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ADP1032ACPZ-2-R7 数据表(PDF) 29 Page - Analog Devices |
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ADP1032ACPZ-2-R7 数据表(HTML) 29 Page - Analog Devices |
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29 / 37 page ![]() Data Sheet ADP1032 Rev. 0 | Page 29 of 37 APPLICATIONS INFORMATION COMPONENT SELECTION Feedback Resistors The ADP1032 provides an adjustable output voltage for the flyback regulator. An external resistor divider sets the output voltage, for which the divider output must equal the appropriate feedback reference voltage, VFB1. To limit the output voltage accuracy degradation due to the feedback bias current, ensure that the current through the divider is at least 10 times IFB1. The recommended first feedback resistor (RFB1) values are in the range of 50 kΩ to 250 kΩ to minimize the output voltage error due to the bias current and to lessen the power dissipation across the feedback resistors. The external feedback resistors are not required for the fixed output versions because the feedback resistors are already inside the chip. VOUT1 6V TO 28V Tx1 VINP FB1 VOUT1 VINP SWP CFLYBK SGND2 D1 RFT1 RFB1 FLYBACK 1:1 10µF Figure 72. Flyback Regulator Output Voltage Setting Set the positive output for the flyback regulator by using the following equation: VOUT1 = VFB1 × (1 + (RFT1/RFB1)) where: VOUT1 is the flyback output voltage. VFB1 is the flyback feedback voltage. RFT1 is the feedback resistor from VOUT1 to FB1. RFB1 is the feedback resistor from FB1 to SGND2. Conversely, calculate the value of the top resistor for the target VOUT1 by: RFT1 = RFB1 × ((VOUT1/VFB1) − 1) Table 16. Recommended Feedback Resistor Values Desired Output Voltage (V) Flyback Regulator RFT1 (MΩ) RFB1 (kΩ) Calculated Output Voltage (V) 6 0.715 110 6.000 9 1.24 121 8.998 12 1.54 110 12.000 15 2.15 121 15.015 24 3.48 120 24.000 28 3.4 100 28.000 Capacitor Selection Higher output capacitor values reduce the output voltage ripple and improve the load transient response. When choosing this value, it is also important to account for the loss of capacitance due to the output voltage dc bias. Ceramic capacitors are manufactured with a variety of dielectrics, each with a different behavior over temperature and applied voltage. Capacitors must have a dielectric adequate to ensure the minimum capacitance over the necessary temperature range and dc bias conditions. X5R or X7R dielectrics with voltage ratings of 25 V to 50 V (depending on output) are recommended for best performance. Y5V and Z5U dielectrics are not recommended for use with any dc-to-dc converter because of their poor temperature and dc bias characteristics. Calculate the worst case capacitance accounting for capacitor variation over temperature, component tolerance, and voltage using the following equation: CEFFECTIVE = CNOMINAL × (1 − TEMPCO) × (1 − DCBIASCO) × (1 − Tolerance) where: CEFFECTIVE is the effective capacitance at the operating voltage. CNOMINAL is the nominal capacitance shown in this data sheet. TEMPCO is the worst case capacitor temperature coefficient. DCBIASCO is the dc bias derating at the output voltage. Tolerance is the worst case component tolerance. To guarantee the performance of the device, it is imperative to evaluate the effects of dc bias, temperature, and tolerances on the behavior of the capacitors for each application. Capacitors with lower effective series resistance (ESR) and effective series inductance (ESL) are preferred to minimize voltage ripple. FLYBACK REGULATOR COMPONENTS SELECTION Input Capacitor An input capacitor must be placed between the VINP pin and ground. Ceramic capacitors greater than or equal to 3.3 μF over temperature and voltage are recommended. The input capacitor reduces the input voltage ripple caused by the switching current. Place the input capacitor as close as possible to the VINP pin and PGNDP pin to reduce input voltage spikes. The voltage rating of the input capacitor must be greater than the maximum input voltage. Output Capacitor Higher output capacitor values reduce the output voltage ripple and improve load transient response. When choosing this value, it is also important to account for the loss of capacitance due to the output voltage dc bias. A 10 μF capacitor is recommended as a balance between performance and size. |
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