Camille Bauer Sineax VS54 Handleiding
Camille Bauer
Receiver
Sineax VS54
Lees hieronder de 📖 handleiding in het Nederlandse voor Camille Bauer Sineax VS54 (2 pagina's) in de categorie Receiver. Deze handleiding was nuttig voor 7 personen en werd door 2 gebruikers gemiddeld met 4.5 sterren beoordeeld
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SINEAX VS54 DEUTSCH 1/4 SINEAX VS54 DEUTSCH 2/4 SINEAX VS54 DEUTSCH 3/4 SINEAX VS54 DEUTSCH 4/4
SINEAX VS54
Trennverstärker (mV)
für Shunt Messung 163 006 08.12
Allgemeine Eigenschaften
Der VS54 ist ein Trennverstärker mit galvanischer 3-Wege-Trennung und einem
hochempfindlichen Spannungseingang zur Messung an Shunt-Widerständen.
Merkmale/Nutzen:
•HoheGenauigkeit
•SehrschmalesGehäuse(6,2mm)
•Befestigungauf35mmDIN-Schiene
•SpannungsversorgungüberRückwandbusmöglich
•AnschlussüberZugfederklemme
•Galvanische3-WegeTrennung
•KongurationüberDIP-Schalter
Technische Daten
Hilfsenergie 19,2 … 30 V DC
Stromaufnahme Max. 22 mA bei 24 V DC
Leistungsaufnahme < 600 mW
Eingang unipolar oder bipolar
Eingang (Klemmen 3-4) Eingangsbereiche: 25 mV, 50 mV, 60 mV, 75 mV, 80 mV, 100 mV
Eingang (Klemmen 2-4)
Eingangsimpedanz 50 kΩ
Eingangsbereiche: 120 mV, 150 mV, 200 mV, 250 mV, 300 mV,
400 mV, 500 mV
Eingang (Klemmen 1-4) Eingangsimpedanz: 250 kΩ
Eingangsbereiche: 1000 mV, 2000 mV
Max. Eingang Eingangsimpedanz: 1 MΩ
Ausgangsspannung 0…5 V DC, 1…5 V DC, 0…10 V DC, 2…10 V DC,
min. Bürde 2 kΩ
Ausgangsstrom 0…20 mA, 4…20 mA, 20…0 mA, 20…4 mA
max. Bürde 500 Ω
Max. Spannung Ca. 12,5 V
Max. Strom Ca. 25 mA
Einstellzeit (10-90%) Bei 50 Hz: max. 25 ms ohne Filter und 55 ms mit Filter
Bei 60 Hz: max. 23 ms ohne Filter und 51 ms mit Filter
Auflösung 1mV für Spannungsausgang, 2µA für Stromausgang
Prüfspannung 1,5kV (50Hz für 1 Min.)
Schutzart IP20
Genauigkeitsangaben
Referenzbedingungen Umgebungstemperatur 25°C
Hilfsenergie 24 V
Bezugswert Messspanne
Grundgenauigkeit
(bei Referenz) ±0,1%
Temperatureinfluss < 120ppm/K
Umgebungsbedingungen
Betriebstemperatur – 20…+ 65°C
Lagertemperatur – 40…+ 85°C
Luftfeuchtigkeit 30…90% bei 40°C (nicht kondensierend)
Einsatzbereich Innenräume bis 2000m über Meer
LED interner Fehler, Überlast
Anschlüsse Zugfederklemmen
Leiterquerschnitt 0,2…2,5 mm2
Gehäuse PBT (schwarz)
Abmessungen, Gewicht 6,2 x 93,1 x 102,5 mm, 46 g
Normen
EN 61000-6-4/2002 (elektromagnetische Emission, industrielle
Umgebung)
EN 61000-6-2/2005 (elektromagnetische Immunität, industrielle
Umgebung)
EN 61010-1/2001 (Sicherheit)
Alle Schaltungen müssen mit doppelter Isolierung gegen Schaltun-
gen mit gefährlicher Spannung isoliert werden. Der Speisungstrans-
former muss der Norm EN 60742: «Isolierungstransformatoren und
Sicherheitstransformatoren» ent sprechen.
Unipolarer oder Bipolarer Eingang
SW1 5
Bipolar
Unipolar
Störfrequenz-Unterdrückung
für 50-60 Hz Netzfrequenz Eingangsfilter (1)
SW1 6 SW1 7
60 Hz aktiv
50 Hz inaktiv
(1) Daher ist es besser den Filter immer zuzuschalten, ausser man benötigt minimale
Einstellzeit.
Ausgangssignal Shunt Erkennung (3)
SW2 1 2 3 SW1 8
0…20 mA aktiv
4…20 mA inaktiv
20…0 mA (2) (2) Dies sind invertierte Ausgänge, für die der
FehlerderkleinereWertist.
(3) Die Genauigkeit wird durch die Stromauf-
nahme<3µAbeeinusst
20…4 mA (2)
0…10 V DC
0…5 V DC
1…5 V DC
2…10 V DC
Bereichsüberschreitung (siehe Tabelle unten für die entsprechenden Werte)
SW2 4
inaktiv: Der Ausgang bewegt sich nur innerhalb des eingestellten Messbereiches.
Bei einem Fehler geht der Ausgang 2,5 % über den Messbereichsendwert
aktiv: Der Ausgang bewegt sich linear von –2,5% bis 102,5% des eingestellten
Messbereiches.
Bei einem Fehler geht der Ausgang 5% über den Messbereichsendwert
Grenzwerte der Bereichsüberschreitung
DieprogrammierbarenGrenzwertederBereichsüberschreitung,dieinder
untenstehendenTabelleaufgeführtsind,geltenfürdasAusgangssignal.
Ausgangssignal SW2-8 inaktiv SW2-8 aktiv
4…20 mA Ausgang: 4…20 mA
Fehler: 20,5 mA
Ausgang: 3,5…20,5 mA
Fehler: 21 mA
0…20 mA Ausgang: 0…20 mA
Fehler: 20,5 mA
Ausgang: 0 mA…20,5 mA
Fehler: 21 mA
0…10 V Ausgang: 0…10 V
Fehler: 10,25 V
Ausgang: 0…10,25 V
Fehler: 10,5 V
0…5 V Ausgang: 0…5 V
Fehler: 5,125 V
Ausgang: 0…5,125 V
Fehler: 5,25 V
1…5 V Ausgang: 1…5 V
Fehler: 5,125 V
Ausgang: 0,875…5,125 V
Fehler: 5,25 V
2…10 V Ausgang: 2…10 V
Fehler: 10,25 V
Ausgang: 1,75…10,25 V
Fehler: 10,5 V
Elektrische Anschlüsse
DasModulbesitztZugfederklemmenfürdieelektrischen
Anschlüsse.
BittebeachtenSiebeimAnschliessenfolgendes:
1.EntfernenSie0,8cmderIsolierung
2.Führen Sie einen Schraubendreher in die quadra-
tische Öffnungein und drücken Sieihn, bis sichdie
Zugfederklemmeöffnet
3.FührenSiedasKabelindierundeÖffnungein
4.ZiehenSiedenSchraubendreherherausundüberprü-
fenSie,obdasKabelsicherinderKlemmebefestigt
ist.
Hilfsenergieversorgung
Zur Speisung der Signalkonverter der VS-
Liniegibtes3Möglichkeiten:
1. Direkte Speisung der Signalkonverter:
Jeder einzelne Signalkonverter wird über
dieKlemmen7(+)und8(-)mitHilfsenergie
versorgt.
1
2
3
4
5
6
7
8
Output
Input
+
-
19,2…30 Vdc
Power-
supply
2. Verwenden des CB-Power-Bus:
BeimCB-Power-Bus(Art.Nr.162826)handeltessichumeinenRückwandbusfür
dieVS-Signalkonverterlinie,welcherdirektaufderHutschienemontiertwird.
Esgenügtso,nureinenSignalkonvertermitHilfsenergiezuverbinden.DieHilfse-
nergiewirdvomSignalkonverteraufdenCB-Power-Busübertragen.
Sokönnenbiszu16Signalkonvertergespeistwerden.EsdarfmaximaleinStrom
von400mAimHilfsenergiekreisiessen.
Tel. +41 56 618 21 11
Camille Bauer AG Fax +41 56 618 35 35
Aargauerstrasse 7 info@camillebauer.com
CH-5610 Wohlen/Schweiz www.camillebauer.com
2
∅
Anweisungen zur Installation
Der Signalkonverterist für die Montage aufSchienen nach DIN 46277ausge-
legt.
Montage des Signalkonverters
aufderSchiene
EntfernungdesSignalkonverters
von der Schiene
1.SetzenSiedenSignalkonverterin
denoberenTeilderSchieneein.
2.DrückenSiedenSignalkonverter
nach unten.
1.HebelnSiemiteinemSchrauben-
dreher(wieaufderAbbildunggezeigt)
2.DrehenSiedenSignalkonverter
nachoben.
FüreinebessereBelüftungdesSignalkonvertersempfehlenwirdieMontagein
vertikalerStellung.VermeidenSiedieInstallationderSignalkonverterüberGerä-
ten,dieWärmeerzeugen.WirempfehlendieInstallationimunterenBereichdes
Schaltschrankes.
Verwenden des CB-Power-Bus
1.SteckenSiedieCB-Power-BusAnschlüssezusammen,umdieerforderlichen
AnzahlvonSteckplätzenzuerzielen.
2.SetzenSiedenCB-Power-BusindieSchieneein,indemSieihndazuaufder
oberenSeiteeinsetzenundnachuntendrücken.
WICHTIG: Beachten Sie die Einbaulage gemäss Bild. Andernfalls sind die
Signalkonverterkopfübermontiert.
– SchliessenSieniedieSpannungdirektamCB-PowerBusan!
– GreifenSiedieSpannungniedirektüberdieKlemmedesCB-Power
Bussesab!
Shunt Erkennungsfunktion
WenndieseFunktionaktiviertist,sendetderSignalkonvertereinenkleinenStrom
durchdenShuntundmisstdadurch,obeinShuntangeschlossenistodernicht.
IstkeinShuntangeschlossen,wirddiesdurchschnellesBlinkenderrotenLED
signalisiertundderAusganggehtaufFehler.
Einstellung der DIP-Schalter
Werkseinstellung
DerSignalkonverterwirdmitallenDIP-SchalterninOFFPositionausgeliefert.Die
EinstellungenentsprechendenfolgendenWerten:
Eingangssignal 0…60 mV
Bipolarer Eingang inaktiv
Störfrequenz-Unterdrückung 50 Hz
Eingangsfilter aktiv
Shunt Erkennung inaktiv
Ausgangssignal 4…20 mA
Bereichsüberschreitung
aktiv: bis 102,5% vom Endwert wird Ausgang linear
angezeigt
Bei Fehler geht der Ausgang auf 105% des Endwertes
ObigeEinstellungensindalsonurgültig,wennalleDIP-SchalteraufOFFstehen.
WirdeinDIP-Schalterverändert,isteserforderlich,alleandernParametersepa-
rat,entsprechendnachfolgendenTabelleneinzustellen.
ACHTUNG:FürallenachfolgendenTabellen:
EinstellungenüberDIP-SchalternurimspannungslosenZustandvornehmen!
DasSymbol zeigtan,dassderDIP-SchalterinderON-Positionist.
KeineAngabebedeutet,dassderDIP-SchalterinderOFF-Positionist.
Eingangssignal und Bereiche
SW1 Messen Physisch SW1 Messen Physisch
1 2 3 4 mV mV 1 2 3 4 mV mV
60 mV ± 100 mV 150 mV ± 250 mV
25 mV ± 50 mV 200 mV ± 250 mV
50 mV ± 50 mV 250 mV ± 250 mV
60 mV ± 100 mV 300 mV ± 500 mV
75 mV ± 100 mV 400 mV ± 500 mV
80 mV ± 100 mV 500 mV ± 500 mV
100 mV ±100 mV 1000 mV ± 1000 mV
120 mV ± 250 mV 2000 mV ± 2000 mV
DiephysischenBereiche werdenangegebenumdenFehler unddieAuösung
derÜbertragungzuberechnen.
3. Verwenden des CB-Power-Bus und des Spannungsversorgungsmoduls VS70:
DerVS70isteinSpannungsversorgungsmodulfürdenCB-Power-Busundistin
derLagebis zu75 Geräteder VS-SignalkonverterlinieüberdenRückwandbus
mitHilfsenergiezuversorgen.EsdarfmaximaleinStromvon1,6AimHilfsener-
giekreisiessen.
Sollenmehrals75Gerätegespiessenwerden,somusseinneuerCB-Power-Bus
Stranginstalliertwerden,welchernichtmitdemerstenStrangverbundenist.
Eingang
Klemmenbeschreibung:
Klemme1:Messbereichbis2V
Klemme2:Messbereichbis500mV
Klemme3:Messbereichbis100mV
Klemme4:Masse
1
4
2
4
3
4
V
+
V
+
V
Spannung
bis zu 2 V DC
1
2
3
4
5
6
7
8
Output
Input
Power-
supply
Spannung
bis zu 500 mV DC
Spannung
bis zu 100 mV DC
Ausgang
Spannung oder Strom
WirempfehlenfürdieelektrischenAnschlüsseabgeschirmteKabel.
1
2
3
4
5
6
7
8
Output
Input
Power-
supply
+
-
V / I
LED Anzeige
LED (rot) Bedeutung
Schnelles blinken Interne Fehler, Leitungsbruch
Langsames blinken Dip-Schalter Einstellungsfehler
Konstantes
Leuchten
Begrenzung der Ausgangs-Bereichsüberschreitung
Verhalten bei Fehler oder Defekt
JedeFehlfunktion,diezumschnellenBlinkenderLEDführt,setztdenAusgangin
einenFehlerzustand,z.B.aufdenÜberlastwert(2,5%oder5%gemässEinstel-
lungderDIP-Schalter).FürdirekteSkalierungverwendetderAusgangdenÜber-
lastwertentsprechenddemmaximalenWert,wobeifürdieinvertierteSkalierung
(20…0mA/20…4mA)derminimaleWertverwendetwird.BeilangsamemBlinken
bleibtderAusgangaufdemWertNull.
Gerätedürfennurfachgerechtentsorgtwerden!
SINEAX VS54 ENGLISH 1/4 SINEAX VS54 ENGLISH 2/4 SINEAX VS54 ENGLISH 3/4 SINEAX VS54 ENGLISH 4/4
SINEAX VS54
Isolating amplifier (mV)
for shunt measurement 163 006 08.12
General characteristics
VS54isanisolatingamplierwithgalvanic3-wayisolationandahighlysensitive
voltage input to measure shunt resistances.
Features/benefits:
•Highaccuracy
•Verynarrowhousing(6.2mm)
•Installationof35mmDINrail
•Powercanbesuppliedviabackplanebus
•Connectionviaspringcageterminals
•Galvanic3-wayisolation
•CongurationviaDIPswitch
Technical data
Power supply 19.2 … 30V DC
Current consumption Max. 22mA at 24V DC
Input power < 600mW
Input Unipolar or bipolar
Input (Terminals 3-4) Input ranges: 25mV, 50mV, 60mV, 75mV, 80mV, 100mV
Input (Terminals 2-4)
Input impedance 50kΩ
Input ranges: 120mV, 150mV, 200mV, 250mV, 300mV,
400mV, 500mV
Input (Terminals 1-4) Input impedance: 250kΩ
Input ranges: 1000mV, 2000mV
Max. input Input impedance: 1MΩ
Output voltage 0…5V DC, 1…5V DC, 0…10V DC, 2…10V DC,
min. load 2kΩ
Output current 0…20mA, 4…20mA, 20…0mA, 20…4mA
max. load 500Ω
Max. voltage Approx. 12.5V
Max. current Approx. 25mA
Response time (10-90%) At 50Hz: max. 25ms without filter and 55ms with filter
At 60Hz: max. 23ms without filter and 51ms with filter
Resolution 1mV for voltage output, 2µA for current output
Test voltage 1.5kV (50Hz for 1 min.)
Ingress protection IP20
Accuracy
Reference conditions Ambient temperature 25°C
Power supply 24V
Reference value Span
Basic accuracy
(at reference value) ±0.1%
Temperature influence < 120 ppm/K
Ambient conditions
Operating temperature – 20…+ 65°C
Storage temperature – 40…+ 85°C
Air humidity 30…90% at 40°C (non-condensing)
Scope of application Indoors up to 2000m above sea level
LED Internal error, overload
Connections Spring cage terminals
Conductor cross section 0.2…2.5mm2
Housing PBT (black)
Dimensions, weight 6.2 x 93.1 x 102.5mm, 46g
Standards
EN 61000-6-4/2002 (electromagnetic emission, industrial environ-
ment)
EN 61000-6-2/2005 (electromagnetic immunity, industrial environ-
ment)
EN 61010-1/2001 (safety)
All circuits must be insulated against circuits with dangerous voltage
by double insulation. The power transformer must correspond to
the EN 60 742 standard: «Isolation transformers and safety trans-
formers».
Unipolar or bipolar input
SW1 5
Bipolar
Unipolar
Mains frequency rejection
for 50-60Hz mains frequency Input filter (1)
SW1 6 SW1 7
60Hz Active
50Hz Inactive
(1)Therefore,it isbetterto activate thelter alwaysunless averylowresponsetimeis
required.
Output signal Shunt detection (3)
SW2 1 2 3 SW1 8
0…20mA Active
4…20mA Inactive
20…0mA (2) (2)Theseareinvertedoutputsforwhichtheerror
is the smaller value.
(3) The accuracy is inuenced by the power
consumption<3µA.
20…4mA (2)
0…10V DC
0…5V DC
1…5V DC
2…10V DC
Over-range (see table below for the respective values)
SW2 4
Inactive: The output covers only the set measuring range.
In case of an error, the output moves 2.5 % above the maximum value of the
measuring range.
Active The output moves in a linear manner from –2.5% to 102.5% of the set
measuring range.
In case of an error, the output moves 5% above the maximum value of the
measuring range
Over-range limit values
Theprogrammableover-rangelimitvalueslistedinthetablebelowrefertothe
output signal.
Output signal SW2-8 inactive SW2-8 active
4…20mA Output: 4…20mA
Error: 20.5mA
Output: 3.5…20.5mA
Error: 21mA
0…20mA Output: 0…20mA
Error: 20.5mA
Output: 0mA…20.5mA
Error: 21mA
0…10V Output: 0…10V
Error: 10,25V
Output: 0…10.25V
Error: 10.5V
0…5V Output: 0…5V
Error: 5.125V
Output: 0…5.125V
Error: 5.25V
1…5V Output: 1…5V
Error: 5.125V
Output: 0.875…5.125V
Error: 5.25V
2…10V Output: 2…10V
Error: 10,25V
Output: 1.75…10.25V
Error: 10,5
Electric connections
Themodule features spring cageterminals forelectric
connections.
Pleaseobservethefollowingwhenrealisingtheconnec-
tions:
1. Strip0.8cmoftheinsulation.
2. Enterthe screw driverinto thesquare opening and
pressuntilthespringopenswhichblocksthecable.
3. Enterthecableintotheroundopening.
4. Pullthescrewdriveroutandcheckwhetherthecable
isrmlyfastenedintheterminal
Power supply
Thereare3optionstosupplypowertothe
signalconvertersoftheVSline:
1. Direct supply to signal converters:
Each individual signal converter is supplied
withpowerviathe7(+)and8(-)terminals.
1
2
3
4
5
6
7
8
Output
Input
+
-
19,2…30 Vdc
Power-
supply
2. Using the CB-Power-Bus:
TheCB-Power-Bus(Art.No.162826)isabackplanebusfortheVSsignalconver-
terlinewhichisassembleddirectlyonthetop-hatrail.
Inthiscaseonlyonesignalconverterhastobeconnectedtothepowersupply.
ThepoweristransferredbythesignalconvertertotheCB-Power-Bus.
Upto16signalconverterscanbesuppliedinthisway.Themaximumcurrentin
thepowercircuitamountsto400mA.
Installation instructions
ThesignalconverterisdesignedforrailassemblyaccordingtoDIN46277.
Railassemblyofthe
signal converter
Removalofthesignalconverter
fromtherail
1.Placethesignalconverterinthe
upperpartoftherail.
2.Pressthesignalconverter
downwards
1.Useascrewdrivertoapplyleve-
rage(asshownintheimage)
2.Turnthesignalconverterupwards
Toachieveimprovedventilation,werecommendinstallingthesignalconverterin
averticalposition. Avoidtheinstallation ofthe signalconverteraboveheat-ge-
neratingdevices.Werecommendtheinstallationinthelowerpartofthecontrol
cabinet.
Using the CB-Power-Bus
1.Combine the CB-Power-Bus connections to obtain the requirednumber of
positions.
2.PlacetheCB-Power-Busintherailbyinsertingitinthetoppartandpressingit
downwards.
IMPORTANT:Ensure thepositionasshown inthe image.Otherwise thesignal
convertersaremountedupsidedown.
– NeverconnectthepowersupplydirectlytotheCB-Power-Bus!
– NevertapthepowersupplydirectlyviatheterminaloftheCB-Power-
Bus!
Shunt detection function
Whenthisfunctionisactivated,thesignalconvertersendsalowcurrentthrough
theshuntthusmeasuringwhetherashuntisconnectedornot.Ifashunthasnot
beenconnected,thisisindicatedbyrapidashingoftheredLEDandtheoutput
moves to an error.
Setting of the DIP switches
Factory setting
Thesignal converterisdelivered withallDIPswitchesin theOFF position.The
settingscorrespondtothefollowingvalues:
Input signal 0…60mV
Bipolar input Inactive
Mains frequency rejection 50Hz
Input filter Active
Shunt detection Inactive
Output signal 4…20mA
Over-range
Active: Up to 102.5% of the maximum value, the output
is indicated in a linear manner.
In case of an error, the output moves to 105% of the
maximum value.
ThesettingsstatedaboveareonlyvalidifallDIPswitchesareintheOFFposition.
IfaDIPswitchischanged,allotherparametersmustbesetseparatelyinaccor-
dancewiththesubsequenttables.
ATTENTION PLEASE: For all of the subsequent tables:
SetDIPswitchonlywhenitisnotenergised!
The symbol means that the DIP switch is in the ON position. No indication means that the DIP
switch is in the OFF position.
Input signal and ranges
SW1 Measured Physically SW1 Measured Physically
1 2 3 4 mV mV 1 2 3 4 mV mV
60mV ± 100mV 150mV ± 250mV
25mV ± 50mV 200mV ± 250mV
50mV ± 50mV 250mV ± 250mV
60mV ± 100mV 300mV ± 500mV
75mV ± 100mV 400mV ± 500mV
80mV ± 100mV 500mV ± 500mV
100mV ±100mV 1000mV ± 1000mV
120mV ± 250mV 2000mV ± 2000mV
Thephysical rangesare statedto calculatethe errorand theresolution ofthe
transmission.
3. Using the CB-Power-Bus and the VS70 power supply module:
VS70isa powersupplymodule fortheCB-Power-Busandcan supply power toa
maximumof75devicesoftheVSsignalconverterlineviatherearplatebus.Themaxi-
mumcurrentinthepowercircuitamountsto1.6A.
Ifmorethan75devicesaresupposedtobesupplied,anewCB-Power-Busstringmust
beinstalledwhichisnotconnectedtotherststring.
Input
Terminal description:
Terminal1:Measuringrangeupto2V
Terminal2:Measuringrangeupto500mV
Terminal3:Measuringrangeupto100mV
Terminal4:Earth
1
4
2
4
3
4
V
+
V
+
V
Voltage
up to 2 V DC
1
2
3
4
5
6
7
8
Output
Input
Power
supply
Voltage
up to 500 mV DC
Voltage
up to 100 mV DC
Output
Voltage or current
Theuseofshieldedcablesisrecommendedfortheelectricconnections.
1
2
3
4
5
6
7
8
Output
Input
Power-
supply
+
-
V / I
LED
LED (red) Meaning
Rapid flashing Internal error, line breakage
Slow flashing DIP switch setting error
Steady light Limit of the output over-range
Behaviour in case of an error or defect
AnymalfunctionleadingtorapidashingoftheLEDplacestheoutputinanerror
mode,e.g.totheoverloadvalue (2.5%or5%accordingtotheDIPswitch set-
ting).Theoutputusestheoverloadvalueaccordingtothemaximumvaluefordi-
rectscaling,whiletheminimumvalueisusedforinvertedscaling(20…0mA/20…
4mA).Inslowashing,theoutputremainsonzero.
Theinstrumentsmustbedisposedofinaproper
manner!
2
∅
Phone +41 56 618 21 11
Camille Bauer AG Fax +41 56 618 35 35
Aargauerstrasse 7 info@camillebauer.com
CH-5610 Wohlen/Switzerland www.camillebauer.com
Product specificaties
Merk: | Camille Bauer |
Categorie: | Receiver |
Model: | Sineax VS54 |
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