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ADG704 Datasheet PDF

Part Series:ADG704 Series
Category:Analog Switches
Description:4:1 Analog Multiplexer IC, Single, 2.5Ω, 1.8V to 5.5V, SOIC-10
Document:ADG704BRMZ Datasheet PDF (17 Pages)

ADG704 Datasheet PDF Analog Switches

9 Pages
ADI
* +1.8V to +5.5V Single Supply * 2.5V (Typ) On Resistance * Low On-Resistance Flatness * -3dB Bandwidth >200MHz * Rail-to-Rail Operation * 10-Lead mSOIC Package * Fast Switching Times * tON 20ns * tOFF 13ns * Typical Power Consumption ( * TTL/CMOS Compatible
8 Pages
ADI
CMOS, Low Voltage 2.5Ω 4Channel Multiplexer

ADG704BRMZ - ADI Specifications

TYPE
DESCRIPTION
Mounting Style
Surface Mount
Number of Pins
10 Pin
Supply Voltage (DC)
5.50V (max)
Case/Package (SI)
SOP
Case/Package
MSOP-10
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ADG704BRMZ - ADI Function Overview

The ADG704BRMZ is a low voltage, four channel CMOS analogue multiplexer in 10 pin µSOIC package. This multiplexer comprises of four single channels and designed on an advanced submicron process. It provides low power dissipation, high switching speed, low on resistance, low leakage currents and high bandwidth. The ON resistance profile is very flat over full analogue signal range. This ensures excellent linearity and low distortion when switching audio signals. Fast switching speed also makes the ADG704BRMZ suitable for video signal switching. The ADG704 switches one of four inputs to a common output as determined by 3bit binary address lines (A0, A1 and EN). A logic "0" on EN pin disables device and each switch of ADG704 conducts equally well in both directions when ON. The ADG704 exhibits break before make switching action.
Single supply operation from 1.8V to 5.5V
CMOS construction ensures low power dissipation
On resistance (Ron) of 2.5ohm
-3dB bandwidth of greater than 200MHz
Rail to rail operation
Fast switching times (20ns tON and 13ns tOFF)
Typical power consumption is less than 0.01mW
TTL/CMOS compatible
Operating temperature range from -40°C to 85°C
ESD (electrostatic discharge) sensitive device. Proper ESD precautions are recommended to avoid performance degradation or loss of functionality.
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