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TPD8S300

現行

USB Type-C™ 連接埠保護器:VBUS 短路過電壓和 8 通道 ESD 保護

現在提供此產品的更新版本

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引腳對引腳且具備與所比較裝置相同的功能
TPD8S300A 現行 USB Type-C™ 埠保護器:具有經改善之 OVP 的短路至 VBUS 過電壓和 8 通道 ESD 防護 Improves dead battery performance and keeps the USB Type-C port connected during an IEC 61000-4-2 ESD strike.

產品詳細資料

Number of switches 4 IO capacitance (typ) (pF) 1.5 IEC 61000-4-2 contact (±V) 8000 IEC 61000-4-2 air-gap (±V) 15000 Features CC dead battery resistors, Overvoltage protection, Short-to-VBUS Bi-/uni-directional Unidirectional Rating Catalog Operating temperature range (°C) -40 to 85 Clamping voltage (V) 8 Interface type USB Type-C
Number of switches 4 IO capacitance (typ) (pF) 1.5 IEC 61000-4-2 contact (±V) 8000 IEC 61000-4-2 air-gap (±V) 15000 Features CC dead battery resistors, Overvoltage protection, Short-to-VBUS Bi-/uni-directional Unidirectional Rating Catalog Operating temperature range (°C) -40 to 85 Clamping voltage (V) 8 Interface type USB Type-C
WQFN (RUK) 20 9 mm² 3 x 3
  • 4-Channels of Short-to-VBUS Overvoltage Protection (CC1, CC2, SBU1, SBU2): 24-VDC Tolerant
  • 8-Channels of IEC 61000-4-2 ESD Protection (CC1, CC2, SBU1, SBU2, DP_T, DM_T, DP_B, DM_B)
  • CC1, CC2 Overvoltage Protection FETs 600 mA capable for passing VCONN power
  • CC Dead Battery Resistors integrated for handling dead battery use case in mobile devices
  • 3-mm × 3-mm WQFN Package
  • 4-Channels of Short-to-VBUS Overvoltage Protection (CC1, CC2, SBU1, SBU2): 24-VDC Tolerant
  • 8-Channels of IEC 61000-4-2 ESD Protection (CC1, CC2, SBU1, SBU2, DP_T, DM_T, DP_B, DM_B)
  • CC1, CC2 Overvoltage Protection FETs 600 mA capable for passing VCONN power
  • CC Dead Battery Resistors integrated for handling dead battery use case in mobile devices
  • 3-mm × 3-mm WQFN Package

The TPD8S300 is a single chip USB Type-C port protection solution that provides 20-V Short-to-VBUS overvoltage and IEC ESD protection.

Since the release of the USB Type-C connector, many products and accessories for USB Type-C have been released which do not meet the USB Type-C specification. One example of this is USB Type-C Power Delivery adaptors that only place 20 V on the VBUS line. Another concern for USB Type-C is that mechanical twisting and sliding of the connector could short pins due to the close proximity they have in this small connector. This can cause 20-V VBUS to be shorted to the CC and SBU pins. Also, due to the close proximity of the pins in the Type-C connector, there is a heightened concern that debris and moisture will cause the 20-V VBUS pin to be shorted to the CC and SBU pins.

These non-ideal equipments and mechanical events make it necessary for the CC and SBU pins to be 20-V tolerant, even though they only operate at 5 V or lower. The TPD8S300 enables the CC and SBU pins to be 20-V tolerant without interfering with normal operation by providing overvoltage protection on the CC and SBU pins. The device places high voltage FETs in series on the SBU and CC lines. When a voltage above the OVP threshold is detected on these lines, the high voltage switches are opened up, isolating the rest of the system from the high voltage condition present on the connector.

Finally, most systems require IEC 61000-4-2 system level ESD protection for their external pins. The TPD8S300 integrates IEC 61000-4-2 ESD protection for the CC1, CC2, SBU1, SBU2, DP_T (Top side D+), DM_T (Top Side D–), DP_B (Bottom Side D+), DM_B (Bottom Side D–) pins, removing the need to place high voltage TVS diodes externally on the connector.

The TPD8S300 is a single chip USB Type-C port protection solution that provides 20-V Short-to-VBUS overvoltage and IEC ESD protection.

Since the release of the USB Type-C connector, many products and accessories for USB Type-C have been released which do not meet the USB Type-C specification. One example of this is USB Type-C Power Delivery adaptors that only place 20 V on the VBUS line. Another concern for USB Type-C is that mechanical twisting and sliding of the connector could short pins due to the close proximity they have in this small connector. This can cause 20-V VBUS to be shorted to the CC and SBU pins. Also, due to the close proximity of the pins in the Type-C connector, there is a heightened concern that debris and moisture will cause the 20-V VBUS pin to be shorted to the CC and SBU pins.

These non-ideal equipments and mechanical events make it necessary for the CC and SBU pins to be 20-V tolerant, even though they only operate at 5 V or lower. The TPD8S300 enables the CC and SBU pins to be 20-V tolerant without interfering with normal operation by providing overvoltage protection on the CC and SBU pins. The device places high voltage FETs in series on the SBU and CC lines. When a voltage above the OVP threshold is detected on these lines, the high voltage switches are opened up, isolating the rest of the system from the high voltage condition present on the connector.

Finally, most systems require IEC 61000-4-2 system level ESD protection for their external pins. The TPD8S300 integrates IEC 61000-4-2 ESD protection for the CC1, CC2, SBU1, SBU2, DP_T (Top side D+), DM_T (Top Side D–), DP_B (Bottom Side D+), DM_B (Bottom Side D–) pins, removing the need to place high voltage TVS diodes externally on the connector.

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技術文件

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類型 標題 日期
* Data sheet TPD8S300 USB Type-C Port Protector: Short-to-VBUS Overvoltage and IEC ESD Protection datasheet (Rev. B) PDF | HTML 2016年 11月 8日
White paper A Primer on USB Type-C and Power Delivery Applications and Requirements (Rev. B) PDF | HTML 2022年 3月 25日
Technical article USB Type-C™: Will your ESD solution protect the port? PDF | HTML 2016年 11月 21日
Technical article Avoid these challenges when implementing USB Type-C™ protection PDF | HTML 2016年 10月 24日
White paper Circuit protection for your next USB Type-C design white paper 2016年 10月 12日
EVM User's guide TPD8S300 Evaluation Module User's Guide 2016年 7月 7日

設計與開發

如需其他條款或必要資源,請按一下下方的任何標題以檢視詳細頁面 (如有)。

開發板

TPD2S300YFF-EVM — TPD2S300 USB Type-C 過電壓和 ESD 防護評估模組

Texas Instrument’s TPD2S300 evaluation module (EVM) helps designers evaluate the operation and performance of the TPD2S300 device. The TPD2S300 is a single-chip solution for protection of the USB Type-C configuration channels (CC). The device provides Short-to-VBUS Over Voltage Protection up (...)
使用指南: PDF
TI.com 無法提供
開發板

TPD8S300EVM — TPD8S300 USB Type-C™ 過電壓和 IEC ESD 防護評估模組

The TI TPD8S300 evaluation module (EVM) helps designers evaluate the operation and performance of the TPD8S300 device. The TPD8S300 is a single-chip solution for protection of the USB Type-C configuration channel (CC), sideband use channel (SBU), and D+/D- data lines. The device provides short-to-V (...)
使用指南: PDF
TI.com 無法提供
開發板

TPS65981EVM — TPS65981 USB Type-C® 與 USB PD 控制器、電源開關和高速多工器 EVM

TPS65981EVM 是一套適合 USB Type-C 及 PD 應用的完整參考設計,具有可變 DC/DC 架構,可最佳化電路板佈局並盡可能減少 BOM 成本。此外,與 DP-EXPANSION-EVM 搭配時,使用者可模擬功能齊全的 USB Type-C PD 主機或裝置。
使用指南: PDF
TI.com 無法提供
模擬型號

TPD8S300 IBIS Model

SLVMBU1.ZIP (2 KB) - IBIS Model
模擬工具

PSPICE-FOR-TI — PSpice® for TI 設計與模擬工具

PSpice® for TI is a design and simulation environment that helps evaluate functionality of analog circuits. This full-featured, design and simulation suite uses an analog analysis engine from Cadence®. Available at no cost, PSpice for TI includes one of the largest model libraries in the (...)
模擬工具

TINA-TI — 基於 SPICE 的類比模擬程式

TINA-TI provides all the conventional DC, transient and frequency domain analysis of SPICE and much more. TINA has extensive post-processing capability that allows you to format results the way you want them. Virtual instruments allow you to select input waveforms and probe circuit nodes voltages (...)
使用指南: PDF
參考設計

PMP40154 — 具有 HDMI 輸出的 USB Type-C™ 和 USB PD DRP 參考設計

The PMP40154 is a true USB Type-C™ and USB PD DRP reference design.  The reference design supports USB Type-C™ input to HDMI output display. It implements the USB PD controller and power switch TPS65986, and the alternate mode MUX HD3SS460. It is fully compatible with (...)
Test report: PDF
電路圖: PDF
封裝 針腳 CAD 符號、佔位空間與 3D 模型
WQFN (RUK) 20 Ultra Librarian

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  • 產品標記
  • 鉛塗層/球物料
  • MSL 等級/回焊峰值
  • MTBF/FIT 估算值
  • 材料內容
  • 認證摘要
  • 進行中持續性的可靠性監測
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  • 組裝地點

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