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TMUX1102DBVR.A 数据表(PDF) 20 Page - Texas Instruments |
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TMUX1102DBVR.A 数据表(HTML) 20 Page - Texas Instruments |
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20 / 38 page ![]() 9 Application and Implementation Note Information in the following applications sections is not part of the TI component specification, and TI does not warrant its accuracy or completeness. TI’s customers are responsible for determining suitability of components for their purposes, as well as validating and testing their design implementation to confirm system functionality. 9.1 Application Information The TMUX11xx family offers ultra-low input and output leakage currents and low charge injection. These devices operate up to 5.5V, and offer true rail-to-rail input and output of both analog and digital signals. The TMUX110x have a low on-capacitance which allows faster settling time when multiplexing inputs in the time domain. These features make the TMUX11xx devices a family of precision, high-performance switches and multiplexers for low-voltage applications. 9.2 Typical Application - Sample-and-Hold Circuit One useful application to take advantage of the TMUX1101 and TMUX1102's performance is the sample-and- hold circuit. A sample-and-hold circuit can be useful for an analog to digital converter (ADC) to sample a varying input voltage with improved reliability and stability. It can also be used to store the output samples from a single digital-to-analog converter (DAC) in a multi-output application. A simple sample-and-hold circuit can be realized using an analog switch such as the TMUX1101, and TMUX1102 analog switches. Figure 9-1 shows a single channel sample-and hold circuit using either of the TMUX110x devices. + ± + ± OP AMP OP AMP TMUX110x V OUT SEL C H DAC C L R L (1.8V Capable Control Logic) Figure 9-1. Single Channel Sample-and-Hold Circuit Example An optional op amp is used before the switch since driving large capacitive loads is a typical limitation of buffered DACs. The additional buffer stage is included following the DAC to prevent potential stability problems from driving a large capacitive load. Generally, the switch delivers only the input signals to the holding capacitors. However, when the switch is toggled, some amount of charge is transferred to the switch output in the form of charge injection, resulting in a pedestal sampling error. The TMUX1101 and TMUX1102 switches have excellent charge injection performance of only -1.5pC, making them excellent choices for this implementation to minimize sampling error. The pedestal error voltage is indirectly related to the size of the capacitance on the output, for better precision a larger capacitor is required due to charge injection. TMUX1101, TMUX1102 SCDS410D – MARCH 2019 – REVISED FEBRUARY 2024 www.ti.com 20 Submit Document Feedback Copyright © 2024 Texas Instruments Incorporated Product Folder Links: TMUX1101 TMUX1102 |
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