SN74LVC2G34 Dual Buffer Gate

Two independent non-inverting buffer gates for 1.65 V to 5.5 V systems, combining low static power with high output drive and 5.5 V-tolerant inputs.

Engineering scope: Values on this page are derived from the supplied SN74LVC2G34 Rev A.1 product specification. Use the released PDF, qualified ordering information and board-level validation for production decisions.

Photorealistic SN74LVC2G34 six-pin product appearance with NYFEA full-model marking
SN74LVC2G34 six-pin product presentation in the NYFEA full-model marking style. The PDF-listed C345 production marking and dimensioned package drawing remain the authority for receiving inspection and PCB-library release.
2 × Y = AIndependent buffers
±24 mADrive at VCC = 3.0 V
1.65 V to 5.5 VRecommended supply
SOT23-6 / SC70-6Green packages, MSL 3

Product Overview and Selection Scope

SN74LVC2G34 contains two independent non-inverting CMOS buffer gates with push-pull outputs.

  • Dual independent channels: 1A drives 1Y and 2A drives 2Y without inversion.
  • Wide supply range: 1.65 V to 5.5 V operation.
  • Low static consumption: 0.1 µA typical supply current under the stated conditions.
  • 5.5 V-tolerant inputs: supports down-voltage translation to VCC.
  • High output drive: ±24 mA at VCC = 3.0 V under the specified DC tests.
  • Partial power-down: Ioff allows voltages on inputs and outputs when VCC is 0 V.
  • High-speed use: the supplied application guidance identifies operation up to 100 MHz, subject to system timing and loading validation.

Selection boundary: This is a plain-threshold dual buffer, not a Schmitt-trigger, tri-state, open-drain or analog device. Observe the specified input-transition limits.

Dual Buffer Function and Pin Assignment

Each channel is independent and non-inverting: a LOW input produces a LOW output, while a HIGH input produces a HIGH output.

SN74LVC2G34 dual buffer logic symbol and truth table
PDF logic symbol and non-inverting truth table.
SN74LVC2G34 top-view pin configuration and pin functions
Common SOT23-6 / SC70-6 top view and pin functions.
PinNameTypeFunctionEngineering note
11AInputChannel 1 inputDo not leave floating.
2GNDPowerGroundUse a short local return path.
32AInputChannel 2 inputDo not leave floating.
42YOutputChannel 2 non-inverted outputPush-pull output.
5VCCPowerSupplyPlace local bypass capacitance close to pins 5 and 2.
61YOutputChannel 1 non-inverted outputPush-pull output.

Ordering Codes and Package Selection

Ordering numberTemperature rangePackageTop markingMSLPacking
SN74LVC2G34DCKR-40 °C to +125 °CSC70-6 / SOT363 equivalentC9FMSL 3Tape and reel, 3,000 units
SN74LVC2G34DBVR-40 °C to +125 °CSOT23-6C345MSL 3Tape and reel, 3,000 units

Additional lot, date, vendor, logo or environmental markings may appear. Confirm the complete ordering code and package drawing during receiving inspection.

Recommended Operating Conditions and Absolute Limits

SN74LVC2G34 recommended operating conditions and input thresholds
PDF supply range, VIH/VIL limits, input-transition limits and ambient-temperature range.
ParameterVCC range or conditionMinimumMaximumUnit
Supply voltage, VCCOperating1.655.5V
Supply voltage, VCCData retention only1.5-V
High-level input, VIH1.65 to 1.95 V0.65 × VCC-V
High-level input, VIH2.3 to 2.7 / 3.0 to 3.6 V1.7 / 2.0-V
High-level input, VIH4.5 to 5.5 V0.7 × VCC-V
Low-level input, VIL1.65 to 1.95 V-0.35 × VCCV
Low-level input, VIL2.3 to 2.7 / 3.0 to 3.6 V-0.7 / 0.8V
Low-level input, VIL4.5 to 5.5 V-0.3 × VCCV
Input transition rise or fall1.8 / 3.3 / 5.0 V-20 / 10 / 5ns/V
Ambient temperatureOperating-40125°C

Absolute maximum and handling limits

ParameterMinimumMaximumUnit
Supply voltage, VCC-0.56.5V
Input voltage, VI-0.56.5V
Output voltage, high-impedance or power-off-0.56.5V
Output voltage, HIGH or LOW state-0.5VCC + 0.5V
Input / output clamp current-50 when the associated pin voltage is below 0 VmA
Continuous output current±50mA
Continuous VCC or GND current±100mA
Junction / storage temperature-65150°C
Thermal impedanceθJA = 230 °C/W for SOT23-6 and 265 °C/W for SC70-6.
ESD ratingsHBM ±4000 V, CDM ±1500 V and MM ±200 V.
HandlingUse an ESD-protected area and validate the actual PCB thermal environment.

DC Output Levels, Leakage and Supply Current

SN74LVC2G34 DC electrical characteristics table
PDF output-level, leakage, Ioff, supply-current and input-capacitance values.
ParameterTest conditionVCCLimit or typical valueUnit
VOHIOH = -100 µA1.65 V to 5.5 VMinimum VCC - 0.1 VV
VOHIOH = -4 / -8 / -16 / -24 / -32 mA1.65 / 2.3 / 3.0 / 3.0 / 4.5 VMinimum 1.2 / 1.9 / 2.4 / 2.3 / 3.8 VV
VOLIOL = 100 µA1.65 V to 5.5 VMaximum 0.1 VV
VOLIOL = 4 / 8 / 16 / 24 / 32 mA1.65 / 2.3 / 3.0 / 3.0 / 4.5 VMaximum 0.45 / 0.30 / 0.40 / 0.55 / 0.55 VV
IIInputs at 5.5 V or GND0 V to 5.5 V±0.1 µA typical; ±5 µA maximum full rangeµA
IoffVI or VO = 5.5 V0 V±0.1 µA typical; ±10 µA maximum full rangeµA
ICCVI = 5.5 V or GND, IO = 01.65 V to 5.5 V0.1 µA typical; 10 µA maximum full rangeµA
ΔICCOne input at VCC - 0.6 V3 V to 5.5 V500 µA maximumµA
CiVI = VCC or GND3.3 V4 pF typicalpF

Propagation Delay and Dynamic Capacitance

SN74LVC2G34 propagation delay and power-dissipation capacitance table
PDF AC characteristics for 1.8 V, 2.5 V, 3.3 V and 5.0 V operation.
Parameter1.8 V2.5 V3.3 V5.0 VCondition / unit
Propagation delay, tpd13.35.34.23.4Typical ns; CL = 30 pF or 50 pF
Power-dissipation capacitance, Cpd16181820Typical pF at 10 MHz
Simplified SN74LVC2G34 dual non-inverting buffer function
Two independent plain buffer channels; each implements Y = A.

Timing interpretation: Delay and signal quality depend on supply, source edge rate, output load and routing. The specification's 100 MHz application statement is not a substitute for validating board timing and ringing.

Translation, Bypass, Loading and PCB Guidance

  • Down-translate safely: inputs accept up to 5.5 V while outputs swing from 0 V to VCC.
  • Observe VIH and VIL: use the supply-specific thresholds in the recommended operating table.
  • Respect input edge limits: maximum transition rates are 20 ns/V at 1.8/2.5 V, 10 ns/V at 3.3 V and 5 ns/V at 5 V.
  • Do not leave inputs floating: hold every unused input at VCC or GND.
  • Avoid output contention: 1Y and 2Y actively drive HIGH and LOW, and fault current can exceed absolute limits.
  • Control fast edges: lightly loaded high-drive outputs can ring; keep routes short and validate loading and termination.
  • Bypass locally: the PDF recommends 0.1 µF for a single supply, located as close as possible to the power pin. Parallel 0.1 µF and 1 µF capacitors may be used to reject different noise frequencies.
SN74LVC2G34 example showing unused inputs tied to VCC or ground
Unused inputs must be biased HIGH or LOW and must not float.

Application note: The supplied specification identifies high-drive LED loads, multiple logic inputs, down-voltage translation and applications up to 100 MHz. Validate current, thermal limits, edge rate, ringing and EMC in the complete assembly.

SOT23-6 and SC70-6 Packages, Land Patterns and Packing

The two packages share the same logical pin assignment but have different body dimensions, lead pitch, marking and thermal impedance. Do not share one PCB footprint between them.

SN74LVC2G34 SOT23-6 package outline and land pattern
SOT23-6 outline, dimensional table and recommended land pattern.
SN74LVC2G34 SC70-6 package outline and land pattern
SC70-6 outline, dimensional table and recommended land pattern.
DimensionSOT23-6SC70-6Unit
Overall height A1.050 to 1.2500.900 to 1.100mm
Body length D2.820 to 3.0202.000 to 2.200mm
Body width E1.500 to 1.7001.150 to 1.350mm
Overall lead span E12.650 to 2.9502.150 to 2.450mm
Lead pitch e0.950 BSC0.650 BSCmm
Outer lead pitch e11.800 to 2.0001.300 BSCmm
Lead width b0.300 to 0.5000.150 to 0.350mm
Lead length L0.300 to 0.6000.260 to 0.460mm
SN74LVC2G34 SOT23-6 and SC70-6 tape-and-reel dimensions
Both packages use a 7-inch reel, 9.5 mm reel width, 8.0 mm carrier tape, 4.0 mm pitch and Q3 pin-1 quadrant.

Application Guidance and Design Limitations

The supplied specification lists the following application areas. These are use contexts, not end-product approvals or safety certifications.

AC receiver applicationAC ReceiversProvide strong non-inverting control-signal drive.
Blu-ray player and home theater applicationBlu-ray and Home TheaterBuffer control and indicator signals in audio-video hardware.
Desktop and notebook computer applicationDesktop and Notebook PCsRestore fan-out and isolate board-level logic paths.
Digital video camera applicationDigital Video CamerasBuffer compact control and indicator interfaces.
Mobile phone applicationMobile PhonesProvide two compact low-voltage buffer channels.
GPS navigation applicationGPS NavigationDrive portable navigation control signals.
Portable media player applicationPortable Media PlayersBuffer low-voltage control and indicator signals.
Qualification boundary: Validate EMC, ESD protection, logic thresholds, transition time, thermal limits, power sequencing, assembly and environmental performance in the finished product.

SN74LVC2G34 Engineering FAQs

What function does SN74LVC2G34 implement?

It provides two independent non-inverting buffers. Each output follows its corresponding input.

Does it have Schmitt-trigger inputs?

No. The supplied specification gives conventional VIH/VIL thresholds and explicit input-transition limits.

Can the inputs accept 5.5 V?

Yes. Inputs are specified from 0 V to 5.5 V, enabling down-voltage translation to VCC.

What is the propagation delay?

The PDF lists typical propagation values of 13.3 ns at 1.8 V, 5.3 ns at 2.5 V, 4.2 ns at 3.3 V and 3.4 ns at 5 V under the stated load conditions.

What bypass capacitor is recommended?

The PDF recommends 0.1 µF for a single supply, installed as close to the power pin as possible. Parallel 0.1 µF and 1 µF capacitors are commonly used for broader noise rejection.

Can the outputs be wire-connected together?

No. 1Y and 2Y are push-pull outputs and must not oppose another actively driven output.

Which packages are listed?

SN74LVC2G34DBVR is SOT23-6 with C345 marking. SN74LVC2G34DCKR is SC70-6 with C9F marking. Both are MSL 3 and tape-and-reel packed in quantities of 3,000.

Can an unused input be left open?

No. Every unused input must be held at VCC or GND.

Technical source and design authority

This page summarizes the supplied SN74LVC2G34 Rev A.1 product specification for component evaluation. Confirm the current controlled specification, ordering code, marking, pin assignment, logic thresholds, electrical limits, package tolerances and qualification requirements before production release.

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