lm6164 National Semiconductor Corporation, lm6164 Datasheet - Page 4

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lm6164

Manufacturer Part Number
lm6164
Description
High Speed Operational Amplifier
Manufacturer
National Semiconductor Corporation
Datasheet

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Symbol
V
I
Symbol
GBW
SR
PBW
T
A
e
i
S
np-p
The following specifications apply for Supply Voltage =
Boldface limits apply for T
O
m
D
np-p
DC Electrical Characteristics
AC Electrical Characteristics
The following specifications apply for Supply Voltage =
Boldface limits apply for T
S
Note 2: Continuous short-circuit operation at elevated ambient temperature can result in exceeding the maximum allowed junction temperature of 150˚C.
Note 3: The typical junction-to-ambient thermal resistance of the molded plastic DIP (N) is 105˚C/Watt, the molded plastic SO (M) package is 155˚C/Watt, and the
cerdip (J) package is 125˚C/Watt. All numbers apply for packages soldered directly into a printed circuit board.
Note 4: Limits are guaranteed by testing or correlation.
Note 5: For single supply operation, the following conditions apply: V
Pin 4 (V
Note 6: C
Note 7: In order to achieve optimum AC performance, the input stage was designed without protective clamps. Exceeding the maximum differential input voltage re-
sults in reverse breakdown of the base-emitter junction of one of the input transistors and probable degradation of the input parameters (especially V
Noise).
Note 8: The average voltage that the weakest pin combinations (those involving Pin 2 or Pin 3) can withstand and still conform to the datasheet limits. The test circuit
used consists of the human body model of 100 pF in series with 1500 .
D
) to realize maximum output swing. This connection will degrade V
L
Output Voltage
Swing
Output Short
Circuit Current
Supply Current
Gain-Bandwidth
Product
Slew Rate
Power Bandwidth
Settling Time
Phase Margin
Differential Gain
Differential Phase
Input Noise
Voltage
Input Noise
Current
5 pF.
Parameter
Parameter
A
A
= T
= T
J
J
= T
Supply = +5V
and R
Supply = +5V
and R
(Note 10)
Source
Sink
= T
F = 20 MHz
Supply =
A
Supply =
V
10V Step to 0.1%
A
A
NTSC, A
NTSC, A
F = 10 kHz
F = 10 kHz
V
OUT
V
V
MIN
MIN
= +5 (Note 9)
= −4, R
= +5
L
L
Conditions
to T
to T
= 20 V
= 2 k
= 2 k
V
V
MAX
Conditions
±
±
MAX
= +10
= +10
L
5V
5V
PP
= 2 k
; all other limits T
; all other limits T
(Continued)
+
±
= 5V, V
±
15V, V
15V, V
OS
<
<
.
Typ
175
120
300
200
100
4.5
1.5
45
= 0V, V
4
0.1
0.1
8
CM
CM
A
A
= 0, R
= 0, R
= T
= T
CM
+14.2
−13.4
Typ
(Notes 4, 12)
= 2.5V, V
J
4.2
1.3
5.0
65
65
J
= 25˚C.
L
= 25˚C.
L
LM6164
Limit
140
100
200
180
100 k
100 k
OUT
(Notes 4, 12)
= 2.5V. Pin 1 & Pin 8 (V
LM6164
+13.5
+13.3
−13.0
−12.7
Limit
and R
3.5
3.3
1.7
2.0
6.5
6.8
30
20
30
20
and R
LM6264
(Note 4)
S
Limit
S
140
120
200
180
= 50
= 50
LM6264
(Note 4)
+13.5
+13.3
−13.0
−12.8
Limit
unless otherwise noted.
3.5
3.3
1.7
1.9
6.5
6.7
30
25
30
25
unless otherwise noted.
OS
Adjust) are each connected to
LM6364
(Note 4)
Limit
120
100
200
180
LM6364
(Note 4)
+13.4
+13.3
−12.9
−12.8
Limit
3.4
3.3
1.8
1.9
6.8
6.9
30
25
30
25
OS
, I
Units
MHz
MHz
V/µs
Deg
Deg
min
min
OS
ns
%
Units
, and
max
min
min
min
min
min
min
mA
mA
mA
V
V
V
V

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