GB1341468A

GB1341468A – Multi frequency voice receiver
– Google Patents

GB1341468A – Multi frequency voice receiver
– Google Patents
Multi frequency voice receiver

Info

Publication number
GB1341468A

GB1341468A
GB5843171A
GB5843171A
GB1341468A
GB 1341468 A
GB1341468 A
GB 1341468A
GB 5843171 A
GB5843171 A
GB 5843171A
GB 5843171 A
GB5843171 A
GB 5843171A
GB 1341468 A
GB1341468 A
GB 1341468A
Authority
GB
United Kingdom
Prior art keywords
stages
filters
pass
filter
signals
Prior art date
1970-12-23
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

Application number
GB5843171A
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)

International Standard Electric Corp

Original Assignee
International Standard Electric Corp
Priority date (The priority date 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 date listed.)
1970-12-23
Filing date
1971-12-16
Publication date
1973-12-19

1971-12-16
Application filed by International Standard Electric Corp
filed
Critical
International Standard Electric Corp

1973-12-19
Publication of GB1341468A
publication
Critical
patent/GB1341468A/en

Status
Expired
legal-status
Critical
Current

Links

Espacenet

Global Dossier

Discuss

Classifications

H—ELECTRICITY

H03—ELECTRONIC CIRCUITRY

H03H—IMPEDANCE NETWORKS, e.g. RESONANT CIRCUITS; RESONATORS

H03H11/00—Networks using active elements

H03H11/02—Multiple-port networks

H03H11/04—Frequency selective two-port networks

H03H11/12—Frequency selective two-port networks using amplifiers with feedback

H03H11/126—Frequency selective two-port networks using amplifiers with feedback using a single operational amplifier

H—ELECTRICITY

H03—ELECTRONIC CIRCUITRY

H03H—IMPEDANCE NETWORKS, e.g. RESONANT CIRCUITS; RESONATORS

H03H11/00—Networks using active elements

H03H11/02—Multiple-port networks

H03H11/04—Frequency selective two-port networks

H03H11/12—Frequency selective two-port networks using amplifiers with feedback

H—ELECTRICITY

H03—ELECTRONIC CIRCUITRY

H03K—PULSE TECHNIQUE

H03K5/00—Manipulating of pulses not covered by one of the other main groups of this subclass

H03K5/01—Shaping pulses

H03K5/08—Shaping pulses by limiting; by thresholding; by slicing, i.e. combined limiting and thresholding

H—ELECTRICITY

H04—ELECTRIC COMMUNICATION TECHNIQUE

H04Q—SELECTING

H04Q1/00—Details of selecting apparatus or arrangements

H04Q1/18—Electrical details

H04Q1/30—Signalling arrangements; Manipulation of signalling currents

H04Q1/44—Signalling arrangements; Manipulation of signalling currents using alternate current

H04Q1/444—Signalling arrangements; Manipulation of signalling currents using alternate current with voice-band signalling frequencies

H04Q1/45—Signalling arrangements; Manipulation of signalling currents using alternate current with voice-band signalling frequencies using multi-frequency signalling

H04Q1/453—Signalling arrangements; Manipulation of signalling currents using alternate current with voice-band signalling frequencies using multi-frequency signalling in which m-out-of-n signalling frequencies are transmitted

Abstract

1341468 Detecting signalling currents INTERNATIONAL STANDARD ELECTRIC CORP 16 Dec 1971 [23 Dec 1970 (2)] 58431/71 Headings H3T H3U and H4R A multitone receiver for use in a telecommunication system has its input from a common control 10 brought to an input amplifier which includes a filter 17 for rejecting all signals below 680 Hz and a following operational amplifier which has a set threshold level of – 22 dBV, Fig. 2 (not shown). Filter 17 consists of cascaded T-filters designed to give a sharp cut-off at 680 Hz, Fig. 5 (not shown). The following filters 20, 22 separate out the high and low tones that make up a valid input signal, the low pass filter having an upper pass frequency of 965 Hz and the high pass filter 22 having a low pass frequency of 1180 Hz. Both filters are similarly constructed of four transistorized cascaded T-stages followed by two cascaded T-stages each with its own operational amplifier, Figs. 6 and 7 (not shown). The separate high and low group signals are passed through a limiter circuit 30 where they are converted into a square wave form if their amplitude passes an acceptance threshold. The circuit, Fig. 9 (not shown). includes a pair of high gain operational amplifiers which have reference voltages applied to their inputs from resistive potential divider chains to give an on/off characteristic. Crosscoupled NAND gates are used to provide the square wave output which is supplied to the groups of band pass filters 40-43, 44-47. Each of the band-pass filters is turned to pass a particular tone frequency and comprises two filter stages in series, each stage comprising an operational amplifier shunted by a twin-T feedback path. The pass frequencies of the stages are not quite the same so that a flat response around the central signal frequency is obtained, Fig. 8 (not shown). The signals from the band pass filters are checked in detector 60 to ensure that they are correctly grouped, i.e. one high and one low, have the correct amplitude and duration. If they are valid D.C. spikes are passed on the respective ones of leads 70-77 into memories 80, 82 which are enabled by a validity pulse on line 84. The signals are stored and passed to decoder 100 which converts the signals into decimal or binary decimal form to supply further equipment. The filter 17 consists of 8 cascaded stages with the resistors in the first five stages descending in magnitude and the resistor in the sixth stage being greater than the first resistor and those in the subsequent stages again are smaller. The capacitors and resistors in filters 20, 22 increase and decrease in value respectively over the first three stages of the filters.

GB5843171A
1970-12-23
1971-12-16
Multi frequency voice receiver

Expired

GB1341468A
(en)

Applications Claiming Priority (2)

Application Number
Priority Date
Filing Date
Title

US10095170A

1970-12-23
1970-12-23

US10095070A

1970-12-23
1970-12-23

Publications (1)

Publication Number
Publication Date

GB1341468A
true

GB1341468A
(en)

1973-12-19

Family
ID=26797737
Family Applications (1)

Application Number
Title
Priority Date
Filing Date

GB5843171A
Expired

GB1341468A
(en)

1970-12-23
1971-12-16
Multi frequency voice receiver

Country Status (10)

Country
Link

US
(2)

US3710031A
(en)

AU
(1)

AU3645371A
(en)

BE
(1)

BE777085A
(en)

CA
(1)

CA943278A
(en)

CH
(1)

CH547594A
(en)

DE
(1)

DE2163276A1
(en)

ES
(1)

ES398233A1
(en)

FR
(1)

FR2119029B1
(en)

GB
(1)

GB1341468A
(en)

NL
(1)

NL7117637A
(en)

Families Citing this family (16)

* Cited by examiner, † Cited by third party

Publication number
Priority date
Publication date
Assignee
Title

FR2141502B1
(en)

*

1971-06-01
1973-06-29
Ibm France

CA976675A
(en)

*

1972-10-16
1975-10-21
Microsystems International Limited
Dual tone receiver

US3780230A
(en)

*

1972-11-10
1973-12-18
Bell Telephone Labor Inc
Multifrequency tone receiver

DE2409888C2
(en)

*

1973-03-09
1982-08-12
International Standard Electric Corp., 10022 New York, N.Y.

Circuit arrangement for converting sinusoidal input signals into square-wave output signals

US3845249A
(en)

*

1973-03-09
1974-10-29
Itt
Multi-frequency receiver

US3912869A
(en)

*

1973-11-21
1975-10-14
Tel Tone Corp
Multifrequency-to-digital converter

FR2272549A1
(en)

*

1974-05-21
1975-12-19
Gabry Andre
Frequency coded signal receiving and decoding device – has channels with fixed frequency and converting circuits

CA1031086A
(en)

*

1976-03-03
1978-05-09
Northern Electric Company
Method and apparatus for translating multiple frequency signalling

JPS6052380B2
(en)

*

1977-12-20
1985-11-19
日本電気株式会社

Bipolar voltage detection circuit

US4524291A
(en)

*

1983-01-06
1985-06-18
Motorola, Inc.
Transition detector circuit

GB8716144D0
(en)

*

1987-07-09
1987-08-12
British Aerospace
Comparator circuits

JPH03132291A
(en)

*

1989-10-18
1991-06-05
Fujitsu Ltd
Pb signal detection system

DE4407054C2
(en)

*

1994-03-03
1999-11-18
Philips Patentverwaltung

Circuit arrangement for converting sinusoidal signals into rectangular signals

US5488323A
(en)

*

1994-12-14
1996-01-30
United Technologies Corporation
True hysteresis window comparator for use in monitoring changes in switch resistance

US5638435A
(en)

*

1995-05-12
1997-06-10
Telefonaktiebolaget Lm Ericsson
Impulse signal convertor

US5821790A
(en)

*

1996-04-24
1998-10-13
Paragon Electric Company, Inc.
Power line synchronization conditioner

Family Cites Families (10)

* Cited by examiner, † Cited by third party

Publication number
Priority date
Publication date
Assignee
Title

US3108258A
(en)

*

1960-07-12
1963-10-22
Square D Co
Electronic circuit

NL267564A
(en)

*

1960-08-22

US3140357A
(en)

*

1962-06-28
1964-07-07
Bell Telephone Labor Inc
Multifrequency receiver

BE634162A
(en)

*

1962-07-05

US3288940A
(en)

*

1963-10-24
1966-11-29
Automatic Elect Lab
Multifrequency signal receiver

NL6407780A
(en)

*

1964-07-09
1966-01-10

US3408581A
(en)

*

1965-08-26
1968-10-29
North American Rockwell
Digital suppressed carrier demodulator

US3571523A
(en)

*

1966-12-03
1971-03-16
Int Standard Electric Corp
Receiving device for distinguishing supervisory signals for other audiofrequency signals

US3497723A
(en)

*

1967-04-25
1970-02-24
Eastman Kodak Co
Squaring circuit

US3539731A
(en)

*

1968-11-05
1970-11-10
Bell Telephone Labor Inc
Multifrequency signal receiver

1970

1970-12-23
US
US00100950A
patent/US3710031A/en
not_active
Expired – Lifetime

1970-12-23
US
US00100951A
patent/US3743945A/en
not_active
Expired – Lifetime

1971

1971-12-02
AU
AU36453/71A
patent/AU3645371A/en
not_active
Expired

1971-12-16
GB
GB5843171A
patent/GB1341468A/en
not_active
Expired

1971-12-20
DE
DE19712163276
patent/DE2163276A1/en
active
Pending

1971-12-21
CH
CH1861571A
patent/CH547594A/en
not_active
IP Right Cessation

1971-12-22
NL
NL7117637A
patent/NL7117637A/xx
unknown

1971-12-22
BE
BE777085A
patent/BE777085A/xx
unknown

1971-12-22
CA
CA130,876A
patent/CA943278A/en
not_active
Expired

1971-12-22
ES
ES398233A
patent/ES398233A1/en
not_active
Expired

1971-12-23
FR
FR7146278A
patent/FR2119029B1/fr
not_active
Expired

Also Published As

Publication number
Publication date

US3743945A
(en)

1973-07-03

ES398233A1
(en)

1975-05-01

CH547594A
(en)

1974-03-29

NL7117637A
(en)

1972-06-27

AU3645371A
(en)

1973-06-07

US3710031A
(en)

1973-01-09

BE777085A
(en)

1972-06-22

FR2119029B1
(en)

1976-06-04

CA943278A
(en)

1974-03-05

DE2163276A1
(en)

1972-07-27

FR2119029A1
(en)

1972-08-04

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Legal Events

Date
Code
Title
Description

1974-05-01
PS
Patent sealed [section 19, patents act 1949]

1976-07-14
PLNP
Patent lapsed through nonpayment of renewal fees

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