LF356H/NOPB Allicdata Electronics
Allicdata Part #:

LF356H/NOPB-ND

Manufacturer Part#:

LF356H/NOPB

Price: $ 6.80
Product Category:

Integrated Circuits (ICs)

Manufacturer: Texas Instruments
Short Description: IC OPAMP JFET 5MHZ TO99-8
More Detail: J-FET Amplifier 1 Circuit TO-99-8
DataSheet: LF356H/NOPB datasheetLF356H/NOPB Datasheet/PDF
Quantity: 307
1 +: $ 6.18030
10 +: $ 5.58306
100 +: $ 4.62244
500 +: $ 4.02513
1000 +: $ 3.50576
Stock 307Can Ship Immediately
$ 6.8
Specifications
Current - Input Bias: 30pA
Base Part Number: LF356
Supplier Device Package: TO-99-8
Package / Case: TO-99-8 Metal Can
Mounting Type: Through Hole
Operating Temperature: 0°C ~ 70°C
Voltage - Supply, Single/Dual (±): ±15V
Current - Supply: 5mA
Voltage - Input Offset: 3mV
Series: BI-FET™
Gain Bandwidth Product: 5MHz
Slew Rate: 12 V/µs
Output Type: --
Number of Circuits: 1
Amplifier Type: J-FET
Part Status: Active
Packaging: Bulk 
Description

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LF356H/NOPB is an ultra-low power, high speed, and low noise JFET input operational amplifier, which features a very high slew rate, low input bias current, and offset voltage and a wide range of supply voltage variations. This advanced technology device contains all of the necessary components to build a non-inverting amplifier, low distortion attenuator, low frequency amplifier, high pass filter, low pass filter, and band pass filter.

These devices are mainly used in design applications requiring high input impedances, low noise, high speed, and low power operation, such as medical instrumentation, data acquisition systems, and precision measurement applications. LF356H/NOPB offers high performance gain accuracy and stability under temperature variations, as well as with supply voltage variations. It is also useful in linear circuits.

Working Principle

LF356H/NOPB is a direct replacement for the obsolete 741 op-amp. The input commonly used is a single-ended or differential configuration of the transistor, whose collector current is kept constant by a current source connected to its base. The output voltage of LF356H/NOPB is similar to the input voltage and is based on the current flowing through its output transistor. It also has a very low input bias current and offset voltage which is useful in design applications.

This device is also used in analog to digital conversion and filtering applications, where faster settling and higher bandwidth are needed. Its wide bandwidth, good output voltage swing, low input bias current, and low offset voltage make it a choice for AC coupled circuits. It has the capability of operating with a wide range of supply voltages, making it suitable for many different applications.

Applications

LF356H/NOPB are typically installed into instrumentation systems and are used in a wide variety of applications. Applications include precision filters, peak detectors, low distortion active filters, automatic gain control systems, analog-to-digital conversion, and sensor conditioning. This device is also useful in medical instrumentation and data acquisition systems, due to its high input impedance, low noise, high speed, and low power operation.

Other applications include voltage-controlled oscillators, fixed oscillators, switched capacitor filters, and precision current-to-voltage conversion. This device is also useful in power amplifiers and power converters, due to its low power consumption. It can also be used in active filters and pulse amplifiers where low distortion is important.

In addition, LF356H/NOPB can be used in a wide variety of other applications, including preamplifiers, level meters, VCRs, and video cameras. It is also suitable for use in other equipment, such as audio systems and power supplies. It is also commonly used in applications requiring low consumption from a single voltage source, such as cellular phones and laptops.

LF356H/NOPB is a versatile device that can be used in a multitude of applications in linear circuits. Its low power consumption, high speed, and low noise make it suitable for many applications. Moreover, its wide bandwidth, good output voltage swing, low input bias current, and low offset voltage make it an ideal choice for circuit design.

The specific data is subject to PDF, and the above content is for reference

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