NAND Gate. SN74LV1T00 Datasheet

SN74LV1T00 Gate. Datasheet pdf. Equivalent

Part SN74LV1T00
Description Single Power Supply 2-Input Positive NAND Gate
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SN74LV1T00
SCLS737B – SEPTEMBER 2013 – REVISED FEBRUARY 2014
SN74LV1T00 Single Power Supply 2-Input Positive NAND Gate CMOS Logic Level Shifter
1 Features
1 Single-Supply Voltage Translator at
5.0/3.3/2.5/1.8V VCC
• Operating Range of 1.8V to 5.5V
• Up Translation
– 1.2V(1) to 1.8V at 1.8V VCC
– 1.5V(1) to 2.5V at 2.5V VCC
– 1.8V(1) to 3.3V at 3.3V VCC
– 3.3V to 5.0V at 5.0V VCC
• Down Translation
– 3.3V to 1.8V at 1.8V VCC
– 3.3V to 2.5V at 2.5V VCC
– 5.0V to 3.3V at 3.3V VCC
• Logic Output is Referenced to VCC
• Output Drive
– 8mA Output Drive at 5V
– 7mA Output Drive at 3.3V
– 3mA Output Drive at 1.8V
• Characterized up to 50MHz at 3.3V VCC
• 5V Tolerance on Input Pins
• –40°C to 125°C Operating Temperature Range
• Pb-Free Packages Available: SC-70 (DCK)
– 2 × 2.1 × 0.65 mm
• Latch-Up Performance Exceeds 250mA
Per JESD 17
• ESD Performance Tested Per JESD 22
– 2000-V Human-Body Model
(A114-B, Class II)
– 200-V Machine Model (A115-A)
– 1000-V Charged-Device Model (C101)
• Supports Standard Logic Pinouts
• CMOS Output B Compatible with AUP1G and
LVC1G Families
(1) Refer to the VIH/VIL and output drive for lower VCC condition.
2 Applications
• Industrial controllers
• Telecom
• Portable applications
• Servers
• PC and notebooks
• Automotive
3 Description
SN74LV1T00 is a low voltage CMOS gate logic that
operates at a wider voltage range for industrial,
portable, telecom, and automotive applications. The
output level is referenced to the supply voltage and is
able to support 1.8V/2.5V/3.3V/5V CMOS levels.
The input is designed with a lower threshold circuit to
match 1.8V input logic at VCC = 3.3V and can be used
in 1.8V to 3.3V level up translation. In addition, the
5V tolerant input pins enable down translation (e.g.
3.3V to 2.5V output at VCC = 2.5V). The wide VCC
range of 1.8V to 5.5V allows generation of desired
output levels to connect to controllers or processors.
The SN74LV1T00 is designed with current-drive
capability of 8 mA to reduce line reflections,
overshoot, and undershoot caused by high-drive
outputs.
Device Information
ORDER NUMBER PACKAGE
BODY SIZE
SN74LV1T00DBVR SOT-23 (5)
2,90mm x 1,60mm
SN74LV1T00DCKR SC70 (5)
2,00mm x 1,25mm
DCK or DBV PACKAGE
(TOP VIEW)
A
1
5
VCC
B
2
GND
3
4
Y
1
An IMPORTANT NOTICE at the end of this data sheet addresses availability, warranty, changes, use in safety-critical applications,
intellectual property matters and other important disclaimers. PRODUCTION DATA.



SN74LV1T00
SN74LV1T00
SCLS737B – SEPTEMBER 2013 – REVISED FEBRUARY 2014
www.ti.com
Table of Contents
1 Features ................................................................. 1
2 Applications .......................................................... 1
3 Description ............................................................ 1
4 Revision History ................................................... 2
4.1 Typical Design Examples ......................................... 5
4.2 Absolute Maximum Ratings ..................................... 5
4.3 Recommended Operating Conditions ...................... 6
4.4 Electrical Characteristics .......................................... 6
4.5 Switching Characteristics ........................................ 7
4.6 OPERATING CHARACTERISTICS ......................... 7
5 Parameter Measurement Information ................. 8
5.1 More Product Selection ............................................ 8
6 Device and Documentation Support ................... 9
6.1 Trademarks .............................................................. 9
6.2 Electrostatic Discharge Caution ............................... 9
6.3 Glossary ................................................................... 9
7 Mechanical, Packaging, and Orderable
Information ............................................................ 9
4 Revision History
NOTE: Page numbers for previous revisions may differ from page numbers in the current version.
Changes from Original (September 2013) to Revision A
Page
• Updated VCC values for VIH parameter in the ELECTRICAL CHARACTERISTICS table. .................................................... 6
Changes from Revision A (September 2013) to Revision B
Page
• Updated document formatting. .............................................................................................................................................. 1
2
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