onsemi / Fairchild TinyLogic® UHS Series
onsemi / Fairchild TinyLogic UHS Series are single and dual gate logic devices with ultra-high speed and high drive performance of LCX. The TinyLogic UHS Series operates in a VCC voltage range of 1.65V to 5.5V, and has input overvoltage tolerance, enabling them to interface with 5V components while operating at 3V. The TinyLogic UHS Series gives design engineers the ability to implement design changes without having to redesign complex silicon subcomponents or printed circuit board layouts. The onsemi / Fairchild TinyLogic UHS Series is primarily intended for use in space-constrained systems such as portable CD players, disk drives, cellular phones, pagers, radios, PCMCIA cards, and portable computers.Features
- 1.65V to 5.5V VCC Supply Operation
- Power-Off High-Impedance Inputs and Outputs
- Over-Voltage Tolerance Inputs Facilitate 5V to 3V Translation
- Quite Series™ Noise/EMI Reduction Circuitry
- Ultra Small MicroPak™ Packages
View Results ( 24 ) Page
| Numéro de pièce | Fiche technique | Description | Délai de propagation |
|---|---|---|---|
| NL17SZ157DFT2G | ![]() |
Codeurs, décodeurs, multiplexeurs et démultiplexeurs TinyLogic UHS 2-Input Non-Inverting Multiplexer | 6 ns |
| NC7SZ157FHX | ![]() |
Codeurs, décodeurs, multiplexeurs et démultiplexeurs TinyLogic UHS 2Input Non-Invrt Multiplex | |
| NC7SZ57FHX | ![]() |
Portes logiques TinyLogic UHS Uni Cnfg 2-In Logic Gate | 3.4 ns |
| NC7SZ19L6X | ![]() |
Codeurs, décodeurs, multiplexeurs et démultiplexeurs 1-of-2 Dec/Demult | |
| NC7SZU04FHX | ![]() |
Onduleurs TinyLogic UHS Unbuffered Inverter | |
| NC7WZ14L6X | ![]() |
Onduleurs Dl Inv Sch Trigger | |
| NC7SZ05M5X | ![]() |
Onduleurs UHS Inverter | 12.9 ns at 1.65 V, 10.5 ns at 1.8 V, 7 ns at 2.5 V, 5 ns at 3.3 V, 4.3 ns at 5 V |
| NC7SZ38L6X | ![]() |
Portes logiques 2-Input NAND Gate | 2.2 ns |
| NC7SZ57L6X | ![]() |
Portes logiques 2-Input Logic Gate | 3.4 ns |
| NC7WZ14FHX | ![]() |
Onduleurs UHS Dual Inverter w/Sch Trig Inputs | 3.2 ns |
Publié le: 2011-12-08
| Mis à jour le: 2022-03-11

