GB1420787A

GB1420787A – Electronic binary checking circuit injectable preparations
– Google Patents

GB1420787A – Electronic binary checking circuit injectable preparations
– Google Patents
Electronic binary checking circuit injectable preparations

Info

Publication number
GB1420787A

GB1420787A
GB2162773A
GB2162773A
GB1420787A
GB 1420787 A
GB1420787 A
GB 1420787A
GB 2162773 A
GB2162773 A
GB 2162773A
GB 2162773 A
GB2162773 A
GB 2162773A
GB 1420787 A
GB1420787 A
GB 1420787A
Authority
GB
United Kingdom
Prior art keywords
inputs
gate
circuit
input
gates
Prior art date
1972-06-20
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
GB2162773A
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 Business Machines Corp

Original Assignee
International Business Machines 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.)
1972-06-20
Filing date
1973-05-07
Publication date
1976-01-14

1973-05-07
Application filed by International Business Machines Corp
filed
Critical
International Business Machines Corp

1976-01-14
Publication of GB1420787A
publication
Critical
patent/GB1420787A/en

Status
Expired
legal-status
Critical
Current

Links

Espacenet

Global Dossier

Discuss

238000002360
preparation method
Methods

0.000
title
1

Classifications

G—PHYSICS

G06—COMPUTING; CALCULATING OR COUNTING

G06F—ELECTRIC DIGITAL DATA PROCESSING

G06F11/00—Error detection; Error correction; Monitoring

G06F11/07—Responding to the occurrence of a fault, e.g. fault tolerance

G06F11/08—Error detection or correction by redundancy in data representation, e.g. by using checking codes

G06F11/085—Error detection or correction by redundancy in data representation, e.g. by using checking codes using codes with inherent redundancy, e.g. n-out-of-m codes

H—ELECTRICITY

H03—ELECTRONIC CIRCUITRY

H03K—PULSE TECHNIQUE

H03K19/00—Logic circuits, i.e. having at least two inputs acting on one output; Inverting circuits

H03K19/007—Fail-safe circuits

H03K19/0075—Fail-safe circuits by using two redundant chains

Abstract

1420787 Checking input codes INTERNATIONAL BUSINESS MACHINES CORP 7 May 1973 [20 June 1972] 21627/73 Heading G4H A binary code for checking that at least k out of n binary input variables are 1 comprises a circuit which is representable by the equation (c k,n ,d k,n ) = (a n e k,n-1 (a 1 ,a 2 , … a n-1 ),a n e k-1,n-1 (a 1 , a 2 … a n-1 )), where a 1 … a n are the input variables, e k,n is an OR circuit receiving outputs from AND circuits, each of the AND circuits receiving k of the input variables, and wherein (c k,n , d k,n ) = (0, 1) or (1, 0) when at least k of the n inputs are 1, and (0, 0) otherwise. The terms c k,n and d k,n may be represented further as c k,n = a n Àa 1 Àa 2 Àa 3 … a k va n Àa 1 Àa 2 … a k-1 Àa k+1 v … va n Àa n-k … a n-1 and, d k,n = a n Àa 1 Àa 2 … a k-1 va n Àa 1 Àa 2 … a k-2 Àa k v … va n Àa n-k+1 …a n-1 where «v» represents an OR function. As shown in Fig. 1, the arrangement when n = 4; k = 2 comprises AND gates 101-105 each receiving 2 of the inputs together with a 4 and supplying outputs to OR gate 113, the output 114 of which is c k,n . Similarly, the inputs are taken to AND gates 107-111, a 4 to each gate and the other inputs singly to respective gates. The output 116 of OR gate 115 is d k,n . A further circuit, Fig. 4, is adapted to provide a similar 2-bit output indicative that less than or equal to i of n binary inputs is equal to 1, in this event where n = 4, i = 3. As shown 3 OR gates 119- 123 receive a respective one of 3 of the inputs and the inverted 4th input. Their outputs are coupled to an AND gate 127 and the 2-bit word 13 composed of the 4th input non-inverted, and the output 126 of gate 127. The equations of this circuit for the general case are provided in the Specification. These two types of circuit may be combined, Fig. 8 (not shown) to provide a 2-bit word indicative of whether the number of l’s in an input set is greater than or equal to k and less than or equal to i.

GB2162773A
1972-06-20
1973-05-07
Electronic binary checking circuit injectable preparations

Expired

GB1420787A
(en)

Applications Claiming Priority (1)

Application Number
Priority Date
Filing Date
Title

US26469372A

1972-06-20
1972-06-20

Publications (1)

Publication Number
Publication Date

GB1420787A
true

GB1420787A
(en)

1976-01-14

Family
ID=23007201
Family Applications (1)

Application Number
Title
Priority Date
Filing Date

GB2162773A
Expired

GB1420787A
(en)

1972-06-20
1973-05-07
Electronic binary checking circuit injectable preparations

Country Status (9)

Country
Link

US
(1)

US3784977A
(en)

JP
(2)

JPS5224366B2
(en)

BR
(1)

BR7304557D0
(en)

CA
(1)

CA992210A
(en)

DD
(1)

DD107155A5
(en)

DE
(1)

DE2327352C3
(en)

FR
(1)

FR2190294A5
(en)

GB
(1)

GB1420787A
(en)

IT
(1)

IT987429B
(en)

Families Citing this family (5)

* Cited by examiner, † Cited by third party

Publication number
Priority date
Publication date
Assignee
Title

US3901861A
(en)

*

1973-11-07
1975-08-26
Uniroyal Inc
Molecular weight jumping of elastomeric polymers

US3886520A
(en)

*

1974-04-03
1975-05-27
Sperry Rand Corp
Checking circuit for a 1-out-of-n decoder

JPS60107582U
(en)

*

1983-12-23
1985-07-22
松下電工株式会社

assembly frame

US5179561A
(en)

*

1988-08-16
1993-01-12
Ntt Data Communications Systems Corporation
Totally self-checking checker

US6496790B1
(en)

*

2000-09-29
2002-12-17
Intel Corporation
Management of sensors in computer systems

Family Cites Families (1)

* Cited by examiner, † Cited by third party

Publication number
Priority date
Publication date
Assignee
Title

US3559167A
(en)

*

1968-07-25
1971-01-26
Ibm
Self-checking error checker for two-rail coded data

1972

1972-06-20
US
US00264693A
patent/US3784977A/en
not_active
Expired – Lifetime

1973

1973-05-04
CA
CA170,775A
patent/CA992210A/en
not_active
Expired

1973-05-07
GB
GB2162773A
patent/GB1420787A/en
not_active
Expired

1973-05-15
IT
IT24077/73A
patent/IT987429B/en
active

1973-05-18
JP
JP48054852A
patent/JPS5224366B2/ja
not_active
Expired

1973-05-25
FR
FR7321358*A
patent/FR2190294A5/fr
not_active
Expired

1973-05-29
DE
DE2327352A
patent/DE2327352C3/en
not_active
Expired

1973-06-18
DD
DD171624A
patent/DD107155A5/xx
unknown

1973-06-19
BR
BR4557/73A
patent/BR7304557D0/en
unknown

1975

1975-06-24
JP
JP7713275A
patent/JPS571019B2/ja
not_active
Expired

Also Published As

Publication number
Publication date

IT987429B
(en)

1975-02-20

US3784977A
(en)

1974-01-08

JPS4944643A
(en)

1974-04-26

BR7304557D0
(en)

1974-08-22

CA992210A
(en)

1976-06-29

DE2327352B2
(en)

1975-04-10

DD107155A5
(en)

1974-07-12

JPS5224366B2
(en)

1977-06-30

DE2327352A1
(en)

1974-01-10

FR2190294A5
(en)

1974-01-25

JPS571019B2
(en)

1982-01-08

DE2327352C3
(en)

1975-12-11

JPS5118444A
(en)

1976-02-14

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Legal Events

Date
Code
Title
Description

1976-05-26
PS
Patent sealed [section 19, patents act 1949]

1983-12-21
PCNP
Patent ceased through non-payment of renewal fee

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