Product Overview: 74LV174D,118 - Hex D-type Flip-flop with Clear
The 74LV174D,118 is a high-performance, low-voltage silicon gate CMOS device from NXP Semiconductors. It is part of the 74LV family, which is renowned for its low power consumption and high speed. This integrated circuit (IC) features six D-type flip-flops with direct clear inputs, making it a versatile component for a wide range of applications in digital electronics.
Key Specifications
- Logic Type: Hex D-type Flip-flop
- Logic Family: 74LV
- Number of Pins: 16
- Supply Voltage: 2.0V to 5.5V
- Operating Temperature Range: -40°C to +125°C
- Package: SOIC-16
- Manufacturer: NXP Semiconductors
- Part Number: 74LV174D,118
Features and Benefits
The 74LV174D,118 is designed for use in applications requiring storage and transfer of data. It is suitable for implementing buffer registers, shift registers, and state machines. The device's low-voltage operation is particularly advantageous for battery-operated and portable devices, where power efficiency is critical.
The flip-flops in the 74LV174D,118 are positive-edge triggered, meaning they transfer the input data to the output on the rising edge of the clock signal. Additionally, the presence of a direct clear input allows for the synchronous reset of all flip-flops, which is essential for initializing circuits or handling error conditions.
The device also boasts a wide operating temperature range, ensuring reliability and performance under extreme conditions. Its SOIC-16 packaging is compact and suitable for space-constrained applications while providing industry-standard soldering and mounting options.
Applications
The versatility of the 74LV174D,118 makes it an ideal choice for various digital applications, including:
- Data storage and transfer systems
- Counters and dividers
- Control registers
- System initialization and reset control circuits
With its blend of performance, power efficiency, and reliability, the 74LV174D,118 from NXP Semiconductors is an excellent choice for designers looking to optimize their digital systems.