圖片僅供參考
74HC30D
+物料清單Logic Gates 8-INPUT NAND GATE
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製造商Nexperia
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製造商部分 #74HC30D
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有存貨13596
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7*24 小時服務保證
90-日售後保障
正品保證
規格
| 屬性 | 價值 |
| StandardPackQty | 57 |
概述
Description
Equivalent
1. CD74HC30 from Texas Instruments
2. SN74HC30 from Texas Instruments
3. MC74HC30 from ON Semiconductor
4. HEF4030B from Nexperia
5. TC74HC30 from Toshiba
These equivalents offer similar functionalities and electrical characteristics, but always verify the datasheets for compatibility in your specific application.
Features
1. High-Speed Operation: The device offers fast switching times and is suitable for high-speed digital applications.
2. Low Power Consumption: Designed to consume minimal power, making it ideal for battery-powered and energy-efficient applications.
3. Wide Supply Voltage Range: Operates over a broad range of supply voltages, typically from 2V to 6V.
4. Compatible with TTL Outputs: Can interface with TTL outputs due to its wide input voltage range.
5. Standardized Pin Configuration: Available in a 14-pin package, making it easy to integrate into standard PCB layouts.
6. Robust Performance: Offers noise immunity and stable operation across a variety of environmental conditions.
These features make the 74HC30D suitable for digital logic applications where efficient operation and high-speed performance are required.
Pinout
Here is a concise pinout description for the 74HC30D:
1. Pin 1-8: Inputs (A-H) - These are the inputs for the NAND gate. The gate will output a low signal only when all inputs are high.
2. Pin 7: Ground (GND) - Connects to the ground of the circuit.
3. Pin 9: Output (Y) - This is the output of the NAND gate.
4. Pin 14: VCC - Connects to the positive supply voltage.
The 74HC30D is utilized in digital circuits where a multiple-input NAND operation is required. The output is low only when all inputs are high, otherwise, it stays high. This makes it useful in various logic operations and digital applications.
Manufacturer
Application
1. Digital Logic Circuits: It performs logic operations and is used in building complex logic systems.
2. Signal Processing: Suitable for combining multiple digital signals into one output.
3. Data Routing: Used in systems requiring data routing and control logic.
4. Microcontroller Interfacing: Used to interface with microcontrollers for input/output operations.
5. Embedded Systems: Common in embedded systems for control and decision-making processes.
6. Timing Applications: Can be used in generating specific timing sequences.
Its versatility and reliability make it ideal for various digital logic design applications.