US67160A - Walter g - Google Patents

Walter g Download PDF

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US67160A
US67160A US67160DA US67160A US 67160 A US67160 A US 67160A US 67160D A US67160D A US 67160DA US 67160 A US67160 A US 67160A
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armature
magnet
lever
magnets
current
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    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01FMAGNETS; INDUCTANCES; TRANSFORMERS; SELECTION OF MATERIALS FOR THEIR MAGNETIC PROPERTIES
    • H01F7/00Magnets
    • H01F7/06Electromagnets; Actuators including electromagnets
    • H01F7/08Electromagnets; Actuators including electromagnets with armatures
    • H01F7/14Pivoting armatures

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  • Figure 2 a vertical sectional view of an improved armature for the same.
  • Figure 5 a section'of the ordinary armature.
  • the nature' of my invention consists in counterbalancing the attraction of the receiving magnet upon the armature, to close the local circuit either by means of a second magnet, excited by the same electrical current as the first, and so placed in relation to the armature as to attractthc same in a direction opposite to that of the receiving magnet, or by placing the same between the poles of the receiving magnet itself.
  • the armaturelever which opens and closes the-local circuit is thus balaficed upon its pivot between the attractive forces of the two magnets, or of the two poles of a single magnet, and by placing the armature nearer one of the poles, br nearer the receiving magnet than to the other, or by employing magnets of difi'erent power, the armaturelcver may be adjusted to the very nicest degree of sensitivcncss, and when so adjusted in the instrument will thereafter uniformly maintain its adjustment, whatever may be thedegrce of intensity in the electric current of the main line, i'rom the fact that this same current influences alike both pointsoi' attraction between which the armature-lever is adjusted.
  • the automatic disconnection of the local circuit is'insured when the armature isnninflucnced by a. current from the main line by means of a spring. e, figs. 2 and 3, or by so balancing the armature-lever on its pivot as that the superior gravity of one side thereof shall cause it to fall back of its own weight against the insulated point 8, fig.1,' when not attracted by the operation of the main-line current.
  • the main current of the line entering at post B, and passing through the receiving magnet A is carried bya suitable connecting wire, indicated by dotted. lines a, under the instrument'to the second magnet W, and, passing through thesame,
  • magnets difi'ering in power may be used hyproperij adjusting the distance of each from the armature, end, c0nsequen'tly,-,their attractive influence thereon.

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  • Physics & Mathematics (AREA)
  • Electromagnetism (AREA)
  • Engineering & Computer Science (AREA)
  • Power Engineering (AREA)
  • Reciprocating, Oscillating Or Vibrating Motors (AREA)

Description

W. G. BROWNSON.
RELAY MAGNET.
No. 67,160. Patented July 30, 1867.
775% an 9 Www gums grates 529 m @ffi WALTER e. BROWNSON, 0F wnLLsv LLE, OHIO.
Letters Patent No. 67,160, dated July 30, 1867.
IMPROVEMENT IN RELAY MAGNETS.
TO ALL WHOM'IT MAY CONCERN:
Be it known that I, WALTE G. Bnownsox, of Wellsville,in the county of Columbinna, and State of Ohio, have invented a new nnd'improved Self-Adjusting Telegraphic Relay Instrument; and I do hereby declare the following to be a full and exact description thereof, reference being bad to the accompanying drawings, forming a part of this specification, in which'- Figure lis a top or plan view of the instrument...
Figure 2, a vertical sectional view of an improved armature for the same.
Figures 3 and 4, side elevations of forms or arrangements-oi. armatnrcs; and
Figure 5, a section'of the ordinary armature.
By means of this my invention I render the freedom of action or sensitiveness of the armature and lever of the relay instrument or receiving magnet in a telegraphic apparatus dependent upon the force of the electric current in the main line of the circuit alone, so that the relation ofthe two shall be constant and uniform, a weakness in the current increasing the, scnsitivcn ess of the armature lever in closing the local circuit, and owe versa.
The nature' of my invention consists in counterbalancing the attraction of the receiving magnet upon the armature, to close the local circuit either by means of a second magnet, excited by the same electrical current as the first, and so placed in relation to the armature as to attractthc same in a direction opposite to that of the receiving magnet, or by placing the same between the poles of the receiving magnet itself. The armaturelever which opens and closes the-local circuit is thus balaficed upon its pivot between the attractive forces of the two magnets, or of the two poles of a single magnet, and by placing the armature nearer one of the poles, br nearer the receiving magnet than to the other, or by employing magnets of difi'erent power, the armaturelcver may be adjusted to the very nicest degree of sensitivcncss, and when so adjusted in the instrument will thereafter uniformly maintain its adjustment, whatever may be thedegrce of intensity in the electric current of the main line, i'rom the fact that this same current influences alike both pointsoi' attraction between which the armature-lever is adjusted.
In the accompanying drawings I have illustrated my improved relay, as constructcdnvith a pair of elec tro-magncts of equal size and magnetic power, A and W, arranged opposite to each other on a suitable support. Bctwecnihe two is placed an armature-lever, K, figs. and 5, such as is commonly used in such instruments, and which is pivoted and provided with battery connections to open and close a local circuit in the usual manner. The primary adjustment of this armature-lever is obtained by placing it more or less near to the receiving magnet A, as in the ordinary forms of relays, its distance from the second magnetW being mode so much greater than from said receiving magnet A, as to givcto-thc former the exact degreeof superior attrac tive power. The automatic disconnection of the local circuit is'insured when the armature isnninflucnced by a. current from the main line by means of a spring. e, figs. 2 and 3, or by so balancing the armature-lever on its pivot as that the superior gravity of one side thereof shall cause it to fall back of its own weight against the insulated point 8, fig.1,' when not attracted by the operation of the main-line current. The main current of the line entering at post B, and passing through the receiving magnet A, is carried bya suitable connecting wire, indicated by dotted. lines a, under the instrument'to the second magnet W, and, passing through thesame,
.isreturncd by a second connecting wire, '01, to the post E. The current of electricity excites both magnets'with equal force, so that the attractive power of both is uniformly, the same. It, then, the current in the main line he weaknei by any disturbing causes, rendering it necessary that the armature-lever'K should vibrate more freely, the counter-attraction of the second magnet W upon said lever K, which controls its vibration, is wenkencd in a corresponding degree, allowing the needed freedom of vibration. The adjustment of the armature is thus perfectly automatic, and constantly accommodates itself to the force of the electric current in the main line. Instead of placing the armature between opposite magnets, I contemplate placing it between the opposite poles of a single magnet, excited by the mnin-line current, obtaining its operation by approaching it more nearly to the one pole' than to the other. I contemplate, also, using double armatures with the lever K, as illustrated by the sectional fig. 2, as a substitute for the single armature shown in fig. 5, separating the two facet by a strip of w'oed,gutta percha, brass, or other material, :0, not attractive to magnetic influence. Although I prefer to use magnets, A V, of nearly equal power in constructing my instruments, still, magnets difi'ering in power may be used hyproperij adjusting the distance of each from the armature, end, c0nsequen'tly,-,their attractive influence thereon. In some cases it may be preferable to make the adjusting magnet W much smaller than the receiving magnet A. In such cases, in erder'to render the instrument compact, I prefer to piece the adjusting magnet W nearer the upper end of the armeture-iever than to increase its distance from the receiving magnet A, using an armature-lever, K, arranged, as illustrated in fig. 3, i'i'ith the armature-plates on opposite sides thereof at proper distances apart In another form of my reley" I pleoeboth magnets side by side, or above one another, and use an armature-lever, K", vibrating upon an axis pivoted'between the armature-plates thereon, which are so arranged so to he opposite the magnets, both being on the same side of the lever however, as illustrated in fig. 4 of the drawings.
I Having thus fully described my invention, what 1 claim therein as new, and desire to secure by Letters Putent, isi The use of one or more adjusting or counterbalance magnets W, in combination with the armature-lever K of e telegraphic relay instrument, and its receiving magnet or magnets A, when said adjusting magnet or magnets are excited simultnneousiy with the receiving magnet by the some electrical current, the whole operating substantially in the manner and for the purpose herein set forth.
W. G. BROWNSON.
Witnesses: DAVID A. Bonn,
H. H. Yoone.
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