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Results for thick and  
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In a thick film electronic circuit, a plurality of thick film capacitors are deposited on the surface of an insulating substrate. Each capacitor comprises a lower electrode and an upper electrode, which are essentially discrete for each capacitor, while a dielectric layer is deposited unitarily over each lower electrode and under each upper electrode of the capacitors.
Thick film conductor compositions comprising an admixture of finely divided particles of A. noble metal, noble metal alloy or mixtures thereof, and B. inorganic binder comprising a glass corresponding to the formula Bi.sub.4 Si.sub.3-x Ge.sub.x O.sub.12, having ZnO dissolved therein, and C. A glass bleed-out inhibitor selected from pyrochlore-related oxides, metal resinates and mixtures thereof, all of A through C being dispersed in D. organic medium.
A thick film circuit board comprises at least parts of SiC substrate at which a thick film resistor is provided being coated with a glass layer having a good adhesion to the SiC substrate and the same or similar coefficient of thermal expansion as or to that of the SiC substrate, and no swelling, cracking and peeling appear on the thick film resistor and no electroconductive component is formed on laser-trimmed parts of the thick film resistor.
A copper-containing thick film conductor composition comprising a mixture of finely divided particles of (a) a conductive material containing copper metal, (b) inorganic binder and (c) 0.2-5% wt. of a noncuprous metal selected from the group consisting of tungsten, molybdenum, rhenium and alloys and mixtures thereof all dispersed in organic medium. The metal particles must be within certain narrow ranges of particle size.
A thick film thermistor composition is prepared by mixing metal oxide powders of at least two of Mn, Co and Ni, and oxide powder of Ru as a noble metal, firing the resulting mixture, thereby obtaining a compound oxide thermistor of spinel structure, pulverizing the resulting compound oxide thermistor, and mixing and kneading the resulting thermistor powder with glass powder and oxide powder of Ru for adjusting a resistance.
This invention discloses conductive compositions having improved solderability. These compositions contain metal and/or alloys thereof coated with saturated monocarboxylic acid which is dispersed in an organic polymeric matrix. Also disclosed is a method for preparing these conductive compositions. Another embodiment of the invention is a method of coating metal and/or alloys thereof with carboxylic acid.
The invention concerns a battery jar having a modified interior side and end wall structure that both increases the electrical rating of the battery and reduces the quantity of material required to produce the battery jar itself. The interior of the jar is divided into upper, middle and lower sections and the wall thickness in each is different. The side wall thickness in the middle section is reduced by about 36-40% of the side wall to 60-64% of the thickness in the upper section and the side w...
A thick film resistor composition, comprising a silicide powder composed of a molybdenum disilicide, a tantalum disilicide and a magnesium silicide, and an alkaline earth borosilicate glass powder dispersed in a vehicle containing a heat-depolymerizing organic polymer. The thick film resistor composition, employing this heat-depolymerizing organic polymer, can be fired in a nonoxidizing atmosphere and coexist with base metal materials such as copper electrodes. Owing to the Nb.sub.2 O.sub.5 and ...
A thick film conductor composition for a ceramic wiring substrate comprises an inorganic ingredient mainly composed of a copper oxide powder added with a metal capable of forming a homogeneous solid solution with copper, and an organic vehicle. The inorganic ingredient may be further added with a manganese oxide or a heat resistant insulating material such as ceramics and/or glass.
Corrosion and oxidation resistant coating compositions containing phosphate, chromate or molybdate and atomized aluminum powder.
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