Bosch MAGIC.SENS series User manual

PRODUCT INFORMATION PI--34.65d
BDL--4998121218
A23.en / 09.02.2007
ST--FIR/ PRM1 / deh
Page1of42
MAGIC.SENS
This product information includes the
entire MAGIC.SENS -- product range.

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Table of Contents
1. Foreword 4........................................
2. Product Description 5..............................
2.1. Configuration of the Detector 5................................
2.2. Functional Description of Sensor Technology 5...................
2.3. SystemDescriptionMAGIC.SENS...LSN 6....................
2.3.1. FeaturesMAGIC.SENS...LSN 6......................................
2.4. SystemDescriptionMAGIC.SENS...GLT 7....................
2.4.1. FeaturesMAGIC.SENS...GLT 7......................................
3. Planning Tips 8....................................
3.1. Basic Planning Guidelines 8...................................
3.2. Use on a Local Security Network (LSN) 8.......................
3.3. Use with Conventional Line Technology
(German: Gleichstrom Linientechnik, abbreviated GLT) 8..........
3.4. Use in Explosive Areas 9.....................................
3.5. Use in Areas with Elevated Radioactivity 9......................
3.6. UseinFireBarriersaccordingtoDIBt 9.........................
4. Programming 10....................................
4.1. MAGIC.SENS OTC 410 LSN 11................................
4.2. MAGIC.SENS OC 410 LSN 11.................................
4.3. MAGIC.SENS OT 400 E LSN 12................................
4.4. MAGIC.SENS O 400 E LSN 12.................................
4.5. MAGIC.SENS T 400 E LSN 13.................................
4.5.1. Sensitivity Classes according to EN 54 Part 5 13...........................
5. Technical Data: MAGIC.SENS 14.....................
5.1. Technical Data: OTC 410 / OT 400 / OC 410 LSN 14..............
5.2. Technical Data: O 400 E LSN / T 400 E LSN 15...................
5.3. Technical Data: OC 310 GLT / OT 300 GLT / O 300 GLT 16.........
5.4. Technical Data: T 300 GLT / T 300 FSA GLT 17...................
5.5. Country Approvals 18..........................................
6. Detector Base 21....................................
6.1. Detector Base MS 400 21......................................
6.2. Detector Base with Damp Room Seal MSF 400 23................
6.3. Additional Base MSC 420 23...................................
6.4. Detector Base Sirens MSS 300 / 400 / 401 24....................

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7. Accessories 25.....................................
7.1. Support Plates for Detector Zone Identification 25.................
7.1.1. Support Plate TP4 400 25..............................................
7.1.2. Support Plate TP8 400 25..............................................
7.1.3. Labels for Self--Labeling 25.............................................
7.2. Basket Guard SK 400 26.......................................
7.3. Protective Dust Cover SSK 400 26..............................
7.4. Detector Console MK 400 26...................................
7.5. Detector Heating Element MH 400 26............................
7.6. MPA External Detector Alarm Display 27.........................
8. Order Overview 29..................................
8.1. Detector Variants 29...........................................
8.2. Detectors for Special Applications 29............................
8.3. Detector Base 30.............................................
8.4. Detector Base Sirens 30.......................................
8.5. Installation Accessories 31.....................................
8.6. Detector Accessories 31.......................................
8.7. MPA External Detector Alarm Display 31.........................
9. Installation of the Detector Module 32.................
9.1. Locking the Detector Module in the Base 32......................
10. Dismounting the Detector Module 32.................
11. Maintenance and Service 33.........................
11.1. Notes for the Service: Display of Operating Data 34...............
11.2. Test Instructions for MAGIC.SENS Fire Detector 36...............
11.7. Coding of the Detector Types 38................................
12. Repair 38...........................................
13. Disposal 38.........................................
14. Additional Documentation 38........................
14.1. Service Accessories 39........................................
15. Table of Abbreviations 40............................
16. Notes 41...........................................

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1. Foreword
The MAGIC .SENS fire detector series combines standard detection procedures such
as scattered light measurement and temperature measurement in their highest stage
of expansion with gas measurement technology.
Here, the signals of scattered light sensors, temperature sensors, and gas sensors are
processed with the help of modern signal--processing procedures.
Thus security against deceptive alarms is increased significantly and detection time
is reduced in comparison to the fire detectors available on the market today.
Thanks to the higher information content of the multisensor detectors, the use of
detectors is also possible in environments where pure smoke detectors cannot be
used.
The detectors are available in thefollowing stages of expansion:
DCombined optical, thermal, gas--sensitive smoke detectors
DCombined optical, thermal smoke detectors
DOptical smoke detectors
DThermal detectors
DCombined optical, gas--sensitive detectors
The line technology variants are:
DLSN (Local SecurityNetwork)
DGLT (Gleichstrom (conventional line)technology)
The cooperation of engineers and designers created the timeless, innovative design
of this detector, which integrates pleasantly into the ceiling.
With this design it is possible to reconcile the contradictory goals of a generous
installation space and a small detector.
The placement of the individual display on the detector tip is the first externally--visible
characteristic of the installation--friendly development concept.
The form--stable and robust detector base must no longer be aligned using the
position--independent position of the individual display.
It is suitable for surface and concealed mounting and provides separate mounting
points for dropped ceiling / recessed sockets.
In addition, it fits all common bore patterns.
For surface mounting, the cable may be fed through on the side.
The integrated strain relief for false floor cables prevents cables from being pulled out
of the terminal after installation.
The terminals are easily accessible, a retainer for the end resistance is integrated.
Cables up to 2.5 mm in diameter2canbeused.
It can be expanded with a damp room seal so that with one base, all installation
requirements can be met.

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2. Product Description
2.1. Configuration of the Detector
1 = Smoke measuring chamber
(Optical sensor)
2=Thermal sensor
3=Chemical sensor
(covered on the
cross--section)
4 = Individual display
5 = PC board with evaluation
electronics
6 = Base MS 400
2.2. Functional Description of Sensor Technology
2.2.1. Optical sensor (smoke detector)
The optical sensor works according to the scattered light method.
A light diode sends light into the measuring chamber; this light is absorbed by the
labyrinth structure. In case of fire, smoke enters the measuring chamber. The light is
scattered by the smoke particles and hits the photo diodes that transform the quantity
of light into a proportional electrical signal.
2.2.2. Thermal Sensor (temperature detector)
A thermistor (2) arranged on a resistance network serves as a thermal sensor on which an
analog--digital converter measures the temperature--dependent voltage at cyclical intervals.
Depending on the detector class set, the temperature measurement unit switches to
an alarm state if the maximum temperature exceeds 54°Cor69°C
(thermo--maximum) or a defined temperature increase within a particular time
(thermo--differential).
2.2.3. Chemical sensor (CO gas sensor)
The main function of the gas sensor (3) is to detect
carbon monoxide (CO) generated as a resultof afire,
but it will also detect hydrogen (H) and nitrous
monoxide (NO).
The underlying measurement principle is CO
oxidation and the measurable current that it creates.
The sensor signal value is proportional to the
concentration of gas.
The gas sensor delivers additional information to
effectively suppress deceptive values.
6
4
5
2
1
3
3

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2.3. System Description MAGIC.SENS ...LSN
Up to three detection principles are integrated into the multisensor detector
MAGIC.SENS . . . 400/410 LSN:
1. Optical (for smoke)
2. Thermal (for heat) OTC, OC, OT, O, T
3. Chemical (for gas)
The individual sensors can be programmed via the LSN network manually or
time--controlled. All sensor signals are evaluated continually by the internal signal
analysis electronics and are linked with each other. By linking the sensors (combined
detectors), the detector can also be used in places where the work carried out gives
rise to light smoke, steam or dust. If with the OC, OT, O, and T detectors a signal
combination fits the selected identifier for the area of operation, an alarm is triggered
automatically.
2.3.1.FeaturesMAGIC.SENS...LSN
DActive self--monitoring of the sensors, with display on the fire panel:
-- Display for defined sensor faults (life--zero monitoring),
-- Stepless display of the degree of contamination (only in service),
-- Fault indication with heavy contamination (instead of false alarm).
DActive adjustment of the threshold (drift compensation) if the optical sensor
becomes contaminated.
DActive adjustment of the threshold (drift compensation) of the chemical sensor.
DThe EMVsecurity is, with 30V/m in the range 1--1000MHz and with 40V/m in the
cellular frequency ranges 415--466MHz and 890--960MHz, significantly higher than
that required by VdS 2110 (VdS Schadenverhütung GmbH).
DThanks to integrated isolators, the LSN ring will continue to function in case of
wire breakage or short--circuit of a detector.
DDetector individual identification on the fire panel in case of alarm. Alarm
display on the detector with a blinking red LED.
DProgrammable, that is, can be adjusted to the area of operation.
DIncreased detection and false alarm security thanks to evaluation of the temporal
behavior of fire and disturbance variables.
DManual or time--controlled switch--off of individual sensors for adjustment to
extreme disturbance variables.
DActivation of a remote external detector alarm display is possible.
DVariable mechanical removal safeguard (can be activated/deactivated).
DDust--resistant labyrinth and cap construction.
DCan be connected to the LSN – fire panel BZ 500 / universal European central unit
UEZ 2000 / universal danger detection system UGM 2020 and to other central units
or their receiver components with identical connection conditions.
DDepending on the central unit, using the WinPara program (Version 4.53 or higher)
it is possible to read out the serial number, degree of contamination (for the O unit),
operating hours, and current analog values for each configured detector.

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2.4. System Description MAGIC.SENS ...GLT
Up to two of the following detection principles are integrated into the multisensor
detector MAGIC.SENS . . . 300/310 GLT:
1. Optical (for smoke)
2. Thermal (for heat) OC, OT, O, T
3. Chemical (for gas)
All sensor signals are evaluated continually by the internal signal analysis electronics
and are linked with each other. If a signal combination fits into the detector’s
programmed identifier field, the alarm is triggered automatically.
By linking the sensors (combined detectors), the detector can also be used in places
where the work carried out gives rise to light smoke, steam or dust.
2.4.1.FeaturesMAGIC.SENS...GLT
DActive adjustment of the threshold (drift compensation) if the optical sensor
becomes contaminated.
DActive adjustment of the threshold (drift compensation) of the chemical sensor.
DThe EMVsecurity is, with 30V/m in the range 1--1000MHz and with 40V/m in the
cellular frequency ranges 415--466MHz and 890--960MHz, significantly higher than
that required by VdS 2110 (VdS Schadenverhütung GmbH).
DActivation of a remote external detector alarm display is possible.
DVariable mechanical removal safeguard (can be activated/deactivated).
DDust--resistant labyrinth and cap construction.
DCan be connected to the GLT fire panels BZ 1012 / 1024 / 1060, universal European
central unit UEZ 1000, universal danger detection system UGM 2020 and to other
central units or their receiver components with identical connection conditions.

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3. Planning Notes
MAGIC.SENS fire detectors are not intended for
external use!
3.1. Basic Planning Specifications
DThe planning of multisensor fire detectors (combination detectors) occurs
according to the guidelines for optical detectors until an independent guideline has
been worked out with the VdS.
DThe types OTC, OC and OT are planned according to the guidelines for optical
detectors if they are operated as optical detectors or combined detectors; see
DIN VDE 0833 Part 2 and VDS 2095,
-- maximum monitoring area 120m2,
-- installation height up to 16m.
DIf the occasional switching--off of the optical unit (scattered light sensor) is
desired, the planning must occur according to the guidelines for heat detectors;
see DIN VDE 0833 Part 2 and VDS 2095,
-- minimum monitoring area 40m2,
-- installation height maximum 7.5m for the T 400 E LSN or OT 400 E LSN,
-- installation height maximum 6m for the T 300 GLT or OT 300 GLT.
DMaximum cable length: 1000m, for J--Y(St) Y n x 2 x 0.6 / 0.8.
DMaximum permissible air speed: 20 m/s.
DWhen planning for fire barriers according to DIBt, the following must be taken
into account:
-- T 400 E LSN must be programmed according to class A1R,
-- the characteristic curve of the T 300 / FSA also corresponds to the A1R class.
3.2. Use on a Local Security Network (LSN)
On the LSN, up to 127 detectors can be operated in the following operating modes
depending on the loop or stub:
Operating mode
Detector type combined only optical only thermo--maximum only thermo--differential
OTC 410 LSN x x x x
OC 410 LSN x x -- --
OT 400 E LSN x x x x
O 400 E LSN -- x-- --
T 400 E LSN -- -- x x
3.3. Use with Conventional Line Technology
(German: Gleichstrom Linientechnik, abbreviated (GLT)
The GLT technology permits the connection of up to detectors to a primary line.

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3.4. Use in Explosive Areas
All MAGIC.SENS detector types conform to the device category 3G,
gas group IIB, and temperature class T6, in accordance with the
European guideline 94/9/EG (ATEX). Thus the detectors may be
used in Zone 2 areas where there is danger of explosion!
Limiting values:
DDetectors may only be operated with central units whose line output is
energy--limited according to EN 50021.
.This is a given for all Bosch fire panels.
DThe line voltage (Umax) may not exceed 33V!
DThe maximum current (Imax) must be limited to 130mA!
DThe auxiliary voltage may not be fed through the ex area!
Fire detector cable:
DOnly fire detector cables that conform to DIN VDE 0814 may be used.
DThe entire cable capacity (Cmax) may not exceed 1mF!
DThe entire cable inductivity (Lmax) may not exceed 0.01H!
.The cable type J--Y(ST)Y08, according to DIN VDE 0815 (Table 10),
has a capacity of 120ηF with a length of 1000m.
Detector heating element:
DThe use of a detector heating element (MH 400) is not permissible!
3.5. Use in Areas with Elevated Radioactivity
DThere are three LSN detector types available especially for use in areas with
elevated radioactivity, such as in nuclear power plants:
-- Magic.Sens OT 400 LSN KKW
-- Magic.Sens O 400 LSN KKW
-- Magic.Sens T 400 LSN KKW
3.6. Use in Fire Barriers according to DIBt
DThere are four detector types available for use in fire barriers according to the
guideline of the DIBt (German Institute for Building Technology):
-- Magic.Sens O 400 LSN KKW
-- Magic.Sens T 400 LSN KKW
-- Magic.Sens O 300 GLT
-- Magic.Sens T 300 / FSA GLT

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4. Programming
Programming is setting a LSN detector to the desired operating mode.
Programming is carried out with the >WinPara< software using a PC or laptop connected
to the fire panel.
All sensor signals are analyzed continually by the internal evaluation electronics and
are linked with each other via an inbuilt microprocessor.
The detectors OTC 410 LSN OC 410 LSN and OT 400 E LSN are programmed by
specifying the operation location (e.g. computer room, office, large kitchen).
The selection of the operation location determines the optimal characteristic diagram
for fire and disturbance variable evaluation.
With low sensitivity of the optical sensor in the OTC 410 LSN, the detector only triggers
if smoke and also an increase of the CO concentration or the temperature is detected.
With the types OTC 410 LSN and OT 400 E LSN, the operating mode can be changed.
That is, individual sensors can be switched off:
-- Switch to optical (sensitivity O unit = low, T unit = switched off)
-- Switchover to thermo--differential (sensitivity T unit = A2R, O unit = switched off)
-- Switchover to thermo--maximum (sensitivity T unit = A2S, O unit = switched off)
With purely optical detectors O 400 E LSN, the sensitivity of the optical sensors can
be set on 3 levels. Depending on the operation location, the optical sensor in the
detector is thus adjusted to the environmental conditions.
For fire recognition, the optical detector uses the temporal behavior of the fire variables
that deviates significantly from the temporal behavior of disturbance variables and
also from the time behavior of a detector test with aerosol. Depending on the sensitivity
set, therefore there are also different trigger times when testing with a test aerosol,
outside of maintenance operation (10s to max 60s).
The thermal detector T 400 E LSN is programmed by taking into account the ambient
temperature and installation height with the selection of the sensitivity class.
Programming of the optical, thermal, and chemical detector and the linking of all detectors
via algorithms significantly increases the detection ability and security against false alarms.

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4.1. MAGIC.SENS OTC 410 LSN
O
p
eration locations that can be selected
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in the >WinPara< programming software
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etector type Tmax--unit O--unit C--unit
Theaters / Concert Halls combined
O+T
max +T
diff +C high (A2) medium high
Warehouse with vehicle traffic combined
O+T
max +T
diff +C low (B) low* low
Office (smokers) / Restaurant /
Waiting room / Conference room combined
O+T
max +T
diff +C high (A2) low* low
Conference room / Waiting room
/ Exhibition hall combined
O+T
max +T
diff +C high (A2) low* medium
Office (no traffic) combined
O+T
max +T
diff +C high (A2) high high
School / Kindergarten combined
O+T
max +T
diff +C high (A2) medium high
Garage combined
O+Tmax +T
diff +C high (A2) low* low
Kitchen / Casino /
Restaurant during active operation combined
O+Tmax +C low (B) low* low
Production Facilities combined
O+T
max +T
diff +C low (B) low* medium
Computer room combined
O+T
max +T
diff +C high (A2) high high
High--board warehouse without vehicle
traffic with combustion motors. combined
O+T
max +T
diff +C low (B) high high
Office (daily operation) combined
O+T
max +T
diff +C low (B) medium high
*With low sensitivity of the optical sensor, the detector only triggers if smoke and also an increase of
the CO concentration or the temperature is detected.
4.2. MAGIC.SENS OC 410 LSN
O
p
eration locations that can be selected in the
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etector type O--unit C--unit
Theaters / Concert Halls combined (O + C) medium
Warehouse with vehicle traffic combined (O + C) low
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4.3. MAGIC.SENS OT 400 E LSN
O
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Sensitivity
Operation locations that can be selected in the
>WinPara< programming software Detector type Tmax--uni
tO--unit
Theaters / Concert Halls combined
O+T
max +T
diff
high (A2) mediu
m
Warehouse with vehicle traffic combined
O+T
max +T
diff
low (B) low
Office (smokers) / Waiting room / Restaurant /
Conference room combined
O+T
max +T
diff
high (A2) low
Conference room / Waiting room / Exhibition hall combined
O+T
max +T
diff
high (A2) low
Office (no traffic) combined
O+T
max +T
diff
high (A2) high
School / Kindergarten combined
O+T
max +T
diff
high (A2) mediu
m
Garage Tmax +T
diff high (A2) --
Kitchen / Casino / Restaurant (during operation) Tmax low (B) --
Production Facilities combined
O+T
max +T
diff
low (B) low
Computer room combined
O+T
max +T
diff
high (A2) high
High--board warehouse without vehicle traffic with
combustion motors combined
O+T
max +T
diff
low (B) high
Office (daily operation) combined
O+T
max +T
diff
low (B) mediu
m
4.4. MAGIC.SENS O 400 E LSN
O
p
eration location and recommended settin
g
in the Sensitivit
y
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O--unit
Theaters / Concert Halls medium
Warehouse with vehicle traffic low
Office (smokers) / Waiting room / Restaurant / Conference room low
Conference room / Waiting room / Exhibition hall low
Office (no traffic) high
School / Kindergarten medium
Production Facilities low
Computer room high
High--board warehouse without vehicle traffic with combustion motors high
Office (daily operation) medium
For fire detection, the purely optical detector also evaluates the time
behavior of the fire characteristics that differs significantly from the time
behavior of characteristics during a detector test. Depending on the
sensitivity set, therefore there are also different trigger times when testing
with a test aerosol, outside of maintenance operation (10s to max 60s).

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4.5. MAGIC.SENS T 400 E LSN
Selectable sensitivity classes in the >WinPara< programming software
§A2R Typical application temperature: 25_C, Tmax +T
diff, height up to 6m
A2S Typical application temperature: 25_C, only Tmax, height up to 6m
A1R Typical application temperature: 25_C, Tmax +T
diff, height 6--7.5m
A1 Typical application temperature: 25_C, only Tmax., height 6--7.5m
BR Typical application temperature: 40_C, Tmax +T
diff., height up to 6m
BS Typical application temperature: 40_C, only Tmax., height up to 6m
§ = basic setting in the >WinPara<programming software
.During installation for automatic door control according to DIBt, the detector
must be programmed according to the class A1R!
4.5.1. Sensitivity classes according to EN 54 Part 5
The MAGIC.SENS T 400 E LSN gives you the opportunity, according to the
programming, to specify one of the six sensitivity classes listed above.
In the sensitivity classes A1, A2S and BS, the MAGIC.SENS T 400 E LSN is operated
as a pure thermo--maximum detector.
Here in the class A2S the detector does not activate under 54_C and in class BS not
under 69_C.
The sensitivity classes A2S and BS are therefore especially suitable for applications
where over a longer period, higher temperature rates--of--rise occur, e.g. in kitchens
or boiler rooms.
The sensitivity classes A1R, A2R and BR mean that in addition to the thermomax
unit, the thermodifferential unit is also active.
These sensitivity classes are especially well--suited for use in unheated buildings where
the ambient temperature can vary greatly but temperature rates--of--rise do not last long.
With the thermodifferential unit, the detectors in classes A1R/A2R activate at
T< 54°C and in class BR at T< 69°C; see table page 15.
The selection of the sensitivity class also depends on the installation height of the
detector (see table above).
For the highest security against false alarms, with room heights below 6 m, theclasses
A1 and A1R should not be selected, although this is allowed in principle. Furthermore,
the expected application temperature must be taken into consideration.

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5. Technical Data MAGIC.SENS
5.1. Technical Data: OTC 410 /OT 400 /OC 410 LSN
Detector type OTC 410 LSN OT 400 E LSN OC 410 LSN
Detection principle Combination of:
--Scattered light measurement
--Measurement of absolute
temperature and
temperature increase
--Combustion gas
measurement
Combination of:
--Scattered light measurement
--Measurement of absolute
temperature and temperature
increase
Combination of:
--Scattered light measurement
--Combustion gas
measurement
Special features Contamination detection
Drift compensation in optical
unit and in gas measuring unit
Operation switching / sensor
switching--off in the optical
unit and in the thermal unit.
Contamination detection
Drift compensation in optical unit
Operation switching / sensor
switching--off in the optical unit
and in the thermal unit.
Contamination detection
Drift compensation in optical
unit and in gas measuring unit
Operating voltage 15VDC...33VDC
Current consumption <0.7mA
Individual display LED red
Alarm output per data word via two--wire signal line
Indicator output Open collector, puts through 0 Volt via 1.5kΩ, max. 15mA
Response sensitivity
(basic data) O unit: < 0.15 dB/m
(EN 54 T7)
T unit: EN 54--5
Thermomax unit:> 54/69°C
Thermodifferential unit:
see table on page 15
Gas unit: in ppm range
O unit: < 0.15 dB/m
(EN 54 T7)
T unit: EN 54--5
Thermomax unit:>54/69°C
Thermodifferential unit:
see table on page 15
OTaccordingtoCEA
O unit: < 0.15 dB/m
(EN 54 T7)
Gas unit: in ppm range
max. monitoring
range 120 m2(note VdS-guidelines)
maximum mounting
height 16 m (note VdS-guidelines)
permissible airspeed 20m/s
Permissible
operating
temperature -- 1 0 °C...+50°C-- 2 0 °C...+50°Cor+65°C-- 1 0 °C...+50°C
permissible relative
humidity < 95 % (non--condensing)
Protection category
according to
EN 60 529 IP 30
Color code yellow ring black ring blue ring
Dimensions ∅99.5 x 52mm (without base) / ∅120 x 63.5mm (with base)
Housing material,
housing color ABS (Novodur) / white, similar to RAL 9010, matte surface
Product ID 4.998.101.151 4.998.130.602 4.998.101.152

PI -- 34.65dProduct Information MAGIC.SENS -- Product range
Page 15 of 42
BDL--4998121218
A23.en /09.02.2007
ST--FIR/ PRM1 / deh
5.2. Technical Data: O 400 E LSN /T 400 E LSN
Detector type O 400 E LSN T 400 E LSN
Detection principle Scattered light measurement Measurement of absolute temperature and
temperature increase
Special features Contamination detection
Drift compensation in optical unit
Operating voltage 15VDC...33VDC
Current consumption <0.7mA
Individual display LED red
Alarm output per data word via two--wire signal line
Indicator output max. 15mA (in case of alarm 0 volts is put through)
Response sensitivity
(basic data) < 0,15 dB/m (EN 54 T7) Thermomaximum unit:> 54°C/>69°C
Thermodifferential unit: according to EN 54 T5
(see table below)
max. monitoring area 120 m2(note VdS-guidelines) 40 m2(note VdS-guidelines)
maximum mounting
height 16 m (note VdS-guidelines) 7,5 m (note VdS-guidelines)
permissible airspeed 20m/s
permissible operation
temperature -- 2 0 °C...+65°C-- 2 0 °C...+50°Cor+65°C
Permissible relative
humidity < 95 % (non--condensing)
Protection category
according to
EN 60 529 IP 30
Color code -- red ring
Dimensions ∅99.5 x 52mm (without base) / ∅120 x 63.5mm (with base)
Housing material
--/Color ABS (Novodur) / white, similar to RAL 9010, matte surface
Product ID 4.998.121.032 4.998.130.603
Table: Response sensitivity of the thermodifferential unit according to EN 54-- 5
Temperature
r a t e -- o f -- r i s e
[
K
i
1
]
Response time for detectors in the
sensitivity class A1R
Response time for detectors in
sensitivity classes A2R / BR
[K min-- 1 ]Lower limiting
value [min / sec]
Upper limiting
value [min / sec]
Lower limiting value
[min / sec]
Upper limiting value
[min / sec]
10 1min 4 min 20 sec 2min 5 min 30 sec
20 30 sec 2 min 20 sec 1min 3 min 13 sec
30 20 sec 1 min 40 sec 40 sec 2 min 25 sec

PI -- 34.65dProduct Information MAGIC.SENS -- Product range
Page 16 of 42
BDL--4998121218
A23.en /09.02.2007
ST--FIR/ PRM1 / deh
5.3. Technical Data: OC 310 GLT /OT 300 GLT /O 300 GLT
Detector type OC 310 OT 300 O 300
Detection principle Combination of:
--Scattered light measurement
--Gas measurement
Combination of:
--Scattered light measurement
--Measurement of absolute
temperature and temperature
increase
Scattered light measurement
Special features Drift compensation in optical
unit and in gas measuring
unit Drift compensation in optical unit
Operating voltage 12VDC...28VDC
Current consumption <0.1mA
Individual display LED red
Alarm output Current increase (alarm resistance approximately 800Ω)
Indicator output Open collector, puts through 0 Volt via 3.92kΩ, max. 15mA
Response sensitivity
(basic data) O unit: < 0.15 dB/m
(EN 54 T7)
Gas unit:in the ppm range
O unit: < 0.15 dB/m
(EN 54 T7)
T unit: EN 54--5
Thermomaximum unit: >54°C
Thermodifferential unit: see
table on page 15
O unit: < 0.15 dB/m
(EN 54 T7)
max. monitoring area 120 m2(note VdS-guidelines)
maximum mounting
height 16 m (note VdS-guidelines)
permissible airspeed 20m/s
Permissible operating
temperature -- 1 0 °C...+50°C-- 2 0 °C...+50°C-- 2 0 °C...+65°C
permissible relative
humidity < 95 % (non--condensing)
Protection category
according to
EN 60 529 IP 30
Color code blue ring black ring --
Dimensions ∅99.5 x 52mm (without base) / ∅120 x 63.5mm (with base)
Housing material
--/Color ABS (Novodur) / white, similar to RAL 9010, matte surface
Product ID 4.998.101.153 4.998.025.351 4.998.117.239

PI -- 34.65dProduct Information MAGIC.SENS -- Product range
Page 17 of 42
BDL--4998121218
A23.en /09.02.2007
ST--FIR/ PRM1 / deh
5.4. Technical data: T 300 GLT /T 300 FSA GLT
Detector type T 300 T 300 / FSA
Detection principle Measurement of absolute temperature and
temperature increase Measurement of absolute temperature and
temperature increase
Special features
Class A2R according to EN 54--5
Goods monitoring for fire barriers
accordingtoDIBt.
Characteristic curve according to class A1R
accordingtoEN54--5
Operating voltage 12VDC...28VDC
Current
consumption <0.1mA
Individual display LED red
Alarm output Current increase (alarm resistance approximately 800Ω)
Indicator output Open collector, puts through 0 Volt via 3.92kΩ, max. 15mA
Response
sensitivity
(basic data)
T unit: EN 54--5
Thermomaximum unit: > 54°C
Thermodifferential unit: see table on page15
T unit: EN 54--5
Thermomaximum unit: > 54°C
Thermodifferential unit: see table on page15
max. monitoring
area 40m2(note VdS-guidelines) 40m2(note VdS-guidelines)
maximum
mounting height 6m (note VdS-guidelines) 6m (note VdS-guidelines)
permissible
airspeed 20m/s
Permissible
operating
temperature -- 2 0 °C...+50°C-- 2 0 °C...+50°C
permissible
relative humidity <95% (non--condensing)
Protection
category
according to
EN 60 529
IP 30
Color code red ring red ring
Dimensions ∅99.5 x 52mm (without base) / ∅120 x 63.5mm (with base)
Housing material
--/Color ABS (Novodur) / white, similar to RAL 9010, matte surface
Product ID 4.998.025.354 4.998.107.056

PI -- 34.65dProduct Information MAGIC.SENS -- Product range
Page 18 of 42
BDL--4998121218
A23.en /09.02.2007
ST--FIR/ PRM1 / deh
5.5. Country approvals
Country Approval institution Detector type Approval no.
Germany VdS OTC 410 LSN G 201 081
y
(D) Schadenverhütung GmbH OC 410 LSN G 201 080
(
)
OT 400 E LSN G 202 045
O 400 E LSN G 202 044
T 400 E LSN G 202 043
OT 400 LSN
KKW
O 400 LSN
KKW G 299 092
T 400 LSN
T
4
0
0
L
S
N
KKW
OC 310 GLT G 201 078
OT 300 GLT G 299 089
O 300 GLT G 299 088
T 300 GLT G 299 087
DIBt
German Institute for Building Technology OT 400 LSN
KKW
O 400 LSN Z--6.5--1629
Z
6
5
1
6
3
0
O
4
0
0
L
S
N
KKW
T 400 LSN
KKW
Z
--
6
.5--
1
6
3
0
Z--6.5--1631
T 300 GLT Z--6.5--1646
PTB
Physical.--Technical Federal Institute all types PTB Ex 01 --
20320
Belgium BOSEC Belgian Organization for O 400 E LSN TCC 2 -- 286
g
(B)
g
g
Security Certification T 400 E LSN TCC 2 --285
Bulgaria
(BG)
National Bureau “Fire- and Accident
Protection”,
Scientific Practical Institute for Fire and
Accident Protection”
OT 400 E LSN
O 400 E LSN
T 400 E LSN
OT 300 GLT
O 300 GLT
T 300 GLT
IN 79 /
11.02.2000
Denmark DANAK OT 400 E LSN 232.1102
(DK) Dansk Brand-- og sikringsteknisk Institut
D
I
F
T
O 400 E LSN 232.1100
(
)
DIFT
D
a
n
i
s
h
I
n
s
t
i
t
u
t
e
o
f
F
i
r
e
T
e
c
h
n
o
l
o
g
y
T 400 E LSN 232.1101
D
a
n
i
s
h
I
n
s
t
i
t
u
t
e
o
f
F
i
r
e
T
e
c
h
n
o
l
o
g
y
O 300 GLT 232.1103
T 300 GLT 232.1104
E
s
t
o
n
i
a
T
Ü
V
N
O
R
D
B
A
L
T
I
K
O
Ü
E
E
S
T
I
V
A
B
A
R
I
I
K
O
3
0
0
G
L
T
E
s
t
on
i
a
T
Ü
V
N
O
R
D
B
A
L
T
I
K
O
Ü
E
E
S
T
I
V
A
B
A
R
I
I
K
O
300
G
L
T
( EST ) OC 310 GLT
1
3
2
5
/
0
3
(
)
O 400 LSN 1325
/
03
OC 410 LSN
OT 300 GLT
OT 400 LSN 1326
/
03
OTC 410 LSN
1
3
2
6
/
0
3

PI -- 34.65dProduct Information MAGIC.SENS -- Product range
Page 19 of 42
BDL--4998121218
A23.en /09.02.2007
ST--FIR/ PRM1 / deh
Country approvals (continued)
Country Approval institution Detector type Approval no.
Hong Kong Fire Services Department Licensing and OT 400 E LSN
g
g
(HK)
p
g
Certification Command O 400 E LSN FP 206/1188
(
)
T
4
0
0
E
L
S
N
F
P
2
0
6
/
1
1
8
8
T
400
E
L
S
N
Israel
(
I
L
)
ISI
I
s
r
a
e
l
S
t
a
n
d
a
r
d
s
I
n
s
t
i
t
u
t
e
OT 400 E LSN 801 433 2544
(
I
L
)
I
srae
l
S
t
an
d
ar
d
s
I
ns
t
i
t
u
t
eO 400 E LSN 801 433 254%
Croatia
(HR)
EUROCONTROL ZAGREB,
Surveillance and Trading Service, Zagreb OT 300 GLT
O 300 GLT
T 300 GLT 103--SF/02
Lithuania
P
r
i
e
š
g
a
i
s
r
i
n
ė
s
A
p
s
a
u
g
o
s
I
r
G
e
l
b
ė
j
i
m
o
O 300 GLT
G
T
C
1
0
0
1
6
2
(LT)
g
p
g
j
D
e
p
a
r
t
a
m
e
n
t
o
;
O 400 GLT
G
T
C
100162
(
)
Prie Lietuvos Respublikos Vidaus Reikalų
G
C
T 300 GLT
G
T
C
1
0
0
1
6
0
p
ų
Mi
n
i
s
t
e
r
i
j
o
s
G
a
i
s
r
i
n
i
ų
T
y
r
i
m
ų
C
e
n
t
r
a
s
T 400 LSN
G
T
C
100160
OT 400 LSN
G
T
C
1
0
0
1
6
5
OTC 410 LSN
G
T
C
100165
Poland CNBOP OTC 410 LSN 1329.2003
(PL) Centrum Naukowo -- Badawcze Ochrony
P
r
z
e
c
i
w
p
o
z
a
r
o
w
e
j
OC 410 LSN 1328.2003
(
)
Przeciwpozarowe
j
OT 400 LSN 1327.2003
O 400 LSN 1326.2003
T 400 GLT 1325.2003
Russia
( RUS ) ÑÈÑÒÅÌA CEPTÈôÈKAÖÈÈ ÃÎÑÒ
ÃÎÑÑÒÀÍÄÀÒÎÑÑÈÈ OT 400 E LSN
OT 300 GLT
B
0
1
7
0
2
(
)
OT 400 E LSN
OT 300 GLT
B
01702
OT 400 E LSN
OT 300 GLT B 01703
Slovenia Laboratorij za procesno merilno tehniko O 400 E LSN
0
2
0
1
5
C
1
7
2
(SLO)
j
p
Laboratorij za magnetna merenja T 400 E LSN 02015--
C
--172
Spain Ministerio de Ciencia y Tecnologia; OTC 310 GLT G 201 079
p
(E)
y
g
;
Subdirección General de Calidad
y
OC 310 GLT G 201 078
S
u
b
d
i
r
e
c
c
i
ó
n
G
e
n
e
r
a
l
d
e
C
a
l
i
d
a
d
y
Seguridad Industrial OTC 410 LSN G 201 081
g
OC 410 LSN G 201 080

PI -- 34.65dProduct Information MAGIC.SENS -- Product range
Page 20 of 42
BDL--4998121218
A23.en /09.02.2007
ST--FIR/ PRM1 / deh
Country approvals (continued)
Country Approval institution Detector type Approval no.
Czech ACR Czech Army applied for
Republic
(
C
Z
)
PAVÚS Brandatestationinstitut OTC 410 LSN 08--0017
(CZ) NBU National Security Bureau
O
T
C
4
1
0
L
S
N
T 4016/2002
ACR Czech Army applied for
PAVÚS Brandatestationinstitut OC 410 LSN 00--0020
NBU National Security Bureau
O
C
4
1
0
L
S
N
T 4015/2002
ACR Czech Army 321/30--3/049/2
PAVÚS Brandatestationinstitut OT 400 E LSN C--00--033
NBU National Security Bureau
O
T
4
0
0
E
L
S
N
T 40139
ACR Czech Army 321/30--3/049/3
PAVÚS Brandatestationinstitut O 400 E LSN C--00--031
NBU National Security Bureau
O
4
0
0
E
L
S
N
T 40137
ACR Czech Army 321/30--3/049/4
PAVÚS Brandatestationinstitut T 400 E LSN C--00--032
NBU National Security Bureau
T
4
0
0
E
L
S
N
T 40138
ACR Czech Army applied for
PAVÚS Brandatestationinstitut OC 310 GLT 08--0020
NBU National Security Bureau
O
C
3
1
0
G
L
T
T 4015/2002
ACR Czech Army 321/30--3/049/2
PAVÚS Brandatestationinstitut OT 300 GLT 00--0033
NBU National Security Bureau
O
T
3
0
0
G
L
T
T 40139
ACR Czech Army 321/30--3/049/3
PAVÚS Brandatestationinstitut O 300 GLT C--00--031
NBU National Security Bureau
O
3
0
0
G
L
T
T 40137
ACR Czech Army 321/30--3/049/4
PAVÚS Brandatestationinstitut T 300 GLT C--00--032
NBU National Security Bureau
T
3
0
0
G
L
T
T 40138
Hungary BM OKF OTC 410 LSN 618/73--1/2001
g
y
(HU) Belügyminiszterium Orszagos
K
a
t
a
s
z
t
r
o
f
a
v
e
d
e
l
m
i
F
o
i
g
a
z
g
a
t
o
s
a
g
OC 410 LSN 618/73--2/2001
(
)
Katasztro
f
avedelmi Foigazgatosag OT 400 E LSN 618/22--3/2000
O 400 E LSN 618/22--1/2000
T 400 E LSN 618/22--3/2000
OC 310 GLT 618/73--3/2001
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