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MC100H604FNR2G Specifications
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TypeParameter
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Supplier Device Package28-PLCC (11.51x11.51)
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Package / Case28-LCC (J-Lead)
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Mounting TypeSurface Mount
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Features-
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Operating Temperature0°C ~ 85°C (TA)
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Data Rate-
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Output TypeDifferential
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Output SignalECL
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Input SignalTTL
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Channels per Circuit6
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Number of Circuits1
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Channel TypeUnidirectional
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Translator TypeMixed Signal
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PackagingTape & Reel (TR)
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Product StatusObsolete
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Series100H
The CLVCC3245AIDBREP is a specific integrated circuit chip designed by Texas Instruments. It is a voltage level translator and bus transceiver chip with 8-bit bidirectional voltage-level translation capabilities. Here are some advantages and application scenarios of this chip:Advantages: 1. Bidirectional voltage-level translation: The CLVCC3245AIDBREP chip allows bidirectional translation between different voltage levels, making it suitable for interfacing between devices operating at different voltage levels. 2. Wide voltage range: It supports translation between voltage levels ranging from 1.2V to 3.6V, providing flexibility in connecting devices with varying voltage requirements. 3. High-speed operation: The chip is designed to operate at high speeds, making it suitable for applications requiring fast data transfer rates. 4. Low power consumption: It is designed to consume low power, making it suitable for battery-powered devices or applications where power efficiency is crucial. 5. ESD protection: The chip provides built-in electrostatic discharge (ESD) protection, ensuring robustness and reliability in harsh environments.Application scenarios: 1. Interfacing between different logic families: The CLVCC3245AIDBREP chip can be used to interface between devices operating at different logic voltage levels, such as connecting a microcontroller operating at 3.3V to a sensor operating at 1.8V. 2. Level shifting in communication interfaces: It can be used in various communication interfaces, such as UART, SPI, or I2C, to enable communication between devices operating at different voltage levels. 3. Mixed voltage systems: The chip is suitable for applications where different components or subsystems operate at different voltage levels, such as mixed voltage systems in automotive electronics, industrial automation, or consumer electronics. 4. Battery-powered devices: Due to its low power consumption, the chip can be used in battery-powered devices, such as portable electronics or IoT devices, to efficiently translate voltage levels while minimizing power drain. 5. ESD-sensitive environments: The built-in ESD protection makes the chip suitable for applications where electrostatic discharge is a concern, such as in industrial environments or automotive electronics.It is important to note that the specific advantages and application scenarios may vary depending on the requirements and specifications of the overall system design.
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