US535917A - Induction-coil - Google Patents

Induction-coil Download PDF

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US535917A
US535917A US535917DA US535917A US 535917 A US535917 A US 535917A US 535917D A US535917D A US 535917DA US 535917 A US535917 A US 535917A
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coil
coils
spool
primary
induction
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    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01FMAGNETS; INDUCTANCES; TRANSFORMERS; SELECTION OF MATERIALS FOR THEIR MAGNETIC PROPERTIES
    • H01F27/00Details of transformers or inductances, in general
    • H01F27/34Special means for preventing or reducing unwanted electric or magnetic effects, e.g. no-load losses, reactive currents, harmonics, oscillations, leakage fields
    • H01F27/36Electric or magnetic shields or screens
    • H01F27/366Electric or magnetic shields or screens made of ferromagnetic material
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01FMAGNETS; INDUCTANCES; TRANSFORMERS; SELECTION OF MATERIALS FOR THEIR MAGNETIC PROPERTIES
    • H01F27/00Details of transformers or inductances, in general
    • H01F27/34Special means for preventing or reducing unwanted electric or magnetic effects, e.g. no-load losses, reactive currents, harmonics, oscillations, leakage fields
    • H01F27/36Electric or magnetic shields or screens

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  • the object ofmy invention is to provide an induction coil of improved construction whereby the advantage shall be attained, among other advantages, of an extensive iron surface for the radiation of the primary current, causing a greater and more powerful induced current to be produced in the secondary coil or coils; and whereby, also, the advantage shall be attained of lower resistance without decreased induction in the secondary coil which, accordingly, presents as high inductive power as an ordinary coil of high resistance.
  • My invention consists in the general construction of my improved induction-coil; and it also consists in details of construction and combinations of parts, all as hereinafter set forth and claimed.
  • Figure 1 shows my improved construction of induction-coil in its simpler or less extended form and as preferred in matters of detail, with the wires of the primary and secondary coils represented diagrammatically.
  • Fig. 2 is a diagram showing the primary coil between two secondary coils connected in series; and
  • Fig. 3 is a view like that presented in Fig. 2, but showing the secondary wires in parallel connection.
  • A is the axis or spool of the device, which is preferably, but not necessarily, formed of metal and hollow, though it may be solid.
  • the heads B and I3, of soft iron are secured, either permanently or removably by screwing, as shown, though one may be removably and the other permanently fastened, the heads B and I3, of soft iron, forming extended pole-shoes which serve also as means of confinement for the primary and secondary wire-coils hereinafter described.
  • the tubular axis is surrounded by insulating material as shown at 25 and the inner faces of the soft-iron heads are also insulated, as shown at t.
  • C denotes the primary wire, covered with insulation and coiled about the spool A, one end 00 terminating at the periphery of the coil and the other, a1, being passed out through the spool, if the latter be hollow, as shown, or otherwise if it be solid.
  • each coil D is the finer, insulated, secondary wire, two coils of which are shown, wound about the axis A to flank the primary coil, from the opposite sides of which they are insulated by plates or disks r of insulating material, such as paper, vulcanite, mica, or the like.
  • One end of each coil D terminates at its periphery, as shown at '0 in either figure of the drawings, the other end passing out as shown at o in Fig. 1 through the axis A if hollow, or otherwise if the axis be solid.
  • the ends of the corresponding two (or more) secondary wires may be joined as shown by the full lines in Fig. 1, and indicated by Fig. 3 to afford to them the parallel connection, or they may be connected in series, as represented by Fig.
  • the first-named connection reduces the resistance to the number of ohms represented by the quotient obtained by dividing the resistance of a wire by the number of coils thereof.
  • the connection in series augments the re sistance to the number of ohms resulting from multiplying the resistance of one coil by the number of coils.
  • the simplest form of my improved induction-coil would involve one each of the primary and secondary coils or one inside the other insulated as described, the best results are afforded by having an excess of one secondary coil over the number of primaries employed, whereby the primary coil is between two secondaries.
  • the inductioncoil may be built up with a series of any desired number of alternating primary and secondary coils with interposed insulation, as like a voltaic pile; and the soft-iron heads 13 and B at the ends of the series afford means for confining the sections of the induction coil, composed of the primary and secondary wires and their interposed insulation.
  • the comparatively large extent of iron surface of the expanded heads, or pole-shoes greatly facilitates the radiation of the primary current, thereby increasing the amount and power of the induced current in the secondary coils.
  • Aninduction-coil havingaspool,primary and secondary Wires coiled side by side about the spool and separated by interposed insulation, the number of secondary coils exceeding by one the number of primary coils, and soft iron expanded heads on the opposite ends of the spool, substantially as and for the purpose set forth.
  • An induction-coil having a spool, a primary Wire and a secondary Wire coiled about the spool and separated by interposed insulation and each havingits outer end extending from the periphery of the coil and its inner end extended out adjacent to the spool, and soft iron expanded heads in the opposite ends of the spool affording con fining shields for the coils, substantially as and for the purpose set forth.
  • A11 ind uction-coil having a tubular spool, a primary Wire and a secondary Wire coiled about the spool and separated by interposed insulation and each having its outer end extending from the periphery of the coil and the inner end extended out through the hollow spool, and soft-iron expanded heads on the opposite ends of the spool affording confining shields for the coils, substantially as and for the purpose set forth.
  • a sectional induction-coil comprising a tubular spool A having wound about it a series of coils O and D comprising alternate secondary and primary Wires, each primary Wire being between two secondary Wires and separated therefrom by interposed insulation, the outer ends of the coils extending from their peripheries and the inner ends being extended out through the hollow spool, and softiron heads B and B on the opposite ends of the spool and affording confining means for the series of coils, substantially as and for the purpose set forth.

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  • Engineering & Computer Science (AREA)
  • Power Engineering (AREA)
  • Coils Of Transformers For General Uses (AREA)

Description

(No Model.)
A. P. W. MEYER.
INDUCTION COIL.
No. 535,917. Patented Mar. 19, 1895.
J72 were 5 07", 267? 27/4.
UNITED STATES PATENT OFFICE.
ALBERT F. W. MEYER, OF BLUE ISLAND, ILLINOIS.
INDUCTION-COIL.
EPEOIFIOATION forming part of Letters Patent No. 535,917, dated March 19, 1895.
Application filed November 27, 1894- Serial No. 530,128. (No model.)
To aZZ whom it may concern:
Be it known that I, ALBERT F. W. MEYER, a citizen of the United States, residing at Blue Island, in the county of Cook and State of Illinois, have invented a new and useful Improvement in Induction-Coils, of which the following is a specification.
The object ofmy invention is to provide an induction coil of improved construction whereby the advantage shall be attained, among other advantages, of an extensive iron surface for the radiation of the primary current, causing a greater and more powerful induced current to be produced in the secondary coil or coils; and whereby, also, the advantage shall be attained of lower resistance without decreased induction in the secondary coil which, accordingly, presents as high inductive power as an ordinary coil of high resistance.
My invention consists in the general construction of my improved induction-coil; and it also consists in details of construction and combinations of parts, all as hereinafter set forth and claimed.
Referring to the accompanying drawings- Figure 1 shows my improved construction of induction-coil in its simpler or less extended form and as preferred in matters of detail, with the wires of the primary and secondary coils represented diagrammatically. Fig. 2 is a diagram showing the primary coil between two secondary coils connected in series; and Fig. 3 is a view like that presented in Fig. 2, but showing the secondary wires in parallel connection.
A is the axis or spool of the device, which is preferably, but not necessarily, formed of metal and hollow, though it may be solid. On opposite ends of the tubular axis A are secured, either permanently or removably by screwing, as shown, though one may be removably and the other permanently fastened, the heads B and I3, of soft iron, forming extended pole-shoes which serve also as means of confinement for the primary and secondary wire-coils hereinafter described. The tubular axis is surrounded by insulating material as shown at 25 and the inner faces of the soft-iron heads are also insulated, as shown at t.
C denotes the primary wire, covered with insulation and coiled about the spool A, one end 00 terminating at the periphery of the coil and the other, a1, being passed out through the spool, if the latter be hollow, as shown, or otherwise if it be solid.
D is the finer, insulated, secondary wire, two coils of which are shown, wound about the axis A to flank the primary coil, from the opposite sides of which they are insulated by plates or disks r of insulating material, such as paper, vulcanite, mica, or the like. One end of each coil D terminates at its periphery, as shown at '0 in either figure of the drawings, the other end passing out as shown at o in Fig. 1 through the axis A if hollow, or otherwise if the axis be solid. The ends of the corresponding two (or more) secondary wires may be joined as shown by the full lines in Fig. 1, and indicated by Fig. 3 to afford to them the parallel connection, or they may be connected in series, as represented by Fig. 2. The first-named connection reduces the resistance to the number of ohms represented by the quotient obtained by dividing the resistance of a wire by the number of coils thereof. The connection in series augments the re sistance to the number of ohms resulting from multiplying the resistance of one coil by the number of coils.
WVhile the simplest form of my improved induction-coil would involve one each of the primary and secondary coils or one inside the other insulated as described, the best results are afforded by having an excess of one secondary coil over the number of primaries employed, whereby the primary coil is between two secondaries. In this way the inductioncoil may be built up with a series of any desired number of alternating primary and secondary coils with interposed insulation, as like a voltaic pile; and the soft-iron heads 13 and B at the ends of the series afford means for confining the sections of the induction coil, composed of the primary and secondary wires and their interposed insulation. The comparatively large extent of iron surface of the expanded heads, or pole-shoes, greatly facilitates the radiation of the primary current, thereby increasing the amount and power of the induced current in the secondary coils.
What I claim as new, and desire to secure by Letters Patent, is-
1. Aninduction-coil havingaspool,primary and secondary Wires coiled side by side about the spool and separated by interposed insulation, the number of secondary coils exceeding by one the number of primary coils, and soft iron expanded heads on the opposite ends of the spool, substantially as and for the purpose set forth.
2. An induction-coil having a spool, a primary Wire and a secondary Wire coiled about the spool and separated by interposed insulation and each havingits outer end extending from the periphery of the coil and its inner end extended out adjacent to the spool, and soft iron expanded heads in the opposite ends of the spool affording con fining shields for the coils, substantially as and for the purpose set forth.
3. A11 ind uction-coil having a tubular spool, a primary Wire and a secondary Wire coiled about the spool and separated by interposed insulation and each having its outer end extending from the periphery of the coil and the inner end extended out through the hollow spool, and soft-iron expanded heads on the opposite ends of the spool affording confining shields for the coils, substantially as and for the purpose set forth.
4. A sectional induction-coil comprising a tubular spool A having wound about it a series of coils O and D comprising alternate secondary and primary Wires, each primary Wire being between two secondary Wires and separated therefrom by interposed insulation, the outer ends of the coils extending from their peripheries and the inner ends being extended out through the hollow spool, and softiron heads B and B on the opposite ends of the spool and affording confining means for the series of coils, substantially as and for the purpose set forth.
ALBERT F. XV. MEYER.
In presence of- J. N. HANSON, M. J. Faos'r.
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20050150364A1 (en) * 2004-01-12 2005-07-14 Paul Reed Smith Guitars, Limited Partnership Multi-mode multi-coil pickup and pickup system for stringed musical instruments

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20050150364A1 (en) * 2004-01-12 2005-07-14 Paul Reed Smith Guitars, Limited Partnership Multi-mode multi-coil pickup and pickup system for stringed musical instruments

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