Product Overview: MC74HC10ADG - ON Semiconductor
The MC74HC10ADG is a high-performance integrated circuit produced by ON Semiconductor, a renowned leader in the semiconductor industry. This device is part of the 74HC series, which are high-speed CMOS logic gates known for their robustness and versatility. The MC74HC10ADG specifically is a triple 3-input NAND gate, designed for use in a wide array of digital applications.
This particular IC is characterized by its low power consumption and high noise immunity, making it an ideal choice for battery-operated and noise-sensitive electronic systems. The MC74HC10ADG operates over a broad voltage range from 2V to 6V and provides standardized symmetrical output characteristics, ensuring consistent performance across various voltage levels.
The MC74HC10ADG is available in a compact SOIC-14 package, which is suitable for automated surface-mount assembly processes and takes up minimal space on PCBs. This packaging ensures that the device can be integrated into modern, space-constrained electronic designs without compromising functionality.
Key Features
- Logic Type: Triple 3-Input NAND Gate
- Operating Voltage Range: 2V to 6V
- High Noise Immunity: NIV = VNIH = VNIL = 28% VCC (Min)
- Output Drive Capability: 10 LSTTL Loads
- Package Type: SOIC-14
- Mounting Type: Surface Mount
Applications
The versatility of the MC74HC10ADG enables it to be used in a variety of digital circuits. It's suitable for applications such as logic function generators, digital signal processing, computer logic, and any system where low power consumption and high noise immunity are critical. Its reliability and performance also make it a preferred choice for use in the design of complex digital systems, such as microprocessors and microcontrollers, where multiple NAND gates are required for logic operations.
In summary, the MC74HC10ADG from ON Semiconductor is a reliable and efficient solution for designers looking to implement NAND logic functions with minimal power draw and high tolerance to electrical noise.