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LP2992IM5-3.0/NOPB 数据表(PDF) 24 Page - Texas Instruments |
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LP2992IM5-3.0/NOPB 数据表(HTML) 24 Page - Texas Instruments |
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24 / 43 page ![]() Do not locate the output capacitor more than 1cm from the output pin. Make sure the output capacitor returns to a clean analog ground. 7.1.5.1.1 Tantalum Capacitors (Legacy Chip) Tantalum capacitors are less desirable than ceramics for use as output capacitors because these components are more expensive when comparing equivalent capacitance and voltage ratings in the 1µF to 4.7µF range. Another important consideration is that tantalum capacitors have higher ESR values than equivalent size ceramics. This condition means that although finding a Tantalum capacitor with an ESR value within the stable range is possible, the capacitor is larger in capacitance (which means bigger and more costly) than a ceramic capacitor with the same ESR value. The ESR of a typical tantalum increases approximately 2:1 as the temperature goes from 25°C down to −40°C, so allow for some guard band. 7.1.5.2 Recommended Capacitors (New Chip) 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 listed in the Recommended Operating Conditions account for an effective capacitance of approximately 50% of the nominal value. 7.1.6 Reverse Current Excessive reverse current can damage this device. Reverse current flows through the intrinsic body diode of the pass transistor instead of the normal conducting channel. At high magnitudes, this current flow degrades the long-term reliability of the device. Conditions where reverse current can occur are outlined in this section, all of which can exceed the absolute maximum rating of VOUT ≤ VIN + 0.3 V. • If the device has a large COUT and the input supply collapses with little or no load current • The output is biased when the input supply is not established • The output is biased above the input supply If reverse current flow is expected in the application, use external protection to protect the device. Reverse current is not limited in the device, so external limiting is required if extended reverse voltage operation is anticipated. Figure 7-1 shows one approach for protecting the device. IN OUT GND CIN GND GND COUT GND Internal Body Diode Schottky Diode Figure 7-1. Example Circuit for Reverse Current Protection Using a Schottky Diode LP2992 SNVS171L – NOVEMBER 2001 – REVISED FEBRUARY 2025 www.ti.com 24 Submit Document Feedback Copyright © 2025 Texas Instruments Incorporated Product Folder Links: LP2992 |
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