Product Overview: NE558D-TE2
The NE558D-TE2 from NXP Semiconductors is a robust, versatile integrated circuit designed for a wide range of timing applications. This high-performance device is part of the NE558 series, which is renowned for its reliability and functionality in various electronic systems.
Key Features
- Quad Timer: The NE558D-TE2 comprises four independent timer circuits that can be used in monostable or astable mode, providing flexibility for multiple timing configurations within a single package.
- Supply Voltage Range: It operates over a supply voltage range from 4.5V to 16V, making it suitable for many digital and analog applications.
- Output Current: Each timer can source or sink up to 200 mA of output current, allowing the device to drive LEDs, small relays, or other output devices directly.
- Timing Accuracy: The device offers precise timing control, which is critical for applications requiring accurate time delays or oscillation.
- Temperature Stability: The NE558D-TE2 provides excellent temperature stability of 0.005% per °C, ensuring consistent performance across a wide temperature range.
- Package: Packaged in a 16-lead small outline package (SOIC), the NE558D-TE2 is designed for efficient use of PCB space, making it ideal for compact electronic designs.
Applications
The NE558D-TE2 is widely used in various applications, such as:
- Precision timing
- Pulse generation
- Time delay generation
- Sequential timing
- Waveform generation
- Real-time clocks
Its robust design and multiple timers make it an excellent choice for industrial controls, consumer electronics, and communication systems where multiple timing tasks are required. The NE558D-TE2's ability to function as both a timer and an oscillator adds to its versatility, allowing designers to use it in applications ranging from simple delay circuits to complex multi-stage timing sequences.
With its strong feature set and reliable performance, the NE558D-TE2 from NXP Semiconductors is a go-to solution for designers looking to incorporate reliable timing functions into their electronic projects.