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MC74F74D
+BOM74F74 - DUAL D-TYPE POSITIVE ED
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メーカーオンセミコンダクター社
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メーカー品番 #MC74F74D
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在庫状況6468
365 日間品質保証
7*24 日間の品質保証
90-時間単位のサービス保証
1日間のアフターサービス保証
仕様
| 属性 | 値 |
| Package / Case | Bulk |
| Part Status | Active |
概要
Description
This device is part of the 74F series of fast TTL logic ICs, known for their high-speed operation compared to standard 74-series TTL devices. The MC74F74D is typically used in applications requiring data storage, data transfer, and synchronization in sequential logic circuits. Its versatility makes it suitable for a wide range of tasks, such as shift registers, counters, and memory storage elements within more complex systems. With its robust performance and reliable operation, the MC74F74D is a common choice in both educational and industrial settings.
Equivalent
1. SN74F74N (Texas Instruments)
2. 74HC74 (NXP, Texas Instruments)
3. CD74HCT74 (Texas Instruments)
4. 74LS74 (various manufacturers like Texas Instruments and STMicroelectronics)
5. HEF4013B (Nexperia, Philips)
These equivalents may vary slightly in performance characteristics, so it's crucial to review their datasheets for compatibility with your specific requirements.
Features
1. Dual Flip-Flops: Contains two independent D-type flip-flops in a single package, allowing for compact designs.
2. Edge-Triggered Operation: Data is captured on the rising edge of the clock pulse, providing precise timing control.
3. Preset and Clear Inputs: Asynchronous preset and clear inputs allow the flip-flops to be set or reset independently of the clock signal.
4. High-Speed Performance: Part of the 74F series, it offers fast switching times suitable for high-speed applications.
5. TTL-Compatible: Compatible with TTL logic levels, making it easy to interface with other TTL devices.
6. Standard Pin Configuration: Comes in a standard 14-pin DIP or surface-mount package, facilitating integration into various designs.
7. Reliable Operation: Designed for reliable performance under a wide range of operating conditions.
These features make the MC74F74D suitable for a variety of applications in digital logic systems, including counters, registers, and memory devices.
Pinout
The device is available in a 14-pin dual in-line package (DIP) or small outline integrated circuit (SOIC) package. Here is a concise description of the pin functions:
1. Q1 - Output of the first flip-flop.
2. /Q1 - Complementary output of the first flip-flop.
3. D1 - Data input for the first flip-flop.
4. CLK1 - Clock input for the first flip-flop.
5. PRE1 - Asynchronous preset input for the first flip-flop (active low).
6. CLR1 - Asynchronous clear input for the first flip-flop (active low).
7. GND - Ground reference voltage.
8. CLR2 - Asynchronous clear input for the second flip-flop (active low).
9. PRE2 - Asynchronous preset input for the second flip-flop (active low).
10. CLK2 - Clock input for the second flip-flop.
11. D2 - Data input for the second flip-flop.
12. /Q2 - Complementary output of the second flip-flop.
13. Q2 - Output of the second flip-flop.
14. VCC - Supply voltage.
The device operates on a power supply voltage range typically between 4.75V and 5.25V.
Manufacturer
Onsemi provides products such as power management solutions, sensors, custom devices, and standard components like transistors, diodes, and integrated circuits. Their focus is on energy-efficient innovations, aiming to reduce energy consumption and cost while enhancing performance. As a key player in the semiconductor industry, onsemi supports various applications including electric vehicles, advanced safety systems, and energy infrastructure, contributing significantly to technological advancements and the global electronics supply chain.
Application
1. Data Storage: Used in registers and memory devices for temporary data storage.
2. Data Synchronization: Helps synchronize data transfer between different clock domains.
3. Frequency Division: Employed in counters and frequency dividers.
4. State Machines: Integral to designing finite state machines for controlling sequential logic circuits.
5. Signal Processing: Used in applications requiring edge-sensitive data sampling.
These versatile features make it suitable for various digital systems in computing, communication, and consumer electronics.