banner

產(chǎn)品搜索

庫(kù)存索引 : a b c d e f g h i j k l m n o p q r s t u v w x y z 1 2 3 4 5 6 7 8 9

您現(xiàn)在所在位置:首頁(yè) > 產(chǎn)品展示 > 威盛 VL102-Q4(A0) 用于USB-C設(shè)備的芯片

產(chǎn)品展示 / Products

威盛 VL102-Q4(A0) 用于USB-C設(shè)備的芯片

威盛 VL102-Q4(A0) 用于USB-C設(shè)備的芯片
型號(hào): VL102-Q4(A0)
廠 商:
品牌/商標(biāo): VIA/威盛
產(chǎn)品類別: VIA-
聯(lián)系人: 顏先生/William
電話: 0755-82170220,21001680
 

產(chǎn)品詳情

威盛 VL102-Q4(A0) 用于USB-C設(shè)備的芯片


System Overview

VIA Lab's VL102 is a highly integrated single chip DisplayPort Alternate mode and Power Delivery 3.0 controller for USB-C devices that designed for applications like USB-C video adapters and USB-C multi-function docking stations. Integrated USB-C charging UFP, VL102 can perform DP alt-mode video out functionality and simultaneously enable charging connected PD host once external power is detected. Integrated USB-C DRP can either connect to USB-C power adapter to charge PD host or connect to USB-C devices to do data transfer. A D+/D- charging ePHY is integrated to support chargers using D+/D- to do protocol handshake. VL 102's Device Policy Manager could negotiate power rules between its DRP and UFP then enable power charging-through. Charging a host under dead battery mode and fast role swap are supported. SBU1/SBU2 switch is built-in to support USB-C cable flipping feature. USB Billboard device and USB-C bridge function are implemented to meet "VESA DP Alt-Mode on USB Type-C" spec and let the USB host to communicate with PD products connected on downstream port. 

Built-in required linear voltage regulators, Vbus voltage detector, and Vbus current detector, VL102 can work perfectly with power input either from Vconn power or from Vbus power and can monitor abnormal power behavior. Up to 9 GPIO pins are available for power discharge control, power switch control, data switch control, or other special application usage. The SPI interface can support external flash for firmware upgrades through USB Billboard device. VL102 is available in QFN 48L (6x6x0.85 mm) green packages to fit small form-factor design.