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74HC00 Quad 2 Input NAND Gate IC - SOIC-14 SMD Package
74HC00 Quad 2 Input NAND Gate IC - SOIC-14 SMD Package
Quantity
10 Pcs MOQ
10 Pcs MOQ
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The 74HC00 is a high-speed CMOS Quad 2-Input NAND Gate IC designed for a wide range of digital logic applications. It is housed in a compact SOIC-14 surface-mount device (SMD) package, making it suitable for high-density circuit board layouts. Here’s a detailed description of the product:
Key Features:
- Type: Quad 2-Input NAND Gate
- Package: SOIC-14 (Small Outline Integrated Circuit)
- Logic Family: 74HC (High-Speed CMOS)
- Operating Voltage: 2V to 6V
- Low Power Consumption: CMOS technology ensures low static power consumption
- High-Speed Operation: Fast propagation delay
- Wide Operating Temperature Range: -40°C to +85°C
Applications:
- Digital Logic Circuits: Ideal for general-purpose digital logic applications
- Signal Processing: Useful in signal processing and data manipulation
- Control Systems: Suitable for control systems and automation
- Embedded Systems: Commonly used in embedded systems and microcontroller interfacing
- Computing: Can be used in computing and arithmetic logic operations
Pin Configuration:
- Pin 1 (1A): Input A of NAND gate 1
- Pin 2 (1B): Input B of NAND gate 1
- Pin 3 (1Y): Output of NAND gate 1
- Pin 4 (2A): Input A of NAND gate 2
- Pin 5 (2B): Input B of NAND gate 2
- Pin 6 (2Y): Output of NAND gate 2
- Pin 7 (GND): Ground
- Pin 8 (3Y): Output of NAND gate 3
- Pin 9 (3A): Input A of NAND gate 3
- Pin 10 (3B): Input B of NAND gate 3
- Pin 11 (4Y): Output of NAND gate 4
- Pin 12 (4A): Input A of NAND gate 4
- Pin 13 (4B): Input B of NAND gate 4
- Pin 14 (VCC): Supply voltage
Electrical Characteristics:
- Supply Voltage (Vcc): 2V to 6V
- Input Voltage (Vin): 0V to Vcc
- Output Voltage (Vout): 0V to Vcc
- Low Input Current (Iin): ±1μA max
- Low Output Current (Iout): ±25mA max
- Propagation Delay: Typically 8ns at Vcc = 5V
- Power Consumption: Low power consumption due to CMOS technology
Note: Product images are for illustrative purposes only and may differ from the actual product.
