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MP5414 Datasheet(PDF) 21 Page - Monolithic Power Systems |
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MP5414 Datasheet(HTML) 21 Page - Monolithic Power Systems |
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21 / 22 page ![]() MP5414—PMU FOR 3D GLASSES MP5414 Rev.1.12 www.MonolithicPower.com 21 12/13/2012 MPS Proprietary Information. Patent Protected. Unauthorized Photocopy and Duplication Prohibited. © 2012 MPS. All Rights Reserved. Setting the LDO Output Voltage The LDO output voltage can be also adjusted by using an external resistor divider (R3 and R4 in the Functional Block Diagram). However, the value of R3 and R4 in series should not exceed 100kΩ to minimize the impact on the internal resistor divider. To accurately set the output voltage, use 10kΩ ( ±1%) for the low-side resistor (R4), and determine the value of the high-side resistor R3 using the following equation: LDOOUT LDOFB LDOFB VV R3 R4 V ⎛⎞ − =× ⎜⎟ ⎝⎠ Where VLDOFB is the OUT feedback threshold voltage equal to 1.222V. For example, for a 2.5V output 2.5V 1.222V R3 10.41k 1.222V 10k − == Ω ⎛⎞ ⎜⎟ Ω ⎝⎠ You can select a standard 10.5kΩ ( ±1%) resistor for R3. The following table lists the selected standard R3 values for correlated with their output voltages: Table 3—Adjustable LDO Output Voltage R3 Values VLDOOUT (V) R3 (Ω) R4 (Ω) 1.25 232 1.5 2.26k 1.8 4.75k 2 6.34k 2.5 10.5k 2.8 13k 3 14.7k 3.3 16.9k 4 22.6k 5 30.9k 10k Selecting the LDO Input Capacitor For proper operation, place a ceramic capacitor (C4) between 1µF and 10µF of dielectric type X5R or X7R between the LDOIN pin and ground. Larger values in this range will help improve line transient response at the cost of increased size. Selecting the LDO Output Capacitor For stable operation, use a ceramic capacitor of type X5R or X7R between 1µF and 10µF for the LDOOUT capacitor, C6. Larger values in this range will help improve load transient response and reduce noise at the cost of increased size. Other dielectric types can be used, but their temperature-sensitivity can unduly influence their capacitances. To improve load transient response, add a small ceramic (X5R, X7R or Y5V dielectric) 100nF feed-forward capacitor in parallel with R3. The feed-forward capacitor is not required for stable operation. Layout Considerations Proper layout of the high frequency switching path is critical to limit noise issues and electromagnetic interference. The circuit loop from BSTOUT pin, output capacitor to BSTGND pin is flowing with high frequency pulse current. It must be as short as possible. The BSTIN pin is the power supply input for the internal MOSFET switch gate driver and the internal control circuitry and requires decoupling. For the LDO, the input and output need bypass ceramic capacitors close to the LDOIN pin and LDOOUT pin respectively. Ensure all feedback connections are short and direct. Place the feedback resistors and compensation components as close to the chip as possible. Connect LDOIN, LDOOUT and especially LDOGND respectively to a large copper area to cool the chip to improve thermal performance and long-term reliability. See the MP5414 demo board layout for reference. |
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