LF356N/NOPB

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Mfr.Part #
LF356N/NOPB
Manufacturer
Texas Instruments
Package / Case
8-DIP (0.300, 7.62mm)
Datasheet
Download
Description
IC OPAMP JFET 1 CIRCUIT 8DIP
Stock
28
In Stock :
28

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Manufacturer :
Texas Instruments
Product Category :
Instrumentation, OP Amps, Buffer Amps
Series :
BI-FET™
Dual Supply Voltage :
15V
Package / Case :
8-DIP (0.300, 7.62mm)
Factory Lead Time :
6 Weeks
Terminal Position :
Dual
Current - Input Bias :
30pA
Power Dissipation :
670mW
Neg Supply Voltage-Nom (Vsup) :
-15V
Weight :
4.535924g
Power Supply Rejection Ratio (PSRR) :
80dB
Amplifier Type :
J-FET
Max Power Dissipation :
670mW
Number of Channels :
1
Pin Count :
8
Ambient Temperature Range High :
70°C
Slew Rate :
12V/µs
Width :
6.35mm
RoHS Status :
ROHS3 Compliant
Max Output Current :
25mA
Height :
5.08mm
Number of Pins :
8
Low-Bias :
yes
Settling Time :
1.5 μs
Terminal Pitch :
2.54mm
Number of Terminations :
8
Low-Offset :
No
Nominal Supply Current :
5mA
Frequency Compensation :
yes
Thickness :
3.9mm
Output Current per Channel :
25mA
Micropower :
No
Length :
9.81mm
Operating Supply Current :
5mA
Common Mode Rejection Ratio :
80 dB
Unity Gain BW-Nom :
5000 kHz
Input Offset Voltage (Vos) :
3mV
Base Part Number :
LF356
Bandwidth :
5MHz
Voltage - Supply, Single/Dual (±) :
±15V
Bias Current-Max (IIB) @25C :
0.0002μA
Lead Free :
Lead Free
Pbfree Code :
yes
Contact Plating :
Tin
Voltage Gain :
106.02dB
Mounting Type :
Through Hole
Packaging :
Tube
Architecture :
VOLTAGE-FEEDBACK
Moisture Sensitivity Level (MSL) :
1 (Unlimited)
Max Junction Temperature (Tj) :
100°C
Programmable Power :
No
REACH SVHC :
No SVHC
JESD-609 Code :
e3
Input Offset Current-Max (IIO) :
0.00005μA
Radiation Hardening :
No
Number of Functions :
1
ECCN Code :
EAR99
Supply Voltage :
15V
Mount :
Through Hole
Operating Temperature :
0°C~70°C
Lifecycle Status :
ACTIVE (Last Updated: 2 days ago)
Average Bias Current-Max (IIB) :
0.0002μA
Output Current :
25mA
Datasheets
LF356N/NOPB
Introducing Instrumentation, OP Amps, Buffer Amps Texas Instruments LF356N/NOPB from Chip IC,where excellence meets affordability. This product stands out with its Package / Case:8-DIP (0.300, 7.62mm), Number of Channels:1, Number of Pins:8, Number of Terminations:8, Base Part Number:LF356, Bandwidth:5MHz, Mounting Type:Through Hole, Operating Temperature:0°C~70°C, LF356N/NOPB pinout, LF356N/NOPB datasheet PDF, LF356N/NOPB amp .Beyond Instrumentation, OP Amps, Buffer Amps Texas Instruments LF356N/NOPB ,we also offer OP07CDR, TS321CX5 RFG, NE5532ADR, Our vast inventory has you covered. Contact us now for immediate solutions.

Texas Instruments LF356N/NOPB


1 Channels 25mA per Channel 30pA 80 dB Instrumentational OP Amps 0.0002μA ±15V LF356 8 Pins 8-DIP (0.300, 7.62mm)

LF356N/NOPB Overview


Packaging for the buffer amplifier is in the form of a 8-DIP (0.300, 7.62mm) case. A J-FET-type buffer amplifier is shown here. There is a Tube case that is delivered with the instrumentation amplifiers. A total of 8 terminations have been reported in the past few weeks. Buffer amplifier has a total of 8 pins on it. I would like you to keep in mind that this buffer amplifier needs to be run at a voltage of 15V. An 8-pin op amp ic is included in the package. With regards to the offset voltage of the input, buffer amplifier is rated at 3mV. For this electrical component, the recommended mounting type is Through Hole, which is the most common. The buffer amplifier functions well at 0°C~70°C as far as operating temperature is concerned. Using a supply current of 5mA , this buffer op amp will be able to operate. Keeping the voltage gain at 106.02dB is the best course of action. 1 channels are available on the instrumentation amplifier. The BI-FET™ stands for the buffer op amp's serial number.

LF356N/NOPB Features


8 Pins
supply voltage of 15V
106.02dB voltage gain


LF356N/NOPB Applications


There are a lot of Texas Instruments
LF356N/NOPB Instrumentational OP Amps applications.


  • single/dual op amp sum and difference circuits
  • Integrator circuits
  • Differentiator circuits
  • Logarithmic operation circuits
  • Exponential operation circuits
  • Multiplication circuits
  • Division circuits
  • Precision measurement
  • Power control
  • Information processing
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