[0001] The present invention relates to an addressable emergency illumination system and
an addressable fire detection system using visual alarm devices.
[0002] For many years visual alarm devices, in the form of beacons or combined sounder/beacons,
have been part of fire alarm systems, mainly to satisfy the needs of the Equality
Act. They assist the hard of hearing or staff working in noisy environments to recognise
when a fire alarm has been raised.
[0003] Now a new product standard, EN 54-23:2010 (Fire detection and fire alarm systems.
Part 23: Fire alarm devices - Visual alarm devices), has been introduced to standardise
the requirements, test methods and performance of VADs and ensure light output is
measured in a uniform manner. The need for VADs will be identified as part of the
fire risk assessment. As with any fire alarm system, there are numerous challenges
that must be considered in the design and installation of VADs.
[0004] One such challenge is the illumination of the entire volume of the open space where
the alarm must be visible. VADs must produce sufficiently intense light, so that an
individual located anywhere in the space, looking either towards or away from the
VAD, would be alerted in the event of an emergency.
[0005] The performance of VADs is assessed against a minimum required illumination of 0.4
lux on surfaces perpendicular to the direction of the light emitted from the device.
[0006] Conventional addressable alarm systems typically comprise a number of detectors,
such as smoke or heat detectors, a number of alarm sirens, and/or a number of visual
alarm devices. Each device forms part of an electrical circuit commonly known as a
loop, the ends of the loop being connected to a central control panel. The devices
each have a unique address code which is known to the control panel and, using these
address codes, bi-directional communication between a control panel and individual
devices on the loop is possible.
[0007] An advantage with this kind of system over less sophisticated systems in which each
device stands alone or is only addressable as part of a group of devices having the
same address, is that when a particular device is activated the control panel is able
to identify exactly which device has activated, and therefore where in the building
the activation has taken place. In addition, whilst the device has previously been
activated when the value of a detected parameter has exceeded a predetermined threshold
value stored in its own memory, the intelligent addressable system allows the control
panel to compare the detected parameter with information stored in its memory, whilst
taking into account the values of that parameter or other parameters detected by other
devices in the vicinity of the activated device.
[0008] The control panel is thus able to better assess the likelihood that the device has
activated needlessly, thus reducing the incidence of unwanted activation of sirens,
water sprinklers and other emergency apparatus.
[0009] EP 575,175 describes a method of communication between a control panel and a beacon using Quaternary
Mark Space (QMS) coding to deliver messages using modulation of a voltage waveform
to encode the messages.
[0010] The use of an addressable system therefore allows a degree of control to be built
into an alarm system.
[0011] GB2404474 described an emergency light monitoring system with lighting control.
[0012] According to the present invention there is provided an apparatus and method as set
forth in the appended claims. Other features of the invention will be apparent from
the dependent claims, and the description which follows.
[0013] According to an aspect of the present invention, an addressable emergency illumination
system or addressable fire detection system comprises a control section and at least
one emergency light or visual alarm device, wherein the control section is operable
to send power to the at least one emergency light or visual alarm device, is operable
to control illumination of the at least one emergency light or visual alarm device
and is operable to program lighting parameters of the at least one emergency light
or visual alarm device, wherein the at least one emergency light or visual alarm device
is connected across a two-wire loop to the control section and is operable to communicate
data to the control section by switching in a current source directly across the loop
to generate a current pulse for a period of 200µs.
[0014] In the following, the terms emergency light and visual alarm device can be used interchangeably,
so a reference to one can be used as a reference to the other.
[0015] The control section may be operable to control illumination or coverage volume of
the at least one emergency light or visual alarm device.
[0016] The lighting parameters may include output level, or brightness, of the at least
one emergency light, illumination characteristics, such as illumination period, of
the at least one emergency light, action on presence detection in the vicinity of
the at least one emergency light. The lighting parameters may include a setting of
the ambient light level or illumination volume for at least one emergency light.
[0017] The configuration parameters may include output level, output power setting, and
scene selection setting of the at least one emergency light. The control parameters
may include action on presence detection in the vicinity of the at least one emergency
light.
[0018] The configuration parameters may include coverage volume of the at least one visual
alarm device.
[0019] The at least one emergency light may be addressable, preferably individually, by
the control section.
[0020] The at least one emergency light may include at least one energy storage means (i.e.
battery or capacitor) for powering functions of the at least one emergency light.
[0021] The at least one emergency light may include an energy storage means, which may be
a capacitor, a super-capacitor or a battery for storing charge supplied to the at
least one emergency light by the control section.
[0022] The control section may be operable to control the at least one emergency light to
return status information to the control section. The status information may include
a current charge status of a battery of the at least one emergency light and/or a
light output level of the at least one emergency light, action on presence detection
in the vicinity of the at least one emergency light and /or a current operating state,
e.g. normal or emergency, of the at least one emergency light.
[0023] According to another aspect of the present invention there is provided an emergency
light or visual alarm device comprising lighting means and power storage means, wherein
the emergency light or visual alarm device is operable to receive power from a control
section of an associated emergency illumination system or fire system and wherein
the emergency light is operable to receive illumination control commands and lighting
parameter commands from the control section, wherein the emergency light and/or visual
alarm device is configured to be connected across a two-wire loop to the control section
and is operable to communicate data to the control section by switching in a current
source directly across the loop to generate a current pulse for a period of 200µs.
[0024] The at least one emergency light or visual alarm device may include a battery for
powering functions of the at least one emergency light.
[0025] For a better understanding of the invention, and to show how embodiments of the same
may be carried into effect, reference will now be made, by way of example, to the
accompanying diagrammatic drawings in which:
Figure 1 is an example graph of a Mark/Space type of voltage signal;
Figure 2 is a graph showing a waveform for communication between an emergency control
panel and an emergency beacon;
Figure 3 is a graph of a communications protocol for communication between an emergency
control panel and an emergency beacon;
Figure 4 is a schematic diagram of a control panel and a set of emergency beacons
attached thereto; and
Figure 5 is a schematic diagram of an emergency beacon.
[0026] A multiplexed communications system for an emergency signalling system is shown in
Figure 4. The system comprises a control panel 10 with a two-wire signalling link
12 supplying power to and communicating data with multiple devices 14a-d connected
to it.
[0027] The system has been fundamentally designed to be implemented in an Analogue Addressable
Fire Alarm system. It can, however, be used for other two-wire communications systems
where there is a control panel which powers and communicates bi-directionally to a
number of devices (an addressable emergency lighting system, for example).
[0028] Devices 14a-d are connected to the control panel 10 in circuits called loops 12.
The maximum number of devices 14a-d on a loop is defined by factors such as current
consumption, length and characteristics of transmission line, and data polling rate.
Loop Transmission Data Encoding Principle
[0029] The control panel 10 communicates with devices 14a-d by applying time encoded voltage
pulses to the loop circuit(s) 12. Each device 14a-d decodes these signals and acts
on the information contained therein. Devices 14a-d communicate in response by applying
time encoded current pulses to the loop circuit 12 which the control panel 10 decodes.
[0030] Devices 14a-d are programmed with a unique serial number at the stage of manufacture.
This serial number is the means by which the control panel 10 can individually communicate
with each device 14a-d.
[0031] The control panel 10 transmits data to all devices 14a-d simultaneously by switching
the loop 12 voltage between two levels at accurately defined intervals. Information
is efficiently time encoded using QMS signalling.
[0032] Data from a specific device 14a-d is communicated to the control panel 10 by means
of a series of current pulses. These current pulses are returned both synchronously
and asynchronously, depending on the mode of communication.
Loop QMC transmit signalling
[0033] The control panel 10 TRANSMITS data on the loop 12 as time encoded voltage pulses
switched between two levels Vm (Mark voltage) and Vs (Space voltage) as shown in Figure
1.
[0034] There are four combinations 00, 01, 10, 11 each of which can be encoded in either
a Mark or a Space. This method has two advantages over previous methods in that the
data rate is significantly increased and the baseband carrier frequency is significantly
reduced.
Current Pulse Reply Signalling
[0035] Devices 14a-d connected across a two-wire loop 12 communicate data to the control
panel 10 by switching in a current source directly across the loop 12 to generate
a current pulse for a period of 200µs. This current pulse is sensed by the control
panel 10 and decoded as a logical '1' by its presence and as a logical '0' by its
absence, as shown in figure 2. In Figure 2 the length of a tr pulse is typically 400µs,
but may vary between 370µs and 560µs. After the tr pulse is the Start pulse of 200µs.
Bits D7 to D0, followed by Parity and Stop are then applied to the loop 12, each of
which is 200µs in duration.
Communication Protocol
[0036] The system uses a defined protocol for construction of all loop transmissions, detailed
in figure 3.
[0037] The phases of transmission common to all communications are the Start Frame, with
a length of typically 2000µs and minimum and maximum of 1800µs and 2400µs respectively.
The vectored priority interrupt (VPI) slot has a typical length of 750µs with a minimum
and maximum of 655µs and 845µs respectively, and the control message, followed by
the checksum.
[0038] The start frame is used to allow loop outstations (devices 14a-d) to detect the start
of a new message, the VPI slot is used to allow devices 14a-d to asynchronously interrupt
a standard loop polling sequence and the message number is used to define what data
is being sent, or requested from the loop device.
[0039] The data following the message number is dependent upon the meaning inherent in the
message itself, some message are then followed by a checksum byte.
Amendments to the protocol for use on addressable emergency lighting systems or addressable
fire systems for use with visual alarm systems
[0040] The protocol system has been further developed for use in an addressable emergency
lighting system, which controls luminaires/beacons 14a-d.
[0041] This system uses multiple lighting luminaires/beacons 14a-d which are communicated
to individually using the above protocol. To maintain backward compatibility extra
control messages have been allocated to communicate with lighting devices 14a-d only.
At the moment the following messages have been devised, but further messages will
be required:
Program Luminaire brightness - Used to setup the brightness level of the individual luminaire or beacon 14;
Program Luminaire Scene Settings - Used to program a set of predefined scene settings, which are triggered from the
control panel 10;
Return luminaire status - The luminaire/beacon 14a-d returns its current battery charge and lamp level; and
Program luminaire operational state - Instruction from control panel 10 to tell the luminaire/beacon 14a-d what operating
state it is currently in (i.e, normal or emergency).
[0042] An example emergency beacon 14a is shown in Figure 5. The beacon 14a is programmable
using the protocol outlined above, including the commands mentioned in the amendment
above. In addition the emergency lighting beacon includes high capacity energy storage
device e.g. a super capacitor 16, i.e. a capacitor with a high capacitance for storing
charge supplied by the control panel 10. This high capacity energy storage device
e.g. capacitor 16 has been found to address the problem of pulsing power to an emergency
beacon when an alarm condition require the beacon to flash.
[0043] The capacitor allows a low voltage system to slowly charge the capacitor 16 when
the alarm condition is not present and to discharge the amount of power required to
illuminate the beacon 14a to a required output. These features avoid the voltage drop
that would typically occur along long runs of cabling that extend from the panel to
the emergency beacons. The lengths can extend to kilometres of cable. Also, without
the high capacity energy storage it would be very difficult to provide a pulsed light,
or strobe, that is sometimes required, because of the long cable lengths.
[0044] The European Standard EN54 Part 23 requires a specified lumen output of an emergency
beacon for a given volume that it covers. The system and beacons disclosed herein
provide a use application in the standard.
[0045] The low voltage charging and the ability to control the required output of the beacon
14a is advantageous, because the required output of a beacon can be outside the scope
of existing systems in terms of the power they can supply. In addition the required
output of a beacon can be dictated by the environment, such as a ceiling height when
the beacon 14a is attached to a ceiling. Therefore the ability to program the beacon
14a from the control panel 10 is very beneficial, especially in view of the number
of beacons that may be controlled by the panel 10.
[0046] It is possible to operate the control panel 10 to send details of a volume to be
illuminated by the beacon 14a and use programmable circuitry (programmed at manufacture
or during installation or when connected to the control panel) in the beacon 14a to
determine a light output required. A level of ambient light detected by the beacon
14a may also be used to determine the output of the beacon 14a.
[0047] Attention is directed to all papers and documents which are filed concurrently with
or previous to this specification in connection with this application and which are
open to public inspection with this specification, and the contents of all such papers
and documents are incorporated herein by reference.
[0048] All of the features disclosed in this specification (including any accompanying claims,
abstract and drawings), and/or all of the steps of any method or process so disclosed,
may be combined in any combination, except combinations where at least some of such
features and/or steps are mutually exclusive.
[0049] Each feature disclosed in this specification (including any accompanying claims,
abstract and drawings) may be replaced by alternative features serving the same, equivalent
or similar purpose, unless expressly stated otherwise. Thus, unless expressly stated
otherwise, each feature disclosed is one example only of a generic series of equivalent
or similar features.
[0050] The invention is not restricted to the details of the foregoing embodiment(s). The
invention extends to any novel one, or any novel combination, of the features disclosed
in this specification (including any accompanying claims, abstract and drawings),
or to any novel one, or any novel combination, of the steps of any method or process
so disclosed.
1. An addressable fire system comprising a control section (10) and at least one visual
alarm device (14a-d), wherein the control section (10) is operable to send power to
the at least one visual alarm device (14a-d), is operable to control illumination
of the at least one visual alarm device (14a-d) and is operable to program lighting
parameters of the at least one visual alarm device, characterised in that the at least one visual alarm device (14a-d) is connected across a two-wire loop
(12) to the control section (10) and is operable to communicate data to the control
section (10) by switching in a current source directly across the loop (12) to generate
a current pulse for a period of 200µs.
2. The addressable emergency fire system of claim 1, wherein the lighting parameters
include at least one of output level of the at least one visual alarm device (14a-d),
and illumination characteristics of the at least one visual alarm device (14a-d).
3. An addressable emergency illumination system comprises a control section (10) and
at least one emergency light (14a-d), wherein the control section (10) is operable
to send power to the at least one emergency light, is operable to control illumination
of the at least one emergency light (14a-d) and is operable to program lighting parameters
of the at least one emergency light (14a-d), characterised in that the at least one emergency light (14a-d) is connected across a two-wire loop (12)
to the control section (10) and is operable to communicate data to the control section
(10) by switching in a current source directly across the loop (12) to generate a
current pulse for a period of 200µs
4. The addressable emergency illumination system of claim 3, wherein the lighting parameters
include at least one of output level of the at least one emergency light (14a-d),
illumination characteristics of the at least one emergency light (14a-d), and action
on presence detection in the vicinity of the at least one emergency light (14a-d).
5. The addressable emergency illumination system or emergency fire system of any preceding
claim, wherein the control section (10) is operable to control illumination or coverage
volume of the at least one emergency light or visual alarm device (14a-d).
6. The addressable emergency illumination system or emergency fire system of any preceding
claim, wherein the lighting parameters include a setting of the ambient light level
or illumination volume for at least one emergency light and/or visual alarm device
(14a-d).
7. The addressable emergency illumination system or emergency fire system of any preceding
claim, wherein the at least one emergency light and/or visual alarm device (14a-d)
is addressable by the control section (10).
8. The addressable emergency illumination system or emergency fire system of any preceding
claim, wherein the at least one emergency light and/or visual alarm device (14a-d)
includes an energy storage means for powering functions of the at least one emergency
light and/or visual alarm device (14a-d).
9. The addressable emergency illumination system or emergency fire system of any preceding
claim, wherein the at least one emergency light and/or visual alarm device (14a-d)
includes an energy storage means for storing charge supplied to the at least one emergency
light and/or visual alarm device (14a-d) by the control section (10).
10. The addressable emergency illumination system or emergency fire system of any preceding
claim, wherein the control section (10) is operable to control the at least one emergency
light and/or visual alarm device (14a-d) to return status information to the control
section.
11. The addressable emergency illumination system or emergency fire system as claimed
in claim 10, wherein the status information includes at least one of a current charge
status of a battery of the at least one emergency light and/or visual alarm device
(14a-d) and/or a light output level of the at least one emergency light and/or visual
alarm device (14a-d), action on presence detection in the vicinity of the at least
one emergency light and/or visual alarm device (14a-d) and a current operating state,
e.g. normal or emergency, of the at least one emergency light and/or visual alarm
device (14a-d).
12. An emergency light and/or visual alarm device (14a-d) comprises lighting means and
energy storage means, wherein the emergency light and/or visual alarm device (14a-d)
is operable to receive power from a control section (10) of an associated emergency
signalling system or emergency fire system and wherein the emergency light and/or
visual alarm device (14a-d) is operable to receive illumination control commands and
lighting parameter commands from the control section, characterised in that the emergency light and/or visual alarm device (14a-d) is configured to be connected
across a two-wire loop to the control section and is operable to communicate data
to the control section (10) by switching in a current source directly across the loop
to generate a current pulse for a period of 200µs.
13. The emergency light and/or visual alarm device of claim 12, which includes an energy
storage means for powering functions of the at least one emergency light and/or visual
alarm device.
1. Adressierbares Brandsystem, das einen Steuerabschnitt (10) und mindestens eine visuelle
Alarmvorrichtung (14a-d) umfasst, wobei der Steuerabschnitt (10) betreibbar ist, um
Leistung zu der mindestens einen visuellen Alarmvorrichtung (14a-d) zu senden, betreibbar
ist, um die Beleuchtung der mindestens einen visuellen Alarmvorrichtung (14a-d) zu
steuern, und betreibbar ist, um Beleuchtungsparameter der mindestens einen visuellen
Alarmvorrichtung zu programmieren, dadurch gekennzeichnet, dass die mindestens eine visuelle Alarmvorrichtung (14a-d) über eine zweidrahtige Schleife
(12) mit dem Steuerabschnitt (10) verbunden und betreibbar ist, um Daten zu dem Steuerabschnitt
(10) durch Hereinschalten einer Stromquelle direkt über die Schleife (12) zu kommunizieren,
um einen Stromimpuls während einer Periode von 200 µs zu erzeugen.
2. Adressierbares Brandnotsystem nach Anspruch 1, wobei die Beleuchtungsparameter mindestens
einen des Ausgangspegels der mindestens einen visuellen Alarmvorrichtung (14a-d) und
Beleuchtungsmerkmale der mindestens einen visuellen Alarmvorrichtung (14a-d) aufweisen.
3. Adressierbares Notbeleuchtungssystem, das einen Steuerabschnitt (10) und mindestens
ein Notlicht (14a-d) umfasst, wobei der Steuerabschnitt (10) betreibbar ist, um Leistung
zu dem mindestens einen Notlicht zu senden, betreibbar ist, um die Beleuchtung des
mindestens einen Notlichts (14a-d) zu steuern, und betreibbar ist, um Beleuchtungsparameter
des mindestens einen Notlichts (14a-d) zu programmieren, dadurch gekennzeichnet, dass das mindestens eine Notlicht (14a-d) über eine zweidrahtige Schleife (12) mit dem
Steuerabschnitt (10) verbunden und betreibbar ist, um Daten zu dem Steuerabschnitt
(10) durch Hereinschalten einer Stromquelle direkt über die Schleife (12) zu kommunizieren,
um einen Stromimpuls während einer Periode von 200 µs zu erzeugen.
4. Adressierbares Notbeleuchtungssystem nach Anspruch 3, wobei die Beleuchtungsparameter
mindestens einen des Ausgangspegels des mindestens einen Notlichts (14a-d), von Beleuchtungsmerkmalen
des mindestens einen Notlichts (14a-d) und eine Aktion bei Erfassung von Gegenwart
in der Nähe des mindestens einen Notlicht (14a-d) aufweist.
5. Adressierbares Notbeleuchtungssystem oder Notbrandsystem nach einem vorhergehenden
Anspruch, wobei der Steuerabschnitt (10) bedienbar ist, um Beleuchtung oder Deckung
eines Volumens des mindestens einen Notlichts oder der mindestens einen visuellen
Alarmvorrichtung (14a-d) zu steuern.
6. Adressierbares Notbeleuchtungssystem oder Notbrandsystem nach einem vorhergehenden
Anspruch, wobei die Beleuchtungsparameter eine Einstellung des Umgebungslichtpegels
oder Beleuchtungsvolumens für mindestens ein Notlicht und/oder eine visuelle Alarmvorrichtung
(14a-d) aufweisen.
7. Adressierbares Notbeleuchtungssystem oder Notbrandsystem nach einem der vorhergehenden
Ansprüche, wobei das mindestens eine Notlicht und/oder die visuelle Alarmvorrichtung
(14a-d) durch den Steuerabschnitt (10) adressierbar ist.
8. Adressierbares Notbeleuchtungssystem oder Notbrandsystem nach einem der vorhergehenden
Ansprüche, wobei das mindestens eine Notlicht und/oder die visuelle Alarmvorrichtung
(14a-d) ein Energiespeichermittel für Leistungsversorgungsfunktionen des mindestens
einen Notlichts und/oder der visuellen Alarmvorrichtung (14a-d) aufweist.
9. Adressierbares Notbeleuchtungssystem oder Notbrandsystem nach einem der vorhergehenden
Ansprüche, wobei das mindestens eine Notlicht und/oder die visuelle Alarmvorrichtung
(14a-d) ein Energiespeichermittel zum Speichern einer Ladung aufweist, die zu dem
mindestens einen Notlicht und/oder der visuellen Alarmvorrichtung (14a-d) von dem
Steuerabschnitt (10) geliefert wird.
10. Adressierbares Notbeleuchtungssystem oder Notbrandsystem nach einem vorhergehenden
Anspruch, wobei der Steuerabschnitt (10) bedienbar ist, um das mindestens eine Notlicht
und/oder die mindestens eine visuelle Alarmvorrichtung (14a-d) zu steuern, um Statusinformationen
zu dem Steuerabschnitt zurückzusenden.
11. Adressierbares Notbeleuchtungssystem oder Notbrandsystem nach Anspruch 10, wobei die
Zustandsinformationen mindestens einen eines aktuellen Ladezustands der Batterie des
mindestens einen Notlichts und/oder der mindestens einer visuellen Alarmvorrichtung
(14a-d) und/oder eines Lichtausgabepegels des mindestens einen Notlichts und/oder
der mindestens einen visuellen Alarmvorrichtung (14a-d), Aktion bei Erfassung von
Gegenwart in der Nähe des mindestens einen Notlichts und/oder der mindestens einen
Alarmvorrichtung (14a-d) und eines aktuellen Betriebszustands, zum Beispiel Normal
oder Not, des mindestens einen Notlichts und/oder der mindestens einen visuellen Alarmvorrichtung
(14a-d) aufweist.
12. Notlicht und/oder visuelle Alarmvorrichtung (14a-d), das/die Beleuchtungsmittel und
Energiespeichermittel umfasst, wobei das Notlicht und/oder die visuelle Alarmvorrichtung
(14a-d) bedienbar ist, um Leistung von einem Steuerabschnitt (10) eines dazugehörenden
Notsignalisierungssystems oder Notbrandsystems zu empfangen, und wobei das Notlicht
und/oder die visuelle Alarmvorrichtung (14a-d) betreibbar ist, um Beleuchtungssteuerbefehle
und Beleuchtungsparameter Befehle von dem Steuerabschnitt zu empfangen, dadurch gekennzeichnet, dass das Notlicht und/oder die visuelle Alarmvorrichtung (14a-d) konfiguriert ist, um
über eine zweidrahtige Schleife mit dem Steuerabschnitt verbunden zu sein, und bedienbar
ist, um Daten zu dem Steuerabschnitt (10) durch Hereinschalten einer Stromquelle direkt
über die Schleife zu kommunizieren, um einen Stromimpuls während einer Zeitspanne
von 200 µs zu liefern.
13. Notlicht und/oder visuelle Alarmvorrichtung nach Anspruch 12, das/die ein Energiespeichermittel
zum Versorgen mit Leistung von Funktionen des mindestens einen Notlichts und/oder
einer visuellen Alarmvorrichtung aufweist.
1. Système d'incendie adressable comprenant une section de commande (10) et au moins
un dispositif d'alarme visuelle (14a à 14d), dans lequel la section de commande (10)
permet d'envoyer de l'énergie au ou aux dispositifs d'alarme visuelle (14a à 14d),
permet de commander l'éclairage du ou des dispositifs d'alarme visuelle (14a à 14d)
et permet de programmer des paramètres d'éclairage du ou des dispositifs d'alarme
visuelle, caractérisé en ce que le ou les dispositifs d'alarme visuelle (14a à 14d) sont raccordés à travers une
boucle à deux fils (12) à la section de commande (10) et permettent de communiquer
des données à la section de commande (10) en commutant dans une source de courant
directement à travers la boucle (12) pour générer une impulsion de courant pendant
une période de 200 µs.
2. Système d'incendie de secours adressable selon la revendication 1, dans lequel les
paramètres d'éclairage comprennent un niveau de sortie du ou des dispositifs d'alarme
visuelle (14a à 14d) et/ou des caractéristiques d'éclairage du ou des dispositifs
d'alarme visuelle (14a à 14d).
3. Système d'éclairage de secours adressable qui comprend une section de commande (10)
et au moins une lampe d'éclairage de secours (14a à 14d), dans lequel la section de
commande (10) permet d'envoyer de l'énergie à la ou aux lampes d'éclairage de secours,
permet de commander l'éclairage de la ou des lampes d'éclairage de secours (14a à
14d) et permet de programmer des paramètres d'éclairage de la ou des lampes d'éclairage
de secours (14a à 14d), caractérisé en ce que la ou les lampes d'éclairage de secours (14a à 14d) sont raccordées à travers une
boucle à deux fils (12) à la section de commande (10) et permettent de communiquer
des données à la section de commande (10) en commutant dans une source de courant
directement à travers la boucle (12) pour générer une impulsion de courant pendant
une période de 200 µs.
4. Système d'éclairage de secours adressable selon la revendication 3, dans lequel les
paramètres d'éclairage comprennent un niveau de sortie de la ou des lampes d'éclairage
de secours (14a à 14d) et/ou des caractéristiques d'éclairage de la ou des lampes
d'éclairage de secours (14a à 14d) et/ou une action sur une détection de présence
à proximité de la ou des lampes d'éclairage de secours (14a à 14d).
5. Système d'éclairage de secours adressable ou système d'incendie de secours adressable
selon l'une quelconque des revendications précédentes, dans lequel la section de commande
(10) permet de commander le volume d'éclairage ou de couverture de la ou des lampes
d'éclairage de secours ou du ou des dispositifs d'alarme visuelle (14a à 14d).
6. Système d'éclairage de secours adressable ou système d'incendie de secours adressable
selon l'une quelconque des revendications précédentes, dans lequel les paramètres
d'éclairage comprennent un réglage du niveau de lumière ambiante ou du volume d'éclairage
pour au moins une lampe d'éclairage de secours et/ou au moins un dispositif d'alarme
visuelle (14a à 14d).
7. Système d'éclairage de secours adressable ou système d'incendie de secours adressable
selon l'une quelconque des revendications précédentes, dans lequel la ou les lampes
d'éclairage de secours et/ou le ou les dispositifs d'alarme visuelle (14a à 14d) sont
adressables par la section de commande (10).
8. Système d'éclairage de secours adressable ou système d'incendie de secours adressable
selon l'une quelconque des revendications précédentes, dans lequel la ou les lampes
d'éclairage de secours et/ou le ou les dispositifs d'alarme visuelle (14a à 14d) comprennent
un moyen de stockage d'énergie pour alimenter des fonctions de la ou des lampes d'éclairage
de secours et/ou du ou des dispositifs d'alarme visuelle (14a à 14d) .
9. Système d'éclairage de secours adressable ou système d'incendie de secours adressable
selon l'une quelconque des revendications précédentes, dans lequel la ou les lampes
d'éclairage de secours et/ou le ou les dispositifs d'alarme visuelle (14a à 14d) comprennent
un moyen de stockage d'énergie pour stocker une charge fournie à la ou aux lampes
d'éclairage de secours et/ou au ou aux dispositifs d'alarme visuelle (14a à 14d) par
la section de commande (10).
10. Système d'éclairage de secours adressable ou système d'incendie de secours adressable
selon l'une quelconque des revendications précédentes, dans lequel la section de commande
(10) permet de commander la ou les lampes d'éclairage de secours et/ou le ou les dispositifs
d'alarme visuelle (14a à 14d) pour renvoyer des informations d'état à la section de
commande.
11. Système d'éclairage de secours adressable ou système d'incendie de secours adressable
selon la revendication 10, dans lequel les informations d'état comprennent un état
de charge actuel d'une batterie de la ou des lampes d'éclairage de secours et/ou du
ou des dispositifs d'alarme visuelle (14a à 14d) et/ou un niveau de sortie de lumière
de la ou des lampes d'éclairage de secours et/ou du ou des dispositifs d'alarme visuelle
(14a à 14d) et/ou une action sur la détection de présence à proximité de la ou des
lampes d'éclairage de secours et/ou du ou des dispositifs d'alarme visuelle (14a à
14d) et/ou un état de fonctionnement actuel, par exemple normal ou de secours, de
la ou des lampes d'éclairage de secours et/ou du ou des dispositifs d'alarme visuelle
(14a à 14d) .
12. Lampe d'éclairage de secours et/ou dispositif d'alarme visuelle (14a à 14d) qui comprennent
des moyens d'éclairage et des moyens de stockage d'énergie, dans lesquels la lampe
d'éclairage de secours et/ou le dispositif d'alarme visuelle (14a à 14d) permettent
de recevoir de l'énergie en provenance d'une section de commande (10) d'un système
de signalisation de secours associé ou d'un système d'incendie de secours et dans
lesquels la lampe d'éclairage de secours et/ou le dispositif d'alarme visuelle (14a
à 14d) permettent de recevoir des instructions de commande d'éclairage et des instructions
de paramètre d'éclairage en provenance de la section de commande, caractérisés en ce que la lampe d'éclairage de secours et/ou le dispositif d'alarme visuelle (14a à 14d)
sont configurés pour être raccordés à travers une boucle à deux fils à la section
de commande et permettent de communiquer des données à la section de commande (10)
en commutant dans une source de courant directement à travers la boucle pour générer
une impulsion de courant pendant une période de 200 µs.
13. Lampe d'éclairage de secours et/ou dispositif d'alarme visuelle selon la revendication
12, qui comprennent un moyen de stockage d'énergie pour alimenter des fonctions de
la ou des lampes d'éclairage de secours et/ou du ou des dispositifs d'alarme visuelle.