SN74S181N
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SN74S181N
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Description:
ARITHMETIC LOGIC UNIT
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In Stock : 6106
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SN74S181N Specifications
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Product StatusActive
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Series*
The 74GTLP2033DGVRG4 integrated circuit chip is a GTLP/PECL (Gunning Transceiver Logic/Positive Emitter-Coupled Logic) receiver chip with a 2:1 multiplexer. Here are some advantages and application scenarios for this chip:Advantages: 1. High-speed operation: The GTLP/PECL technology allows for high-speed data transmission, making it suitable for applications requiring fast and efficient communication. 2. Low power consumption: The chip is designed to consume low power, which helps in reducing energy consumption and extending battery life in portable applications. 3. Noise immunity: The GTLP/PECL receivers are known for their relatively higher noise immunity, making them suitable for noisy environments where signal integrity is crucial. 4. Wide supply voltage range: The chip operates over a wide supply voltage range (2.3V to 3.8V), providing flexibility in different voltage-level applications. 5. Small form factor: The chip is available in a small package (VSSOP), making it suitable for space-constrained designs.Application scenarios: 1. High-speed data communication: The chip can be used in applications that require high-speed data transmission, such as telecommunications, networking, and data centers. 2. Signal reception in noisy environments: The noise immunity of GTLP/PECL receivers makes them suitable for applications where the signals are prone to interference, like industrial automation or automotive systems. 3. Bus interface: The chip's 2:1 multiplexer feature makes it suitable for applications where two different data sources need to be selectively connected to a single data receiver, such as memory interface multiplexing. 4. Portable devices: The low power consumption of the chip makes it suitable for power-constrained portable devices, such as smartphones, tablets, or wearables. 5. High-speed test and measurement equipment: The chip can be used in test and measurement equipment that requires high-speed data acquisition and signal reception.It is important to note that the specific advantages and application scenarios could vary depending on the overall system requirements and design considerations.
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