LM6182AMN National Semiconductor, LM6182AMN Datasheet - Page 6

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LM6182AMN

Manufacturer Part Number
LM6182AMN
Description
Dual 100 mA Output/ 100 MHz Current Feedback Amplifier
Manufacturer
National Semiconductor
Datasheet
www.national.com
Xt
BW
PBW
SR
t
t
t
in(+)
in(−)
e
THD
Symbol
s
r
p
The following specifications apply for supply voltage =
noted. Boldface limits apply at the temperature extremes; all other limits T
, t
n
±
Note 1: Absolute Maximum Ratings indicate limits beyond which damage to the device may occur. Operating ratings indicate conditions for which the device is in-
tended to be functional, but device parameter specifications may not be guaranteed under these conditions. For guaranteed specifications and test conditions, see
the Electrical Characteristics.
Note 2: Human body model 100 pF and 1.5 k .
Note 3: The typical junction-to-ambient thermal resistance of the molded plastic DIP(N) soldered directly into a PC board is 95˚C/W. The junction-to-ambient thermal
resistance of the S.O. surface mount (M) package mounted flush to the PC board is 70˚C/W when pins 1,4,8,9 and 16 are soldered to a total of 2 in
trace. The S.O. (M) package must have pin 4 and at least one of pins 1,8,9, or 16 connected to V− for proper operation.
Note 4: Continuous short circuit operation at elevated ambient temperature can result in exceeding the maximum allowable junction temperature of 150˚C. Each am-
plifier of the LM6182 is short circuit current limited to 100 mA typical.
Note 5: Typical values represent the most likely parametric norm.
Note 6: All limits are guaranteed at room temperature (standard type face) or at operating temperature extremes (boldface type).
Note 7: Each amp excited in turn with 100 kHz to produce Vo = 2 Vpp. Results are input referred.
Note 8: Measured from +25% to +75% of output waveform.
Note 9: Also available per the Standard Military Drawing, 5962-9460301MCA.
Note 10: For guaranteed military specifications see military datasheet MNLM6182AM-X.
f
5V AC Electrical Characteristics
Crosstalk Rejection
Closed Loop Bandwidth −3 dB
Closed Loop Bandwidth
0.1 dB Flat, R
Power Bandwidth
Slew Rate
Settling Time (0.1%)
Rise and Fall Time
Propagation Delay Time
Non-Inverting Input Noise
Current Density
Inverting Input Noise
Current Density
Input Noise Voltage Density
Second Harmonic Distortion
Third Harmonic Distortion
Differential Gain
Differential Phase
Total Harmonic Distortion
Parameter
SOURCE
= 200
(Note 7)
A
A
A
A
A
A
A
R
A
R
V
V
f = 1 kHz
f = 1 kHz
f = 1 kHz
V
A
V
A
R
A
R
A
V
f = 5 MHz, R
V
V
V
V
V
V
V
L
V
L
O
O
O
V
O
V
L
V
L
V
O
= +2
= +10
= −1
= −10
= +2, R
= −1, V
= −1, V
= 150 , (Note 8)
= −1, V
= 150
= +2
= +2
= 150
= +2, NTSC
= 150
= +2, NTSC
= 1 V
= 1 V
= 2 V
= 2 V
= 2 V
Conditions
PP
PP
PP
PP
PP
O
O
O
L
±
, f = 10 MHz
, f = 10 MHz
, A
= 150
L
5V, Vcm = V
= 4 V
=
=
V
= 150
±
±
= +2,
2V
2V
PP
6
O
= 0V, R
(Note 5)
Typical
0.06
0.16
0.36
500
J
8.5
-45
-55
92
50
40
55
35
15
40
50
16
8
3
4
= 25˚C.
f
= 820 , and R
LM6182AM LM6182AI
(Note 6)
Limit
375
L
= 1 k
(Note 6)
Limit
375
unless otherwise
LM6182I
(Note 6)
Limit
375
2
1 oz copper
pA/ Hz
pA/ Hz
nV/ Hz
Units
MHz
V/µs
Deg
min
dBc
dB
ns
%
%

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