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74LVC74ADB112
+NomenclatureNOW NEXPERIA 74LVC74ADB - D FLIP
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FabricantNexperia USA Inc.
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Pièce fabricant #74LVC74ADB112
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Fiche technique 74LVC74ADB112 DataSheet
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En stock4316
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Spécifications
| Attribut | Valeur |
| Package | Bulk |
| ProductStatus | Active |
Présentation
Description
The device is designed to operate over a wide voltage range, typically from 1.2V to 3.6V, making it suitable for various low-power applications. It is well-suited for use in systems requiring high data processing speeds due to its fast propagation delay and minimal power consumption.
The 74LVC74ADB112 is encased in a small-outline package, making it ideal for space-constrained applications. It is typically used in applications such as data storage, data transfer, and as a building block for sequential logic circuits in digital systems.
Equivalent
1. SN74LVC74A by Texas Instruments
2. MC74LCX74 by ON Semiconductor
3. 74AHC74 by Nexperia
4. CD74HC74 by Texas Instruments
These equivalents offer similar functionality and pin configurations suitable for various digital applications. Always check the datasheets for exact specifications and compatibility.
Features
Key features include:
1. Dual D-type Flip-Flops: Provides two separate flip-flops, each with data, clock, set, and reset inputs.
2. Set and Reset Functions: Asynchronous set and reset inputs allow for initializing or resetting the flip-flops independently.
3. High-Speed Operation: Supports fast data processing with a typical propagation delay of a few nanoseconds.
4. Low Power Consumption: Designed for efficient power usage, crucial for battery-operated devices.
5. Input/Output Tolerance: Offers 5V tolerant inputs, allowing interface with 5V logic levels without additional components.
6. Compact Package: Available in space-saving package options suitable for dense circuit designs.
These features make the 74LVC74ADB112 a versatile component for digital applications requiring reliable flip-flop operations.
Pinout
1. Q1: Output of the first flip-flop.
2. Q1': Inverted output of the first flip-flop.
3. CLK1: Clock input for the first flip-flop.
4. D1: Data input for the first flip-flop.
5. SD1: Set input for the first flip-flop (active low).
6. RD1: Reset input for the first flip-flop (active low).
7. GND: Ground.
8. RD2: Reset input for the second flip-flop (active low).
9. SD2: Set input for the second flip-flop (active low).
10. D2: Data input for the second flip-flop.
11. CLK2: Clock input for the second flip-flop.
12. Q2': Inverted output of the second flip-flop.
13. Q2: Output of the second flip-flop.
14. VCC: Supply voltage.
Each flip-flop operates independently and is used for temporary data storage and synchronization.
Manufacturer
Application
1. Data Storage and Transfer: It can store binary data and transfer it between different parts of a circuit.
2. Frequency Division: Used in frequency dividers for clock generation applications.
3. Signal Synchronization: Synchronizes signals in digital systems to prevent metastability.
4. Digital Counters: Functions as a building block for constructing digital counters.
5. Shift Registers: Forms part of shift registers used in serial-to-parallel or parallel-to-serial data conversion.
6. State Machines: Essential in designing finite state machines for control systems.
Its versatility makes it ideal for various digital logic applications.