US1897047A - Frequency discrimination signaling system - Google Patents
Frequency discrimination signaling system Download PDFInfo
- Publication number
- US1897047A US1897047A US491158A US49115830A US1897047A US 1897047 A US1897047 A US 1897047A US 491158 A US491158 A US 491158A US 49115830 A US49115830 A US 49115830A US 1897047 A US1897047 A US 1897047A
- Authority
- US
- United States
- Prior art keywords
- contacts
- magnet
- distributor
- signaling system
- signals
- 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
Links
Images
Classifications
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L27/00—Modulated-carrier systems
- H04L27/26—Systems using multi-frequency codes
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L5/00—Arrangements affording multiple use of the transmission path
- H04L5/22—Arrangements affording multiple use of the transmission path using time-division multiplexing
Definitions
- This invention relates to printing telegraph systems and apparatus and more particularly to such as use an equal letter code such as the Baudot or five unit code.
- Each element consists of current or no-current (for single current working) negative current (for double current working).
- the elements of a signal of an equal letter code are sent simultaneously and consist of different frequencies, while the signals themselves control the conditioning of the receiving apparatus to receive successive signals.
- This conditioning of the receiver apparatus may be the operation of the re-setting magnet usually provided in five-magnet printers, or it may be the stepping of a distributor.
- the re-setting magnet or the stepping magnet of a distributor is energized under control of the received signals.
- a pause or period of no-current is created between successive signals, and the magnet energized each time a signal is received.
- this invention is particularly useful as applied to a system of combined telephony and telegraphy in which the direction of transmission of both speech and telegraph signals is reversed under control of the speech.
- the telegraph signals are not in any way mutilated or divided, and the ordinary synchronized distributors which would be diflicult to control in such a system, are avoided.
- the lsixth segment is used to energize the re-setting magnet of the recelving apparatus of a preceding channel.
- a number of automatic tape controlled transmitters TA, TB, TC, TD, etc. are each provided with contacts f, g, h, j and 7c controlled by the tape, and a steppin magnet B.
- a distributor T A in the form of a stepby-step switch is used.
- This distributor has six banks of contacts and six brushes as shown, and the brushes are stepped over the contacts by a stepping magnet TSM connected in a self interrupting circuit.
- the up r brush is connected to ground and the ot er five brushes are connected to battery through five relays TE, TF, TG, TH and TJ as shown.
- the contacts b, c, d, e of each transmitter -when operated serve to connect earth to the ive contacts over which brushes simultaneously wipe.
- the contacts of transmitter TA are shown connected to the contacts in the rst set, those of TB to the contacts of the third set and so on.
- the uppermost brush when passing over its contact in the third set connects ground to the stepping magnet B of the first transmitter which serves to advance the tape for the next signal from that transmitter.
- the alternate sets of contacts on the distributor TSA are left unconnected so that a pause or periods of no current occur between suocessive signals.
- each of the relays TE-TJ serves to connect a particular source to the line LB.
- the different frequencies may be produced in any convenient manner, as by thermionic oscillators or by rotating commutatore on a common motor shaft.
- relays RE, RF, RG, RH and RJ tuned to the different frequencies are connected to the line. These relays operate direct current relays RK, RL, RM, RN
- a number of receivers RA, RB, RC and RD, corresponding to the transmitters TA,I TB, TC and TD are each provided with a resetting magnet bm and tive selecting magnets f', g', h', j and k corresponding to transmitter contacts f, g, h, j and k respectively. These magnets are connected to the contacts of receiving distributor RSA.
- relay RS When a combination of signals is received by the relays RK-RO, relay RS energizesl and closes a circuit for the stepping magnet RSM of the distributor RSA. This circuit is opened when the relays RK-RO release in response to a pause of no current between successive signals.
- the frequenc of operation of the stepping magnet R M corresponds to the speed of the transmitting distributor TSA.
- a communication circuit comprising means for transmitting successive signal characters, each character being represented by over the same line simultaneously and at different frequencies, a receiving mechanism having a Yplurality of recording devices adapted to be actuated bythe respective impulses in each code combination of impulses for recording the transmitted characters, a stepping device for distributing saidcode combinations of impulses to said recording devices in sequence, and means under control of the received impulses effective to control,
- Receiving apparatus for multiplex printing telegraph apparatus comprising a distributor with a lurality of contacts moved over simultaneous y by a set of brushes, certain of said contacts being included in circuits of the selecting magnets of a printing telegraph receiver and another of said contacts 1n a circuit of there-setting magnet of another receiver.
Landscapes
- Engineering & Computer Science (AREA)
- Signal Processing (AREA)
- Computer Networks & Wireless Communication (AREA)
- Mobile Radio Communication Systems (AREA)
- Facsimiles In General (AREA)
- Accessory Devices And Overall Control Thereof (AREA)
Description
Fem, M, 3933. E. B. GRACE ET AL. 9747 FREQUENCY DISCRIMINATION SIGNALING SYSTEM Filed Oct. 25 1930 DUE- RSA
E D [Il D* [IPED-DDEE)- IIR-DIII-DD-D EID-DIZI-IIID-ED-DD-DD-DD- IDD-DD-IIID-ED'DE-ED-'D .aaa/MCE NVENTORS 4|* 5K. SANDEMA/v a @Hl BV i ATTORNEY Patented Feb. 14, 1933 UNITED STATES PATENT OFFICE BERTRAI BARNETT GRACE, THOMAS SAMUEL SKILLMZAN,v ALLEMAN HOLLY ROCHE, AND EDWARD KENNETH SANDEMAN, OF ALDWYCH, LONDON, ENGLAND, ABSIGNORS T0 WESTERN ELECTRIC COMPANY INCORPORATED, OF NEW YORK, N. Y., A CORPORA- TION 0F NEW YORK FREQUENCY DISCRIMINATION SIGNALING SYSTEM Application led October 25, 1930, Serial No. 491,158, and in Great Britain November 5, 1929.
This invention relates to printing telegraph systems and apparatus and more particularly to such as use an equal letter code such as the Baudot or five unit code. Each element consists of current or no-current (for single current working) negative current (for double current working).
According to one feature of this inventlon the elements of a signal of an equal letter code are sent simultaneously and consist of different frequencies, while the signals themselves control the conditioning of the receiving apparatus to receive successive signals.
This conditioning of the receiver apparatus may be the operation of the re-setting magnet usually provided in five-magnet printers, or it may be the stepping of a distributor. y
The re-setting magnet or the stepping magnet of a distributor is energized under control of the received signals.
Either of two arrangements for causing this energization may be used in accordance with the invention. A
In one arrangement a pause or period of no-current is created between successive signals, and the magnet energized each time a signal is received.
It will be observed that this invention is particularly useful as applied to a system of combined telephony and telegraphy in which the direction of transmission of both speech and telegraph signals is reversed under control of the speech.
With this invention the telegraph signals are not in any way mutilated or divided, and the ordinary synchronized distributors which would be diflicult to control in such a system, are avoided.
The features of this invention so far described may be used in connection with multiplex distributors, as above pointed out, but when so used six segments of the distributor must be wiped over simultaneously by six brushes. At the transmitting end the sixth segment and brush are used in accordance with a feature of this invention, to energize the steeping magnet of a tape transmitter or of either positive or f lbelonging to a channel, the five segments of which have already been wiped over.
At the receiving end the lsixth segment is used to energize the re-setting magnet of the recelving apparatus of a preceding channel.
The invention will now be described as illustrated on the attached drawing which shows one specific embodiment of the invention.
Referring now to the drawing, a number of automatic tape controlled transmitters, TA, TB, TC, TD, etc. are each provided with contacts f, g, h, j and 7c controlled by the tape, and a steppin magnet B.
A distributor T A in the form of a stepby-step switch is used. This distributor has six banks of contacts and six brushes as shown, and the brushes are stepped over the contacts by a stepping magnet TSM connected in a self interrupting circuit. The up r brush is connected to ground and the ot er five brushes are connected to battery through five relays TE, TF, TG, TH and TJ as shown. The contacts b, c, d, e of each transmitter -when operated serve to connect earth to the ive contacts over which brushes simultaneously wipe.
The contacts of transmitter TA are shown connected to the contacts in the rst set, those of TB to the contacts of the third set and so on. The uppermost brush when passing over its contact in the third set connects ground to the stepping magnet B of the first transmitter which serves to advance the tape for the next signal from that transmitter. The alternate sets of contacts on the distributor TSA are left unconnected so that a pause or periods of no current occur between suocessive signals.
Five sources of alternating current, each of a different frequency, are provided and each of the relays TE-TJ serves to connect a particular source to the line LB.
The different frequencies may be produced in any convenient manner, as by thermionic oscillators or by rotating commutatore on a common motor shaft.
It will be understood that if this invention is employed in a combined telephone and telegraph system, all five frequencies lie below the voice frequency range.
At the receiving end relays RE, RF, RG, RH and RJ tuned to the different frequencies are connected to the line. These relays operate direct current relays RK, RL, RM, RN
`and RO. These latter relays connect earth to the contacts of the receiving distributor RSA and also to ive windings of a relay RS, so that the rela RS is operated each time one of the relays R -RO is operated.
A number of receivers RA, RB, RC and RD, corresponding to the transmitters TA,I TB, TC and TD are each provided with a resetting magnet bm and tive selecting magnets f', g', h', j and k corresponding to transmitter contacts f, g, h, j and k respectively. These magnets are connected to the contacts of receiving distributor RSA.
When a combination of signals is received by the relays RK-RO, relay RS energizesl and closes a circuit for the stepping magnet RSM of the distributor RSA. This circuit is opened when the relays RK-RO release in response to a pause of no current between successive signals. Thus the frequenc of operation of the stepping magnet R M corresponds to the speed of the transmitting distributor TSA.
Although the invention has been described with reference to a code in which the signals are represented by combinations of five impulses, it is to be understood that a code combination in which the signals are each made up of four, or six, or any other number of impulses may also be employed without departing from the spirit of this invention.
What is claimed is 1. A communication circuit comprising means for transmitting successive signal characters, each character being represented by over the same line simultaneously and at different frequencies, a receiving mechanism having a Yplurality of recording devices adapted to be actuated bythe respective impulses in each code combination of impulses for recording the transmitted characters, a stepping device for distributing saidcode combinations of impulses to said recording devices in sequence, and means under control of the received impulses effective to control,
mitter and another of said contacts included in a circuit leading to the stepping magnet of another such transmitter.
3. Receiving apparatus for multiplex printing telegraph apparatus comprising a distributor with a lurality of contacts moved over simultaneous y by a set of brushes, certain of said contacts being included in circuits of the selecting magnets of a printing telegraph receiver and another of said contacts 1n a circuit of there-setting magnet of another receiver. i
In witness whereof, we hereunto subscribe our names this 9th day of September, 1930, and by ALLEMAN H. Roonn on the 14th day of October, 1930.
BERTRAH BARNET'I' GRACE.
THOMAS SAMUEL SKILLMAN. ALLEMAN HOLLY ROCHE. EDWARD KENNETH SANDEMAN.
code combinations of impulses, the imv pulses of each combination being transmitted
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
GB33636/29A GB342370A (en) | 1929-11-05 | 1929-11-05 | Improvements in or relating to printing telegraphy |
Publications (1)
Publication Number | Publication Date |
---|---|
US1897047A true US1897047A (en) | 1933-02-14 |
Family
ID=10355467
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
US491158A Expired - Lifetime US1897047A (en) | 1929-11-05 | 1930-10-25 | Frequency discrimination signaling system |
Country Status (3)
Country | Link |
---|---|
US (1) | US1897047A (en) |
DE (1) | DE574808C (en) |
GB (1) | GB342370A (en) |
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US2882524A (en) * | 1950-01-31 | 1959-04-14 | Emi Ltd | Apparatus for sensing the position of a movable element |
CN110392430A (en) * | 2018-04-18 | 2019-10-29 | 成都鼎桥通信技术有限公司 | A kind of Un interface resource distribution method |
-
1929
- 1929-11-05 GB GB33636/29A patent/GB342370A/en not_active Expired
-
1930
- 1930-08-15 DE DE1930574808D patent/DE574808C/en not_active Expired
- 1930-10-25 US US491158A patent/US1897047A/en not_active Expired - Lifetime
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US2882524A (en) * | 1950-01-31 | 1959-04-14 | Emi Ltd | Apparatus for sensing the position of a movable element |
CN110392430A (en) * | 2018-04-18 | 2019-10-29 | 成都鼎桥通信技术有限公司 | A kind of Un interface resource distribution method |
CN110392430B (en) * | 2018-04-18 | 2022-06-17 | 成都鼎桥通信技术有限公司 | Un interface resource allocation method |
Also Published As
Publication number | Publication date |
---|---|
DE574808C (en) | 1933-05-08 |
GB342370A (en) | 1931-02-05 |
Similar Documents
Publication | Publication Date | Title |
---|---|---|
US1310719A (en) | Secret signaling system | |
US2512038A (en) | Error detecting code system | |
US1897047A (en) | Frequency discrimination signaling system | |
US2371311A (en) | Station selection system | |
US1399997A (en) | Telegraph system | |
US2023952A (en) | Selective market system | |
US1533171A (en) | Telegraph system | |
US1881453A (en) | Telegraph printer exchange system | |
US1864303A (en) | Radio printing telegraph system | |
US1927699A (en) | Telegraph system | |
US1367735A (en) | Amos f | |
US1631976A (en) | Signaling | |
US1322010A (en) | Telegraph system. | |
US2057680A (en) | Receiving channel assigner | |
US1541229A (en) | Automatic telegraph system | |
US2416723A (en) | Telegraph system | |
US2269559A (en) | Telegraph printing system | |
US1881607A (en) | Printing telegraph system | |
US1461645A (en) | Automatic telegraph system | |
US1601940A (en) | Telegraph system | |
US1560704A (en) | Printing telegraphy | |
US1588527A (en) | Signaling system | |
US2606243A (en) | System for reception of coded signals | |
US2274103A (en) | Telegraph printing system | |
US2225887A (en) | Signaling system |