Electrically Conductive Adhesives

Creative Materials, an ISO 9001 and ISO 14001 certified company, develops, manufactures and markets specialty chemical products to customers worldwide.
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Creative Materials’ electrically conductive adhesives play an extensive role in manufacturing across a wide-range of industries, including electronic, solar cell, medical instrument, aerospace, and automotive components. Our innovative formulations of electrically conductive adhesives include highly conductive, lower-cost products that can be substituted for silver-filled adhesives. Electrically conductive adhesive applications include electrical and mechanical attachments for stress-sensitive devices, bonding electronic components to lead frames and circuit materials to heat sinks, and solder replacement. Our electrically conductive adhesives are extremely resilient, featuring excellent conductivity, and are less sensitive to thermal cycling.

Our standard and custom formulations of electrically conductive adhesives are versatile, with one- and two-part epoxies that can be applied by stenciling, pad printing, and syringe dispensing, as well as via direct write and jetting systems. They feature excellent adhesion to copper, aluminum, ceramic, and tin/lead solder terminated components, as well as some types of Teflon® surfaces, silicone and gold-plated substrates and surfaces.

Product Description Application method Modulus Pot life Conductivity (ohms-cm)
118-06(SP) B-stageable conductive adhesive. Screen-print High Latent 0.0008
125-22 B-stageable conductive adhesive with low flow & low CTE Screen-print Moderate Latent 0.0010
125-22C119-44 Lower temperature curing version of 125-22 Screen-print/Syringe dispense Moderate Latent 0.0010
124-33(S) Extremely flexible conductive adhesive Screen-print Low Latent 0.0005
118-06(SD) B-Stageable conductive adhesive Syringe dispense High Latent 0.0002
127-49A/B Two part, room temperature curing silicone conductive adhesive Syringe dispense High 4 hours 0.00004
118-15A/B Two part, long pot life, general purpose conductive adhesive.  Available as one component Syringe dispense High 4 days 0.0001
805-19C One component room temperature curing Syringe dispense High 30 min. 0.0020
128-17A/B Fast curing, room temperature curing conductive adhesive Syringe dispense High 5 min. 0.0060
GPC-251A/B Two part, room temperature curing conductive adhesive Syringe dispense High 60 min. 0.0002
GPC -251A/CA-414 Two part, room temperature curing conductive adhesive Syringe dispense High 90 min. 0.0002
122-38(SD) Ionically clean die attach adhesive Syringe dispense High Latent 0.0002
GPC-251A/B2612 Two part, room temperature, flexible conductive adhesive Syringe dispense Moderate 60 min. 0.0002
124-08A/B Two part, long pot life, flexible conductive adhesive Syringe dispense Moderate 4 days 0.0002
102-32NFC High temperature, flexible silicone adhesive, non-flammable Syringe dispense Low/Moderate Latent 0.0001
102-32 High temperature, flexible silicone adhesive. Syringe dispense Low Latent 0.0001
102-32RT High temperature, flexible silicone adhesive, low temperature curing Syringe dispense Low Latent 0.0030
126-40 Flexible fine feature epoxy adhesive Jet Dispense/Screen-print Moderate Latent 0.0030
124-08LVC Single component conductive adhesive. Jet Dispensing/ Syringe dispense Moderate 4 days 0.0002
128-33 High temperature single component conductive adhesive Syringe dispense/Dipping High Latent 0.0002
125-46A/B Economical conductive epoxy.  Available also as one component Syringe dispense Moderate 4 days < 0.01

Typical Characteristics of Electrically Conductive Adhesives

Electrical and mechanical attachments on electrical components and devices
Bonding circuit materials to metal back planes and heat sinks
Die attachment
Printed circuit board fabrication
Advanced material composites
Sealing

Copper
Aluminum
Ceramic
Polycarbonate
Gold-plated substrates
Sn/Pb solder terminated components
Teflon

Syringe dispense
Screen print
Stamping
Jet dispense
Pad print
Sprayable
Dip coat

Thermoplastic
Thermosetting
Epoxy
Silicone
Water-based