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DG4053EEN-T1-GE4 Analog Multiplexers: Datasheet, CAD Models, Features

Author: Irene
Date: 20 Oct 2021
 235
Datasheet

Catalog

Description

CAD Models

Functional Block Diagram and Pin Configuration

Features

Applications

Datasheet

Product Attributes

Manufacturer

Using Warning

Description

The DG4051E, DG4052E, and DG4053E are high precision CMOS analog multiplexers. The DG4051E is an 8-channel multiplexer, the DG4052E is a dual 4-channel multiplexer, and the DG4053E is a triple 2-channel multiplexer or triple SPDT.

 

The DG4051E, DG4052E, and DG4053E feature low leakage, parasitic capacitance, and low charge injection of 0.3 pC over the full voltage range. These devices are ideal for high precision signal switching and multiplexing.

 

Designed to operate from a 3 V to 16 V single supply or from a ± 3 V to ± 8 V dual supplies, the DG4051E, DG4052E, and DG4053E are fully specified at 3 V, 5 V, 12 V and ± 5 V. All control logic inputs have guaranteed 2 V logic high limit when operating from 5 V or ± 5 V supplies and 1.4 V when operating from a 3 V supply.All switches conduct equally well in both directions, offering rail to rail analog signal switching and can be used both as multiplexers as well as de-multiplexers.

 

The DG4051E, DG4052E, and DG4053E operating temperature is specified from -40 ℃ to +125 ℃ and are available in 16 pin TSSOP and the ultra compact 1.8 mm x 2.6 mm miniQFN16 packages.

 

CAD Models

DG4053EEN-T1-GE4-PCB-Symbol

 

Figure: PCB Symbol

 

DG4053EEN-T1-GE4-Footprint

 

Figure: Footprint

 

DG4053EEN-T1-GE4-3D-Model

 

Figure: 3D Model

 

Functional Block Diagram and Pin Configuration

DG4053EEN-T1-GE4-Block-Diagram

DG4053EEN-T1-GE4-Block-Diagram-02

DG4053EEN-T1-GE4-Pin-Configuration

 

Features

  • 3 V to 16 V single supply or ± 3 to ± 8 V dual supply operation
  • Low parasitic capacitance:

           CD(ON): 8.5 pF / typ. (DG4053E)

           CS(OFF): 2.0 pF / typ. (DG4053E)

  • Less than 0.3 pC charge injection over the full signal swing range
  • Low leakage: < 50 pA, typ.
  • Fast switching tON: 35 ns, typ.
  • 3 V logic compatible for control
  • Bi-directional rail to rail signal switching

 

Applications

  • Automatic test equipment
  • Process control and automation
  • Data acquisition systems
  • Meters and instruments
  • Medical and healthcare systems
  • Communication systems
  • Audio and video signal routing
  • Relay replacement
  • Battery powered systems

 

Datasheet

You can download the datasheet from the link given below:

DG4053EEN-T1-GE4-Datasheet

 

Product Attributes

Manufacturer: Vishay
Product Category: Multiplexer Switch ICs
Product: Multiplexers
Mounting Style: SMD/SMT
Package / Case: mini QFN-16
Number of Channels: 6 Channel
Configuration: 3 x 2:1
Supply Voltage - Min: 3 V
Supply Voltage - Max: 16 V
Minimum Dual Supply Voltage: +/- 3 V
Maximum Dual Supply Voltage: +/- 8 V
On Resistance - Max: 221 Ohms
On Time - Max: 117 ns
Off Time - Max: 110 ns
Minimum Operating Temperature: - 40 ℃
Maximum Operating Temperature: + 125 ℃
Packaging: Cut Tape
Packaging: MouseReel
Packaging: Reel
Bandwidth: 930 MHz
Supply Type: Single Supply, Dual Supply
Brand: Vishay / Siliconix
Off Isolation - Typ: - 49 dB
Supply Current - Max: 10 uA
Dual Supply Voltage: +/- 3 V to +/- 8 V
Operating Supply Voltage: 3 V to 16 V
Pd - Power Dissipation: 525 mW
Product Type: Multiplexer Switch ICs
Factory Pack Quantity: 3000
Subcategory: Switch ICs
Switch Voltage - Max: 12 V
Unit Weight: 0.002751 oz

 

Manufacturer

Vishay Intertechnology, Inc. is an American manufacturer of discrete semiconductors and passive electronic components founded by Polish-born businessman Felix Zandman. Vishay has manufacturing plants in Israel, Asia, Europe, and the Americas where it produces rectifiers, diodes, MOSFETs, optoelectronics, selected integrated circuits, resistors, capacitors, and inductors. Vishay Intertechnology revenues for 2018 were $3.035 billion. As of December 31, 2018, Vishay Intertechnology had approximately 24,100 full-time employees.

 

Using Warning

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

 

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