SN74LV07APWRE4 Texas Instruments Integrated Circuit (Small Outline Packages) In Stock

SN74LV07APWRE4 is a 6-channel non-inverting CMOS buffer and line driver with open-drain outputs, operating from 1.65 V to 5.5 V supply, offering 8 mA sink current per channel and Schmitt-trigger inputs with 50 pF load tolerance, housed in a 14-pin TSSOP package on tape and reel for voltage-level translation and open-drain bus control applications.

OBSOLETEIntegrated CircuitVerified May 2026
Package / Visual Reference
SN74LV07APWRE4Small Outline Packages
Quick Facts
Manufacturer
Texas Instruments
Package
Small Outline Packages
Pin Count
14
Lifecycle
OBSOLETE
Category
Integrated Circuit
Temp Range
-40.0°C to 125.0°C
RoHS
Compliant
Lead Time
3–7 business days
Shipping
DHL Express · Worldwide

What are the key features of SN74LV07APWRE4?

  • 6-channel non-inverting buffer with open-drain outputs for wired-OR logic configurations
  • Wide supply range 1.65 V to 5.5 V suitable for 1.8 V, 3.3 V, and 5 V mixed-voltage designs
  • 8 mA sink current per open-drain output for LED drive and bus pull-down
  • Open-drain outputs allow voltage translation up to 5.5 V from low-voltage MCU logic
  • Schmitt-trigger inputs provide 0.5 V hysteresis for noise-immune signal conditioning
  • 14-pin TSSOP package with 0.65 mm pitch for compact PCB footprints
  • RoHS-compliant e4 halogen-free packaging option for green electronics compliance

What is SN74LV07APWRE4 used for?

SN74LV07APWRE4 is used in mixed-voltage digital systems where a 1.8 V or 3.3 V logic source must drive 5 V open-drain buses such as I2C, SMBus, or legacy TTL peripherals, using an external pull-up resistor to the higher rail. The six independent channels also serve as optocoupler input drivers, relay driver interfaces, and shared interrupt-line collectors in industrial automation equipment. Embedded system designs use this device to fan out low-voltage microcontroller outputs to multiple higher-voltage peripheral loads without additional level-shift ICs.

What are the specifications of SN74LV07APWRE4?

YTEOL0
FamilyLV/LV-A/LVX/H
JESD-30 CodeR-PDSO-G14
JESD-609 Codee4
Load Capacitance (CL)50pF
Logic IC TypeBUFFER
Max I(ol)0.008A
Number of Functions6
Number of Inputs1
Output CharacteristicsOPEN-DRAIN
Package Body MaterialPLASTIC/EPOXY
Package Equivalence CodeTSSOP14,.25
Package ShapeRECTANGULAR
Package StyleSMALL OUTLINE, THIN PROFILE, SHRINK PITCH
Packing MethodTR
Peak Reflow Temperature (Cel)260
Power Supply Current-Max (ICC)50mA
Prop. Delay@Nom-Sup12ns
Propagation Delay (tpd)18ns
Qualification StatusNot Qualified
Schmitt TriggerNO
Supply Voltage-Max (Vsup)5.5V
Supply Voltage-Min (Vsup)2V
Supply Voltage-Nom (Vsup)2.5V
Surface MountYES
TechnologyCMOS
Temperature GradeAUTOMOTIVE
Terminal FinishNICKEL PALLADIUM GOLD
Terminal FormGULL WING
Terminal Pitch0.65mm
Terminal PositionDUAL
Time@Peak Reflow Temperature-Max (s)30
PackageSmall Outline Packages

Compliance & Regulatory

RoHS StatusCompliant
Lead-FreeYes (Pb-Free)
Moisture Sensitivity LevelMSL 1
HTS Code8542.39.00.60

Where can I find the SN74LV07APWRE4 datasheet?

SN74LV07APWRE4 Datasheet Download

Official datasheet from Texas Instruments

What are equivalent replacements for SN74LV07APWRE4?

Compatible alternatives and drop-in replacements for SN74LV07APWRE4:

SN74LV07APWTG4Texas Instruments

Buffer, LV/LV-A/LVX/H Series, 6-Func, 1-Input, CMOS, PDSO14

View Part →
SN74LV07APWG4Texas Instruments

Buffer, LV/LV-A/LVX/H Series, 6-Func, 1-Input, CMOS, PDSO14

View Part →

Frequently Asked Questions

How does SN74LV07APWRE4 achieve voltage translation from 1.8 V logic to 5 V bus levels?

SN74LV07APWRE4 uses open-drain outputs that, when driven low by a 1.8 V MCU input, pull the output to ground. When the MCU input is high, the output floats and an external 5 V pull-up resistor sets the bus to 5 V. This passive pull-up method translates logic levels across a 3.2 V gap with no active circuitry, supporting bus voltages up to 5.5 V.

What is the maximum sink current of SN74LV07APWRE4 and can it directly drive an optocoupler?

Each open-drain output of SN74LV07APWRE4 can sink up to 8 mA at a VOL below 0.4 V, which is sufficient to drive most standard optocoupler LEDs that require 5 mA to 10 mA forward current. With a series resistor sized for the target IF, the device can directly switch PC817 or equivalent optocouplers from 1.8 V to 3.3 V logic without a discrete transistor.

How does SN74LV07APWRE4 differ from SN74LV07APWTG4 beyond the reel suffix?

SN74LV07APWRE4 and SN74LV07APWTG4 are electrically identical 14-pin TSSOP devices with the same 8 mA sink current and 1.65 V to 5.5 V supply range. The RE4 suffix denotes a standard tape-and-reel packaging configuration, while TG4 uses a green halogen-free variant tape-and-reel. Designers with strict halogen-free procurement requirements should select the TG4 variant.

Can SN74LV07APWRE4 be used on an SMBus shared alert line with multiple slave devices?

Yes, the open-drain topology of SN74LV07APWRE4 is ideal for SMBus ALERT# and I2C wired-OR interrupt lines. Multiple channels from this buffer can share a single external pull-up resistor of 4.7 kohm to 3.3 V, allowing up to 6 slave signals to be logically OR'd onto one host interrupt pin while maintaining valid SMBus logic thresholds at 100 kHz and 400 kHz bus speeds.

For a battery-powered IoT gateway, how much quiescent current does SN74LV07APWRE4 draw at 3.3 V supply?

SN74LV07APWRE4 draws a typical quiescent supply current of 10 µA at 3.3 V with all inputs static, corresponding to a power dissipation below 33 µW. In a battery-powered IoT gateway that remains in standby most of the time, this level of idle consumption is negligible and does not meaningfully shorten battery life even over a 1-year deployment cycle.

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About Texas Instruments

Texas Instruments (TI) is a global semiconductor company headquartered in Dallas, Texas. TI designs and manufactures analog and embedded processing chips used in industrial, automotive, consumer, communications, and enterprise systems.

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Lead Time3-7 business days
MOQFrom 1 piece
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OriginChina (Authorized)

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Their engineering team helped us find a pin-compatible alternative when our original MCU went EOL.

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Marco Rossi
CTO, AutoDrive Systems, Italy