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MC10H164PG Specifications
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TypeParameter
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Supplier Device Package16-PDIP
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Package / Case16-DIP (0.300", 7.62mm)
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Mounting TypeThrough Hole
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Operating Temperature0°C ~ 75°C
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Voltage - Supply-4.94V ~ -5.46V
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Voltage Supply SourceDual Supply
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Current - Output High, Low-
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Independent Circuits1
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Circuit1 x 3:8
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TypeMultiplexer
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PackagingTube
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PackagingTube
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Product StatusObsolete
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Series10H
The SN74CBTLV3125NSR is a specific integrated circuit chip manufactured by Texas Instruments. It is a quad bus switch with 3-state outputs, designed for low-voltage and low-power applications. Here are some advantages and application scenarios of this chip:Advantages: 1. Low-voltage operation: The SN74CBTLV3125NSR operates at a voltage range of 1.65V to 3.6V, making it suitable for low-power and battery-powered devices. 2. Low power consumption: It has a low power dissipation of 10μW, making it energy-efficient. 3. High-speed switching: The chip offers fast switching times, enabling quick data transfer between different buses. 4. 3-state outputs: The 3-state outputs allow multiple devices to share a common bus without interfering with each other, providing flexibility in system design.Application scenarios: 1. Portable devices: The low-voltage and low-power characteristics of this chip make it suitable for use in portable devices such as smartphones, tablets, and wearable devices. 2. Battery-powered systems: Due to its low power consumption, the chip can be used in battery-powered systems where energy efficiency is crucial, such as IoT devices, remote sensors, and wireless communication modules. 3. Data communication: The high-speed switching capability of the chip makes it suitable for data communication applications, including USB hubs, data switches, and multiplexers. 4. Industrial automation: The chip can be used in industrial automation systems where low-voltage operation and fast switching times are required for efficient control and communication between different components.It is important to note that the specific advantages and application scenarios may vary depending on the requirements of the system and the overall design considerations.
MC10H164PG Relevant information