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PBL388131SO Datasheet(PDF) 9 Page - Ericsson

Part # PBL388131SO
Description  Voice-switched Speakerphone Circuit with built in loudspeaker amplifier
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Manufacturer  ERICSSON [Ericsson]
Direct Link  http://www.ericsson.com
Logo ERICSSON - Ericsson

PBL388131SO Datasheet(HTML) 9 Page - Ericsson

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9
PBL 388 13
Control
F2
F3
F5
F4
F1
PBL 388 13
Power amplifier
input
P1
C
11
16
14
13
C
C
C
R
7
68
9
CMP
R5
C2
C1
C3
C4
+
Transmitter
channel output
R
C
CTR
24
4
15
+
5
3
1
2
+L
R
+ C
R
C
R
C
C
C
+
GND
Receiver
channel input
+Rx in
+
N Det
Tx
Det
Rx
Det
R
Rxout
+
Txout
Tx in
+
Mic.
F6
Tx in
Rx in
12
10
Ref.
+
+
decreases with factor of 10, thus increasing
the detectors dynamic range. See fig.10.
Background Noise Detector
The general function of the backgro-
und noise detector in the transmitting
channel is to create a positive signal ( in
respect to the internal reference) so that,
when coupled to the summing point at the
CMP input, will counteract the continuous
type signal from the transmitter
level
detector representing the actual sound
pressure
level at the microphone. This
counteracts the noise from influencing the
switching characteristics. The input signal
to the back ground noise level detector is
taken from the output of the transmitter
detector, a voltage representing the
envelope of the amplified microphone sig-
nal. The detector inverts and amplifies this
signal 2 x (transmitting mode) and has on
it´s output a RC network consisting of an
internal resistor of 100k and an external
capacitor C4. The voltage across C4 is
connected to the CMP input (summing point)
via a resistor R5. The extent to which the
NDet output will influence the potential at
CMP input is set by the gain of the detector,
the maximum swing and R5. If a continuous
input signal is received from the microphone
( > 10sec.) the voltage across C4 is pulled
positive (relative to the reference) with a
time constant set by C4 to e.g. 5 sec. A
continuous input signal is thus treated as
noise. Since the output of the noise detector
is going negative it thereby counteracts the
signal from the transmitter detector and
thus helping the receiver detector signal to
maintain a set relation to the transmitter
detector signal. If
the transmitter input
signal contains breaks like breath pauses
the voltage at TxDetout decreases. If the
voltage across C3 gets less than the inverted
voltage across C4 divided by the detector
gain a rapid charge of C4 towards reference
will follow
(all levels referred to the
reference). If the breaks are frequent as in
speech the background detector will not
influence the switching characteristic of the
system. See fig. 11. There is a threshold of
approx. 50mV at TxDetout to prevent the
CTR Input
For full speech control (50dB
attenuation between the channels) this in-
put can be left unconnected. To set the
function to 25dB attenuation the input has
to be higher than 600mV below V+. See
figure 15. To set the circuit into a mute state
(results in, reduced gain in receiver channel
for the DTMF confidence tone in the
loudspeaker and closed transmitter
channel) a voltage below Vref has to be
connected to the input. By lowering the
voltage at the input below 0.9V a condition
will emerge where both receiver and trans-
mitter channels are closed. See fig. 13 and
15.
Figure 16. Speech switching arrangement.
activation of background noise detection in
noiseless environment. In the receiver mode
some of the loudspeaker output signal will
be sensed by the microphone. In order not
to treat this input signal as noise, the noise
detector goes into a hold state and
”remembers” the level from the previous
transmitting mode periode.


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