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SSM2164 查看數據表(PDF) - Analog Devices

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SSM2164 Datasheet PDF : 12 Pages
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SSM2164
but higher noise, and the opposite is true for less current. The
increased noise is due to higher current noise in the gain core
transistors as their operating current is increased. THD has the
opposite relationship to collector current. The lower distortion
is due to the decrease in the gain core transistors’ emitter
impedance as their operating current increases.
a low cutoff frequency. The main exception to this is in
dynamic processing applications, where faster attack or decay
times may be needed.
+5V
VC 3
100pF
This classical tradeoff between THD and noise in VCAs is
usually expressed as the choice of using a VCA in either Class A
or Class AB mode. Class AB operation refers to running a VCA
with less current in the gain core, resulting in lower noise but
higher distortion. More current in the core corresponds to
Class A performance with its lower THD but higher noise.
100k
1µF
VIN1
30k
500
+5V 560pF
IIN 2
VC 6
VCA1
4 IIOUT
30k
1/4
OP482
100pF
VOUT1
Figures 11 and 12 show the THD and noise performance of the
SSM2164 as the bias current is adjusted. Notice the two
characteristics have an inverse characteristic.
The quiescent current in the core is set by adding a single
resistor from the positive supply to the MODE pin. As the
simplified schematic shows, the potential at the MODE pin is
E one diode drop above the ground pin. Thus, the formula for the
MODE current is:
T IMODE = (V +)0.6V
RB
With ± 15 V supplies, an RB of 7.5k gives Class A biasing with a
E current of 1.9 mA. Leaving the MODE pin open sets the
SSM2164 in Class AB with 30 µA of current in the gain core.
Basic VCA Configuration
L Figure 24 shows the basic application circuit for the SSM2164.
Each of the four channels is configured identically. A 30 k
resistor converts the input voltage to an input current for the
VCA. Additionally, a 500 resistor in series with a 560 pF
capacitor must be added from each input to ground to ensure
O stable operation. The output current pin should be maintained
at a virtual ground using an external amplifier. In this case the
OP482 quad JFET input amplifier is used. Its high slew rate,
wide bandwidth, and low power make it an excellent choice for
S the current-to-voltage converter stage. A 30 kfeedback
resistor is chosen to match the input resistor, giving unity gain
for a 0.0 V control voltage. The 100 pF capacitors ensure
stability and reduce high frequency noise. They can be
B increased to reduce the low pass cutoff frequency for further
noise reduction.
For this example, the control voltage is developed using a
100 kpotentiometer connected between +5 V and ground.
O This configuration results in attenuation only. To produce both
100k
1µF
VIN2
30k
500
+5V 560pF
IIN 7
VC 11
VCA2
5 IIOUT
30k
1/4
OP482
100pF
100k
1µF
VIN3
30k
500
+5V 560pF
IIN 10
VC 14
VCA3
12 IIOUT
30k
1/4
OP482
100pF
100k
VIN4
1µF
30k
500
560pF
IIN 15
VCA4
13 IIOUT
30k
1/4
OP482
POWER SUPPLY
AND BIASING CIRCUITRY
9
8 16
1
V– GND V+ MODE
0.1µF 0.1µF
RB (7.5kCLASS A)
(OPEN CLASSAB)
VOUT2
VOUT3
VOUT4
–15V
+15V
Figure 24. Basic Quad VCA Configuration
Low Cost, Four-Channel Mixer
The four VCAs in a single package can be configured to create a
simple four-channel mixer as shown in Figure 25. The inputs
and control ports are configured the same as for the basic VCA,
but the outputs are summed into a single output amplifier. The
OP176 is an excellent amplifier for audio applications because
of its low noise and distortion and high output current drive.
gain and attenuation, the potentiometer should be connected
The amount of signal from each input to the common output
between a positive and negative voltage. The control input has can be independently controlled using up to 20 dB of gain or as
an impedance of 5 k. Because of this, any resistance in series
much as 100 dB of attenuation. Additional SSM2164s could be
with VC will attenuate the control signal. If precise control of
added to increase the number of mixer channels by simply
the gain and attenuation is required, a buffered control voltage
summing their outputs into the same output amplifier. Another
should be used.
possible configuration is to use a dual amplifier such as the
Notice that a capacitor is connected from the control input to
OP275 to create a stereo, two channel mixer with a single
ground. Because the control port is connected directly to the
SSM2164.
gain core transistors, any noise on the VC pin will increase the
output noise of the VCA. Filtering the control voltage ensures
that a minimal amount of noise is introduced into the VCA,
allowing its full performance to be realized. In general, the
largest possible capacitor value should be used to set the filter at
–8–
REV. 0

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