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LM2202 Folha de dados(PDF) 2 Page - National Semiconductor (TI)

[Old version datasheet] Texas Instruments acquired National semiconductor.
Nome de Peças LM2202
Descrição Electrónicos  230 MHz Video Amplifier System
Download  17 Pages
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Fabricante Electrônico  NSC [National Semiconductor (TI)]
Página de início  http://www.national.com
Logo NSC - National Semiconductor (TI)

LM2202 Folha de dados(HTML) 2 Page - National Semiconductor (TI)

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Absolute Maximum Ratings (Note 1)
If Military/Aerospace specified devices are required,
please contact the National Semiconductor Sales Office/
Distributors for availability and specifications.
Supply Voltage V
CC Pins 4, 7, 16 to
Ground Pins 5, 13, 15
13.5V
Voltage at Any Input Pin (V
IN)VCC ≥ VIN ≥ GND
Video Output Current (I
17)28 mA
Package Power Dissipation at
T
A = 25˚C
1.56W
(Above 25˚C Derate Based
θ
JA and TJ)
Package Thermal Resistance (
θ
JA)
N20A
68˚C/W
M20B
90˚C/W
Junction Temperature (T
J)
150˚C
Storage Temperature Range (T
stg)
−65˚C to +150˚C
Lead Temperature
N Package (Soldering, 10 sec.)
265˚C
ESD Susceptibility
Human Body Model: 100 pF
Discharged through a 1.5k
Resistor
1.5 kV
Operating Ratings (Note 2)
Temperature Range
−20˚C to +80˚C
Supply Voltage (V
CC)8V ≤ VCC ≤ 13.2V
DC Electrical Characteristics
See Test Circuit (
Figure 1), T
A = 25˚C, V4 = V7 = V16 = 12V, S1 Open, V19 = 4V, V8 = 4V, V9 = 4V, V14 = 0V unless other-
wise noted.
Symbol
Parameter
Conditions
Typical
(Note 3)
Limit (Note
4)
Units
I
S 4, 7, 16
Total Supply Current
R
LOAD = (Note 5)
48
60
mA (max)
V
6
Video Input Bias Voltage
2.4
2
V (min)
V
14L
Clamp Gate Low Input Voltage
Clamp Comparator On
0.8
V (max)
V
14H
Clamp Gate High Input Voltage
Clamp Comparator Off
2
V (min)
I
14L
Clamp Gate Low Input Current
V
14 = 0V
−0.5
µA
I
14H
Clamp Gate High Input Current
V
14 = 12V
0.005
µA
I
12+
Clamp Cap Charge Current
V
12 = 0V
800
500
µA (min)
I
12−
Clamp Cap Discharge Current
V
12 = 5V
−800
−500
µA (min)
V
17L
Video Output Low Voltage
V
12 = 0V
0.2
0.65
V (max)
V
17H
Video Output High Voltage
V
12 = 6V
10
9
V (min)
V
OS
Comparator Input Offset Voltage
V
18 −V19
15
±50
mV (max)
AC Electrical Characteristics
See Test Circuit (
Figure 1), T
A = 25˚C, V4 = V7 = V16 = 12V, S1 Closed, V19 = 4V, V8 = 4V, V9 = 4V, V14 = 0V unless oth-
erwise noted.
Symbol
Parameter
Conditions
Typical
(Note 3)
Limit (Note
4)
Units
R
IN
Video Amplifier Input Resistance
f
IN = 12 kHz
20
k
A
V max
Video Amplifier Gain
V
8 = 4V, V9 = 4V
20
16
V/V (min)
∆A
V 2V
Attenuation at 2V
Ref: A
V max, V8 = 2V
−6
dB
∆A
V 0.5V
Attentuation at 0.5V
Ref: A
V max, V8 = 0.5V
−38
−23
dB (min)
∆ Drive
∆ Gain Range
V
9 = 0V to 4V
6
5
dB (min)
THD
Video Amplifier Distortion
V
O = 4VPP,fIN = 12 kHz
0.5
1
% (max)
f
−3 dB
Video Amplifier Bandwidth (Note 6)
V
O = 4VPP
230
MHz
t
r
Output Rise Time (Note 6)
V
O = 4VPP
1.5
2
ns (max)
t
f
Output Fall Time (Note 6)
V
O = 4VPP
1.5
2
ns (max)
Note 1: Absolute Maximum Ratings indicate limits beyond which damage to the device may occur.
Note 2: Operating Ratings indicate conditions for which the device is functional but do not guarantee specific performance limits. For guaranteed specifications and
test conditions see the Electrical Characteristics. The guaranteed specifications apply only for the test conditions listed. Some performance characteristics may de-
grade when the device is not operated under the listed test conditions.
Note 3: Typical specifications are specified at +25˚C and represent the most likely parametric norm.
Note 4: Tested limits are guaranteed to National’s AOQL (Average Outgoing Quality Level).
Note 5: The supply current specified is the quiescent current for VCC1,VCC2 and VCC3 with RLoad = ∞, see Figure 1’s test circuit. The total supply current also de-
pends on the output load, RLoad. The increase in device power dissipation due to RLoad must be taken into account when operating the device at the maximum am-
bient temperature.
Note 6: When measuring video amplifier bandwidth or pulse rise and fall times, a double sided full ground plane printed circuit board is recommended. The measured
rise and fall times are effective rise and fall times, taking into account the rise and fall times of the generator and the oscilloscope.
www.national.com
2


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