The NE570N is a versatile, low-cost dual gain control circuit designed for dynamic range compression or expansion applications. Each channel of this IC includes a full-wave rectifier for signal detection, a linearized temperature-compensated gain cell, and an operational amplifier. The NE570N is widely used in audio processing, telecommunications, and noise reduction systems due to its high dynamic range and flexible configuration options.
VCC = +6 V, Tamb = 25°C; unless otherwise stated.
The NE570N is available in a 16-pin small outline package (SO16) with the following pinout:
The NE570N consists of two independent channels, each containing a full-wave rectifier, variable gain cell, and operational amplifier. The rectifier detects the average signal level, which controls the gain cell to either compress or expand the dynamic range. The temperature compensation ensures stable operation across the specified temperature range.
The internal architecture includes:
When configured as a compressor, the NE570N reduces the dynamic range of the input signal by decreasing gain as the input level increases. This is particularly useful in applications where signal levels need to be maintained within a specific range.
In expander mode, the IC increases the dynamic range by reducing gain for low-level signals (acting as a noise gate) while maintaining higher gain for stronger signals. This configuration is valuable for noise reduction systems.
The performance characteristics can be adjusted through careful selection of external components:
The NE570N offers excellent performance across its operating range:
When used in noise reduction applications, one channel can be configured as an expander to reduce noise during quiet passages while maintaining full dynamic range during louder passages.
In telephone systems, the NE570N can provide companding (compression at the transmitter and expansion at the receiver) to improve signal-to-noise ratio over the transmission channel.
The NE570N is a highly versatile and cost-effective solution for dynamic range control applications. Its dual-channel architecture, wide operating voltage range, and excellent performance characteristics make it suitable for a wide variety of audio processing and telecommunications applications. The ability to configure each channel independently as either a compressor or expandor provides designers with significant flexibility in system implementation.