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TLV704 Datasheet(PDF) 16 Page - Texas Instruments |
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TLV704 Datasheet(HTML) 16 Page - Texas Instruments |
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16 / 29 page ![]() 8 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. 8.1 Application Information The TLV704 LDO regulator is designed for battery-powered applications and is a good attachment to low-power microcontrollers (such as the MSP430) because of the device low IQ performance across the entire load current range. The ultra-low supply current of the TLV704 maximizes efficiency at light loads, and the high input voltage range and flexibility of output voltage selection in fixed output levels makes the device applicable for supplies such as unconditioned solar panels. 8.2 Typical Application IN OUT TLV70433 GND V IN V OUT 0.1μF GND 1μF MCU Figure 8-1. Typical Application 8.2.1 Design Requirements Select the desired device based on the output voltage. Provide an input supply with adequate headroom to account for dropout and output current to account for the GND terminal current, and power the load. 8.2.2 Detailed Design Procedure 8.2.2.1 External Capacitor Requirements The device is designed to be stable using low equivalent series resistance (ESR) ceramic capacitors at the input and output. Multilayer ceramic capacitors have become the industry standard for these types of applications and are recommended, but must be used with good judgment. Ceramic capacitors that employ X7R-, X5R-, and C0G-rated dielectric materials provide relatively good capacitive stability across temperature, whereas the use of Y5V-rated capacitors is discouraged because of large variations in capacitance. Regardless of the ceramic capacitor type selected, the effective capacitance varies with operating voltage and temperature. Generally, expect the effective capacitance to decrease by as much as 50%. The input and output capacitors recommended in the Recommended Operating Conditions table account for an effective capacitance of approximately 50% of the nominal value. 8.2.2.2 Input and Output Capacitor Requirements Although an input capacitor is not required for stability, good analog design practice is to connect a capacitor from IN to GND. This capacitor counteracts reactive input sources and improves transient response, input ripple, and PSRR. Use an input capacitor if the source impedance is more than 0.5 Ω. A higher value capacitor can be necessary if large, fast rise-time load or line transients are anticipated or if the device is located several inches from the input power source. Dynamic performance of the device is improved by using a large output capacitor. Use an output capacitor within the range specified in the Recommended Operating Conditions table for stability. TLV704 SBVS148E – SEPTEMBER 2010 – REVISED DECEMBER 2022 www.ti.com 16 Submit Document Feedback Copyright © 2022 Texas Instruments Incorporated Product Folder Links: TLV704 |
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