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74LVC1G80GS132
+StücklisteNOW NEXPERIA 74LVC1G80GS D FLIP-
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HerstellerNexperia USA Inc.
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Herstellerteil #74LVC1G80GS132
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Datenblatt 74LVC1G80GS132 DataSheet
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Auf Lager7666
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Spezifikationen
| Attribut | Wert |
| Package / Case | Bulk |
| Part Status | Active |
Übersicht
Description
The flip-flop is edge-triggered, capturing input data on the rising edge of the clock signal. It features a standard CMOS input, offering high noise immunity and low power dissipation. The output is a single Q pin reflecting the input state, and it supports a standard drive capability.
The 74LVC1G80GS132 comes in a small, leaded package, suitable for space-constrained circuit designs, and is ideal for applications in computing, communications, and consumer electronics. Its compatibility with TTL input levels and ability to drive CMOS loads make it a flexible component in mixed technology environments.
Overall, this flip-flop provides a reliable, efficient, and compact solution for flip-flop requirements in modern electronic designs.
Equivalent
1. SN74LVC1G80 by Texas Instruments
2. NC7SP74 by ON Semiconductor
3. 74AUP1G80 by Nexperia
4. SN74LVC2G80 by Texas Instruments (dual version, similar characteristics)
Ensure to check datasheets for compatibility, as variations in features like power supply range and propagation delay may exist.
Features
Key features include:
- High noise immunity and low static power dissipation
- Support for partial power-down mode using IOFF circuitry, ensuring no backflow current when the device is powered down
- Schmitt-trigger action on all inputs, which provides better noise margin
- Direct interface with TTL levels when using a 5V supply
- High drive capability with balanced propagation delay
The device is housed in a compact SOT353 package, suitable for space-constrained applications. Its typical applications include data storage, data transfer, and synchronization tasks in digital systems.
Pinout
Here is a concise description of its pin functions:
1. Pin 1 (D): Data input. The value at this pin is stored in the flip-flop on the rising edge of the clock.
2. Pin 2 (GND): Ground connection. Connect to the system ground.
3. Pin 3 (Q): Data output. This pin provides the stored data value.
4. Pin 4 (CP): Clock input. The flip-flop captures the data at the D input on the rising edge of the signal applied to this pin.
5. Pin 5 (VCC): Supply voltage. Connect to the positive power supply.
This IC is used in applications requiring a storage element or bistable latch like data storage, signal delay, or frequency division.
Manufacturer
Application
1. Data Storage and Transfer: It can store data in digital circuits and facilitate data transfer between different parts of a system.
2. Frequency Division: It is used in frequency division applications, acting as a basic building block for counters and dividers.
3. Synchronization: Ensures data synchronization in digital circuits, aligning signals with a clock pulse.
4. Buffering: Provides temporary data storage, acting as a buffer in communications between asynchronous systems.
5. Control Logic: Used in control logic circuits to maintain a state or sequence based on input conditions.
These applications make it versatile for use in computing, telecommunications, and consumer electronics.