RTV12 is a two-component, low viscosity, clear silicone potting compound that cures at room temperature to a soft, pliable rubber. RTV12 will cure in deep sections without additional heating or moisture. It has been designed to achieve primerless adhesion to many substrates, including metals, plastics and ceramics typical of those found in electronic assemblies.
RTV12C curing agent is mixed with RTV12A base compound producing a cured clear silicone rubber that provides see-through properties in greater thicknesses. This clear RTV allows visual observation of the components during pouring, and easy identification, repair, and replacement of components when necessary.
RTV12 is suggested for evaluation as a potting material to provide environmental protection for electrical and electronic assemblies. When cured, the soft, rubbery property of RTV12 rubber cushions against mechanical shock and vibration. Its excellent electrical properties make it a candidate material for both high and low voltage electrical assemblies. This clear RTV is also used as a casting silicone for many applications.
For high temperature RTV silicones, use RTV60 or RTV88. For mold making use our blue or white RTVs – RTV630 and RTV11. For a fast cure clear version use RTV615.
Technical Datasheet (TDS)
Technical Datasheet (TDS)
Features
- Clear – allows easy identification of components
- Primerless adhesion to many metals and plastics
- Repairable
- Room temperature cure
- Excellent electrical properties
- Can be used with materials that cause cure inhibition with other RTVs
- Specially formulated to minimize copper corrosion
- Flows easily in and around complex electronic assemblies HCD-RTV12
- Easy to use on production lines
- May be mixed by hand or by machine
| Manufacturer (aka Brand): | MG Chemicals |
No Reviews Yet!
Review this product
Request a quote for this product
Thank you! We’ll review your request within 24hrs. Your selected products will be saved in your account.
Not logged in?
Sign In or
Create an Account
to save your quote request details.