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TLE202X_16 Datasheet, PDF (54/80 Pages) Texas Instruments – EXCALIBUR HIGH-SPEED LOW-POWER PRECISION OPERATIONAL AMPLIFIERS
TLE202x, TLE202xA, TLE202xB, TLE202xY
EXCALIBUR HIGH-SPEED LOW-POWER PRECISION
OPERATIONAL AMPLIFIERS
SLOS191D − FEBRUARY 1997 − REVISED NOVEMBER 2010
APPLICATION INFORMATION
macromodel information
Macromodel information provided was derived using Microsim Parts™, the model generation software used
with Microsim PSpice™. The Boyle macromodel (see Note 5) and subcircuit in Figure 73, Figure 74, and Figure
75 were generated using the TLE202x typical electrical and operating characteristics at 25°C. Using this
information, output simulations of the following key parameters can be generated to a tolerance of 20% (in most
cases):
D Maximum positive output voltage swing
D Maximum negative output voltage swing
D Slew rate
D Quiescent power dissipation
D Input bias current
D Open-loop voltage amplification
D Unity-gain frequency
D Common-mode rejection ratio
D Phase margin
D DC output resistance
D AC output resistance
D Short-circuit output current limit
NOTE 5: G. R. Boyle, B. M. Cohn, D. O. Pederson, and J. E. Solomon, “Macromodeling of Integrated Circuit Operational Amplifiers”, IEEE Journal
of Solid-State Circuits, SC-9, 353 (1974).
99
VCC +
rp
IN − 1
3
ree
cee
Iee
re1 re2
13
14
IN+
2
dp
Q1
Q2
C1
11
12
+
vc
r2
−
53
dc
egnd
9
+
vb
−
+
fb
−
C2
6
gcm
ga
ro2 90
hlim
+ dip
−
7
+
vlim
8−
din
91
+
vip
−
92
−
vin
+
VCC −
rc1 rc2
de
54
4− +
ve
Figure 73. Boyle Subcircuit
ro1
5
OUT
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