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Dielectric Pastes

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4026-A

A sealing glass designed for 96% alumina. When fired between 700°C and 730°C this paste creates hermetic seals with high adhesion.

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4031-B

A sealing glass designed for 96% alumina. When fired between 530°C and 580°C this paste creates hermetic seals with high adhesion.

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4022-F

A sealing glass designed for soda lime glass and other substrates with similar thermal expansion properties. When fired at 500°C this material can create translucent and hermetic seals.

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4026

A sealing glass designed for 96% alumina. When fired between 550°C and 625°C this paste creates hermetic seals with high adhesion.

4026 Datasheet Add 4026 to RFQ
G-484

A white overglaze paste designed for protection the ESL resistor series including R-300 series and 33000 series. This paste is acid resistant. This material is fired at 600°C.

G-484 Datasheet Add G-484 to RFQ
G-485-1

A acid resistant overglaze with green color designed for use in chip components that require electroplating. This material fires between 525°C and 625°C.

G-485-1 Datasheet Add G-485-1 to RFQ
G-485-2

A RoHS compliant, acid resistant overglaze paste with green color designed for use in chip components that require electroplating. This material fires between 525°C and 625°C.

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G-486-1

An acid resistant overglaze paste designed for use in chip components that require electroplating. This material fires between 525°C and 625°C.

G-486-1 Datasheet Add G-486-1 to RFQ
4903-C

A overglaze designed for use with platinum in high temperature applications . This material fires between 1,250°C and 1,350°C on alumina.

4903-C Datasheet Add 4903-C to RFQ
4771-P2

An RoHS compliant overglaze for resistors that is laser trimmable. When fired between 525°C and 625°C this material is acid resistant for post fired plating applications.

4771-P2 Datasheet Add 4771-P2 to RFQ
4774-BCG

An overglaze for resistors that is laser trimmable. This material can be fired between 525°C and 625°C.

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4909-MOD

A dielectric paste with high thermal conductivity, high durability and low surface roughness for thermal print heads. This material can be fired at 850°C on alumina.

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G-481

A overglaze paste with green color designed for protection the ESL resistor series including R-300 series and 33000 series. This paste is laser trimmable and acid resistant. This material is fired at 600°C.

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G-482

A overglaze paste with black color designed for protection the ESL resistor series including R-300 series and 33000 series. This paste is acid resistant. This material is fired at 600°C.

G-482 Datasheet Add G-482 to RFQ
4937

An overglaze for resistors in resistance heating applications. This material can be fired at 850°C on alumina.

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4702

An overglaze paste to protect heaters on steel. This material fires on 4924 between 850°C and 930°C.

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4931

A dielectric paste that is designed to insulate 430 S17 type ferritic steels for resistance heating applications. This material can be fired between 850°C and 930°C.

4931 Datasheet Add 4931 to RFQ
4956

A dielectric paste that is designed to insulate 430 type ferritic steels for resistance heating applications with minimal bowing. This material is fired between 850°C and 930°C.

4956 Datasheet Add 4956 to RFQ
4986

A dielectric paste that is designed to insulate 430 type ferritic steels for resistance heating applications. This material can be printed and dried multiple times before being fired between 850°C and 930°C.

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4987

A dielectric paste that is designed to insulate thin 430 type ferritic steels for resistance heating applications. This material is fired between 850°C and 930°C.

4987 Datasheet Add 4987 to RFQ
4604-A

A dielectric paste for insulating 3000 series aluminum. This material is fired on 4605 at 580°C.

4604-A Datasheet Add 4604-A to RFQ
4925-A

A dielectric paste that is designed to insulate 430 type ferritic steels for resistance heating applications . This material is fired between 850°C and 930°C.

4925-A Datasheet Add 4925-A to RFQ
4924

A dielectric paste that is designed to insulate 430 type ferritic steels for resistance heating applications. This material can be fired between 850°C and 930°C.

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4916

A dielectric paste that is designed to insulate 304 type austenitic steels for resistance heating applications. This material can be fired at 850°C.

4916 Datasheet Add 4916 to RFQ
4613

A dielectric paste for insulating 3000, 5000 and 6000 aluminum. This material is directly fired on aluminum at 580°C.

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4605

A dielectric paste for insulating 3000 series aluminum. This material is fired directly on aluminum at 580°C.

4605 Datasheet Add 4605 to RFQ
4530

An alumina dielectric that is designed for use as an insulating layer in planar oxygen sensors. This material is co-fired with zirconia tape and platinum between 1,450°C and 1,500°C.

4530 Datasheet Add 4530 to RFQ
4569

A porous zirconia paste that is designed for use in as a protective overcoat for platinum electrodes in planar oxygen sensors. This material is co-fired with zirconia tape and platinum between 1,450°C and 1,500°C.

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4492

An alumina dielectric that is designed for use as an insulating layer in planar oxygen sensors. This material is co-fired with zirconia tape and platinum between 1,450°C and 1,500°C.

4492 Datasheet Add 4492 to RFQ
4441

A fugitive paste that is designed to form channels in multi-layer tape structures. This material can also be used to increase post fired porosity when mixed with other inks.

4441 Datasheet Add 4441 to RFQ
M4024-A

A cadmium free, black glass designed for use in plasma display applications. This material is fired on soda lime glass at 580°C.

M4024-A Datasheet Add M4024-A to RFQ
M4023-C

A black glass designed for use in plasma display applications. This material is fired on soda lime glass at 580°C.

M4023-C Datasheet Add M4023-C to RFQ
4913-G

A RoHS compliant multi-layer dielectric designed for mixed metal conductors. This material is fired at 850°C and 930°C on Alumina.

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4917

A RoHS compliant, alkali free cross over dielectric designed for mixed metal conductors systems requiring a high breakdown voltage. This material is fired between 850°C and 930°C on Alumina.

4917 Datasheet Add 4917 to RFQ
4920

A RoHS compliant multi-layer dielectric for applications where a thin layer of dielectric (40 micron or less) is needed. This material is fired between 850°C and 930°C on Alumina.

4920 Datasheet Add 4920 to RFQ
4612-B

A RoHS compliant dielectric paste for fine feature printing. This material is fired on Alumina between 850°C and 930°C.

4612-B Datasheet Add 4612-B to RFQ
4905-C

A dielectric for multi-layer builds using gold and silver based conductors. This material has the ability to create 175 micron x 175 micron vias. When fired between 850°C and 950°C this material yields a dielectric constant (k) between 7-10 kHz and 7-11 MHz on Alumina.

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4905-CH

A dielectric for multi-layer builds using gold and silver based conductors. This material has the ability to create 175 micron x 175 micron vias. When fired between 850°C and 950°C this material yields a dielectric constant (k) between 7-10 kHz and 7-11 MHz on Alumina.

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4913

A multi-layer dielectric compatible with a wide variety of conductor systems. This material is fired at 850°C and 930°C on Alumina.

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4911

A multi-layer dielectric designed for high frequency, low loss applications. When fired at 850°C on Alumina this material yields a dielectric constant (k) 4.2

4911 Datasheet Add 4911 to RFQ
4202-C

A capacitor dielectric that when fired between 850°C and 930°C yields a dielectric constant (k) between 1,700-2,300. This material meets the characteristics of X7R.

4202-C Datasheet Add 4202-C to RFQ
4212-C

A capacitor dielectric that when fired between 850°C and 930°C yields a dielectric constant (k) between 10,500

4212-C Datasheet Add 4212-C to RFQ
4164-N

A capacitor dielectric designed to be fired with low temperature co-fired ceramic (LTCC) tape. When fired between 850°C and 900°C yields a dielectric constant (k) between 125-375. This material meets the characteristics of X7R.

4164-N Datasheet Add 4164-N to RFQ
4163-N

A capacitor dielectric designed to be fired with low temperature co-fired ceramic (LTCC) tape. When fired between 850°C and 900°C yields a dielectric constant (k) between 70-130. This material meets the characteristics of X7R.

4163-N Datasheet Add 4163-N to RFQ
4162-N

A capacitor dielectric designed to be fired with low temperature co-fired ceramic (LTCC) tape. When fired between 850°C and 900°C yields a dielectric constant (k) between 25-75. This material meets the characteristics of X7R.

4162-N Datasheet Add 4162-N to RFQ
4151

A capacitor dielectric that when fired between 850°C and 930°C yields a dielectric constant (k) between 270 -330. This material meets the characteristics of X7S/X7T.

4151 Datasheet Add 4151 to RFQ
4113-H

A capacitor dielectric that when fired between 930°C and 980°C yields a dielectric constant (k) between 120-160. This material meets the characteristics of X7R.

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4152

A capacitor dielectric that when fired between 850°C and 930°C yields a dielectric constant (k) between 900 -1,100. This material meets the characteristics of X7S/X7T.

4152 Datasheet Add 4152 to RFQ
4153

A capacitor dielectric that when fired between 850°C and 930°C yields a dielectric constant (k) between 2,160

4153 Datasheet Add 4153 to RFQ
4117

A capacitor dielectric that when fired between 930°C and 980°C yields a dielectric constant (k) between 270-330. This material meets the characteristics of X7R.

4117 Datasheet Add 4117 to RFQ
4113

A capacitor dielectric that when fired between 930°C and 980°C yields a dielectric constant (k) between 90-130. This material meets the characteristics of X7R.

4113 Datasheet Add 4113 to RFQ
4114

A capacitor dielectric that when fired between 930°C and 980°C yields a dielectric constant (k) between 40-60. This material meets the characteristics of X7R.

4114 Datasheet Add 4114 to RFQ
4115

A capacitor dielectric that when fired between 930°C and 980°C yields a dielectric constant (k) between 15-25. This material meets the characteristics of X7R.

4115 Datasheet Add 4115 to RFQ