MAX399 (6)

The MAX399 is available from Analog Devices at Xecor. Designed for precision signal routing and low-voltage data acquisition, the MAX399 offers low on-resistance (<100Ω), matched channel resistance (<6Ω), and fast switching speeds (<250ns). Available in a 16-SOIC package, it is ideal for automated test equipment (ATE), communication systems, and battery-powered applications. Whether used in military radios, sample-and-hold circuits, or heads-up displays, this series ensures high performance, low power consumption (<300µW), and reliable operation for demanding applications. Xecor is an authorized distributor for Analog Devices. Please view our extensive selection of the MAX399 series below.

Part Number Description Package Inventory Add To Bom
MAX399CSE+T Multiplexer Switch ICs Precision, 8-Channel/Dual 4-Channel, Low-Voltage, CMOS Analog Multiplexers SOIC-Narrow-16 2,686
MAX399CSE+ High-speed, low-power switching for multi-channel applications SOIC-16 4,981
MAX399ESE+ MAX399ESE+ is a differential multiplexer with two functions and four channels, featuring CMOS technology and a PDSO16 package SOIC-16 2,115
MAX399EEE+T Versatile 8-channel or dual 4-channel configurations available QSOP-16 6,798
MAX399EEE+ Low-Voltage CMOS Analog Multiplexer QSOP-16 4,799
MAX399ESE+T Versatile SP4T analog switches/multiplexers deliver high performance and reliability SOIC-Narrow-16 5,565

Key Featrues

Low On-Resistance (< 100Ω): The MAX399 features low on-resistance, which minimizes signal attenuation and distortion, making it ideal for precision applications such as audio-signal routing and low-voltage data acquisition. This ensures high signal integrity and efficient performance in sensitive circuits.
Guaranteed On-Resistance Match Between Channels (< 6Ω): With a tight on-resistance match across channels, the device ensures consistent signal handling, reducing errors in multi-channel systems like automated test equipment (ATE) and communication systems. This enhances reliability and accuracy in signal routing.
Low Power Consumption (< 300µW): The device's low power consumption makes it suitable for battery-powered applications and energy-efficient designs, extending battery life and reducing operational costs in portable and remote systems.
Rail-to-Rail Signal Handling: The MAX399 supports rail-to-rail signal handling, allowing it to process signals across the full voltage range of the supply. This capability is critical for applications like guidance and control systems, where maximum signal range utilization is required.
ESD Protection > 2000V: The robust ESD protection ensures the device can withstand electrostatic discharge events, improving durability and reliability in harsh environments such as military radios and industrial applications. This feature safeguards the device from damage during handling and operation.

Applications

Audio-Signal Routing: The MAX399 is perfect for routing audio signals in professional audio equipment, such as mixers and audio interfaces. Its low on-resistance and fast switching speeds ensure minimal signal distortion and high fidelity, making it ideal for high-quality audio applications in studios and live sound environments.
Automated Test Equipment (ATE): The MAX399 is well-suited for use in ATE systems, where precise signal switching and low leakage are critical. Its low on-resistance and fast switching times enable accurate and reliable testing of electronic components, ensuring high throughput and repeatability in manufacturing and quality control processes.
Low-Voltage Data Acquisition: The MAX399 is ideal for low-voltage data acquisition systems, where it can be used to multiplex signals from various sensors or sources. Its ability to operate with single or dual supplies and its low power consumption make it suitable for battery-powered or portable data acquisition devices used in field measurements and environmental monitoring.
Military Radios: The MAX399 is an excellent choice for military radio systems, where reliable signal routing and low power consumption are essential. Its robust design, including ESD protection and wide operating temperature range, ensures reliable performance in harsh environments, making it suitable for communication systems in defense and aerospace applications.