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LM359J Datasheet(PDF) 11 Page - National Semiconductor (TI)

[Old version datasheet] Texas Instruments acquired National semiconductor.
Part # LM359J
Description  Dual, High Speed, Programmable, Current Mode Norton Amplifiers
PDF  24 Pages
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Manufacturer  NSC [National Semiconductor (TI)]
Direct Link  http://www.national.com
Logo NSC - National Semiconductor (TI)

LM359J Datasheet(HTML) 11 Page - National Semiconductor (TI)

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Application Hints (Continued)
3.
Determine maximum value for R
f to provide stable DC
biasing
Optimum output DC level for maximum symmetrical swing
without clipping is:
R
f(MAX) can now be found:
This value should not be exceeded for predictable DC bias-
ing.
4.
Select R
s to be large enough so as not to appreciably
load the input termination resistance:
R
s ≥ 750Ω; Let Rs = 750Ω
5.
Select R
f for appropriate gain:
7.5 k
Ω is less than the calculated R
f(MAX) so DC predictability
is insured.
6.
Since R
f = 7.5k, for the output to be biased to 5.1 VDC,
the reference current I
IN(+) must be:
Now R
b can be found by:
7.
Select C
i to provide the proper gain for the 8 Hz mini-
mum input frequency:
A larger value of C
i will allow a flat frequency response down
to 8 Hz and a 0.01 µF ceramic capacitor in parallel with C
i
will maintain high frequency gain accuracy.
8.
Test for peaking of the frequency response and add a
feedback “lead” capacitor to compensate if necessary.
A NON-INVERTING VIDEO AMPLIFIER
For this case several design considerations must be dealt
with.
•
The output voltage (AC and DC) is strictly a function of
the size of the feedback resistor and the sum of AC and
DC “mirror current” flowing into the (+) input.
•
The amplifier always has 100% current feedback so ex-
ternal compensation is required. Add a small (1 pF–5 pF)
feedback capacitance to leave the amplifier’s open loop
response and slew rate unaffected.
•
To prevent saturating the mirror stage the total AC and
DC current flowing into the amplifier’s (+) input should be
less than 2 mA.
•
The output’s maximum negative swing is one diode
above ground due to the V
BE diode clamp at the (−) input.
Final Circuit Using Standard 5%
Tolerance Resistor Values:
DS007788-18
Circuit Performance:
DS007788-19
Vo(DC) = 5.1V
Differential phase error < 1˚ for 3.58 MHz fIN
Differential gain error < 0.5% for 3.58 MHz fIN
f−3 dB low = 2.5 Hz
www.national.com
11



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