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Heaters on Steel and Other Substrates

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PTC-2612-I

A positive thermistor paste with a beta of 2,200 and a resistivity of 100 ohm/sq. This material is fired on alumina at 850°C.

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PTC-2613-I

A positive thermistor paste with a beta of 1,600 and a resistivity of 1,000 ohm/sq. This material is fired on alumina at 850°C.

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PTC-2650-I

A positive thermistor paste with a beta of 3,400 and a resistivity of 5 ohm/sq. This material is fired on alumina at 850°C.

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PTC-2611-I

A positive thermistor paste with a beta of 3,000 and a resistivity of 10 ohm/sq. This material is fired on alumina 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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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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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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15501

A polymer resistor that cures at 320°C with a nominal value of 40 ohms/square. This material can be blended with 19101 silver paste resistor to create resistor values as low as 15 ohm/square.

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14401

A polyimide dielectric that cures at 320°C. This polyimide based product is designed for applications that require high temperature stability, good adhesion and electrical insulation.

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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
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.

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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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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

A silver palladium paste with a 20:1 ratio designed for applications requiring a low firing temperature including porcelain enameled steel (PES). This material is fired as low as 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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19102-A

Silver filled, polyimide that cures at 320°C designed for being a resistance heating element. This material is solderable making it suitable for conductor terminations.

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19101

Silver filled, polyimide that cures at 320°C designed for being a resistance heating element. This silver paste can be blended with 14401 to adjust the resistor values.

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5545-LS

A fritted platinum conductor designed for use as a heating element. This material is the thin printing version of 5545 and can be fired between 850°C and 1300°C alumina or zirconia to a thickness of 4 microns.

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5545

A fritted platinum conductor designed for use as a resistance heating element. This material can be fired between 850°C and 1300°C on alumina or zirconia.

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5051

A thin printing metallo-organic platinum designed for resistance temperature detectors (RTDs) and other applications. This material fires at 850°C on alumina or glazed ceramic to a fired thickness of 1 micron or less.

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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.

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