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MAX4751EUD+

MAX4751EUD+

MAX4751EUD+

Maxim Integrated

85ns, 45ns SPST - NO 900mOhm DUAL Analog Switches BREAK-BEFORE-MAKE MAX4751 14 Pins 100pA 1.8V 14-TSSOP (0.173, 4.40mm Width)

SOT-23

MAX4751EUD+ Datasheet PDF

non-compliant

Technical Specifications

Parameter NameValue
TypeParameter
Factory Lead Time 6 Weeks
Mount Surface Mount
Mounting Type Surface Mount
Package / Case 14-TSSOP (0.173, 4.40mm Width)
Number of Pins 14
Operating Temperature-40°C~85°C TA
PackagingTube
Published 2006
JESD-609 Code e3
Pbfree Code yes
Part StatusActive
Moisture Sensitivity Level (MSL) 1 (Unlimited)
Number of Terminations 14
ECCN Code EAR99
Resistance 2.5Ohm
Terminal Finish Matte Tin (Sn)
Subcategory Multiplexer or Switches
Max Power Dissipation727mW
Technology CMOS
Terminal Position DUAL
Terminal FormGULL WING
Peak Reflow Temperature (Cel) 260
Number of Functions 4
Supply Voltage 1.8V
Terminal Pitch0.65mm
Time@Peak Reflow Temperature-Max (s) 30
Base Part Number MAX4751
Output SEPARATE OUTPUT
Pin Count14
Operating Supply Voltage3V
Number of Channels 1
Number of Circuits 4
Max Supply Voltage3.6V
Min Supply Voltage1.6V
Operating Supply Current 1μA
Nominal Supply Current1μA
Max Supply Current 1μA
Throw Configuration SPST
Turn On Delay Time25 ns
Supply Type Single
Turn-Off Delay Time 35 ns
-3db Bandwidth 250MHz
On-State Resistance (Max) 900mOhm
Multiplexer/Demultiplexer Circuit 1:1
Current - Leakage (IS(off)) (Max) 100pA
Channel Capacitance (CS(off), CD(off)) 20pF 20pF
On-state Resistance Match-Nom 0.05Ohm
Switch CircuitSPST - NO
Switch Time (Ton, Toff) (Max) 85ns, 45ns
Charge Injection9pC
Channel-to-Channel Matching (ΔRon) 30m Ω
Crosstalk -84dB @ 1MHz
Switching BREAK-BEFORE-MAKE
Voltage - Supply, Single (V+) 1.6V~3.6V
Normal Position NO
Height Seated (Max) 1.1mm
Length 5mm
Radiation HardeningNo
REACH SVHC Unknown
RoHS StatusROHS3 Compliant
In-Stock:1344 items

Pricing & Ordering

QuantityUnit PriceExt. Price
1$2.421818$2.421818
10$2.284734$22.84734
100$2.155410$215.541
500$2.033405$1016.7025
1000$1.918307$1918.307

MAX4751EUD+ Product Details

MAX4751EUD+ Overview


Presented in 14-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 1:1. Increasing operating temperature to around -40°C~85°C TA. Totally, there are 14 terminations. A high-quality output is provided by the electrical component's 1 channels. It is safe to turn on and run the electronic component with a 1.8V voltage supply. A total of 14 pins are injected into the electrical part body. A SPST - NO switching circuit is used for these analog switches. The circuits in this analogue multiplexer number 4. Using the MAX4751 search parameter, you can discover variants of the switch. In this multiplexer, the internal resistance is 2.5Ohm. For details about the functions of 14 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 3.6V to the switch device in normal circumstances. The digital multiplexer has a low cost Single supply. 1.6V is the lowest voltage the electrical component should receive. For this digital switch to work, 1μA current would suffice. An analogue multiplexer drains from a single voltage supply at 1.6V~3.6V. Putting voltage greater than 1μA on the multiplexer may cause damage. As far as the outputs go, this switch multiplexer utilizes SEPARATE OUTPUT of them. The electrical part can be operated at 3V voltage levels.

MAX4751EUD+ Features


1 Channels
Switch Circuit: SPST - NO
1μA Supply Current
-3db Bandwidth: 250MHz


MAX4751EUD+ Applications


There are a lot of Maxim Integrated
MAX4751EUD+ 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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