Product Description: CD4049 SOP Buffer; Inverting (6-Not Gates) (Unusual Pin Configuration, Capable of Directly Driving 74-Series TTL)
The CD4049 SOP Buffer is a versatile and reliable component, designed to offer inverting logic with six NOT gates in a single package. This 6-Not Gate Buffer is built using CMOS technology, ensuring low power consumption and high-speed performance, making it ideal for various applications in electronic circuits. Featuring an unusual pin configuration, the CD4049 is engineered to handle higher voltages and drive 74-Series TTL logic circuits directly, without the need for additional buffering components. Its ability to interface seamlessly with TTL components adds flexibility to digital designs.
Key Features:
- 6 Inverting NOT Gates: Each gate performs an inversion function, ideal for signal processing.
- Unusual Pin Configuration: Optimized layout for efficient circuit integration.
- CMOS Technology: Low power consumption and high-speed operation.
- TTL Compatibility: Can directly drive 74-series TTL circuits without the need for extra drivers.
- Wide Operating Voltage Range: Capable of operating in a variety of voltage environments (typically 3V to 18V).
- High Noise Immunity: Robust performance even in noisy environments.
- Compact SOP Package: Space-saving Small Outline Package (SOP) suitable for surface-mount assembly.
Applications:
- Digital Circuit Design: Used in creating logic gates and signal inversion tasks in digital systems.
- TTL Interface: Direct interface with 74-series TTL logic without needing additional buffers.
- Signal Amplification: Acts as a signal inverter or buffer in high-speed digital circuits.
- Microprocessor Support: Can be used in conjunction with microcontrollers and processors for logic level interfacing.
- Switching Circuits: Ideal for use in switching applications where signal inversion is necessary.
Package Included:
1 x CD4049 SOP Buffer; Inverting (6-Not Gates)
Please note that the product image is for illustrative purposes only. The actual product may vary slightly in appearance.
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