US2489409A - Resistor having distortion protected connecting means - Google Patents

Resistor having distortion protected connecting means Download PDF

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Publication number
US2489409A
US2489409A US782872A US78287247A US2489409A US 2489409 A US2489409 A US 2489409A US 782872 A US782872 A US 782872A US 78287247 A US78287247 A US 78287247A US 2489409 A US2489409 A US 2489409A
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distortion
connecting means
layer
resistor
insulating
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Expired - Lifetime
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US782872A
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Charles B Green
Raymond L Rulison
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AT&T Corp
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Bell Telephone Laboratories Inc
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Priority to US782872A priority Critical patent/US2489409A/en
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    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01CRESISTORS
    • H01C17/00Apparatus or processes specially adapted for manufacturing resistors
    • H01C17/28Apparatus or processes specially adapted for manufacturing resistors adapted for applying terminals
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T29/00Metal working
    • Y10T29/49Method of mechanical manufacture
    • Y10T29/49002Electrical device making
    • Y10T29/49082Resistor making
    • Y10T29/49087Resistor making with envelope or housing
    • Y10T29/49098Applying terminal

Description

Nov. 29, 1949 c. B. GREEN ETAL 2,489,409
RESISTOR HAVING DISTORTION PROTECTED CONNECTING MEANS Filed Oct. 29. 194'! c. a. GREEN 'R L. RULISON ATTORNEY Patented Nov. 29, 1949 RESISTOR HAVING DISTORTION PRO- TECTED CONNECTING MEANS Charles B.
L. Rulison,
Green, West Orange, and Raymond Scotch Plains, N. J., assignors to Bell Telephone Laboratories,
Incorporated,
New York, N. Y., a corporation of New York Application October 29, 1947, Serial No. 782,872
Claims.
This invention relates to circuit elements and more particularly to resistors having connect ing leads affixed thereto. The invention is particularly applicable to insulation encased resistors made from semiconductive material com prising metal oxides, in which a lead wire or conductor is secured to the resistor body by a heatcured metallic paste.
Certain types of resistors, the resistance of which changes greatly with changes in temperature, have been called thermistors, and such a device is intended wherever the term may be used in this specification or the appended claims.
For some circuit applications, thermistors comprising small pellets of semiconductive material having an insulating coating of glass or like material have been used. Lead wires are attached to such pellets by a heat-cured metallic paste before the coating is applied. The glass or other coating material is usually selected for a substantial thermal expansion coefficient match with the semiconductive material. For some applications, a near match may not be possible because of re quirements not consistent with matching. Also even in cases of relatively close expansion coeiiicient matching of materials, distortion and consequent impairment of the connections may be caused by application of the coating.
An object of this invention is to inhibit im pairment of connections of the type discussed.
A feature of this invention resides in providing resistor connections with a cushioning means to absorb distortions that might otherwise impair these connections.
The foregoing and other objects and features of this invention will bemore fully and clearly understood from the following description of an exemplary embodiment thereof taken in connection with the appended drawings in which:
Fig. 1 is an elevational view, with parts broken away to show internal structure, or a glass-covered, pellet type thermistor made in accordance with this invention; and
Fig. 2 is a sectional view of a, portion oi a thermistor pellet showing structural details of the embodiment illustrated in Fig. 1.
In the construction shown in Fig. 1, It is a thermistor pellet having connecting leads H and i2 secured to its opposite faces. The pellet and a portion of each lead are enclosed in a glass covering l3 fused around the assembly.
Details of the connection are shown in Fig. 2 and include a metallic layer l4 adhering to a face of the pellet ID. A similar metallic layer l5 secures a portion of lead l2 to layer II and thus to the body Ill. Covering the securing layer I5 is a layer IE of insulating material which acts as a cushioning means after the glass covering i3 is applied.
The pellet It! may be made of one or more of the oxides of manganese, nickel, cobalt, and copper. For example, the mixture may be of manganese and nicke1 oxides in proportion to provide nine atoms of manganese for each atom of nickel. The oxides in powdered form may, after thorough mixing with a temporary binder, be extruded into rods and heat treated to drive out the binder and to sinter the material. The rods may then be divided into small pellets such as Ml. This may be done, for example, by breaking the rods into short sections and then grinding their ends flat and smooth.
The metallic layer it may be made from a silver paste applied to a face of the pellet Ill, dried, and cured by heating. The silver paste may comprise finely divided silvor, a small amount of glass, a temporary binder, and a solvent for the binder. Such a paste can be spread over the face of the pellet, heated to drive out the temporary binder and then at a higher temperature to fuse the glass. After cooling this layer is substantially of metallic silver.
A portion of the lead 12 may then be applied to layer It and secured in place by another layer l5 made of the same silver paste material and similarly cured.
The layer Hi may be made of a, powdered insulating material, such as fused aluminum oxide mixed with a suitable glassy binder. This layer may be applied and cured in a manner similar to that used for the metallic layers.
The glass or like coating l3 may be applied in any suitable manner to the assembled pellet and leads. One way of doing this is to slip a piece of glass tubing over the pellet and then to heat the assembly to fuse the glass over the pellet, the connections, and the inner ends of the leads. Advantageously. the coating material should have a thermal expansion coefficient close to that of the pellet material.
In devices where a cushioning layer was not used, it was found that cooling distortion of the connections was sufficient to impair them for proper circuit operation. Such distortion would cause undesirable, non-linear voltage-current variations with resulting modulation difiiculties. The use of the layer I6 however, avoids this difficulty since the distortion forces will break the bonds in this layer converting it to a powdery cushion that absorbs these forces and inhibits damage to the connections.
Since the foregoing description is directed to an exemplary embodiment of the invention, it will be understood that it is not intended to limit the scope of the invention as defined by the appended claims.
What is claimed is:
1. A circuit element comprising a body of resistance material, leads for making circuit connections, connecting means for securing each lead to a portion of the body comprising an electrically conductive adhesive, a heat applied insulating covering that shrinks upon cooling on said body and connecting means, and cushioning means for inhibiting shrinkage distortions of the connectlng means, comprising finely divided insulating material between the connecting means and the insulating covering.
2. Means for making a substantially distortioni'ree connection to a resistor body that is enclosed in a fused insulating cover that comprises a connection secured to said body, said fused insulating cover, and a cushion of insulating powder between the connection and the cover.
3. The method of making a circuit element that comprises securing leads to portions of a resistor body with an electrically conductive ad hesive, covering the connection so made with a bonded insulating powder, and fusing upon the body and connection an insulating cover of material that shrinks upon cooling, thereby breaking the bond securing the powder particles together to form a cushion between the connection and the cover.
4. In a circuit element comprising a body of reslstance material, leads for making circuit connections, connecting means for securing each lead to said body, and a fused insulating cover on the body and connecting means, said cover being of a material that shrinks upon cooling, the method of inhibiting distortion of the connecting means that comprises covering the connecting means with a layer of powdered insulation mixed with bonding material prior to application of the cover, heating to bond said layer, and fusing the cover to the body, connecting means and layer, whereby the bonding of the insulating layer is sufficiently broken by the cooling shrinkage of the cover to provide a cushion of powdered insulation between the connection and the cover.
5. The method of making a substantially distortion-free connection to a resistor body that is enclosed in a fused-on insulating cover that shrinks upon cooling, that comprises applying a layer of bonded insulating particles over the connection, and shrinking on the cover, thereby breaking the bonds among the insulating particles to provide a distortion-absorbing cushion between the connection and the cover.
CHARLES E. GREEN. RAYMOND L. RULISON.
REFERENCES CITED The following references are of record in the file of this patent:
UNITED STATES PATENTS Number Name Date 2,003,625 Boyer June 4, 1035 2,280,257 Pearson Apr. 21, 1942 2,405,192 Davis Aug. 6, 1946 2,418,460 Buehler Apr. 8, 1947
US782872A 1947-10-29 1947-10-29 Resistor having distortion protected connecting means Expired - Lifetime US2489409A (en)

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Cited By (14)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2608633A (en) * 1948-11-29 1952-08-26 Hartford Nat Bank & Trust Co Electrical resistance
US2751477A (en) * 1952-07-15 1956-06-19 Pittsburgh Plate Glass Co Electrical resistive device
US3144318A (en) * 1960-02-12 1964-08-11 Allied Chem Coating electronic devices
US3220097A (en) * 1959-12-14 1965-11-30 Corning Glass Works Method of making an encapsulated impedance element
US3305821A (en) * 1963-10-03 1967-02-21 Corning Glass Works Glass-sealed electrical resistor
US3307134A (en) * 1959-12-14 1967-02-28 Corning Glass Works Encapsulated impedance element
US3334396A (en) * 1964-07-29 1967-08-08 Matsushita Electric Ind Co Ltd Method of manufacturing film resistors
US3371412A (en) * 1966-02-11 1968-03-05 Dale Electronics Method of terminating a resistor
US3386165A (en) * 1963-02-01 1968-06-04 Beckman Instruments Inc Method of making cermet resistance element and terminal connections therefor
US4016527A (en) * 1975-09-25 1977-04-05 North American Philips Corporation Hermetically sealed film resistor
US4016646A (en) * 1974-12-16 1977-04-12 U.S. Philips Corporation Method of making a resistor
US4086467A (en) * 1976-07-19 1978-04-25 Texas Instruments Incorporated Electronic heater for high voltage applications
US4306217A (en) * 1977-06-03 1981-12-15 Angstrohm Precision, Inc. Flat electrical components
US4719317A (en) * 1985-04-03 1988-01-12 W. C. Heraeus Gmbh Film-type electrical element and connection wire combination and method of connection

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2003625A (en) * 1932-03-04 1935-06-04 Globar Corp Terminal connection for electric heating elements
US2280257A (en) * 1939-07-25 1942-04-21 Bell Telephone Labor Inc Resistor device and method of making the same
US2405192A (en) * 1944-06-09 1946-08-06 Bell Telephone Labor Inc Resistor
US2418460A (en) * 1943-12-31 1947-04-08 Bell Telephone Labor Inc Resistor

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2003625A (en) * 1932-03-04 1935-06-04 Globar Corp Terminal connection for electric heating elements
US2280257A (en) * 1939-07-25 1942-04-21 Bell Telephone Labor Inc Resistor device and method of making the same
US2418460A (en) * 1943-12-31 1947-04-08 Bell Telephone Labor Inc Resistor
US2405192A (en) * 1944-06-09 1946-08-06 Bell Telephone Labor Inc Resistor

Cited By (15)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2608633A (en) * 1948-11-29 1952-08-26 Hartford Nat Bank & Trust Co Electrical resistance
US2751477A (en) * 1952-07-15 1956-06-19 Pittsburgh Plate Glass Co Electrical resistive device
US3220097A (en) * 1959-12-14 1965-11-30 Corning Glass Works Method of making an encapsulated impedance element
US3307134A (en) * 1959-12-14 1967-02-28 Corning Glass Works Encapsulated impedance element
US3144318A (en) * 1960-02-12 1964-08-11 Allied Chem Coating electronic devices
US3386165A (en) * 1963-02-01 1968-06-04 Beckman Instruments Inc Method of making cermet resistance element and terminal connections therefor
US3305821A (en) * 1963-10-03 1967-02-21 Corning Glass Works Glass-sealed electrical resistor
US3334396A (en) * 1964-07-29 1967-08-08 Matsushita Electric Ind Co Ltd Method of manufacturing film resistors
US3371412A (en) * 1966-02-11 1968-03-05 Dale Electronics Method of terminating a resistor
US4016646A (en) * 1974-12-16 1977-04-12 U.S. Philips Corporation Method of making a resistor
US4016527A (en) * 1975-09-25 1977-04-05 North American Philips Corporation Hermetically sealed film resistor
US4117589A (en) * 1975-09-25 1978-10-03 North American Philips Corporation Method of manufacturing a hermetically sealed electronic component
US4086467A (en) * 1976-07-19 1978-04-25 Texas Instruments Incorporated Electronic heater for high voltage applications
US4306217A (en) * 1977-06-03 1981-12-15 Angstrohm Precision, Inc. Flat electrical components
US4719317A (en) * 1985-04-03 1988-01-12 W. C. Heraeus Gmbh Film-type electrical element and connection wire combination and method of connection

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