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ADP5350ACPZ-1-R7 Datenblatt(PDF) 59 Page - Analog Devices |
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ADP5350ACPZ-1-R7 Datenblatt(HTML) 59 Page - Analog Devices |
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59 / 63 page ![]() Data Sheet ADP5350 Rev. B | Page 59 of 63 CFL2 Capacitor Selection The CFL2 pin is the internal regulator output that provides the power supply for post stage control circuits, including the fuel gauge, boost LED, and LDOs. To ensure stable performance of the internal regulator, the recommended components for the CFL2 capacitor are given in Table 85. ISOS and ISOB Capacitor Selection 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 output voltage dc bias. To guarantee the performance of the charger in various operation modes, including trickle charge, CC charge, and CV charge, it is imperative that the effects of dc bias, temperature, and tolerances on the behavior of the capacitors be evaluated for each application. The peak-to-peak output voltage ripple for the selected output capacitor and inductor values is calculated using the following equation: OUT SW RIPPLE RIPPLE C f I V × × = 8 Capacitors with lower effective series resistance (ESR) are preferable to guarantee low output voltage ripple, as shown in the following equation: RIPPLE RIPPLE COUT I V ESR ≤ Table 83. Suggested VBUSx Capacitors Vendor Part Number Value (µF) Voltage (V) Size Murata GRM188R61E225K 2.2 25 0603 TDK C1608X5R1E225 2.2 25 0603 Table 84. Suggested CFL1 Capacitors Vendor Part Number Value (µF) Voltage (V) Size Murata GRM188R60J475K 4.7 6.3 0603 TDK C1608X5R0J475K 4.7 6.3 0603 Table 85. Suggested CFL2 Capacitors Vendor Part Number Value (µF) Voltage (V) Size Murata GRM188R60J225K 2.2 6.3 0603 TDK C1608X5R0J475K 2.2 6.3 0603 Table 86. Suggested ISOS and ISOB Capacitors Vendor Part Number Value (µF) Voltage (V) Size Murata GRM188R60J106K 10 6.3 0603 TDK C1608X5R0J106M080AB 10 6.3 0603 LDO Capacitor Selection Connecting a 1 μF capacitor from VIN123 to AGND reduces the circuit sensitivity to the PCB layout, especially when long input traces or high source impedance are encountered. The ADP5350 is designed for operation with small, space-saving ceramic capacitors, but functions with most commonly used capacitors as long as care is taken with regard to the ESR value. The ESR of the output capacitor affects the stability of the LDO control loop. A minimum of 1 μF capacitance with an ESR of 1 Ω or less is recommended to ensure stability of the ADP5350. Transient response to changes in load current is also affected by output capacitance. Using a larger value of output capacitance improves the transient response of the ADP5350 to large changes in load current. Table 87. Suggested LDO Capacitors Vendor Part Number Value (µF) Voltage (V) Size Murata GRM155R60J105KE19D 1 6.3 0402 TDK CGB2A3X5R0J105M033BB 1 6.3 0402 Boost Capacitor Selection The ADP5350 requires input and output decoupling capacitors to supply transient currents while maintaining a constant input and output voltage. Use a low ESR input capacitor, 4.7 μF or greater, to prevent noise at the VIN4 node. Place the capacitor between the VIN4 pin and PGND4 as close to the ADP5350 as possible. Ceramic capacitors are preferred because of their low ESR characteristics. The output capacitor maintains the output voltage and supplies current to the load while the boost switch is on. The value and characteristics of the output capacitor greatly affect the output voltage ripple and stability of the regulator. Use a low ESR output capacitor; ceramic dielectric capacitors are preferred. For very low ESR capacitors, such as ceramic capacitors, the ripple current due to the capacitance is calculated as follows. Because the capacitor discharges during the on time the charge removed from the capacitor is the load current multiplied by the on time. Choose the output capacitor based on the following equation: ( ) RIPPLE4 OUT4 SW4 IN4 OUT4 L OUT4 V V f V V I C × × − × ≥ 2 where: IL2 is the average inductor current. VRIPPLE4 is boost output voltage ripple. Table 88. Suggested Boost Capacitors Vendor Part Number Value (µF) Voltage (V) Size Murata GRM188R61C475ME11 4.7 25 0603 TDK C1608X5R1E475M080AC 4.7 25 0603 Murata GRM188R61E106MA73 10 25 0603 TDK C1608X5R1E106M080AC 10 25 0603 |
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