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LT1017 Datasheet PDF

Part Series:
LT1017 Series
Category:
Comparators
Description:
LINEAR TECHNOLOGY LT1017CS8#PBF Analog Comparator, Dual, Micropower, 2, 22µs, 1.1V to 40V, SOIC, 8Pins
Updated Time: 2023/01/13 01:39:49 (UTC + 8)

LT1017 Comparators Datasheet PDF

LT1017 Datasheet PDF Comparators

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Comparator Dual ±20V/40V 8Pin SOIC N
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Comparator Dual ±20V/40V 8Pin PDIP N
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Comparator Dual ±20V/40V 8Pin PDIP N
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Comparator Dual ±20V/40V 8Pin SOIC N
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Comparator Dual ±20V/40V 8Pin SOIC N T/R
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Linear Technology
Comparator Dual ±20V/40V 8Pin SOIC N T/R
16 Pages
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Comparator Dual ±20V/40V 16Pin SOIC W
16 Pages
ADI
Comparator Dual ±20V/40V 8-Pin SOIC N T/R
16 Pages
Linear Technology
Comparator Dual ±20V/40V 8Pin SOIC N T/R
16 Pages
ADI
Comparator Dual ±20V/40V 8-Pin SOIC N T/R
16 Pages
ADI
Comparator Dual ±20V/40V 8-Pin SOIC N Tube
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Comparator Dual ±20V/40V 16-Pin SOIC W Tube
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Comparator Dual ±20V/40V 16Pin SOIC W T/R

LT1017CS8#PBF - Linear Technology Specifications

TYPE
DESCRIPTION
Mounting Style
Surface Mount
Number of Pins
8 Pin
Operating Voltage
1.1V ~ 40V
Case/Package
SOIC-8
Output Current
65mA @4.5V
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LT1017CS8#PBF - Linear Technology Function Overview

The LT1017CS8#PBF is a general purpose Micro-power Dual Comparator optimized for lowest operating power. It can operate from a single 1.1V cell up to 40V. The output stage includes a class B pull-up current source, eliminating the need for an external resistive pull-up and saving power. The output stage is also designed to allow driving loads connected to a supply more positive than the device, as can comparators with open-collector output stages. Input specifications are also excellent. On-chip trimming minimizes offset voltage, while high gain and common mode rejection ratio keep other input referred errors low. Common mode voltage range includes ground. Special circuitry prevents false output states even if the input is overdriven. It is pin compatible with older dual comparators such as 393 type devices.
Internal pull-up current
Output can drive loads above V+
30µA Supply current
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