Connecting An Audio Source To The Input Sockets; Daisy Chaining Audio Signals - Sennheiser SR 2000 IEM - ANNEXE 1 Instruction Manual

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Connecting an audio source to the input sockets

Stereo Trans
PUSH
PUSH
FREQ RANGE-Dw
IC 2099A-SR20x0
790-865 mHz
ART NO 503841
DESIGNED AND MADE IN GERM
SER NO 2518100095
ANT
BAL
AF IN
L(I)
+ 22dBu MAX
R(II)
RF OUT

Daisy chaining audio signals

You can transmit the same audio signal (e.g. the sum of all audio channels of a mixing
console) to several receivers of a multi-channel system. To do so, you have to daisy chain this
audio signal from one transmitter to the next via the output sockets
or
the two channels L (I) or R (II). The second channel allows you to transmit an individual audio
signal (e.g. the instrument of a musician). Using the balance setting on the receiver, you can
then adjust the relative levels of the sum of all audio channels and the individual audio signal.
For this, the transmitter has to be set to stereo mode and the receiver to Focus mode.
To daisy chain an audio signal from one transmitter to the next:
Connect the rod antennas
Use a suitable cable to connect the output of the audio source (e.g. mixing console) to the
¼" (6.3 mm) jack/XLR-3 combo socket
Adjust the output level of your audio source.
Via the operating menu, adjust the transmitter's input sensitivity. The input sensitivity is
adjusted via the "Sensitivity" menu item and is common for both inputs (see page 22).
You can connect several transmitters to the same audio source (see next chapter).
LOOP OUT BAL R (II)
. The audio signal is then transmitted by all transmitters on one of
Route a signal from the audio source to the input socket (in this example:
BAL AF IN R(II)
) of transmitter A.
PUSH
Stereo Transmitter SR 2000 IEM
PUSH
PUSH
FREQ RANGE-Dw
FMO
FMO
FREQ RANGE-Dw
790-865 mHz
IC 2099A-SR20x0
IC 2099A-SR20x0
790-865 mHz
ART NO 627945
ART NO 503841
DESIGNED AND MADE IN GERMANY
DESIGNED AND MADE IN GERMANY
SER NO 251810043
SER NO 2518100095
Loop Out B
ANT B
Loop Out A
BAL
BAL
B
B
+22dBu
+22dBu
BAL
BAL
100 - 240V
MAX
AF IN B
MAX
AF IN A
L(I)
R(II)
L(I)
L(I)
L(I)
R(II)
50/60Hz 0.2 A
ETHERNET RJ-45
+ 22dBu MAX
R(II)
RF OUT
ETHERNET RJ-45
L(I)
+ 22dBu MAX
R(II)
PUSH
PUSH
Stereo Transmitter SR 2000 IEM
PUSH
FREQ RANGE-Dw
FREQ RANGE-Dw
FMO
790-865 mHz
790-865 mHz
IC 2099A-SR20x0
IC 2099A-SR20x0
ART NO 503841
ART NO 627945
SER NO 251810043
SER NO 2518100095
DESIGNED AND MADE IN GERMANY
DESIGNED AND MADE IN GERMANY
Loop Out B
ANT B
Loop Out A
BAL
BAL
B
B
+22dBu
BAL
+22dBu
BAL
MAX
MAX
100 - 240V
AF IN B
AF IN A
50/60Hz 0.2 A
ETHERNET RJ-45
L(I)
R(II)
L(I)
L(I)
+ 22dBu MAX
R(II)
RF OUT
ETHERNET RJ-45
L(I)
R(II)
L(I)
+ 22dBu MAX
R(II)
Stereo Transmitter SR 2000 IEM
PUSH
PUSH
PUSH
FREQ RANGE-Dw
FREQ RANGE-Dw
FMO
790-865 mHz
790-865 mHz
IC 2099A-SR20x0
IC 2099A-SR20x0
ART NO 627945
ART NO 503841
DESIGNED AND MADE IN GERMANY
SER NO 2518100095
SER NO 251810043
DESIGNED AND MADE IN GERMANY
Loop Out B
Loop Out A
ANT B
BAL
BAL
B
+22dBu
B
+22dBu
BAL
BAL
MAX
AF IN B
MAX
100 - 240V
AF IN A
50/60Hz 0.2 A
ETHERNET RJ-45
L(I)
R(II)
L(I)
L(I)
+ 22dBu MAX
R(II)
RF OUT
ETHERNET RJ-45
L(I)
R(II)
L(I)
+ 22dBu MAX
R(II)
Putting the transmitter into operation
to the two BNC sockets
BAL AF IN L (I)
ANT A
Loop Out
A
BAL
B
+22dBu
MAX
100 - 240V
50/60Hz 0.2 A
ETHERNET RJ-45
L(I)
RF OUT
ANT A
B
Loop Out
BAL
B
+22dBu
MAX
100 - 240V
50/60Hz 0.2 A
ETHERNET RJ-45
L(I)
R(II)
RF OUT
Loop Out
ANT A
C
BAL
B
+22dBu
MAX
100 - 240V
50/60Hz 0.2 A
ETHERNET RJ-45
L(I)
RF OUT
.
and/or
BAL AF IN R (II)
LOOP OUT BAL L (I)
Stereo Transmitter SR 2000 IEM
PUSH
PUSH
FREQ RANGE-Dw
790-865 mHz
IC 2099A-SR20x0
ART NO 503841
SER NO 2518100095
DESIGNED AND MADE IN GERMANY
A
ANT
BAL
AF IN
R(II)
L(I)
+ 22dBu MAX
R(II)
RF OUT
Stereo Transmitter SR 2000 IEM
PUSH
PUSH
FREQ RANGE-Dw
790-865 mHz
IC 2099A-SR20x0
ART NO 503841
DESIGNED AND MADE IN GERMANY
SER NO 2518100095
B
ANT
BAL
AF IN
L(I)
+ 22dBu MAX
R(II)
RF OUT
PUSH
PUSH
Stereo Transmitter SR 2000 IEM
FREQ RANGE-Dw
790-865 mHz
IC 2099A-SR20x0
ART NO 503841
SER NO 2518100095
DESIGNED AND MADE IN GERMANY
C
ANT
BAL
AF IN
R(II)
L(I)
+ 22dBu MAX
R(II)
RF OUT
.
11

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