US115356A - Improvement in telegraph-relay instruments - Google Patents

Improvement in telegraph-relay instruments Download PDF

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US115356A
US115356A US115356DA US115356A US 115356 A US115356 A US 115356A US 115356D A US115356D A US 115356DA US 115356 A US115356 A US 115356A
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telegraph
armature
relay
improvement
circuit
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    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01HELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
    • H01H3/00Mechanisms for operating contacts
    • H01H3/22Power arrangements internal to the switch for operating the driving mechanism
    • H01H3/26Power arrangements internal to the switch for operating the driving mechanism using dynamo-electric motor
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01FMAGNETS; INDUCTANCES; TRANSFORMERS; SELECTION OF MATERIALS FOR THEIR MAGNETIC PROPERTIES
    • H01F7/00Magnets
    • H01F7/06Electromagnets; Actuators including electromagnets

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  • FIG. 1 represents a plan or top view of my improved telegraphic apparatus.
  • Fig. 2 is a vertical longitudinal section of the same on the line as m
  • Fig. 3 is a transverse section of the same on the line y y, Fig. 1.
  • This invention relates to certain improvements in telegraph instruments, whereby the currents can be regulated at will as to intensity and quantity, and relay instruments made practically self-adjusting, so that even in bad weather the action will be firm and even in the main and all intermediate stations.
  • the invention consists, first, in making the two cores of the magnet separately adjustable in a longitudinal direction, so that thereby each one can be moved independent of the other.
  • the invention also consists in certain other arrangements of parts, as hereinafter more fully described.
  • a and B in the drawing are the two cores of the magnet of a telegraphic apparatus. Their front ends fit through apertures of a plate or supporting-frame, G, which is rigidly afiixed to the bedD of the instrument. From the back of each core projects a screw-shank, a, through the connecting-bar E, which is held stationary by a standard, d, and through supporting-posts respectively.
  • each core is applied to the end of each shank a, and by its means each core can be separately adjusted parallel to its axis.
  • the bar connecting the cores is stationary, and each core passing through it has, by the nut or equivalent means, an adjustment of its own without moving the other core, though still forming the same magnet. This is advantageous whenever it is desired to use an intensity and a quantity current on the same magnet.
  • the wires cf of the main circuit enter the terminal posts 9 h of the instrument and traverse the fine wire, which is wound around one core, A, only.
  • the local circuit sends one wire, c', from the local battery F through the local sounder j and binding-cups 70 to the magnet point I of the front support 0, while the other wire, m, passes from the battery to the pivot n of the vibrating armature G.
  • the relay-magnet having one core with B. BURTON, fine Wire connected with the main circuit, and G. D. BURTON.

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  • Physics & Mathematics (AREA)
  • Electromagnetism (AREA)
  • Engineering & Computer Science (AREA)
  • Power Engineering (AREA)
  • Electromagnets (AREA)

Description

C. RATHBONE.
'lmprove'men t in Telegraph Relay Instruments.
NO. 11 5356, 7 Patented May 30,1871.
Jigtl.
PATENT OEEIcE.
CLARENCE RATHBONE, OF ALBANY, NEW YORK.
IMPROVEMENT IN TELEGRAPH-RELAY INSTRUMENTS.
Specification forming part of Letters Patent No. 115,356, dated May 30, 1871.
To all whom it may concern:
Be it known that I, CLARENCE RA'rnBoNE, of Albany, in the county of Albany and State of New York, have invented a new and Improved Relay Instrument; and I do hereby declare that the following is a full, clear, and exact description thereof, which will enable others skilled in the art to make and use the same, reference being had to the accompanyin g drawing forming part of this specification, in which- Figure 1 represents a plan or top view of my improved telegraphic apparatus. Fig. 2 is a vertical longitudinal section of the same on the line as m, Fig. 1. Fig. 3 is a transverse section of the same on the line y y, Fig. 1.
Similar letters of reference indicate corresponding parts.
This invention relates to certain improvements in telegraph instruments, whereby the currents can be regulated at will as to intensity and quantity, and relay instruments made practically self-adjusting, so that even in bad weather the action will be firm and even in the main and all intermediate stations. The invention consists, first, in making the two cores of the magnet separately adjustable in a longitudinal direction, so that thereby each one can be moved independent of the other. The invention also consists in certain other arrangements of parts, as hereinafter more fully described.
A and B in the drawing are the two cores of the magnet of a telegraphic apparatus. Their front ends fit through apertures of a plate or supporting-frame, G, which is rigidly afiixed to the bedD of the instrument. From the back of each core projects a screw-shank, a, through the connecting-bar E, which is held stationary by a standard, d, and through supporting-posts respectively. A nut, c,
, is applied to the end of each shank a, and by its means each core can be separately adjusted parallel to its axis. Thus, instead of the two cores being rigidly connected, as is ordinarily the case in relays, the bar connecting the cores is stationary, and each core passing through it has, by the nut or equivalent means, an adjustment of its own without moving the other core, though still forming the same magnet. This is advantageous whenever it is desired to use an intensity and a quantity current on the same magnet. The wires cf of the main circuit enter the terminal posts 9 h of the instrument and traverse the fine wire, which is wound around one core, A, only. The local circuit sends one wire, c', from the local battery F through the local sounder j and binding-cups 70 to the magnet point I of the front support 0, while the other wire, m, passes from the battery to the pivot n of the vibrating armature G.
When the armature is attracted by the magnetism induced by the passage of the current through the fine wire it moves toward the magnet, and the points I and 0, the latter being on an arm of the armature, touch and close thereby the local circuit through the 10- cal battery and sounder. When the main circuit is broken the armature is pulled back by the spiral spring 1) until the point 0 touches a pin, a", in a support or post, H. This closes an extra circuit by the same local battery F through the points 0 1', such circuit being conducted over the wire on to the pivot 01. of the armature G; thence from the point 0 to a; thence by a wire, 8, around the spool or side B of the magnet, which is wound with coarse wire; and, finally, over a wire, t, to the battery. The wires on s t convey thus the extra circuit. When the extra circuit is closed the armature is attracted toward B, but as soon as it starts it breaks the circuit at o 1*, when the springs pull it back again, closing the extra circuit. In this manner the armature is kept continually vibrating until the main circuit closes and attracts the armature to the point t. The relay is thereby rendered selfadjusting and the action of the main circuit very distinct, as the armature only stops when said main circuit is closed, and not otherwise.
Having thus described my invention, I claim as new and desire to secure by Letters Patent- 1 The magnets A B, made separately adjustable in the direction of their respective axis, substantially as and for the purposes the other core with coarse wire connected with herein shown and described. the local battery and vibrating armature, as
2. The connecting-bar E of a pair of magspecified. nets, made stationary, and perforated to admit CLARENCE RATHBONE. the movable cores, as specified. Witnesses:
3. The relay-magnet having one core with B. BURTON, fine Wire connected with the main circuit, and G. D. BURTON.
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