Datasheet Texas Instruments SN74LVC1G00-EP
Manufacturer | Texas Instruments |
Series | SN74LVC1G00-EP |

Enhanced Product Single 2-Input Positive-Nand Gate
Datasheets
SN74LVC1G00-EP datasheet
PDF, 822 Kb, Revision: D, File published: Sep 19, 2006
Extract from the document
Prices
Status
SN74LVC1G00IDCKREP | SN74LVC1G00MDBVREP | SN74LVC1G00MDCKREP | V62/04732-01XE | V62/04732-02XE | V62/04732-02YE | |
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Lifecycle Status | Active (Recommended for new designs) | Active (Recommended for new designs) | Active (Recommended for new designs) | Active (Recommended for new designs) | Active (Recommended for new designs) | Active (Recommended for new designs) |
Manufacture's Sample Availability | No | No | No | No | No | No |
Packaging
SN74LVC1G00IDCKREP | SN74LVC1G00MDBVREP | SN74LVC1G00MDCKREP | V62/04732-01XE | V62/04732-02XE | V62/04732-02YE | |
---|---|---|---|---|---|---|
N | 1 | 2 | 3 | 4 | 5 | 6 |
Pin | 5 | 5 | 5 | 5 | 5 | 5 |
Package Type | DCK | DBV | DCK | DCK | DCK | DBV |
Industry STD Term | SOT-SC70 | SOT-23 | SOT-SC70 | SOT-SC70 | SOT-SC70 | SOT-23 |
JEDEC Code | R-PDSO-G | R-PDSO-G | R-PDSO-G | R-PDSO-G | R-PDSO-G | R-PDSO-G |
Package QTY | 3000 | 3000 | 3000 | 3000 | 3000 | 3000 |
Carrier | LARGE T&R | LARGE T&R | LARGE T&R | LARGE T&R | LARGE T&R | LARGE T&R |
Device Marking | CAO | SBFM | BYA | CAO | BYA | SBFM |
Width (mm) | 1.25 | 1.6 | 1.25 | 1.25 | 1.25 | 1.6 |
Length (mm) | 2 | 2.9 | 2 | 2 | 2 | 2.9 |
Thickness (mm) | .9 | 1.2 | .9 | .9 | .9 | 1.2 |
Pitch (mm) | .65 | .95 | .65 | .65 | .65 | .95 |
Max Height (mm) | 1.1 | 1.45 | 1.1 | 1.1 | 1.1 | 1.45 |
Mechanical Data | Download | Download | Download | Download | Download | Download |
Parametrics
Parameters / Models | SN74LVC1G00IDCKREP![]() | SN74LVC1G00MDBVREP![]() | SN74LVC1G00MDCKREP![]() | V62/04732-01XE![]() | V62/04732-02XE![]() | V62/04732-02YE![]() |
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3-State Output | No | No | No | No | No | No |
Bits | 1 | 1 | 1 | 1 | 1 | 1 |
F @ Nom Voltage(Max), Mhz | 150 | 150 | 150 | 150 | 150 | 150 |
Gate Type | NAND | NAND | NAND | NAND | NAND | NAND |
ICC @ Nom Voltage(Max), mA | 0.01 | 0.01 | 0.01 | 0.01 | 0.01 | 0.01 |
Input Type | CMOS/TTL | CMOS/TTL | CMOS/TTL | CMOS/TTL | CMOS/TTL | CMOS/TTL |
Logic | True | True | True | True | True | True |
Operating Temperature Range, C | -40 to 85,-55 to 125 | -40 to 85,-55 to 125 | -40 to 85,-55 to 125 | -40 to 85,-55 to 125 | -40 to 85,-55 to 125 | -40 to 85,-55 to 125 |
Output Drive (IOL/IOH)(Max), mA | 32/-32 | 32/-32 | 32/-32 | 32/-32 | 32/-32 | 32/-32 |
Output Type | CMOS | CMOS | CMOS | CMOS | CMOS | CMOS |
Package Group | SC70 | SOT-23 | SC70 | SC70 | SC70 | SOT-23 |
Package Size: mm2:W x L, PKG | 5SC70: 4 mm2: 2.1 x 2(SC70) | 5SOT-23: 8 mm2: 2.8 x 2.9(SOT-23) | 5SC70: 4 mm2: 2.1 x 2(SC70) | 5SC70: 4 mm2: 2.1 x 2(SC70) | 5SC70: 4 mm2: 2.1 x 2(SC70) | 5SOT-23: 8 mm2: 2.8 x 2.9(SOT-23) |
Rating | HiRel Enhanced Product | HiRel Enhanced Product | HiRel Enhanced Product | HiRel Enhanced Product | HiRel Enhanced Product | HiRel Enhanced Product |
Schmitt Trigger | No | No | No | No | No | No |
Sub-Family | NAND Gate | NAND Gate | NAND Gate | NAND Gate | NAND Gate | NAND Gate |
Technology Family | LVC | LVC | LVC | LVC | LVC | LVC |
VCC(Max), V | 5.5 | 5.5 | 5.5 | 5.5 | 5.5 | 5.5 |
VCC(Min), V | 1.65 | 1.65 | 1.65 | 1.65 | 1.65 | 1.65 |
Voltage(Nom), V | 1.8,2.5,3.3,5 | 1.8,2.5,3.3,5 | 1.8,2.5,3.3,5 | 1.8,2.5,3.3,5 | 1.8,2.5,3.3,5 | 1.8,2.5,3.3,5 |
tpd @ Nom Voltage(Max), ns | 9,7,6.3,5 | 9,7,6.3,5 | 9,7,6.3,5 | 9,7,6.3,5 | 9,7,6.3,5 | 9,7,6.3,5 |
Eco Plan
SN74LVC1G00IDCKREP | SN74LVC1G00MDBVREP | SN74LVC1G00MDCKREP | V62/04732-01XE | V62/04732-02XE | V62/04732-02YE | |
---|---|---|---|---|---|---|
RoHS | Compliant | Compliant | Compliant | Compliant | Compliant | Compliant |
Application Notes
- LVC Characterization InformationPDF, 114 Kb, File published: Dec 1, 1996
This document provides characterization information about low-voltage logic (LVL) that operates from a 3.3-V power supply. It addresses the issues of interfacing to 5-V logic ac performance power considerations input and output characteristics and signal integrity for this family of devices. - Use of the CMOS Unbuffered Inverter in Oscillator CircuitsPDF, 796 Kb, File published: Nov 6, 2003
CMOS devices have a high input impedance high gain and high bandwidth. These characteristics are similar to ideal amplifier characteristics and hence a CMOS buffer or inverter can be used in an oscillator circuit in conjunction with other passive components. Now CMOS oscillator circuits are widely used in high-speed applications because they are economical easy to use and take significantly
Model Line
Series: SN74LVC1G00-EP (6)
Manufacturer's Classification
- Semiconductors> Space & High Reliability> Logic Products> Little Logic Products