperatures over which this glass transition occurs. | 175 °C | ||||||||
Thermal Conductivity Thermal Conductivity Thermal conductivity describes the ability of a material to conduct heat. It is required by power packages in order to dissipate heat and maintain stable electrical performance. Thermal conductivity units are [W/(m K)] in the SI system and [Btu/(hr ft °F)] in the Imperial system. | 0.65 W/m.K | ||||||||
UL 94 Rating UL 94 Rating Flammability rating classification. It determines how fast a material burns or extinguishes once it is ignited. HB: slow burning on a horizontal specimen; burning rate less than 76 mm/min for thickness less than 3 mm or burning stops before 100 mm V-2: burning stops within 30 seconds on a vertical specimen; drips of flaming particles are allowed. V-1: burning stops within 30 seconds on a vertical specimen; drips of particles allowed as long as they are not inflamed. V-0: burning stops within 10 seconds on a vertical specimen; drips of particles allowed as long as they are not inflamed. 5VB: burning stops within 60 seconds on a vertical specimen; no drips allowed; plaque specimens may develop a hole. 5VA: burning stops within 60 seconds on a vertical specimen; no drips allowed; plaque specimens may not develop a hole | V0 | ||||||||
Curing Conditions | |||||||||
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Transfer Pressure | 40 - 85 kg/cm2 | ||||||||
Transfer Time | 6 - 15 s |