LF356N National Semiconductor, LF356N Datasheet - Page 4

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LF356N

Manufacturer Part Number
LF356N
Description
IC, OP-AMP, 5MHZ, 12V/µs, DIP-8
Manufacturer
National Semiconductor
Datasheet

Specifications of LF356N

Op Amp Type
High Voltage
No. Of Amplifiers
1
Bandwidth
5MHz
Slew Rate
12V/µs
Supply Voltage Range
10V To 36V
Amplifier Case Style
DIP
No. Of Pins
8
Operating Temperature Range
0°C To +70°C
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant

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Notes for Electrical Characteristics
Supply Voltage, V
T
T
and V
Note 4: The Temperature Coefficient of the adjusted input offset voltage changes only a small amount (0.5µV/˚C typically) for each mV of adjustment from its original
unadjusted value. Common-mode rejection and open loop voltage gain are also unaffected by offset adjustment.
Note 5: The input bias currents are junction leakage currents which approximately double for every 10˚C increase in the junction temperature, T
production test time, the input bias currents measured are correlated to junction temperature. In normal operation the junction temperature rises above the ambient
temperature as a result of internal power dissipation, Pd. T
recommended if input bias current is to be kept to a minimum.
Note 6: Supply Voltage Rejection is measured for both supply magnitudes increasing or decreasing simultaneously, in accordance with common practice.
Note 7: Settling time is defined here, for a unity gain inverter connection using 2 k resistors for the LF155/6. It is the time required for the error voltage (the voltage
at the inverting input pin on the amplifier) to settle to within 0.01% of its final value from the time a 10V step input is applied to the inverter. For the LF357, A
the feedback resistor from output to input is 2k
Note 8: Max. Power Dissipation is defined by the package characteristics. Operating the part near the Max. Power Dissipation may cause the part to operate outside
guaranteed limits.
Typical DC Performance Characteristics
specified.
A
HIGH
OS
, I
B
and I
OS
are measured at V
S
Input Bias Current
Input Bias Current
±
−55˚C
+125˚C
CM
15V
= 0.
LF155/156
V
and the output step is 10V (See Settling Time Test Circuit).
T
S
A
±
+125˚C
20V
00564639
00564637
J
= T
A
+
JA
−25˚C
+85˚C
±
Pd where
15V
(Continued)
LF256/257
4
V
T
S
JA
A
Curves are for LF155 and LF156 unless otherwise
is the thermal resistance from junction to ambient. Use of a heat sink is
±
+85˚C
20V
0˚C
+70˚C
±
15V
Input Bias Current
Voltage Swing
LF356B
T
A
V
S
+70˚C
±
20V
V
0˚C
+70˚C
S
=
00564638
00564640
LF355/6/7
±
J
T
. Due to limited
15V
A
+70˚C
V
= −5,

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