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MC74LVXT4051DTG

MC74LVXT4051DTG

MC74LVXT4051DTG

ON Semiconductor

26Ohm Analog Switches BREAK-BEFORE-MAKE MC74LVXT4051 16 Pins 100nA 3V 16-TSSOP (0.173, 4.40mm Width)

SOT-23

MC74LVXT4051DTG Datasheet

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Specifications
Name Value
Type Parameter
Factory Lead Time 45 Weeks
Lifecycle Status ACTIVE (Last Updated: 3 days ago)
Mount Surface Mount
Mounting Type Surface Mount
Package / Case 16-TSSOP (0.173, 4.40mm Width)
Number of Pins 16
Operating Temperature -55°C~125°C TA
Packaging Tube
Published 2006
JESD-609 Code e4
Pbfree Code yes
Part Status Active
Moisture Sensitivity Level (MSL) 1 (Unlimited)
Number of Terminations 16
Resistance 55Ohm
Terminal Finish Nickel/Palladium/Gold (Ni/Pd/Au)
Subcategory Multiplexer or Switches
Max Power Dissipation 450mW
Technology CMOS
Terminal Form GULL WING
Peak Reflow Temperature (Cel) 260
Number of Functions 1
Supply Voltage 3V
Terminal Pitch 0.65mm
Time@Peak Reflow Temperature-Max (s) 40
Base Part Number MC74LVXT4051
Pin Count 16
Number of Channels 8
Number of Circuits 1
Max Supply Voltage 6V
Min Supply Voltage 2.5V
Analog IC - Other Type SINGLE-ENDED MULTIPLEXER
Operating Supply Current 40μA
Power Dissipation 450mW
Propagation Delay 40 ns
Turn On Delay Time 40 ns
Logic Function Demultiplexer, Multiplexer
Number of Inputs 8
Voltage - Supply, Single/Dual (±) 2.5V~6V ±2.5V~6V
Halogen Free Halogen Free
Supply Type Dual
Bandwidth 80MHz
Neg Supply Voltage-Nom (Vsup) -3V
Turn-Off Delay Time 40 ns
Max Dual Supply Voltage 3V
On-State Resistance (Max) 26Ohm
Min Dual Supply Voltage 1.25V
Multiplexer/Demultiplexer Circuit 8:1
Off-state Isolation-Nom 70 dB
Current - Leakage (IS(off)) (Max) 100nA
Channel Capacitance (CS(off), CD(off)) 10pF
On-state Resistance Match-Nom 15Ohm
Charge Injection 12pC
Channel-to-Channel Matching (ΔRon) 10 Ω
Switching BREAK-BEFORE-MAKE
Length 5mm
Radiation Hardening No
RoHS Status ROHS3 Compliant
Lead Free Lead Free
Pricing & Ordering
Quantity Unit Price Ext. Price
1 $0.725720 $0.72572
10 $0.684642 $6.84642
100 $0.645888 $64.5888
500 $0.609329 $304.6645
1000 $0.574839 $574.839
MC74LVXT4051DTG Product Details

MC74LVXT4051DTG Overview


Presented in 16-TSSOP (0.173, 4.40mm Width), this electrical component is convenient for overseas shipping. High reliability is ensured by the advanced packaging method Tube. Surface Mount is where this multiplexer is located. Multiplexer and demultiplexer circuits have a number 8:1. Increasing operating temperature to around -55°C~125°C TA. Totally, there are 16 terminations. A high-quality output is provided by the electrical component's 8 channels. It is safe to turn on and run the electronic component with a 3V voltage supply. A total of 16 pins are injected into the electrical part body. The circuits in this analogue multiplexer number 1. Using the MC74LVXT4051 search parameter, you can discover variants of the switch. In this multiplexer, the internal resistance is 55Ohm. For details about the functions of 16 pins, please refer to the datasheets. There is Multiplexer or Switches analog multiplexer like this in the world. It is generally not recommended to supply a voltage higher than 6V to the switch device in normal circumstances. The digital multiplexer has a low cost Dual supply. 2.5V is the lowest voltage the electrical component should receive. For this digital switch to work, 40μA current would suffice. There is no problem with using dual supply voltage, but it should not exceed 3V. With dual power supplies, you should attach at least 1.25V. It is integrated with a SINGLE-ENDED MULTIPLEXER analog IC. The 8 inputs need to be operated in order to work. The data can be transferred over a wide range of bandwidths, called 80MHz bandwidths.

MC74LVXT4051DTG Features


8 Channels
40μA Supply Current
Bandwidth: 80MHz


MC74LVXT4051DTG Applications


There are a lot of ON Semiconductor
MC74LVXT4051DTG Analog Switches & Multiplexers ICs applications.


  • 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
  • Cellular phones

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