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TCA9548A

現行

具重設和電壓轉換的 8 通道 1.65 至 5.5-V I2C/SMBus 開關

產品詳細資料

Addresses 8 Features Reset pin Rating Catalog Frequency (max) (MHz) 0.4 Operating temperature range (°C) -40 to 85 Number of channels 8
Addresses 8 Features Reset pin Rating Catalog Frequency (max) (MHz) 0.4 Operating temperature range (°C) -40 to 85 Number of channels 8
TSSOP (PW) 24 49.92 mm² (7.8 mm × 6.4 mm) VQFN (RGE) 24 16 mm² (4 mm × 4 mm) VSSOP (DGS) 24 29.89 mm² (6.1 mm × 4.9 mm)
  • 1-to-8 Bidirectional translating switches
  • I2C Bus and SMBus compatible
  • Active-low reset input
  • Three address pins, allowing up to eight TCA9548A devices on the I2C bus
  • Channel selection through an I2C Bus, in any combination
  • Power up with all switch channels deselected
  • Low RON switches
  • Allows voltage-level translation between 1.8V, 2.5V, 3.3V, and 5V buses
  • No glitch on power up
  • Supports hot insertion
  • Low standby current
  • Operating power-supply voltage range of 1.65V to 5.5V
  • 5-V Tolerant inputs
  • 0 to 400kHz Clock frequency
  • Latch-up performance exceeds 100mA Per JESD 78, class II
  • ESD Protection exceeds JESD 22
    • ±2000V Human-body model (A114-A)
    • 200V Machine model (A115-A)
    • ±1000V Charged-device model (C101)
  • 1-to-8 Bidirectional translating switches
  • I2C Bus and SMBus compatible
  • Active-low reset input
  • Three address pins, allowing up to eight TCA9548A devices on the I2C bus
  • Channel selection through an I2C Bus, in any combination
  • Power up with all switch channels deselected
  • Low RON switches
  • Allows voltage-level translation between 1.8V, 2.5V, 3.3V, and 5V buses
  • No glitch on power up
  • Supports hot insertion
  • Low standby current
  • Operating power-supply voltage range of 1.65V to 5.5V
  • 5-V Tolerant inputs
  • 0 to 400kHz Clock frequency
  • Latch-up performance exceeds 100mA Per JESD 78, class II
  • ESD Protection exceeds JESD 22
    • ±2000V Human-body model (A114-A)
    • 200V Machine model (A115-A)
    • ±1000V Charged-device model (C101)

The TCA9548A device has eight bidirectional translating switches that can be controlled through the I2C bus. The SCL/SDA upstream pair fans out to eight downstream pairs, or channels. Any individual SCn/SDn channel or combination of channels can be selected, determined by the contents of the programmable control register. These downstream channels can be used to resolve I2C target address conflicts. For example, if eight identical digital temperature sensors are needed in the application, one sensor can be connected at each channel: 0-7.

The system controller can reset the TCA9548A in the event of a time-out, or other improper operation by asserting a low in the RESET input. Similarly, the power-on reset deselects all channels and initializes the I2C/SMBus state machine. Asserting RESET causes the same reset and initialization to occur without powering down the part. This allows recovery if one of the downstream I2C buses get stuck in a low state.

The pass gates of the switches are constructed so that the VCC pin can be used to limit the maximum high voltage, which is passed by the TCA9548A. Limiting the maximum high voltage allows the use of different bus voltages on each pair, so that 1.8V, 2.5V or 3.3V parts can communicate with 5V parts, without any additional protection. External pullup resistors pull the bus up to the desired voltage level for each channel. All I/O pins are 5V tolerant.

The TCA9548A device has eight bidirectional translating switches that can be controlled through the I2C bus. The SCL/SDA upstream pair fans out to eight downstream pairs, or channels. Any individual SCn/SDn channel or combination of channels can be selected, determined by the contents of the programmable control register. These downstream channels can be used to resolve I2C target address conflicts. For example, if eight identical digital temperature sensors are needed in the application, one sensor can be connected at each channel: 0-7.

The system controller can reset the TCA9548A in the event of a time-out, or other improper operation by asserting a low in the RESET input. Similarly, the power-on reset deselects all channels and initializes the I2C/SMBus state machine. Asserting RESET causes the same reset and initialization to occur without powering down the part. This allows recovery if one of the downstream I2C buses get stuck in a low state.

The pass gates of the switches are constructed so that the VCC pin can be used to limit the maximum high voltage, which is passed by the TCA9548A. Limiting the maximum high voltage allows the use of different bus voltages on each pair, so that 1.8V, 2.5V or 3.3V parts can communicate with 5V parts, without any additional protection. External pullup resistors pull the bus up to the desired voltage level for each channel. All I/O pins are 5V tolerant.

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重要文件 類型 標題 格式選項 下載最新的英文版本 日期
* 資料表 TCA9548A Low-Voltage 8-Channel I2 C Switch with Reset datasheet (Rev. H) PDF | HTML 2024/9/30
應用說明 PassFET Hang Time with TCA39306 I2C, I3C Level Translator PDF | HTML 2024/9/23
Application brief Best Practices: I2C Devices on an I3C Shared Bus PDF | HTML 2023/3/30
應用說明 I2C Solutions for Hot Swap Applications (Rev. A) 2023/1/31
應用說明 I2C Dynamic Addressing 2019/4/25
應用說明 Choosing the Correct I2C Device for New Designs PDF | HTML 2016/9/7
選擇指南 I2C Infographic Flyer 2015/12/3
技術文章 How to simplify I2C tree when connecting multiple slaves to an I2C master PDF | HTML 2015/10/15
應用說明 Understanding the I2C Bus PDF | HTML 2015/6/30
應用說明 Maximum Clock Frequency of I2C Bus Using Repeaters 2015/5/15
應用說明 I2C Bus Pull-Up Resistor Calculation PDF | HTML 2015/2/13

設計與開發

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開發板

TCA9548AEVM — TCA9548A I2C 1 對 8 雙向轉換開關評估模組

TCA9548AEVM 旨在評估和演示 TI TCA954xA 系列 I2C 交換機的功能。TCA9548AEVM 可作為獨立評估模組與現有系統連接,或與 MSP430 Lauchpad 搭配使用,後者可作為 I2C 主控端及 TCA9548AEVM 的電源供應器。TCA9548AEVM 也配備多個跨接器,可進行調整以適應 5 種不同的德州儀器 I2C 開關:TCA9543ATCA9544ATCA9545ATCA9546ATCA9548A。通道數較低的裝置可單獨訂購,並放置在 TCA9548AEVM 上以進行評估。

使用指南: PDF
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模擬型號

TCA9548A IBIS Model (Rev. A)

SCPM023A.ZIP (41 KB) - IBIS 模型
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設計工具

I2C-DESIGNER — I2C 設計工具

使用 I2C 設計工具快速解決 I2C 設計中在定址、電壓位準和頻率方面的衝突。輸入主裝置和從屬裝置的參數,自動產生 I2C 樹狀結構,或輕鬆建置自訂解決方案。此工具將協助設計人員節省時間並符合 I2C 標準,提供關於偵錯缺失確認、選擇上拉電阻以及滿足 I2C 匯流排最大電容負載的指導。 
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參考設計

TIDA-01373 — EEPROM 編程工具參考設計

TIDA-01373 是針對 DRV10983、DRV10975、DRV10983-Q1 及 DRV10987 整合式 BLDC 馬達驅動器的可擴充程式設計工具參考硬體與軟體範例。這些裝置具備可設定的 EEPROM 暫存器,需設定為馬達特定參數。此參考設計詳述如何一次設定最多 8 台馬達驅動器裝置的 EEPROM 馬達參數值。
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參考設計

TIDA-01414 — TPA3244 Dolby Atmos 條型音箱參考設計

TPA3244 Dolby Atmos® 條型音箱參考設計結合了 Ultra-HD 音訊與高動態範圍,可透過小型系統創造充斥空間的音訊體驗。此設計運用 TI 的高性能 TPA3244 放大器,具有處理功能的 PCM5252 高性能 DAC,以及用於解碼和呈現 Dolby Atmos® 的整合式 SoC。條型音箱參考電路板使用 TI 的整合式音訊 DSP,提供 10 個 DAC + 放大器通道,以進行獨立通道處理,其中包括數位主動交越、DRC 和雙二階,以支援 5.1.2 條型音箱輸出配置。此設計使用 66AK2G 音訊 SoC 進行 Dolby Atmos® 解碼和轉譯。
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封裝 針腳 CAD 符號、佔位空間與 3D 模型
TSSOP (PW) 24 Ultra Librarian
VQFN (RGE) 24 Ultra Librarian
VSSOP (DGS) 24 Ultra Librarian

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