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ADP7183ACPZN3.0-R7 数据表(PDF) 14 Page - Analog Devices |
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ADP7183ACPZN3.0-R7 数据表(HTML) 14 Page - Analog Devices |
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14 / 19 page ![]() ADP7183 Data Sheet Rev. 0 | Page 14 of 19 START-UP TIME When the output is enabled, the ADP7183 uses an internal soft start to limit the inrush current. The start-up time for a −1.2 V output is approximately 12 ms from the time the EN active threshold is crossed to the time when the output reaches 90% of its final value (see Figure 44). As shown in Figure 44 and Figure 45, the start-up time is dependent upon the output voltage option and the value of the CAFB capacitor. TIME (ms) EN VOUT = –4.5V VOUT = –3.3V VOUT = –2.5V VOUT = –1.2V –6 –5 –4 –3 –2 –1 0 1 0 5 10 15 20 25 30 35 40 45 50 55 60 65 70 75 80 Figure 44. Start-Up Time at Various Output Voltages, CAFB = 10 nF, CA = 1 μF The total start-up time depends mostly on the CA and CAFB values expressed by the τ1 and τ2 equations (see Equation 1 and Equation 2). During startup, an internal circuit, GM_START, turns on and helps charge CA up to 90% of the final value. Estimate the first time constant, τ1, due to CA by τ1 ≈ CA × ((R1 + R2) // ZOUT) (2) During this time, keep ZOUT low to approximately 1 kΩ to allow quick start-up times, keeping τ1 in the order of 1 ms. TIME (ms) –4.5 –4.0 –3.5 –3.0 –2.5 –2.0 –1.5 –1.0 –0.5 0 0.5 10 30 50 70 90 110 130 150 170 190 210 230 EN CAFB = 1nF CAFB = 10nF CAFB = 100nF CAFB = 1µF Figure 45. Start-Up Time at Various CAFB Capacitor Values, CA = 1 μF A second time constant, τ2, is dependent mainly on CAFB. Figure 45 shows how the CAFB value affects the start-up time. Estimate τ2 by τ2 ≈ CAFB × R1 (3) The R1 value scales vs. the VOUT option. Table 6 shows the R1 value depending on the fixed output voltage option, whereas R2 is constant at 500 kΩ. For example, at a fixed VOUT = −3.3 V, R1 is equal to 2.8 MΩ. To keep τ2 at a minimum, it is recommended that CAFB be in the approximately nanofarad range. A typical setup for the ADP7183 is CAFB = 10 nF; therefore, τ2 = 28 ms. The total time constant, τTOTAL, is the sum of τ1 and τ2. At 2.2 × τTOTAL, VA is equal to ~90% of the final value. Therefore, for a fixed VOUT = −3.3 V, the output voltage is ~90% of the final value after 63.8 ms. Table 6. R1 and R2 Values for the Fixed Output Options Output Voltage (V) R1 (Ω) R2 (kΩ) −1.2 700 k 500 −2.5 2 M 500 −3.3 2.8 M 500 −4.5 4 M 500 Note that τ1 and τ2 are estimates only and do not take into account that GM and ZOUT dynamically change. It is an accurate estimate of ~90% of the start-up time for the CAFB < 10 nF recommended setup, where ~100% of the settling time can easily be achieved. Note that for setups with CAFB >> 10 nF, the equation may not hold true anymore. However, it is still a convenient estimate on the amount of time needed to achieve ~100% of the settling time. |
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