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29130

A silver palladium resistor with a value of 100mohm/sq. (TCR of 3320ppm). This resistor is used to design heating elements on stainless steel substrates in combination with ESL dielectrics. This material is fired at 850°C.

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29206

A silver palladium resistor with a value of 200mohm/sq. (TCR of 600ppm). This resistor is used to design heating elements on stainless steel substrates in combination with ESL dielectrics. This material is fired at 850°C.

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29215

A silver palladium resistor with a value of 200mohm/sq. (TCR of 1500ppm). This resistor is used to design heating elements on stainless steel substrates in combination with ESL dielectrics. This material is fired at 850°C.

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29230

A silver palladium resistor with a value of 200mohm/sq. (TCR of3320ppm). This resistor is used to design heating elements on stainless steel substrates in combination with ESL dielectrics. This material is fired at 850°C.

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29515

A silver palladium resistor with a value of 500mohm/sq. (TCR of 1500ppm). This resistor is used to design heating elements on stainless steel substrates in combination with ESL dielectrics. This material is fired at 850°C.

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29115

A silver palladium resistor with a value of 100mohm/sq. (TCR of 1500ppm). This resistor is used to design heating elements on stainless steel substrates in combination with ESL dielectrics. This material is fired at 850°C.

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29106

A silver palladium resistor with a value of 100mohm/sq. (TCR of 600ppm). This resistor is used to design heating elements on stainless steel substrates in combination with ESL dielectrics. This material is fired at 850°C.

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29109

A silver palladium resistor with a value of 100mohm/sq. (TCR of 900ppm). This resistor is used to design heating elements on stainless steel substrates in combination with ESL dielectrics. This material is fired at 850°C.

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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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4937

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

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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.

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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.

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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.

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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.

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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.

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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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9501-CH

A platinum silver that is solderable for resistor terminations. This material is fired on steel at 850°C.

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9695-G

A silver palladium paste designed to be used on alumina and porcelain enameled steel to be used for ground plane and buried conductor layers in multi-layer hybrid circuits. This material is fired between 625°C and 930°C.

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41030-T

An insulating dielectric tape designed to be laminated to a 430 type stainless steel. This material is fired at 850°C to give a dense body with a high break down voltage.

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41030-T-200

41030-T-200 is designed to be applied to a 430 type stainless steel substrate. This material can be fired at 850°C to give a dense body with high break down voltage.

41030-T-200 Datasheet Add 41030-T-200 to RFQ