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TI SN74LVC06ADBR product image
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TI SN74LVC06ADBRRoHS

Manufacturer
MPN
SN74LVC06ADBR
LCSC Part #
C2866891
Packaging
SSOP-14
Customer #
Key Attributes
HEX INVERTER BUFFERS/DRIVERS WITH OPEN-DRAIN OUTPUTS
Datasheetpdf iconTI SN74LVC06ADBR
In-Stock: 80
80 In stock, ships now
Add to BOM List
QtyUnit PriceTotal Amount
1+$ 0.2808$ 0.2331$ 0.23
10+$ 0.2761$ 0.2292$ 2.29
30+$ 0.2713$ 0.2252$ 6.76
100+$ 0.2681$ 0.2226$ 22.26
Standard Packaging2000/Full Reel
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Products Specifications

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TypeDescription
CategoryIntegrated Circuits (ICs)/Logic/Gates and Inverters
ManufacturerTI
PackagingSSOP-14
Input Type-
Logic Family74LVC
Voltage - Supply1.65V~3.6V
Output Logic Level - Low550mV
Propagation Delay3.5ns@3.3V,50pF
FeaturesPower shutdown protection
Input Logic Level - Low700mV~800mV
Operating Temperature-40℃~+125℃
Input Logic Level - High1.7V~2V
Number of Circuits6
Output Logic Level - High-
Quiescent Current(Iq)1uA
Current - Output High(IOH)-
Number of Channels1
Current - Output Low(IOL)24mA

Additional Information

TypeDetails
Minimum1
Multiple1
Standard Packaging2000
Sales UnitPiece

Introduction

AI Translation

These hex inverter buffers/drivers are designed for 1.65-V to 3.6-V VCC operation. The outputs of the 'LVC06A devices are open drain and can be connected to other open-drain outputs to implement active-low wired-OR or active-high wired-AND functions. The maximum sink current is 24 mA. Inputs can be driven from either 3.3-V or 5-V devices. This feature allows the use of these devices as translators in a mixed 3.3-V/5-V system environment. These devices are fully specified for partial-power-down applications using |off. The |off circuitry disables the outputs, preventing damaging current backflow through the device when it is powered down.

Features

AI Translation
  • Operate From 1.65 V to 3.6 V
  • Specified From -40℃ to 85℃, -40℃ to 125℃, and -55℃ to 125℃
  • Inputs and Open-Drain Outputs Accept Voltages up to 5.5 V
  • Max tpd of 3.7 ns at 3.3 V
  • Ioff Supports Partial-Power-Down Mode Operation
  • Latch-Up Performance Exceeds 250 mA Per JESD 17