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DG401BDY-E3

DG401BDY-E3

DG401BDY-E3

Vishay Siliconix

150ns, 100ns SPST - NO 45Ohm Analog Switches BREAK-BEFORE-MAKE DG401 16 Pins 500pA 15V 16-SOIC (0.154, 3.90mm Width)

SOT-23

DG401BDY-E3 Datasheet

non-compliant

In-Stock: 0 items
Specifications
Name Value
Type Parameter
Factory Lead Time 13 Weeks
Mount Surface Mount
Mounting Type Surface Mount
Package / Case 16-SOIC (0.154, 3.90mm Width)
Number of Pins 16
Weight 665.986997mg
Operating Temperature -40°C~85°C TA
Packaging Tube
Published 2008
JESD-609 Code e3
Pbfree Code yes
Part Status Active
Moisture Sensitivity Level (MSL) 1 (Unlimited)
Number of Terminations 16
Resistance 55Ohm
Terminal Finish Matte Tin (Sn)
Subcategory Multiplexer or Switches
Max Power Dissipation 600mW
Technology CMOS
Terminal Form GULL WING
Peak Reflow Temperature (Cel) 260
Number of Functions 2
Supply Voltage 15V
Time@Peak Reflow Temperature-Max (s) 40
Base Part Number DG401
Output SEPARATE OUTPUT
Pin Count 16
Operating Supply Voltage 15V
Number of Channels 1
Max Supply Voltage 36V
Min Supply Voltage 13V
Operating Supply Current 1mA
Power Dissipation 600mW
Max Supply Current 500μA
Throw Configuration SPST
Turn On Delay Time 150 ns
Number of Inputs 2
Supply Type Dual, Single
Neg Supply Voltage-Nom (Vsup) -15V
Turn-Off Delay Time 100 ns
Max Dual Supply Voltage 22V
On-State Resistance (Max) 45Ohm
Min Dual Supply Voltage 7V
Dual Supply Voltage 15V
Multiplexer/Demultiplexer Circuit 1:1
Off-state Isolation-Nom 72 dB
Current - Leakage (IS(off)) (Max) 500pA
Channel Capacitance (CS(off), CD(off)) 12pF 12pF
On-state Resistance Match-Nom 3Ohm
Switch Circuit SPST - NO
Switch Time (Ton, Toff) (Max) 150ns, 100ns
Charge Injection 60pC
Crosstalk -94.8dB @ 1MHz
Switching BREAK-BEFORE-MAKE
Normal Position NO
Voltage - Supply, Dual (V±) ±15V
Height 1.55mm
Length 10mm
Width 4mm
Radiation Hardening No
RoHS Status ROHS3 Compliant
Pricing & Ordering
Quantity Unit Price Ext. Price
500 $1.72640 $863.2
DG401BDY-E3 Product Details

DG401BDY-E3 Overview


Shipping overseas is convenient due to the electrical component's packing in 16-SOIC (0.154, 3.90mm Width). This packaging method provides high reliability because it uses advanced packaging techniques. Multiplexers like this are mounted in the Surface Mount position. Multiplexers and demultiplexers have a number of circuits 1:1. Operational temperature extended around -40°C~85°C TA. 16 terminations have been made so far. Due to its 1 channels, the electrical component produces high-quality output. When a voltage supply of 15V is used, the electronic component should be turned on and run. It is injected into the electrical part body with 16 pins. Multiplexers built on a SPST - NO switching circuit are built. Try searching for the analog switch ic with DG401 if you are looking for variants. As far as internal resistance is concerned, it has 55Ohm. To find out what the functions of 16 pins are, please refer to their datasheets. In this analog multiplexer, the value is Multiplexer or Switches. Users shouldn't supply more than 36V voltage to the switch device. An effective Dual, Single supply digital multiplexer. It is recommended that the electrical component receives a voltage of 13V. This digital switch can be operated with a current of 1mA. Put voltage above 500μA on the multiplexer to cause damage. Despite this switch's dual supply capability, its voltage should not exceed 22V. When using dual power supplies, you should attach at least 7V. In this switch multiplexer, there are SEPARATE OUTPUT outputs available. Operating voltages range from 15V. The 2 inputs need to be operated in order to work.

DG401BDY-E3 Features


1 Channels
Switch Circuit: SPST - NO
1mA Supply Current


DG401BDY-E3 Applications


There are a lot of Vishay Siliconix
DG401BDY-E3 Analog Switches & Multiplexers ICs applications.


  • Automatic test equipment
  • Precision data acquisition
  • Battery-powered systems
  • Sample-and-hold systems
  • Communication systems
  • Data Acquisition Systems
  • Relay Replacement
  • Battery Powered Systems
  • Existing multiplexer applications (both fault-protected and nonfault-protected)
  • New designs requiring multiplexer functions

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