MAX3681EAG+
Manufacturer No:
MAX3681EAG+
Manufacturer:
Description:
IC DESERIALIZR 622MBPS 24SSOP
Datasheet:
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In Stock : 116
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MAX3681EAG+ Specifications
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PackagingTube
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Product StatusObsolete
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Series*
The MAX3681EAG+ is a high-speed, low-power, and low-jitter integrated circuit chip designed for clock and data recovery (CDR) applications. Some of the advantages and application scenarios of this chip are:Advantages: 1. High-speed operation: The MAX3681EAG+ supports data rates up to 2.7 Gbps, making it suitable for high-speed communication systems. 2. Low power consumption: It operates at a low power supply voltage and consumes minimal power, making it energy-efficient. 3. Low jitter: The chip incorporates a phase-locked loop (PLL) that reduces jitter, ensuring accurate data recovery. 4. Wide input voltage range: It can operate with a wide range of input voltages, providing flexibility in various applications. 5. Small form factor: The chip comes in a compact package, making it suitable for space-constrained designs.Application scenarios: 1. Fiber-optic communication systems: The MAX3681EAG+ can be used in optical transceivers and receivers to recover clock and data signals from optical fibers. 2. High-speed data communication: It is suitable for applications such as high-speed Ethernet, SONET/SDH, and other high-speed data transmission systems. 3. Wireless communication systems: The chip can be used in wireless base stations and receivers to recover clock and data signals from wireless communication channels. 4. Test and measurement equipment: It can be utilized in test and measurement instruments that require accurate clock and data recovery for signal analysis. 5. Data storage systems: The chip can be used in storage devices such as hard disk drives and solid-state drives to recover clock and data signals from storage media.Overall, the MAX3681EAG+ integrated circuit chip offers high-speed, low-power, and low-jitter clock and data recovery capabilities, making it suitable for a wide range of communication and data processing applications.
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