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USB7056 数据表(PDF) 33 Page - Microchip Technology |
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USB7056 数据表(HTML) 33 Page - Microchip Technology |
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33 / 55 page ![]() 2022 Microchip Technology Inc. and its subsidiaries DS00002675F-page 33 USB7056 8.2.1.1 Port Power Control Using Poly Fuse When using the device with a poly fuse, there is no need for an output power control. A single port power control and over-current sense for each downstream port is still used from the Hub's perspective. When disabling port power, the driver will actively drive a '0'. This will have no effect as the external diode will isolate pin from the load. When port power is enabled, it will disable the output driver and enable the pull-up resistor. This means that the pull-up resistor is providing 3.3 volts to the anode of the diode. If there is an over-current situation, the poly fuse will open. This will cause the cath- ode of the diode to go to 0 volts. The anode of the diode will be at 0.7 volts, and the Schmidt trigger input will register this as a low resulting in an over-current detection. The open drain output does not interfere. 8.3 Power Delivery Power Delivery (PD) defines a mechanism for USB devices to negotiate for additional current and/or higher or lower voltages from VBUS than are defined in the original USB 2.0, USB 3.0, or BC 1.2 specifications. The standard allows a maximum supply of 100 W. Devices obtain the power required to operate from VBUS and have the ability to negotiate power levels with external power sources. A half-duplex protocol has been developed for power providers and consumers to negotiate power over VBUS via a modulation scheme. This serial connection has a data rate of approximately 400 kbps. USB Power Delivery Specification v3.0 defines a mechanism in which the hub shall support the capability to return the PD specific capabilities of a device that is attached to any of its PD enabled downstream ports. Therefore, a mechanism is provided in which the USB7056 is able to extract the capabilities of the device from the port power controller and sup- ply this information to the hub. The USB7056 supports USB Power Delivery with up to 100W of power and Alternate Modes on the upstream port. Downstream port one supports native basic Type-C with integrated CC logic. The USB Power Delivery firmware stack is executed within the hub and can control a Microchip UPD360/UPD350 (or equivalent) companion Type-C controller. The downstream Type-C port includes an internal USB 3.2 Gen 1 multiplexer; no external multiplexer is required for Type-C support. All Power Delivery messages from the USB Host are handled in firmware. Each PD message is stored in a buffer for the firmware to read. Responses are sent from a buffer populated by firmware. All PD class-specific requests are sup- ported (GetBatteryStatus, SetPDFeature) as well as four USB device requests (WRITE_REG, READ_REG, WRITE_MEM, READ_MEM). For detailed information on utilizing the Power Delivery feature, refer to the application note “Power Delivery with Micro- chip USB705x Hubs ”, which can be found on the Microchip USB7056 product page at www.microchip.com/USB7056. FIGURE 8-3: PORT POWER CONTROL USING A POLY FUSE PRT_CTLx 50k PRTPWR OCS USB Device Pull-Up Enable 5V Poly Fuse FILTER |
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