The MAX4613CSE from Maxim Integrated is a high-performance, quad, SPST analog switch that is designed to provide precision and flexibility for a variety of applications. This analog switch operates with a single +5V supply or dual ±5V supplies, making it versatile for both unipolar and bipolar operations.
The MAX4613CSE features low on-resistance (RON) of just 4Ω, which is matched between channels to within 0.5Ω and remains flat over the specified signal range (0.5Ω max). This ensures minimal signal distortion and provides excellent linearity. Additionally, the device has a low charge injection of 10pC (typ) and guarantees low crosstalk and off-isolation, which is critical for high-performance data acquisition systems and audio signal routing.
The MAX4613 is equipped with TTL/CMOS-logic compatible inputs, making it easy to interface with a wide range of control logic. This feature simplifies the integration process into digital systems. The switch's high off-isolation of -75dB at 1MHz and crosstalk of -83dB at 1MHz make it an excellent choice for precision applications where signal integrity is paramount.
Housed in a narrow 16-pin SO package, the MAX4613CSE is designed for space-saving applications, and its surface-mount package is suitable for high-density circuit designs. The device is commonly used in sample-and-hold circuits, battery-operated equipment, audio and video signal routing, communication systems, and data acquisition systems, among other applications.
To ensure reliability, the MAX4613CSE operates over the extended temperature range of -40°C to +85°C. Its robust design and high-quality construction make it a dependable choice for demanding environments and critical applications where consistent performance is required.
Maxim Integrated's commitment to providing high-quality, precision analog switches is evident in the MAX4613CSE. With its excellent electrical characteristics and operational flexibility, this device is a go-to solution for designers looking to optimize their analog signal switching requirements.