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KM4200 Datasheet(PDF) 3 Page - Fairchild Semiconductor

Part No. KM4200
Description  Dual, Low Cost, 2.7V & 5V, 260MHz Rail-to-Rail Amplifier
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Maker  FAIRCHILD [Fairchild Semiconductor]
Homepage  http://www.fairchildsemi.com
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KM4200 Datasheet(HTML) 3 Page - Fairchild Semiconductor

 
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KM4200
DATA SHEET
REV. 1A February 2001
3
Parameters
Conditions
TYP
Min & Max
UNITS
NOTES
Case Temperature
+25°C
+25°C
Frequency Domain Response
-3dB bandwidth
G = +1, Vo = 0.05Vpp
260
MHz
1
G = +2, Vo = 0.2Vpp
90
MHz
full power bandwidth
G = +2, Vo = 2Vpp
40
MHz
gain bandwidth product
90
MHz
Time Domain Response
rise and fall time
0.2V step
3.6
ns
1
settling time to 0.1%
2V step
40
ns
overshoot
0.2V step,
7
%
slew rate
5V step
, G = -1
145
V/
µs
Distortion and Noise Response
2nd harmonic distortion
2Vpp, 5MHz
71
dBc
1
3rd harmonic distortion
2Vpp, 5MHz
78
dBc
1
THD
2Vpp, 5MHz
70
dB
1
input voltage noise
>1MHz
16
nV/
√Hz
input current noise
>1MHz
1.3
pA/
√Hz
crosstalk
10MHz
62
dB
1
DC Performance
input offset voltage
1.4
±8
mV
2
average drift
10
µV/°C
input bias current
3
±8
µA2
average drift
7
nA/°C
input offset current
0.1
±0.8
µA2
power supply rejection ratio
DC
57
52
dB
2
open loop gain
78
68
dB
2
quiescent current per amplifier
4.2
5.2
mA
2
Input Characteristics
input resistance
4.3
M
input capacitance
1.8
pF
input common mode voltage range
-0.3 to 3.8
V
common mode rejection ratio
DC, Vcm = 0V to Vs - 1.5
87
72
dB
2
Output Characteristics
output voltage swing
RL = 10kΩ to Vs/2
0.027 to 4.97
V
RL = 2kΩ to Vs/2
0.036 to 4.953
0.1 to 4.9
V
2
RL = 150Ω to Vs/2
0.12 to 4.8
0.3 to 4.625
V
2
linear output current
±55
mA
-40°C to +85°C
±50
mA
short circuit output current
±85
mA
power supply operating range
5
2.5 to 5.5
V
Min/max ratings are based on product characterization and simulation. Individual parameters are tested as noted. Outgoing quality levels
are determined from tested parameters.
NOTES:
1) Rf = 1kΩ was used used for optimal performance. (For G = +1, Rf = 0)
2) 100% tested at +25°C.
KM4200 Electrical Characteristics (Vs = +5V, G = 2, RL = 2kΩ to Vs/2; unless noted)


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