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USB84604 数据表(PDF) 21 Page - Microchip Technology |
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USB84604 数据表(HTML) 21 Page - Microchip Technology |
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21 / 61 page ![]() 2014-2016 Microchip Technology Inc. DS60001295C-page 21 USB84604 4.0 POWER CONNECTIONS 4.1 Integrated Power Regulators The integrated 3.3 V and 1.2 V power regulators provide flexibility to the system in providing power the device. Several different configurations are allowed in order to align the power structure to supplies available in the system. The regulators are controlled by RESET_N. When RESET_N is brought high, the 3.3 V regulator will turn on. When RESET_N is brought low the 3.3 V regulator will turn off. 4.1.1 3.3 V REGULATOR The device has an integrated regulator to convert from VBAT to 3.3 V. 4.1.2 1.2 V REGULATOR The device has an integrated regulator to convert from a variable voltage input on VDDCOREREG to 1.2 V. The 1.2 V regulator is tolerant to the presence of low voltage (~0 V) on the VDDCOREREG pin in order to support system power solutions where a supply is not always present in low power states. The 1.2 V regulator supports an input voltage range consistent with a 1.8 V input in order to reduce power consumption in systems which provide multiple power supply levels. In addition, the 1.2 V regulator supports an input voltage up to 3.3 V for systems which provide only a single power supply. The device will support operation where the 3.3 V regulator output can drive the 1.2 V regulator input such that VBAT is the only required supply. 4.2 Power Configurations The device supports operation with no back current when power is connected in each of the following configurations. Power connection diagrams for these configurations are included in Section 4.3, "Power Connection Diagrams," on page 22. 4.2.1 SINGLE SUPPLY CONFIGURATIONS 4.2.1.1 VBAT Only VBAT may be tied to the VBAT system supply. VDD33, VDDA33, and VDDCOREREG must be tied together on the board. In this configuration the 3.3 V and 1.2 V regulators will be active. For HSIC operation, VDD12 may be tied to VDDCR12. 4.2.1.2 3.3 V Only VBAT may be tied to the 3.3 V system supply. VDD33, VDDA33, and VDDCOREREG must be tied together on the board. In this configuration the 3.3 V regulator will operate in dropout mode and the 1.2 V regulator will be active. For HSIC operation, VDD12 may be tied to VDDCR12. 4.2.2 DUAL SUPPLY CONFIGURATIONS 4.2.2.1 VBAT + 1.8 V VBAT may be tied to the VBAT system supply. VDDCOREREG may be tied to the 1.8 V system supply. In this configu- ration, the 3.3 V regulator and the 1.2 V regulator will be active. For HSIC operation, VDD12 may be tied to VDDCR12. 4.2.2.2 3.3 V + 1.8 V VBAT may be tied to the 3.3 V system supply. VDDCOREREG may be tied to the 1.8 V system supply. In this configu- ration the 3.3 V regulator will operate in dropout mode and the 1.2 V regulator will be active. For HSIC operation, VDD12 may be tied to VDDCR12. |
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