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Silver Conductor Pastes (Ag)

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9996-B

A silver paste designed for porcelain enameled steal (PES). This material is fired at 625°C on PES.

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9912-THP

A mixed bonded silver paste designed for through hole via printing on 96% alumina. This material is fired at 850°C.

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9912-MM

A RoHS compliant silver paste designed with a low firing temperature for Piezo applications. This material is fired at 625°C.

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9912-A

A mixed bonded silver paste designed to be used on porcelain enameled steel, alumina and Beryllia for use in chip resistors, potentiometers, hybrid circuits, and heater elements. This material is fired between 625°C and 930°C.

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9912-F

A silver paste designed for use as a resistor termination with use with ESL resistors. This material is fired on alumina at 850°C.

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9912-G

A RoHS compliant silver paste designed to be fired at 850°C on alumina.

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9912-K

A RoHS compliant silver paste designed with a wide processing temperature for use on porcelain enameled steel, alumina and Beryllia. This material is fired between 625°C and 930°C depending on the substrate.

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9912-K FL

A RoHS compliant silver paste designed with fine line printing capability for use on porcelain enameled steel, alumina and Beryllia. This material is fired between 625°C and 930°C depending on the substrate.

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9912-K Thick Print

A RoHS compliant mix bonded silver paste designed for creating thick silver prints. This material is fired between 850°C and 930°C on alumina.

9912-K Thick Print Datasheet Add 9912-K Thick Print to RFQ
9910-C

A silver palladium paste designed for use on PZT and glass. This material is fired between 580°C and 700°C.

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903-D

A silver paste designed to be used as a solderable top-layer metallization to be post fired on low temperature co-fired ceramic (LTCC) tape at 850°C.

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903-C

A silver paste designed for use as a solderable top-layer conductor with low temperature co-fire ceramic (LTCC) tapes fired at a peak firing temperature of 850°C.

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903-B

A silver paste designed for use as ground plane conductor with low temperature co-fire ceramic (LTCC) tapes at a peak firing temperature of 850°C.

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903-A

A silver paste designed for use as inner layer conductor with low temperature co-fire ceramic (LTCC) tapes fired at 850°C.

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599-E

A silver paste designed for applications requiring a low firing temperature including glass, porcelain enameled steel (PES), and ceramic substrates. This material can be fired as low as 400°C.

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599-G

A silver paste designed for applications requiring a low firing temperature including glass, porcelain enameled steel (PES), and ceramic substrates. This material is fired between 450°C and 580°C.

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590-G

A silver paste designed for applications requiring a low firing temperature including glass, porcelain enameled steel (PES), and ceramic substrates. This material is fired between 450°C and 580°C.

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9990

A fritless silver paste designed for good adhesion to 96% alumina, 99.5% alumina, beryllia and ferrite. This material is fired at 900°C.

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9916

A silver paste designed for use as a capacitor electrode with ESL D-4150 Series and D-4200-C Series of dielectrics. This material is fired at 900°C on alumina.

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9903

A RoHS compliant silver paste designed for use on aluminum. This material is fired at 530°C.

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9907

A RoHS compliant silver paste designed for use as a current collector for solid oxide fuel cells. This material is fired at 850°C.

9907 Datasheet Add 9907 to RFQ
9912

A mixed bonded silver paste designed with a wide processing temperature use on porcelain enameled steel, alumina and Beryllia. This material is fired between 625°C and 930°C depending on the substrate.

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9913

A silver paste designed for use on aluminum nitride substrates. This material is fired at 850°C.

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902

A silver paste designed for use as a via fill with low temperature co-fired ceramic (LTCC) tapes at a peak firing temperature of 850°C.

902 Datasheet Add 902 to RFQ
590

A silver paste designed for applications requiring a low firing temperature including glass, porcelain enameled steel (PES), and ceramic substrates. This material is fired between 500°C and 700°C.

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