MAX314L (8)

The MAX314L is available from Analog Devices at Xecor. Designed for low on-resistance analog switching, the MAX314L offers 10Ω max on-resistance, +3V logic compatibility, and excellent channel matching (1.5Ω max). Available in a 16-SOIC package, it is ideal for audio-signal routing, communication systems, data acquisition, and test equipment. Whether used in avionics, PBX/PABX systems, or XDSL modems, this series ensures reliable performance, low leakage, and rail-to-rail signal handling for demanding applications. Xecor is an authorized distributor for Analog Devices. Please view our extensive selection of the MAX314L series below.

Part Number Description Package Inventory Add To Bom
MAX314LESE+ Analog Switch ICs - MAX314LESE+ for +3V Logic SOIC-16 7,036
MAX314LCSE+T 10Ω, Quad, SPST, +3V Logic-Compatible Analog Switches 16-SOIC 5,390
MAX314LEUE+ TSSOP-tubed analog switch featuring four SPST channels TSSOP-16 6,855
MAX314LCUE+ 6-Pin TSSOP Tube MAX314LCUE+ TSSOP-16 3,014
MAX314LCUE+T 10Ω, Quad, SPST, +3V Logic-Compatible Analog Switches 16-TSSOP 7,793
MAX314LESE+T Upgrade your electronic projects with this versatile component SOIC-Narrow-16 5,856
MAX314LEUE+T MAX314LEUE+T is a quad analog switch IC designed with 10 ohm resistance, enabling seamless switching in various electronic applications TSSOP-16 3,267
MAX314LCSE+ Analog Switches / Multiplexers with high accuracy and fast switching times for demanding analog systems SOIC-Narrow-16 7,674

Key Featrues

+3V Logic-Compatible Digital Inputs: The MAX312L/MAX313L/MAX314L analog switches are compatible with +3V logic, making them suitable for low-voltage applications. This feature ensures seamless integration with modern digital systems, enhancing performance in mixed-signal environments like communication systems and data acquisition.
Low On-Resistance (10Ω max): With a maximum on-resistance of 10Ω, these switches minimize signal attenuation and power loss, improving signal integrity and efficiency in applications such as audio-signal routing and test equipment.
Guaranteed RON Match Between Channels (1.5Ω max): The tight matching of on-resistance between channels ensures consistent performance across multiple channels, which is critical for precision applications like sample-and-hold circuits and avionics systems.
Single and Dual-Supply Operation: The switches support both single-supply (+4.5V to +36V) and dual-supply (±4.5V to ±20V) operation, offering flexibility in power supply configurations. This versatility makes them ideal for a wide range of use cases, including PBX/PABX systems and XDSL modems.
Rail-to-Rail Signal Handling: The ability to handle rail-to-rail signals ensures that the switches can process the full range of input signals without distortion, enhancing performance in applications requiring high dynamic range, such as communication systems and audio-signal routing.

Applications

Audio Signal Router: The MAX314L is perfect for routing audio signals in high-fidelity audio systems. Its low on-resistance (10Ω max) and minimal crosstalk (>96dB at 20kHz) ensure clear and accurate signal transmission, making it ideal for professional audio equipment, mixers, and home theater systems.
Avionics Signal Switching: The MAX314L is well-suited for avionics systems, where reliable signal switching is critical. Its ability to handle rail-to-rail signals and operate over a wide supply voltage range (±4.5V to ±20V) ensures robust performance in demanding aerospace applications, such as flight control systems and communication modules.
Data Acquisition System: The MAX314L is an excellent choice for data acquisition systems, particularly in multi-channel setups. Its low on-resistance and fast switching times (225 ns max on time, 185 ns max off time) enable precise and rapid signal sampling, making it ideal for applications in industrial automation, test equipment, and scientific instrumentation.
XDSL Modem Signal Routing: The MAX314L is highly effective in XDSL modems for routing high-frequency signals. Its low on-resistance and high crosstalk rejection ensure minimal signal degradation, making it suitable for high-speed communication systems where signal integrity is paramount.