US126530A - Improvement in printing-telegraphs - Google Patents

Improvement in printing-telegraphs Download PDF

Info

Publication number
US126530A
US126530A US126530DA US126530A US 126530 A US126530 A US 126530A US 126530D A US126530D A US 126530DA US 126530 A US126530 A US 126530A
Authority
US
United States
Prior art keywords
bar
wheel
armature
magnet
printing
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Lifetime
Application number
Publication date
Application granted granted Critical
Publication of US126530A publication Critical patent/US126530A/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Images

Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L13/00Details of the apparatus or circuits covered by groups H04L15/00 or H04L17/00
    • H04L13/02Details not particular to receiver or transmitter
    • H04L13/06Tape or page guiding or feeding devices

Definitions

  • My present invention consists of a printingtelegraph instrument in which the type-wheel is revolved and the printing and feeding mechanismoperated by a movement communicated from the same armature of an electro-magnet.
  • a type-wheel revolved by a stepby-step movement derived from the vibration of the armature of an electro-magnet, and between lateral arms from the cores of said electro-magnet is a swinging polarized bar, which, when attracted toward one of said arms by magnetism induced by a current of one polarity, allows the armature to be vibrated by pulsations of the same polarity and the typewheel to be revolved; but a stop on said bar setting over a projection on the armature limits the upward movement of the armature and prevents the printing and feeding mechanism acting until the current is reversed, which then throws the polarized bar to the other pole of the electro-magnet, disconnectingthe stop from the armature and allowing the same to have its full upward and downward movement to efiect the
  • Figure 1 is a plan of my improved instrument.
  • Fig. 2 is an elevation of the same with the type-wheel removed, but its position shown by dotted lines.
  • Figs. 3 and 4 are detached views illustrating the device which limits the movement of the armature, and
  • Fig. 5 is a sectional view of a portion of the feeding device.
  • the electro-magnet a a is supported in a frame, a upon the base b, and the armature c of said magnet is secured to the lever c, which swings upon the screw-centers d d.
  • the spring 0 gives the upward movement to said lever c and the parts connected to it.
  • This bar m is connected at its upper part by a joint, 2, to the lever c, which allows a free vertical movement to the bar, and it is guided by the pin and slot 3.
  • This bar is made with an opening so as to pass around the gudgeon and sleeve of the type-wheel, and said bar carries the impression-pad n and paper-feeding dog or clamp 0.
  • p is the polarized bar between the lateral arms of the cores of the magnet a a and it swings upon the center 15.
  • a stop, 5 At the top and upon one side of the bar 10 is a stop, 5, and upon the under side of the armature c is an L-shaped projection or stop, 6.
  • u is a set-screw to determine the downward movement of the bar on and stop the rotation of the ratcheti and type-wheel h
  • L is a pawl to prevent the ratchet 1' turning backward.
  • the paper passes over the table wand beneath the springfingers S 8, and in this table is an opening to allow the pad n to press the paper against the type-wheel and make the impression.
  • the feeding-dog 0 is, at the outer end of an arm, 12, pivoted to the bar m, and at the side of this dog 0 is a pin, 9. ⁇ Vhen the type-wheel is being rotated the pin 9 slides up and down a yielding incline, 10, (see Fig.
  • An impression-pad moved by a spring to give the impression when the current is broken in an electro-magnet, in combination with a type-wheel, substantially as set forth.

Landscapes

  • Engineering & Computer Science (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Signal Processing (AREA)
  • Impact Printers (AREA)

Description

THOMAS A. EDISON.
Improvement in Printing-Telegraphs. No. 126,530, Patented May 7,1872.
AM. rl-mrwumosnn Fww ca M x (ossonus's Pnncsss) UNITED STATES PATENT OFFICE THOMAS A. EDISON, OF NEWARK, NEW JERSEY, ASSIGNOR TO GOLD AND STOCK TELEGRAPH COMPANY, OF NEW YORK CITY.
IMPROVEMENT IN PRlNTlNG-TELEGRAPHS.
Specification forming part of Letters Patent No. 126,530, dated May 7, 1872.
To all whom it may concern Be it known that I, THOMAS A. EnIsoN, of Newark, in the county of Essex and State of New Jersey, have invented and made a new and useful Improvement in Printing-Telegraphs; and the following is declared to be a full and correct description of the same.
My present invention consists of a printingtelegraph instrument in which the type-wheel is revolved and the printing and feeding mechanismoperated by a movement communicated from the same armature of an electro-magnet. I make use of a type-wheel revolved by a stepby-step movement derived from the vibration of the armature of an electro-magnet, and between lateral arms from the cores of said electro-magnet is a swinging polarized bar, which, when attracted toward one of said arms by magnetism induced by a current of one polarity, allows the armature to be vibrated by pulsations of the same polarity and the typewheel to be revolved; but a stop on said bar setting over a projection on the armature limits the upward movement of the armature and prevents the printing and feeding mechanism acting until the current is reversed, which then throws the polarized bar to the other pole of the electro-magnet, disconnectingthe stop from the armature and allowing the same to have its full upward and downward movement to efiect the printing andfeed of the paper.
In the drawing, Figure 1 is a plan of my improved instrument. Fig. 2 is an elevation of the same with the type-wheel removed, but its position shown by dotted lines. Figs. 3 and 4 are detached views illustrating the device which limits the movement of the armature, and Fig. 5 is a sectional view of a portion of the feeding device.
The electro-magnet a a is supported in a frame, a upon the base b, and the armature c of said magnet is secured to the lever c, which swings upon the screw-centers d d. The spring 0 gives the upward movement to said lever c and the parts connected to it. his the type-wheel, upon a sleeve fitted to revolve freely on a gudgeon extending from the frame a and to this sleeve is secured the ratchetwheel t, which is turned, to rotate the typewheel, by the pawl l pivoted upon the vertical bar on. This bar m is connected at its upper part by a joint, 2, to the lever c, which allows a free vertical movement to the bar, and it is guided by the pin and slot 3. This bar is made with an opening so as to pass around the gudgeon and sleeve of the type-wheel, and said bar carries the impression-pad n and paper-feeding dog or clamp 0. p is the polarized bar between the lateral arms of the cores of the magnet a a and it swings upon the center 15. At the top and upon one side of the bar 10 is a stop, 5, and upon the under side of the armature c is an L-shaped projection or stop, 6. When a pulsation of one polarity is sent through the magnet a the bar 19 is repelled from the core or arm of the magnet a, and attracted to the position shown most clearly in Fig. 3, where the stop 5 is immediately over the stop 6, and in this position'the armature can be vibrated by pulsations of that polarity and the type-wheel revolved by the lever 0, bar m, pawl l, and ratchet i, to bring the desired letter in position for printing; but an impression will not be made, because the stops 5 and 6 limit the motion of the armature and prevent the lever c and connected parts receiving the full upward movement necessary for printing. lVhen the polarity of the current is reversed the bar 12 is attracted by the magnet a which disconnects the stops 5 and 6 and allows the spring 0 to give the full upward movement to the lever 0, bar 122, and impression-pad n, and efl'ect the printing before the accumulation of force in the-magnet a a is sufficient to draw down the armature and feed the paper at the same time that the type-wheel is moved. The full downward movement of the lever c and bar m actuates the dog 0 and feeds the paper the proper distance. The polarity of the current is now reversed, and the bar p will be moved to its normal position with the stop 5 over the projection 6; but there is sufficient play to allow the armature c to be vibrated so that the necessary movement is given to the lever 0, bar m, and pawl l to rotate the ratchet-wheel iand type-wheel h as before. A pin, t, upon the frame (1 takes against the under side of the pawl l and lifts it from contact with the teeth of i, when the full downward movement is given to the bar m, and prevents said wheel being turned more than one tooth by such downward motion of the bar. u is a set-screw to determine the downward movement of the bar on and stop the rotation of the ratcheti and type-wheel h, and L is a pawl to prevent the ratchet 1' turning backward. The paper passes over the table wand beneath the springfingers S 8, and in this table is an opening to allow the pad n to press the paper against the type-wheel and make the impression. The feeding-dog 0 is, at the outer end of an arm, 12, pivoted to the bar m, and at the side of this dog 0 is a pin, 9. \Vhen the type-wheel is being rotated the pin 9 slides up and down a yielding incline, 10, (see Fig. 5,) which keeps the dog 0 off of the paper; but upon the iull upward movement being given to the bar I to etfect the printing the pin 9 is moved up over the top of 10, and falls to the rear of said incline, bringing the dog in contact with the paper, and upon the full downward movement of the bar m the pin 9 slides under this incline 10, and the dog 0 feeds the paper forward the required distance. This incline 10 is at the outer end of an arm, 13, that is kept to the table uby the spring 14 so as to be raised by the pin 9 running beneath it, and then said pin 9 plays upon the surface of 10, keeping the dog 0 from contact with the paper while the type-wheel is being moved.
I claim as my invention 1. The bar p and stops 5 and 6 to regulate the extent of motion allowed to the armature c of an electro-magnet, substantially as set forth.
2. A type-wheel rotated by a step-by-step motion and an impression-pad moved simultaneously, in combination with an electro-magnet and mechanism for regulating the extent of motion of the armature for moving the type-wheel or effecting the impression, substantially as set forth.
3. The yielding incline 10 and paper-feeding pawl 0, brought into action by an increased movement of the armature of an electro-magnet, substantially as set forth.
4. An impression-pad moved by a spring to give the impression when the current is broken in an electro-magnet, in combination with a type-wheel, substantially as set forth.
Signed by me this 14th day of February, A. D. 1872.
Witnesses: T. A. EDISON.
Units. H. SMITH, GEo. T. PINOKNEY.
US126530D Improvement in printing-telegraphs Expired - Lifetime US126530A (en)

Publications (1)

Publication Number Publication Date
US126530A true US126530A (en) 1872-05-07

Family

ID=2195955

Family Applications (1)

Application Number Title Priority Date Filing Date
US126530D Expired - Lifetime US126530A (en) Improvement in printing-telegraphs

Country Status (1)

Country Link
US (1) US126530A (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2875881A (en) * 1957-03-06 1959-03-03 Marvin I Glass Toy teletyper
KR100622954B1 (en) * 1997-10-13 2007-06-07 다다히로 오미 Fluid control apparatus

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2875881A (en) * 1957-03-06 1959-03-03 Marvin I Glass Toy teletyper
KR100622954B1 (en) * 1997-10-13 2007-06-07 다다히로 오미 Fluid control apparatus

Similar Documents

Publication Publication Date Title
US126530A (en) Improvement in printing-telegraphs
US144045A (en) Improvement in printing-telegraphs
US274748A (en) field
US113033A (en) Improvement in printing-telegraph apparatus
US179875A (en) Improvement in printing-telegraphs
US6203A (en) Improvement in magnetic telegraphs
US426554A (en) Message-recording instrument
US177661A (en) Improvement in printing-telegraphs
USRE5267E (en) Improvement in printing-telegraphs
US506270A (en) Ments
US88085A (en) Improvement in telegraph apparatus
US326989A (en) Printing-telegraph receiver
US126532A (en) Improvement in printing-telegraphs
US128608A (en) Improvement in printing-telegraph instruments
US138869A (en) Improvement in printing-telegraphs
USRE7621E (en) Improvement in printing-telegraphs
USRE6870E (en) Improvement in printing-telegraph instruments
US720668A (en) Printing-telegraph.
US131336A (en) Improvement in printing-telegraphs
US139128A (en) Improvement in printing-telegraphs
US233407A (en) foote
US103924A (en) Improvement in printing-telegraph instruments
US99401A (en) Improvement in printing-telegraphs
US761888A (en) Telephone-selecting device.
US491133A (en) Printing-telegraph receiver