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UCS1001 Datasheet(PDF) 32 Page - Microchip Technology |
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UCS1001 Datasheet(HTML) 32 Page - Microchip Technology |
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32 / 59 page ![]() USB Port Power Controller with Charger Emulation Datasheet Revision 1.2 (05-21-12) 32 SMSC UCS1001 DATASHEET 4.2.3 Back-voltage Detection Whenever the following conditions are true, the port power switch will be disabled, the VBUS bypass switch will be disabled, the high-speed data switch will be disabled, and a Back-voltage event will be flagged. This will cause the UCS1001 to enter the Error power state (see Section 4.1.5, "Error State Operation"). 1. The VBUS voltage exceeds the VS voltage by VBV_TH and the port power switch is closed. The port power switch will be opened immediately. If the condition lasts for longer than tMASK, then the UCS1001 will enter the Error state. Otherwise, the port power switch will be turned on as soon as the condition is removed. 2. The VBUS voltage exceeds the VDD voltage by VBV_TH and the VBUS bypass switch is closed. The bypass switch will be opened immediately. If the condition lasts for longer than tMASK, then the UCS1001 will enter the Error state. Otherwise, the bypass switch will be turned on as soon as the condition is removed. 4.2.4 Back-drive Current Protection If a portable device is attached that is self-powered, it may drive the VBUS port to its power supply voltage level; however, the UCS1001 is designed such that leakage current from the VBUS pins to the VDD or VS pins shall not exceed IBD_1 (if the VDD voltage is zero) or IBD_2 (if the VDD voltage exceeds VDD_TH). 4.2.5 Under-voltage Lockout on VS The UCS1001 requires a minimum voltage (VS_UVLO) be present on the VS pin for Active power state. 4.2.6 Over-voltage Detection and Lockout on VS The UCS1001 port power switch will be disabled if the voltage on the VS pin exceeds a voltage (VS_OV) for longer than the specified time (tMASK). This will cause the device to enter the Error state. 4.3 Discrete Input Pins APPLICATION NOTE: If it is necessary to connect any of the control pins except the ILIM or SEL pins via a resistor to VDD or GND, the resistor value should not exceed 100 k in order to meet the VIH and VIL specifications. 4.3.1 ILIM Input The ILIM input determines the initial ILIM setting, as shown in Table 6.1, "UCS1001 ILIM Selection". 4.3.2 SEL Input The SEL pin selects the polarity of the PWR_EN control. If the SEL pin is high, the PWR_EN control is active high enable. If the SEL pin is low, the PWR_EN control is active low enable. This pin state is latched upon device power-up and further changes will have no effect on the PWR_EN control polarity. APPLICATION NOTE: If it is necessary to connect the SEL pin to ground via a resistor, a value less than 33k must be used. If it is necessary to connect the SEL pin to VDD via a resistor, the pull-up resistor may be any value up to 100 k . |
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