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THAT1430 데이터시트(PDF) 4 Page - List of Unclassifed Manufacturers

부품명 THAT1430
상세설명  Balanced Line Drivers
PDF  8 Pages
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THAT1430 데이터시트(HTML) 4 Page - List of Unclassifed Manufacturers

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These equations can be solved much like standard
op-amp loop equations, and for the differential case,
we can see that (using superposition) resistor feed-
back results in
DD
In
IN
OUT
+-
+
=+
()
1
3
2
3
and
DD
IN
OUT
-+
= 13
Substituting and simplifying into the equation that
defines differential operation yields
D
D
DA
In
OUT
D
DOUT
=+
-
+
()
3
2
3
Dividing through by AD (assuming that AD >> 3) and
simplifying yields
()
D DIn
OUT =
+
2
as one would expect for a +6dB line driver.
The derivation for the common mode equation is
more complicated1 in that it is dependent on the at-
tached load, and in any event doesn't yield much
insight into the device's operation.
In op-amp analysis or in the above derivation, the
combination of negative feedback and high open-loop
gain results in the open-loop gain "dropping out" of
the equation, and the differential inputs being forced
to the same potential. If we start with that assump-
tion, we can intuitively discern the operation of the
common-mode feedback loop as follows:
Referring again to Figures 2 and 3, the com-
mon-mode input actually senses the sum of the IC's
output currents by way of two 50 ohm resistors and
the bridge network (the 10pF capacitor simply limits
the maximum frequency at which this action occurs).
The resulting error signal is amplified and then
summed into both outputs, with the net effect being
to force the sum of the currents to be zero, and thus
the common mode output current to zero. Since this
is negative feedback, the common-mode loop can
raise the effective output impedance at audio fre-
quencies without the side effects of circuits that use
positive feedback to implement this function.
THAT Corporation; 45 Sumner Street; Milford, Massachusetts 01757-1656; USA
Tel: +1 (508) 478-9200; Fax: +1 (508) 478-0990; Web: www.thatcorp.com
Page 4
THAT1420/1430 Balanced Line Driver
Preliminary Information
Out-
Cap1
Cap2
Out+
Vcc
In+
Vee
Gnd
10k
10k
50
5k
5k
10k
10k
10k
10k
7k
7k
10p
50
THAT 1430
CEXT
REXT
Din+
Cin+
Cin-
Din-
Dout-
Dout+
D
C
AA
&
Figure 3. THAT 1430 Equivalent Circuit Diagram



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