Features: ` Available in the Texas Instruments NanoStar™ and NanoFree™ Packages` Optimized for 1.8-V Operation and Is 3.6-V I/O Tolerant to Support Mixed-Mode Signal Operation` Ioff Supports Partial-Power-Down Mode Operation` Sub-1-V Operable` Max tpd of 1.9 ns at 1.8 V` Low Power Cons...
SN74AUC1G79: Features: ` Available in the Texas Instruments NanoStar™ and NanoFree™ Packages` Optimized for 1.8-V Operation and Is 3.6-V I/O Tolerant to Support Mixed-Mode Signal Operation` Ioff Supp...
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| Symbol | Parameter | MIN | MAX | Units | |
| VCC | Supply voltage range | -0.5 | 3.6 | V | |
| VI | Input voltage range(2) | -0.5 | 3.6 | V | |
| VO | Voltage range applied to any output in the high-impedance or power-off state(2) | -0.5 | 3.6 | V | |
| VO | Output voltage range(2) | -0.5 | VCC + 0.5 | V | |
| IIK | Input clamp current | VI < 0 | -50 | mA | |
| IOK | Output clamp current | VO < 0 | -50 | mA | |
| IO | Continuous output current | ±20 | mA | ||
| ICC | Continuous current through VCC or GND | ±100 | mA | ||
| IANG | Package thermal impedance(3) | DCT package | 220 | °C/W | |
| DCU package | 227 | ||||
| YEP/YZP package | 102 | ||||
| TSTG | Storage temperature range | -65 | 150 | °C | |
This SN74AUC1G79 single positive-edge-triggered D-type flip-flop is operational at 0.8-V to 2.7-V VCC, but is designed specifically for 1.65-V to 1.95-V VCC operation.
When SN74AUC1G79 data at the data (D) input meets the setup time requirement, the data is transferred to the Q output on the positive-going edge of the clock pulse. Clock triggering occurs at a voltage level and is not directly related to the rise time of the clock pulse. Following the hold-time interval, data at the D input can be changed without affecting the levels at the outputs.
SN74AUC1G79 NanoStar™ and NanoFree™ package technology is a major breakthrough in IC packaging concepts, using the die as the package.
This SN74AUC1G79 device is fully specified for partial-power-down applications using Ioff. The Ioff circuitry disables the outputs, preventing damaging current backflow through the device when it is powered down.