


Analog Devices Inc./Maxim Integrated
MAX350EAP
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MAX350EAP Description
MAX350EAP Description
The MAX350EAP is a high-performance, obsolete interface IC chip manufactured by Analog Devices Inc./Maxim Integrated. This device is designed as a dual 4:1 multiplexer/demultiplexer with SP4T switch circuits, offering exceptional electrical characteristics and performance benefits. It features a maximum on-state resistance of 100Ω, ensuring efficient signal transmission with minimal power loss. The MAX350EAP operates within a wide supply voltage range of ±2.7V to ±8V for dual supply and 2.7V to 16V for single supply, making it versatile for various power configurations. With a leakage current of only 100pA, it maintains low power consumption even in standby mode. The device also boasts a channel-to-channel matching of 16Ω (max) and channel capacitance of 2pF for both source and drain, ensuring high signal integrity and minimal distortion. Charge injection is limited to 1pC, further enhancing signal fidelity. The switch times are impressively fast, with a turn-on time of 275ns and a turn-off time of 150ns, making it suitable for high-speed applications. The MAX350EAP is packaged in a surface-mount 20SSOP tube, providing a compact and reliable solution for space-constrained designs. It is REACH unaffected and has a moisture sensitivity level (MSL) of 1, indicating unlimited storage life under standard conditions. The ECCN classification is EAR99, and the HTSUS code is 8542.39.0001.
MAX350EAP Features
- Low On-State Resistance: With a maximum on-state resistance of 100Ω, the MAX350EAP ensures minimal power loss and efficient signal transmission.
- Wide Supply Voltage Range: Operates within ±2.7V to ±8V for dual supply and 2.7V to 16V for single supply, offering flexibility in power configurations.
- Low Leakage Current: A maximum leakage current of 100pA ensures low power consumption in standby mode.
- High Channel Matching and Low Capacitance: Channel-to-channel matching of 16Ω (max) and channel capacitance of 2pF for both source and drain maintain high signal integrity.
- Minimal Charge Injection: Charge injection is limited to 1pC, reducing signal distortion and enhancing fidelity.
- Fast Switch Times: Turn-on time of 275ns and turn-off time of 150ns make it suitable for high-speed applications.
- Compact Surface-Mount Packaging: The 20SSOP tube package provides a reliable and space-efficient solution.
- REACH Compliance: The MAX350EAP is REACH unaffected, ensuring compliance with environmental regulations.
- Unlimited Storage Life: With an MSL of 1, the device can be stored indefinitely under standard conditions without degradation.
MAX350EAP Applications
The MAX350EAP is ideal for a variety of applications where high performance and reliability are critical. Its low on-state resistance and fast switch times make it suitable for high-speed signal routing in telecommunications, data acquisition systems, and instrumentation. The wide supply voltage range and low leakage current ensure it can be used in battery-powered devices and portable electronics without significant power loss. Its compact surface-mount package and high channel matching make it a preferred choice for dense PCB layouts in consumer electronics, automotive systems, and industrial control applications. The MAX350EAP's ability to maintain signal integrity with minimal distortion also makes it suitable for precision measurement equipment and medical devices where accuracy is paramount.
Conclusion of MAX350EAP
The MAX350EAP, despite being obsolete, remains a robust and versatile interface IC chip with numerous performance benefits. Its low on-state resistance, wide supply voltage range, and fast switch times make it an excellent choice for high-speed and high-efficiency applications. The device's low leakage current, minimal charge injection, and high channel matching ensure signal integrity and low power consumption, making it suitable for a wide range of electronic systems. With its compact surface-mount packaging and REACH compliance, the MAX350EAP offers a reliable and environmentally friendly solution for various industrial and consumer applications.



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