MAX392 (8)

The MAX392 is available from Analog Devices at Xecor. Designed for precision analog switching, the MAX392 offers low on-resistance (35Ω max), fast switching speeds (130ns ON, 75ns OFF), and ultra-low power consumption (1µW), making it ideal for battery-powered and high-performance applications. Available in a 16-TSSOP package, it is perfect for use in ±5V DACs and ADCs, audio/video switching, communication systems, and test equipment. Whether used in military radios, guidance systems, or sample-and-hold circuits, this series ensures reliable performance, low leakage, and high efficiency for demanding applications. Xecor is an authorized distributor for Analog Devices. Please view our extensive selection of the MAX392 series below.

Part Number Description Package Inventory Add To Bom
MAX392CSE+ Analog Switch MAX392CSE in 16-Pin SOIC N Tube Package SOIC-16 2,606
MAX392ESE+ Four independent analog switches with low dropout voltage and fast switching times SOIC-16 5,974
MAX392CSE+T Quad analog switches for precise applications 16-SOIC 8,428
MAX392EUE+ MAX392EUE+ is a precision analog switch that excels in providing accurate and reliable switching for quad SPST configurations TSSOP-16 4,367
MAX392CUE+ Quad SPST analog switch for precise control and isolati TSSOP-16 6,713
MAX392CUE+T The MAX392CUE+T features 4 SPST switches in a Normal Open configuration, with a resistance of 35 ohms TSSOP-16 7,525
MAX392ESE+T This product is an Analog Switch/Multiplexer with a resistance of 35Ω SOICNarrow-16 7,142
MAX392EUE+T Precise analog switch ICs with low power consumption and high speed performance TSSOP-16 6,938

Key Featrues

Low On-Resistance (20Ω Typical) - This feature ensures minimal signal attenuation and power loss, making the device highly efficient for precision applications such as audio/video switching and battery-powered systems.
Fast Switching Speeds (tON ≤ 130ns, tOFF ≤ 75ns) - Enables rapid signal routing, which is critical for high-speed communication systems and test equipment, reducing latency and improving system responsiveness.
Low Power Consumption (<1µW) - Ideal for battery-operated and portable devices, this feature extends battery life and enhances energy efficiency in applications like heads-up displays and military radios.
Wide Supply Voltage Range (Single: 3V to 15V, Dual: ±3V to ±8V) - Provides flexibility in power supply options, allowing the device to be used in a variety of systems, from low-voltage portable devices to higher-voltage industrial equipment.
High ESD Protection (>2000V) - Ensures robust protection against electrostatic discharge, increasing the reliability and durability of the device in harsh environments such as military and industrial applications.

Applications

Precision Audio Signal Routing: The MAX392 is ideal for routing high-fidelity audio signals in professional audio equipment, such as mixers and audio interfaces. Its low on-resistance and fast switching speeds ensure minimal signal distortion, making it suitable for applications requiring pristine audio quality in recording studios and live sound systems.
Battery-Powered Sensor Multiplexing: The MAX392 is perfect for multiplexing signals from multiple sensors in battery-powered devices, such as portable environmental monitors or wearable health trackers. Its low power consumption and single-supply operation make it ideal for extending battery life while maintaining accurate sensor data acquisition.
Video Signal Switching in Heads-Up Displays: The MAX392 is well-suited for switching video signals in heads-up displays (HUDs) used in automotive and aviation applications. Its fast switching speeds and low crosstalk ensure clear and reliable video transmission, enhancing the performance of HUD systems in critical environments.
Test Equipment Signal Routing: The MAX392 is an excellent choice for routing signals in precision test equipment, such as oscilloscopes and signal generators. Its low charge injection and high bandwidth ensure accurate signal integrity, making it ideal for high-performance testing and measurement applications in laboratories and manufacturing facilities.