SN74AUP1T58
SN74AUP1T58 is SINGLE-SUPPLY VOLTAGE-LEVEL TRANSLATOR manufactured by Texas Instruments.
FEATURES
- 2 Available in the Texas Instruments Nano Star™ Packages
- Single-Supply Voltage Translator
- 1.8 V to 3.3 V (at VCC = 3.3 V)
- 2.5 V to 3.3 V (at VCC = 3.3 V)
- 1.8 V to 2.5 V (at VCC = 2.5 V)
- 3.3 V to 2.5 V (at VCC = 2.5 V
- Nine Configurable Gate Logic Functions
- Schmitt-Trigger Inputs Reject Input Noise and Provide Better Output Signal Integrity
- Ioff Supports Partial-Power-Down Mode With Low Leakage Current (0.5 m A)
- Very Low Static and Dynamic Power Consumption
- Pb-Free Packages Available: SON (DRY or DSF), SOT-23 (DBV), SC-70 (DCK), and Nano Star WCSP
- Latch-Up Performance Exceeds 100 m A Per JESD 78, Class II
- ESD Performance Tested Per JESD 22
- 2000-V Human-Body Model (A114-B, Class II)
- 1000-V Charged-Device Model (C101)
- Related Devices: SN74AUP1T57, SN74AUP1T97, and SN74AUP1T98
DBV OR DCK PACKAGE (TOP VIEW)
B1 GND 2
A3
6C 5 VCC 4Y
DRY OR DSF PACKAGE (TOP VIEW)
B1 GND 2
A3
6C 5V
4Y
YFP OR YZP PACKAGE (TOP VIEW)
B GND
C A1 1 6 A2 V B1 2 5 B2 CC
Y C1 3 4 C2
DESCRIPTION
/ORDERING INFORMATION
AUP technology is the industry's lowest-power logic technology designed for use in battery-operated or battery backed-up equipment. The SN74AUP1T58 is designed for logic-level translation applications with input switching levels that accept 1.8-V LVCMOS signals, while operating from either a single 3.3-V or 2.5-V VCC supply.
The wide VCC range of 2.3 V to 3.6 V allows the possibility of battery voltage drop during system operation and ensures normal operation between this range.
Schmitt-trigger inputs (ΔVT = 210 m V between positive and negative input transitions) offer improved noise immunity during switching transitions, which is especially useful on analog mixed-mode designs. Schmitt-trigger inputs reject input noise, ensure integrity of output signals, and allow for slow input signal transition.
The SN74AUP1T58 can be easily configured to perform a required gate function by connecting A, B, and C inputs to VCC or ground (see Function...