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EP 0 471 006 B1 |
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EUROPEAN PATENT SPECIFICATION |
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Mention of the grant of the patent: |
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05.07.1995 Bulletin 1995/27 |
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Date of filing: 27.04.1990 |
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International Patent Classification (IPC)6: H01T 1/14 |
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International application number: |
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PCT/US9002/348 |
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International publication number: |
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WO 9013/904 (15.11.1990 Gazette 1990/26) |
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GAS TUBE FAIL SAFE DEVICE FOR TELEPHONE PROTECTOR MODULES
BETRIEBSSICHERE GASROHRVORRICHTUNG FÜR SCHUTZMODULE FÜR FERNSPRECHANLAGEN
DISPOSITIF DE TUBE A GAZ A SECURITE INTEGREE DESTINE AUX MODULES DE PROTECTION DE
TELEPHONES
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Designated Contracting States: |
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AT BE CH DE DK ES FR GB IT LI SE |
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Priority: |
01.05.1989 US 345446 12.02.1990 US 478424
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Date of publication of application: |
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19.02.1992 Bulletin 1992/08 |
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Proprietor: PORTA SYSTEMS CORPORATION |
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Syosset, NY 11791 (US) |
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Inventors: |
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- NEUWIRTH, Helmuth
Garden City, NY 11530 (US)
- MEYERHOEFER, Carl
Dix Hills, NY 11746 (US)
- CARNEY, William, V.
Oyster Bay, NY 11771 (US)
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Representative: Purvis, William Michael Cameron |
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D. Young & Co.,
21 New Fetter Lane London EC4A 1DA London EC4A 1DA (GB) |
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References cited: :
WO-A-88/08634 US-A- 4 649 456
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FR-A- 2 622 047
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| Note: Within nine months from the publication of the mention of the grant of the European
patent, any person may give notice to the European Patent Office of opposition to
the European patent
granted. Notice of opposition shall be filed in a written reasoned statement. It shall
not be deemed to
have been filed until the opposition fee has been paid. (Art. 99(1) European Patent
Convention).
|
[0001] The invention relates generally to the field of telephony, and more particularly
to a thermally sensitive second protection device for individual subscriber pair protector
modules normally installed upon a mainframe in a telephone office.
[0002] Such protection devices traditionally employed a pair of carbon electrodes which
arced upon the occurrence of momentary current overload to ground the individual circuit.
Later developments included heat-sensitive devices employing a fusible solder member
which, upon fusing, allowed a resilient member permanently to short the module to
ground.
[0003] A still later development, now in widespread use is the so-called three element gas
tube in which momentary overloads cause the tube to become conductive to short the
overload to ground, and in which, upon the occurrence of a sustained overload, the
tube develops sufficient heat to activate a separate heat-sensitive device to cause
permanent shorting to ground.
[0004] With the development of requirements for protective modules of ever smaller dimensions
consistent with connector blocks having ever higher circuit densities, the use of
conventional heat sensitive devices including heat coils becomes more difficult because
of space limitations, and it has become necessary to provide a heat-sensitive element
of sufficiently simple construction to supplement the action of the three-element
gas tube without requiring significant additional volume within the protector module
housing. Further, in some cases, there is a requirement for secondary air gap protection
which will provide protection against momentary overloads in the event of a defective
gas tube in which the conductivity voltage levels are other than standard, apart from
the function of the heat-sensitive element.
[0005] Our Patent Specifications US-A-4 649 456 which is considered as being the closest
prior art discloses a three element gas tube mounted in a housing which also contains
test point contacts, a ground pin assembly with a spring loaded contact pin and solder
pellets which are held between insulated ends of a ground clip and the test point
contacts, which test point contacts are pressed against ends of the gas tube. Melting
of the solder pellets due to prolonged excess current allows direct shorting and openings
in the insulation on the ends of the ground clip allows momentary surges to cause
arcing therethrough between the ground clip and the test point contacts.
[0006] Patent Specification FR-A-2 622 047 discloses a lightning arrester device comprising
a cylindrical casing with pins insulated in the ends thereof. A fusible element is
disposed in a groove around each end of the cylinder and is covered by a perforated
insulating layer which is covered by an electrode strip connected to the pins. Upon
rise in temperature due to over voltage the fusible strip melts, flows through the
holes in the insulating layer and creates a short circuit between the cylindrical
casing and the electrode strip.
[0007] Patent Specification WO 88/08634 discloses a gas filled surge arrestor with a centre
and two end electrodes with the electrodes held at desired spacings by annular ceramic
discs which form a housing. A contact pin of the centre electrode is connected to
a spring metal strip which has end portions urged towards the end electrodes but separated
therefrom by an insulating coating. Upon excess voltage occurring air gap breakdown
occurs at repeatable values and upon overheating the insulating coating breaks down.
[0008] According to the invention there is provided a thermally sensitive secondary protection
device for use with a 3-element gas tube employed for protecting an individual telephone
subscriber circuit, the gas tube including first and second end electrodes and a centrally
disposed electrode with the centrally disposed electrode having a laterally extending
contact pin thereon; the protection device comprising a member of resilient conductive
sheet material having a principal axis parallel to that of the tube and having first
and second end portions and a medially disposed portion therebetween, the first and
second end portions being resiliently engageable with the first and second end electrodes
on the gas tube but having fusible insulative members therebetween which, under normal
conditions, prevent electrical current conduction therebetween, the medially disposed
portion including means engaging the contact pin on the central electrode on the gas
tube in electrically conductive relation whereby the development of a predetermined
degree of heat by the gas tube upon the occurrence of a sustained current overload
will cause fusing of the insulative members causing shorting of the end electrodes
to the centre electrode; the member of resilient conductive sheet material being in
the form of a stamping and having the end portions formed as arcuately shaped terminals
to engage outer end surfaces of the first and second end electrodes of the gas tube
to fix the relative position therebetween; the medially disposed portion including
a centrally disposed opening bordered by first and second laterally bent tabs, the
tabs resiliently engaging the laterally extending contact pin; secondary air gap protection
means positioned between the stamping and the end electrodes to provide backup protection
against momentary voltage surges not developing sufficient heat to melt the fusible
components where the associated gas tube has failed to function at standard levels
of conductivity and including a substantially rectangular thin member of insulative
sheet material having air holes in portions thereof which overlie the end electrodes
of the gas tube; and a shorting plate overlying the thin member and positioned between
the thin member and the stamping, the thin member and the shorting plate each including
an aperture to receive the contact pin of the central electrode of the gas tube so
as to maintain them in congruent relation, the resilient grip of the tabs on the contact
pin and the resilient action of the medially disposed portion of the stamping keeping
the thin member and the shorting plate in close contact with the electrodes of the
gas tube and with each other to form an effective air gap.
[0009] Thus the invention can provide a fail-safe heat-sensitive device. The thin perforated
insulative sheet material member can provide secondary air gap means permitting arcing
to ground in the event of a momentary excess voltage surge not developing sufficient
heat to melt the fusible components, where the associated gas tube has failed to function
at standard levels of conductivity.
[0010] The invention is diagrammatically illustrated by way of example in the accompanying
drawings, in which:
Figure 1 is a side elevational view showing a clip, formed as a length of resilient
conductive sheet material, of a protection device according to the invention;
Figure 2 is a top plan of the clip of Figure 1;
Figure 3 is an elevation showing a shorting plate of a protection device according
to the invention;
Figure 4 is a view in elevation of an arc gap insulator member of a protection device
according to the invention; and
Figure 5 is a perspective view of a protection device according to the invention.
[0011] As shown in Figure 5, a 3-element gas tube 10, of a kind commonly used as the principal
protection means in individual subscriber circuit protector modules (not shown), has
a ceramic main body forming first and second sections 11 and 12 each of which is filled
with a gas, such as neon gas, which becomes electrically active above a pre-determined
potential. Communicating with the sections 11 and 12 are end electrodes 14 and 15,
and a central electrode 16 which, in installed condition within the module, communicates
with a ground pin 19 which, in turn, communicates with a source of ground potential
on the protector block upon which the module is mounted.
[0012] Cooperating with the gas tube 10 is a clip 49, shown in Figures 1 and 2 and comprising
a body 121 formed of sheet beryllium copper, or similar material as a stamping. The
body 121 has end portions 126 and 127 and to assist in maintaining the body 121 in
electrical contact with the end electrodes 14 and 15 of the gas tube 10, the end portions
126 and 127 are bent to form generally arcuately shaped terminals 128 and 129 which
partially wrap around the electrodes. Insulative members 130 are most conveniently
formed by cutting lengths of fusible insulative material sold under the Registered
Trade Mark Mylar or the like.
[0013] The body 121 includes a centrally disposed rectangular opening bordered by first
and second upwardly bent tabs 133 and 134 which engage the pin 19 which is thus positioned
within an open area 135 disposed therebetween. Since the open area 135 is of a width
less than the diameter of the pin 19, when the tabs 133 and 134 are in relatively
unstressed condition, a resilient purchase on the pin 19 is obtained after engagement
therewith.
[0014] In use, excess sustained current overloads are transformed into heat sufficient to
fuse the insulative lengths 130 and 131 resulting in grounding the end electrodes
14, 15 of the gas tube to the centre electrode 16.
[0015] The device requires only limited space within the protector module, and completely
eliminates the need for devices having a similar function but requiring much greater
volume, such as wire wound heat coils which serve to melt a solder pellet and thus
release a separate coil spring which effects a grounding function.
[0016] The protection device provides not only protection against relatively sustained current
overloads but also protection through secondary air gap means against momentary voltages
which is useful, for example, in the case of a defective gas tube which while not
totally inoperative has leaked to a degree sufficient substantially to alter the range
of voltage over which it is conductive, thus destroying the protection for which it
was provided.
[0017] As shown in Figures 3 and 5. a pair of integral shorting plates 50 and 51 are bounded
by side edges 52 and 53 and end edges 54 and 55. The plates 50 and 51 are positioned
beneath the body 121 and overlie an air gap insulative member 60 formed of thin insulative
material and shown in Figures 4 and 5. A centrally disposed opening 65 in each of
the member 60 and the shorting plates 50 and 51, permits access to the pin 19. The
member 60 is bounded by longitudinal edges 61 and 62, and end edges 63 and 64. Extending
along the end edges 63 and 64 are lines of small orifices 66 which provide air gaps
through which excess voltage surges may arc to provide a backup function equivalent
to that of the gas tubes. Thus, the occurrence of momentary excess voltage surges
as well as sustained excess current surges is fully accommodated, even if the gas
tube 10 with which it is associated ceases to function.
1. A thermally sensitive secondary protection device for use with a 3-element gas tube
(10) employed for protecting an individual telephone subscriber circuit, the gas tube
(10) including first and second end electrodes (14, 15) and a centrally disposed electrode
(16) with the centrally disposed electrode (16) having a laterally extending contact
pin (19) thereon; the protection device comprising a member (49) of resilient conductive
sheet material having a principal axis parallel to that of the tube (10) and having
first and second end portions (126, 127) and a medially disposed portion (121) therebetween,
the first and second end portions (126, 127) being resiliently engageable with the
first and second end electrodes (14, 15) on the gas tube (10) but having fusible insulative
members (130) therebetween which, under normal conditions, prevent electrical current
conduction therebetween, the medially disposed portion (121) including means (133,
134) engaging the contact pin (19) on the central electrode (16) on the gas tube (10)
in electrically conductive relation whereby the development of a predetermined degree
of heat by the gas tube (10) upon the occurrence of a sustained current overload will
cause fusing of the insulative members (130) causing shorting of the end electrodes
(14, 15) to the centre electrode (16); the member (49) of resilient conductive sheet
material being in the form of a stamping and having the end portions (126, 127) formed
as arcuately shaped terminals (128, 129) to engage outer end surfaces of the first
and second end electrodes (14, 15) of the gas tube (10) to fix the relative position
therebetween; the medially disposed portion (121) including a centrally disposed opening
(135) bordered by first and second laterally bent tabs (133, 134), the tabs (133,
134) resiliently engaging the laterally extending contact pin (19); secondary air
gap protection means positioned between the stamping (49) and the end electrodes (14,
15) to provide backup protection against momentary voltage surges not developing sufficient
heat to melt the fusible components where the associated gas tube has failed to function
at standard levels of conductivity and including a substantially rectangular thin
member (60) of insulative sheet material having air holes (66) in portions thereof
which overlie the end electrodes (14, 15) of the gas tube (10); and a shorting plate
(50, 51) overlying the thin member (60) and positioned between the thin member (60)
and the stamping (49), the thin member (60) and the shorting plate (50, 51) each including
an aperture (65) to receive the contact pin (19) of the central electrode (16) of
the gas tube (10) so as to maintain them in congruent relation, the resilient grip
of the tabs (133, 134) on the contact pin (19) and the resilient action of the medially
disposed portion (121) of the stamping (49) keeping the thin member (60) and the shorting
plate (50, 51) in close contact with the electrodes (14, 15, 16) of the gas tube (10)
and with each other to form an effective air gap.
1. Thermisch empfindliche, sekundäre Schutzeinrichtung für die Verwendung bei einem 3-Element-Gasrohr
(10), wie es für den Schutz eines individuellen Telefonteilnehmerschaltkreises verwendet
wird, wobei das Gasrohr (10) erste und zweite Endelektroden (14, 15) und eine zentral
angeordnete Elektrode (16) aufweist, wobei die zentral angeordnete Elektrode (16)
einen sich seitlich erstreckenden Kontaktstift (19) darauf hat, wobei die Schutzeinrichtung
ein Teil (49) aus einem federnd nachgiebigen, leitfähigen Bahnmaterial hat, welches
eine Hauptachse aufweist, die parallel zu derjenigen des Rohres (10) verläuft und
erste und zweite Endabschnitte (126, 127) sowie einen mittig angeordneten Abschnitt
(121) dazwischen hat, wobei die ersten und zweiten Endabschnitte (126, 127) federnd
nachgiebig mit den ersten und zweiten Endelektroden (14,15) an dem Gasrohr (10) in
Eingriff bringbar sind, jedoch durchschmelzbare isolierende Teile (130) dazwischen
haben, weiche unter normalen Umständen eine elektrische Stromleitung dazwischen verhindern,
wobei der mittig angeordnete Abschnitt (121) Einrichtungen (133, 134) aufweist, welche
mit dem Kontaktstift (19) an der zentralen Elektrode (16) des Gasrohres (10) in elektrisch
leitfähiger Beziehung in Eingriff treten, wodurch die Entwicklung einer vorbestimmten
Menge an Wärme durch das Gasrohr (10) beim Auftreten einer andauernden Stromüberlast
bewirkt, daß die isolierenden Teile (130) schmelzen und damit einen Kurzschluß der
Endelektroden (14,15) mit der zentralen Elektrode (16) bewirken, wobei das Teil (49)
aus federnd nachgiebigem, leitfähigen Bahnmaterial bzw. Blech die Form eines Preß-
bzw. Stanzteiles hat und die Endabschnitte (126, 127) als bogenförmig verlaufende
Anschlüsse (128, 129) aufweist, so daß sie mit äußeren Endflächen der ersten und zweiten
Elektroden (14, 15) des Gasrohres (10) in Eingriff treten, um die relative Position
zwischen diesen Teilen zu fixieren, der mittig angeordnete Abschnitt (121) eine zentral
angeordnete Öffnung (135) einschließt, die durch erste und zweite seitlich gebogene
Streifen (133, 134) begrenzt wird, wobei die Streifen bzw. Lappen (133, 134) federnd
nachgiebig mit dem sich seitwärts erstreckenden Kontaktstift (19) in Eingriff treten,
sekundäre Luftspaltschutzeinrichtungen zwischen dem Stanzteil (49) und den Endelektroden
(14, 15) angeordnet sind, um einen Sicherheitsschutz gegenüber momentanen Spannungsstößen
bereitzustellen, die keine ausreichende Hitze entwickeln, um die aufschmelzbaren Komponenten
aufzuschmelzen, wenn das zugehörige Gasrohr nicht bei Standardniveaus der Leitfähigkeit
funktioniert hat, und mit einem im wesentlichen rechtwinkligen dünnen Teil (60) aus
einem isolierenden Bahnmaterial, welches Luftlöcher (66) in einigen Bereichen hat,
welche über den Endelektroden (14, 15) des Gasrohres (10) liegen, und mit einer Kurzschlußplatte
(50, 51), weiche über dem dünnen Teil (60) liegt und zwischen dem dünnen Teil (60)
und dem Stanzteil (49) angeordnet ist, wobei das dünne Teil (60) und die Kurzschlußplatte
(50, 51) jeweils eine Öffnung (65) aufweisen, um den Kontaktstift (19) der zentralen
Elektrode (16) des Gasrohres (10) aufzunehmen, um sie so in einer kongruenten Beziehung
zueinander zu halten, wobei der federnd nachgiebige Griff der Streifen (133, 134)
an dem Kontaktstift (19) und die Federwirkung auf den mittig angeordneten Abschnitt
(121) des Stanzteiles (49) das dünne Teil (60) und die Kurzschlußplatte (50, 51) in
engem Kontakt mit den Elektroden (14, 15, 16) des Gasrohres (10) und miteinander halten,
so daß sie einen wirksamen Luftspalt bilden.
1. Dispositif de protection secondaire sensible à la chaleur pour utilisation avec un
tube à gaz à trois éléments (10) servant à protéger un circuit individuel d'abonné
au téléphone, le tube à gaz (10) comprenant des première et seconde électrodes d'extrémité
(14, 15) et une électrode disposée de façon centrale (16), l'électrode disposée de
façon centrale (16) portant une broche de contact (19) s'étendant latéralement ; le
dispositif de protection comprenant un élément (49) fait d'une matière en feuille
conductrice élastique ayant un axe principal parallèle à celui du tube (10) et comportant
des première et seconde parties d'extrémité (126, 127) et une partie disposée, entre
elles, de façon médiane (121), les première et seconde parties d'extrémité (126, 127)
pouvant contacter de manière élastique les première et seconde électrodes d'extrémité
(14, 15) du tube à gaz (10) mais avec, entre elles, des éléments isolants fusibles
(130) qui, dans les conditions normales, empêchent le passage du courant électrique
entre elles, la partie disposée de manière médiane (121) incluant un moyen (133, 134)
contactant la broche de contact (19) de l'électrode centrale (16) du tube à gaz (10)
dans une relation de conduction de l'électricité, ce par quoi le développement d'un
certain degré prédéterminé de chaleur par le tube à gaz (10), lors de l'apparition
d'une surcharge de courant soutenue, provoquera la fusion des éléments isolants (130)
en provoquant la mise en court-circuit des électrodes d'extrémité (14, 15) avec l'électrode
centrale (16) ; l'élément (49) de matière en feuille conductrice élastique étant sous
la forme d'une pièce fabriquée à la presse et dont les parties d'extrémité (126, 127)
sont formées comme des bornes de forme arquée (128, 129) pour contacter les surfaces
d'extrémité extérieures des première et seconde électrodes d'extrémité (14, 15) du
tube à gaz (10) pour fixer la position relative entre elles ; la partie disposée de
façon médiane (121) incluant une ouverture disposée de manière centrale (135) bordée
par des première et seconde pattes (133, 134) recourbées latéralement, les pattes
(133, 134) contactant de manière élastique la broche de contact s'étendant latéralement
(19) ; un moyen de protection secondaire par espace d'air situé entre la pièce fabriquée
à la presse (49) et les électrodes d'extrémité (14, 15) pour fournir une protection
de secours contre des pointes de tension momentanées ne développant pas une chaleur
suffisante pour fondre les composants fusibles si le tube à gaz associé ne fonctionne
plus aux niveaux normaux de conductivité, et incluant : un élément mince sensiblement
rectangulaire (60) fait d'une matière en feuille isolante comportant des trous d'air
(66) dans ses parties qui recouvrent les électrodes d'extrémité (14, 15) du tube à
gaz (10) ; et une plaque de court-circuit (50, 51) recouvrant l'élément mince (60)
et placée entre l'élément mince (60) et la pièce fabriquée à la presse (49), l'élément
mince (60) et la plaque de court-circuit (50, 51) comportant chacun une ouverture
(65) pour recevoir la broche de contact (19) de l'électrode centrale (16) du tube
à gaz (10) de manière à les maintenir dans une disposition en coïncidence, le serrage
élastique des pattes (133, 134) sur la broche de contact (19) et l'action élastique
de la partie disposée de façon médiane (121) de la pièce fabriquée à la pièce (49)
maintenant l'élément mince (60) et la plaque de court-circuit (50, 51) en contact
étroit avec les électrodes (14, 15, 16) du tube à gaz (10) et les unes avec les autres
pour former un espace d'air efficace.
