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LT1017 Micropower Dual Comparator: Datasheet, Pinout, Circuit [FAQ]

  • Contents

Product Overview

The LT® 1017/LT1018 are general purpose micropower comparators. The LT1017 is optimized for lowest operating power while the LT1018 operates at higher power and higher speed. Both devices can operate from a single 1.1V cell up to 40V. The output stage includes a class “B” pullup current source, eliminating the need for an external resistive pull-up and saving power.

 

This blog will introduce LT1017 systematically from its features, pinout to its specifications, applications, also including LT1017 datasheet and so much more.

 

Catalog

Product Overview

LT1017 Features

LT1017 Pinout

LT1017 Applications

LT1017 CAD Models

LT1017 Circuit Diagram

LT1017 Package

LT1017 Specification

LT1017 Manufacturer

LT1017 Datasheet

Using Warnings

LT1017 FAQ

 

LT1017 Features

  • Maximum Offset Voltage: 1mV
  • Maximum Bias Current: 15nA
  • Typical Output Drive: 70mA
  • Operates from 1.1V to 40V
  • Internal Pull-Up Current
  • Output Can Drive Loads Above V+
  • 30µA Supply Current (LT1017)

110µA Supply Current (LT1018)

  • Available in 8-Lead PDIP, 8-Lead Plastic S0, and

16-Lead Plastic SO Packages

 

LT1017 Pinout

The following figure is the diagram of LT1017 pinout.

 

LT1017 Pinout

LT1017 Pinout

 

LT1017 Applications

■ Power Supply Monitors

■ Relay Driving

■ Oscillators

 

LT1017 CAD Models

The followings are LT1017CN8 Symbol, Footprint, and 3D Model.

 

LT1017CN8 Symbol

LT1017CN8 Symbol

 

LT1017CN8 Footprint

LT1017CN8 Footprint

 

LT1017CN8 3D Model

LT1017CN8 3D Model

 

LT1017 Circuit Diagram

The following is the circuit diagram of LT1017.

 

LT1017 Circuit Diagram

LT1017 Circuit Diagram

 

LT1017 Circuit Diagram

1.5V Powered Refrigerator Alarm

 

LT1017 Package

The following diagram shows the LT1017 package.

 

LT1017 Package

LT1017 Package

 

LT1017 Specification

Manufacturer: Analog Devices Inc
Average Bias Current-Max (IIB): 0.025 µA
Maximum Offset Voltage:  1mV
Maximum Bias Current:  15nA
Typical Output Drive:  70mA
Operating Temperature-Max: 70 °C
Peak Reflow Temperature (Cel): 235
Subcategory: Comparator
Terminal Position: DUAL
Time@Peak Reflow Temperature-Max (s): 20

 

LT1017 Manufacturer

Analog Devices has built one of the longest standing, highest growth companies within the technology sector utilizing cultural pillars such as innovation, performance, and excellence. Acknowledged industry-wide as the world leader in data conversion and signal conditioning technology, Analog Devices serves over 100,000 customers, representing virtually all types of electronic equipment. Celebrating over 50 years as a leading global manufacturer of high-performance integrated circuits used in analog and digital signal processing applications, Analog Devices is headquartered in Norwood, Massachusetts, with design and manufacturing facilities throughout the world. Analog Devices' is included in the S&P 500 Index.

 

LT1017 Datasheet

You can download LT1017 datasheet from the link given below:

LT1017 Datasheet

 

Using Warnings

Note: Please check their parameters and pin configuration before replacing them in your circuit.

 

LT1017 FAQ

What is the function of comparator?

A comparator circuit compares two voltages and outputs either a 1 (the voltage at the plus side; VDD in the illustration) or a 0 (the voltage at the negative side) to indicate which is larger. Comparators are often used, for example, to check whether an input has reached some predetermined value.

 

Why is comparator needed?

Comparators are used to find-out deviation of dimensions between a given component being checked and a known datum. The indicated difference in the dimensions is usually small and hence suitable magnification device should be employed to obtain the desired accuracy of measurements.

 

What is the difference between op-amp and comparator?

The difference between an op-amp comparator and a voltage comparator is in the output stage as a standard op-amp has an output stage that is optimized for linear operation, while the output stage of a voltage comparator is optimized for continuous saturated operation as it is always intended to be close to one supply.

PCB Symbol, Footprint & 3D Model

 

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