Rec Out 2Rec Out 1Rec InInput 7Input 6Input 5Input 4Input 3Input 2Input 1
(Unbalanced)(Unbalanced)
Pre Out
Pre OutLeftRight
Balanced Pre Out
LeftRight
RS232C
Control Bus
PSU
In
International Patent Pending
LeisureTech Electronics Pty Ltd
GND
Power AC
OnOff
Power
azur 840E Pre-Amplifier
Power Rating: 230V AC ~ 50Hz
Max Power Consumption: 36W
Designed in London, England
Flat / 200Hz L.P.
Manufactured
in an ISO9001
approved facilityThis device complies with part 15 of the FCC Rules. Operation is subject to the following two conditions: 1) This device may not cause harmful interference; 2) This device must accept any interference, including interference that may cause undesired operation.
Input 2 Balanced Audio
Balanced
Unbalanced
Balanced
Unbalanced
Input 1 Balanced Audio
Input 1
Input 2
GND
CAUTION
Risk of electric
shock.
Do not open.
AVIS
Risque de choc
electrique.
Ne pas ouvrir.
ACHTUNG
Vorm öffnen
des gerätes.
Netzstecker ziehen.
R
L
www.cambridge-audio.com
840E
840W
Raccordements de sortie – non équilibrés
Le 840E dispose de raccordements de sortie équilibré (XLR) et non
équilibré (RCA/Phono). Pour obtenir une meilleure qualité des résultats,
nous vous conseillons d’utiliser la sortie équilibrée avec les
amplificateurs de puissance qui proposent cette liaison (comme
l’amplificateur de puissance 840W Classe XD).
Le schéma ci-dessous montre comment le préamplificateur 840E est
relié à l’amplificateur de puissance 840W Azur et à une paire de haut-
parleurs.
Lorsque vous utilisez des raccordements non équilibrés (Phono/RCA),
les commutateurs de type des entrées gauche et droite doivent être sur
la position ‘non équilibrés’.
Avant d’effectuer les liaisons avec les haut-parleurs, s’assurer que le
courant est coupé et utiliser uniquement les interconnections prévues à
cet effet (comme les fiches bananes). S’assurer également que les
raccordements avec le ‘+’ et le ‘-’ sont corrects.
Votre haut-parleur peut disposer de plus d’une paire de terminaux de
raccordements : BF (basse fréquence) et HF (haute fréquence). Pour le
câblage simple, il est conseillé d’utiliser les terminaux BF pour les
liaisons. La bande en métal raccordant les terminaux basse fréquence
aux terminaux haute fréquence ne doivent pas être retirées (à retirer
uniquement pour un système de bi-câblage).
Important :Dans cette configuration, le 840W doit être défini en mode
Stéréo.
OnOff
Loop OutputInput
Balanced Audio - RightUnbalanced
Audio - Right
Input
Loop Output
Input
Loop Output
Out
Control Bus
Trigger
IR Emitter
In
Out/Thru
In
In
Loop OutputInput
Balanced Audio - LeftUnbalanced
Audio - Left
azur 840W Class XDTM Power Amplifier
Power Rating: 230V AC ~ 50Hz
Max Power Consumption: 1600W
www.cambridge-audio.com
Designed in London, England
Power AC
Please ensure that loudspeaker terminals are fully tightened
Veuillez s'assurer que les bornes de l'enceinte sont entièrement serrées
Stereo
Mono
Bi-Amp
Bridged
Loudspeaker Terminals - Right
Impedance 4 - 8 ohms
Bridged
Bridged
only!
Please ensure that loudspeaker terminals are fully tightened
Veuillez s'assurer que les bornes de l'enceinte sont entièrement serrées
Loudspeaker Terminals - Left
Impedance 4 - 8 ohms
Bridged
only!
Manufactured in an ISO9001 approved facility
This device complies with part 15 of the FCC Rules. Operation is subject to the following two conditions:
1) This device may not cause harmful interference
2) This device must accept any interference, including interference that may cause undesired operation
Rec Out 2Rec Out 1Rec InInput 7Input 6Input 5Input 4Input 3Input 2Input 1
(Unbalanced)(Unbalanced)
Pre Out
Pre OutLeftRight
Balanced Pre Out
LeftRight
RS232C
Control Bus
PSU
In
International Patent Pending
LeisureTech Electronics Pty Ltd
GND
Power AC
OnOff
Power
azur 840E Pre-Amplifier
Power Rating: 230V AC ~ 50Hz
Max Power Consumption: 36W
Designed in London, England
Flat / 200Hz L.P.
Manufactured
in an ISO9001
approved facilityThis device complies with part15 of the FCC Rules. Operation is subject to the following two conditions: 1) This device may not cause harmful interference; 2) This device must accept any interference, including interference that may cause undesired operation.
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