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Integrated Circuits (ICs)

SN74ALVC164245DGGT

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Texas Instruments

16-BIT 2.5-V TO 3.3-V/3.3-V TO 5-V LEVEL SHIFTING TRANSCEIVER WITH 3-STATE OUTPUTS

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TSSOP (DGG)
Integrated Circuits (ICs)

SN74ALVC164245DGGT

Active
Texas Instruments

16-BIT 2.5-V TO 3.3-V/3.3-V TO 5-V LEVEL SHIFTING TRANSCEIVER WITH 3-STATE OUTPUTS

Technical Specifications

Parameters and characteristics for this part

SpecificationSN74ALVC164245DGGT
Channel TypeBidirectional
Channels per Circuit8
Mounting TypeSurface Mount
Number of Circuits2
Operating Temperature [Max]85 °C
Operating Temperature [Min]-40 °C
Output TypeTri-State, Non-Inverted
Package / Case48-TFSOP
Package / Case0.24 in
Package / Case [custom]6.1 mm
Supplier Device Package48-TSSOP
Translator TypeVoltage Level
Voltage - VCCA [Max] [custom]3.6 V
Voltage - VCCA [Min] [custom]2.3 V
Voltage - VCCB [Max]5.5 V
Voltage - VCCB [Min]3 V

Pricing

Prices provided here are for design reference only. For realtime values and availability, please visit the distributors directly

DistributorPackageQuantity$
DigikeyCut Tape (CT) 1$ 2.76
10$ 2.48
25$ 2.35
100$ 2.03
Digi-Reel® 1$ 2.76
10$ 2.48
25$ 2.35
100$ 2.03
Tape & Reel (TR) 250$ 1.93
500$ 1.73
1250$ 1.46
2500$ 1.39
6250$ 1.33
NewarkEach (Supplied on Cut Tape) 1$ 3.74
10$ 3.59
25$ 3.41
50$ 3.26
100$ 3.12
Texas InstrumentsSMALL T&R 1$ 2.31
100$ 1.91
250$ 1.37
1000$ 1.03

Description

General part information

SN74ALVC164245 Series

This 16-bit (dual-octal) noninverting bus transceiver contains two separate supply rails. B port has VCCB, which is set to operate at 3.3 V and 5 V. A port has VCCA, which is set to operate at 2.5 V and 3.3 V. This allows for translation from a 2.5-V to a 3.3-V environment, and vice versa, or from a 3.3-V to a 5-V environment, and vice versa.

The SN74ALVC164245 is designed for asynchronous communication between data buses. The control circuitry (1DIR, 2DIR, 1OE, and 2OE) is powered by VCCA.

To ensure the high-impedance state during power up or power down, the output-enable (OE) input should be tied to VCCthrough a pullup resistor; the minimum value of the resistor is determined by the current-sinking capability of the driver.

Documents

Technical documentation and resources

LOGIC Pocket Data Book (Rev. B)

User guide

Migration From 3.3-V To 2.5-V Power Supplies For Logic Devices

Application note

Understanding Transient Drive Strength vs. DC Drive Strength in Level-Shifters (Rev. A)

Application note

SN74ALVC164245 16-Bit 2.5-V to 3.3-V or 3.3-V to 5-V Level-Shifting Transceiver With 3-State Outputs datasheet (Rev. Q)

Data sheet

Logic Solutions for PC-100 SDRAM Registered DIMMs (Rev. A)

Application note

16-Bit Widebus Logic Families in 56-Ball, 0.65-mm Pitch Very Thin Fine-Pitch BGA (Rev. B)

Application note

TI IBIS File Creation, Validation, and Distribution Processes

Application note

Schematic Checklist - A Guide to Designing With Fixed or Direction Control Translators

Application note

Live Insertion

Application note

Standard Linear & Logic for PCs, Servers & Motherboards

More literature

ALVC Advanced Low-Voltage CMOS Including SSTL, HSTL, And ALB (Rev. B)

User guide

TI SN74ALVC16835 Component Specification Analysis for PC100

Application note

Input and Output Characteristics of Digital Integrated Circuits

Application note

Benefits & Issues of Migrating 5-V and 3.3-V Logic to Lower-Voltage Supplies (Rev. A)

Application note

CMOS Power Consumption and CPD Calculation (Rev. B)

Application note

Schematic Checklist - A Guide to Designing with Auto-Bidirectional Translators

Application note

Semiconductor Packing Material Electrostatic Discharge (ESD) Protection

Application note

Understanding Advanced Bus-Interface Products Design Guide

Application note

Understanding and Interpreting Standard-Logic Data Sheets (Rev. C)

Application note

Voltage Translation Buying Guide (Rev. A)

Selection guide

Logic Guide (Rev. AB)

Selection guide

Bus-Interface Devices With Output-Damping Resistors Or Reduced-Drive Outputs (Rev. A)

Application note