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UPD1002 데이터시트(PDF) 29 Page - Microchip Technology |
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UPD1002 데이터시트(HTML) 29 Page - Microchip Technology |
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29 / 46 page ![]() 2014 Microchip Technology Inc. DS00001760B-page 29 UPD1002 3.3.4.2 PD Consumer Capabilities The USB PD Consumer capabilities may be selected via the CFG_SEL0 and CFG_SEL1 pins, as defined in Section 3.3, "Configuration Selection (CFG_SEL0/CFG_SEL1)". Each of the PD Consumer capabilities are detailed below. VSafe5V-NC (5V@0A) The Consumer Capability Profile for VSafe5V Non-Consuming indicates to the UPD1002 that this solution must have only 5 V input sources and must not consume. This is typically used in dual-role ports that offer no capability in their default role (e.g., a Standard-B Consumer-Provider hub UFP). Additionally, even if not explicitly listed, this capability is supported by all consumers that support no other 5V capability (per the Power Delivery Specification). 12V@1.5A The Consumer Capability 12V@1.5A indicates that the UPD1002 must have only 12 V input sources and must have at least 1.5 A of input current for full-featured operation. 12V@3A The Consumer Capability 12V@3A indicates that the UPD1002 must have only 12 V input sources and must have at least 3 A of input current for full-featured operation. 12V@5A The Consumer Capability 12V@5A indicates that the UPD1002 must have only 12 V input sources and must have at least 5 A of input current for full-featured operation. 20V@3A The Consumer Capability 20V@3A indicates that the UPD1002 must have only 20 V input sources and must have at least 3 A of input current for full-featured operation. 20V@5A The Consumer Capability 20V@5A indicates that the UPD1002 must have only 20 V input sources and must have at least 5 A of input current for full-featured operation. 3.4 Voltage/Current Monitors (VMON/IMON) 3.4.1 VMON The integrated voltage monitor utilizes the VMON pin to read a stepped down voltage representation of the VBUS volt- age. This pin must be connected to a voltage divider circuit as specified in Section 2.4, "Power Connection Diagram," on page 22. The device monitors the VBUS voltage as a provider to manage the behavior of the power supply, detecting power supply transitions and over/under-voltage conditions. The device also monitors the VBUS voltage as a consumer for the following purposes: • To verify the source provided voltage is within range after reception of the PS_RDY message and before asserting the PD_GOOD signal. • To monitor for occurrence of overvoltage or undervoltage exception conditions for the negotiated contract, upon which PD_GOOD will be de-asserted. 3.4.1.1 Power Supply Transitions Using VMON, the device monitors the voltage on VBUS to manage the transitions of the supply output. The supply power-on and power-off transitions are determined to be at their final states when reaching predefined voltage thresh- olds, as detailed in Table 3-4. The power-on threshold indicates when the supply has reached the defined voltage. The power-off threshold indicates when the supply output is discharged. All voltage transitions are bound by an internal timer. If the voltage transition times out, the FAULT_N pin will be asserted until the power transition is successfully com- pleted. TABLE 3-4: VMON POWER-ON/OFF TRANSITION THRESHOLDS Voltage Threshold (V) Min. Typical Max Power-On -3- Power-Off -2- |
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