TPD2EUSB30DRTR by: Texas Instruments

Overview of: TPD2EUSB30DRTR by Texas Instruments

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Price & Stock for: TPD2EUSB30DRTR

Distributor Stock MOQ Package QTY Break / Prices
View this part on Newark 0 1 TAPE & REEL CUT
  • 1 $0.6500
  • 10 $0.5700
  • 25 $0.5420
  • 50 $0.5180
  • 100 $0.4960
  • 250 $0.4800
  • 500 $0.4690
  • 1,000 $0.4610
View this part on Bristol Electronics 14,063 1
View this part on RS Components 400 25 Reel
  • 25 $0.6270
  • 150 $0.6100
  • 750 $0.5930
  • 1,500 $0.5810
View this part on RS Components 0 25 Package
  • 25 $0.6270
  • 150 $0.6100
  • 750 $0.5930
  • 1,500 $0.5810
View this part on element14 Asia-Pacific 0 3,000 TAPE & REEL FULL
  • 3,000 $0.5405

Market Price Analysis

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Distributors with Stock

Total Inventory

390,112

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Part Details for: TPD2EUSB30DRTR

CAD Models

Resources and Additional Insights

Reference Designs

  • 2-port SuperSpeed USB xHCI PCIe Card Reference Design
    TUSB7320EVM: The TUSB7320EVM board is a free-standing reference design for a two-port PCIe-based SuperSpeed USB (USB 3.0) Extensible Host Controller (xHCI). It is used to evaluate system compatibility. A Microsoft WHQL certified xHCI compliant driver stack is provided as well. The TUSB7320 is fully backwards compatible to USB 2.0 supporting USB peripherals and hubs that support all data transfer speeds: USB 2.0 Low-speed (1.5Mbps), USB 2.0 Full-speed (12 Mbps), USB 2.0 High-speed (480 Mbps) as well as SuperSpeed USB (5 Gbps). A SuperSpeed peripheral is required to evaluate SuperSpeed data transfer.
  • Bluetooth Smart to Wi-Fi IoT Gateway Reference Design
    TIDC-BLE-TO-WIFI-IOT-GATEWAY: The gateway connects Bluetooth® Smart devices to the Internet over Wi-Fi®. It allows Bluetooth Smart nodes to be used in home/building automation and retail environments. The reference design is complete with connection of the SimpleLink™ SensorTag data to the IBM Bluemix cloud service using the SimpleLink ultra-low power CC2650 wireless MCU and SimpleLink WiFi CC3200 wireless MCU.
  • 4-port SuperSpeed USB xHCI PCIe Card Reference Design
    TUSB7340EVM: The TUSB7340EVM board is a free-standing reference design for a four-port PCIe–based SuperSpeed USB (USB 3.0) Extensible Host Controller (xHCI). It is used to evaluate system compatibility. A Microsoft WHQL certified xHCI compliant driver stack is provided as well. The TUSB7340 is fully backwards compatible to USB 2.0 supporting USB peripherals and hubs that support all data transfer speeds: USB 2.0 Low–speed (1.5Mbps), USB 2.0 Full–speed (12 Mbps), USB 2.0 High–speed (480 Mbps) as well as SuperSpeed USB (5 Gbps). A SuperSpeed peripheral is required to evaluate SuperSpeed data transfer.
  • SimpleLink™ Wi-Fi® Enabled NFC Card Reader
    CC3200_NFC_CARD_READER: This TI design combines TI’s Wireless microcontroller (CC3200) and the TRF7970 NFC BoosterPack from third party provider DLP Design, in order to emulate a near field communication (NFC) reader, which securely transfers the data scanned from an NFC card to any remote location or database, in real time over Wi-Fi networks. Disclaimer: DLP Design, Inc. is not associated with DLP® products of Texas Instruments.
  • TIDA-00148 USB 2.0/3.0 Mass Storage Bridge for Automotive Infotainment Systems | TI.com
    TIDA-00148: This TIDA-00148 reference design features the TUSB9261DEMO which allows quick evaluation of system compatibility for connections to SATA devices used for automotive infotainment systems. The firmware used in TIDA-00148 is capable of supporting a single SATA drive such as a solid state drive, hard disk drive, DVD drive, and Blu-Ray drive. The TUSB9261-Q1 has also been fully regression tested for numerous devices which speeds development time for quicker release to market.
  • TUSB7340EVM 4-port SuperSpeed USB xHCI PCIe Card Reference Design | TI.com
    TUSB7340EVM: The TUSB7340EVM board is a free-standing reference design for a four-port PCIe–based SuperSpeed USB (USB 3.0) Extensible Host Controller (xHCI). It is used to evaluate system compatibility. A Microsoft WHQL certified xHCI compliant driver stack is provided as well. The TUSB7340 is fully backwards compatible to USB 2.0 supporting USB peripherals and hubs that support all data transfer speeds: USB 2.0 Low–speed (1.5Mbps), USB 2.0 Full–speed (12 Mbps), USB 2.0 High–speed (480 Mbps) as well as SuperSpeed USB (5 Gbps). A SuperSpeed peripheral is required to evaluate SuperSpeed data transfer.
  • DECA Reference Design Featuring Altera’s Max10 FPGA Developed by Arrow Electronics : Arrow Electronics
    DECA: DECA is a full featured hardware evaluation board, available through Arrow Electronics, that enables engineers to reduce board area, cost, and complexity while interfacing to a multitude of sensors and interfaces including Texas Instruments’ (TI) new humidity and industry leading temperature sensor. Additionally, the board incorporates other signal chain, audio, logic and sensing integrated circuits from TI. Coupled with a BLE/WIFI cape, both software and hardware engineers can kickstart an Internet of Things (IoT) design taking integration to the next level.
  • USB 2.0/3.0 Mass Storage Bridge for Automotive Infotainment Systems
    TIDA-00148: This TIDA-00148 reference design features the TUSB9261DEMO which allows quick evaluation of system compatibility for connections to SATA devices used for automotive infotainment systems. The firmware used in TIDA-00148 is capable of supporting a single SATA drive such as a solid state drive, hard disk drive, DVD drive, and Blu-Ray drive. The TUSB9261-Q1 has also been fully regression tested for numerous devices which speeds development time for quicker release to market.
  • DECA Reference Design Featuring Altera’s Max10 FPGA Developed by Arrow Electronics : Arrow Electronics
    DECA: DECA is a full featured hardware evaluation board, available through Arrow Electronics, that enables engineers to reduce board area, cost, and complexity while interfacing to a multitude of sensors and interfaces including Texas Instruments’ (TI) new humidity and industry leading temperature sensor. Additionally, the board incorporates other signal chain, audio, logic and sensing integrated circuits from TI. Coupled with a BLE/WIFI cape, both software and hardware engineers can kickstart an Internet of Things (IoT) design taking integration to the next level.
  • TUSB7320EVM 2-port SuperSpeed USB xHCI PCIe Card Reference Design | TI.com
    TUSB7320EVM: The TUSB7320EVM board is a free-standing reference design for a two-port PCIe-based SuperSpeed USB (USB 3.0) Extensible Host Controller (xHCI). It is used to evaluate system compatibility. A Microsoft WHQL certified xHCI compliant driver stack is provided as well. The TUSB7320 is fully backwards compatible to USB 2.0 supporting USB peripherals and hubs that support all data transfer speeds: USB 2.0 Low-speed (1.5Mbps), USB 2.0 Full-speed (12 Mbps), USB 2.0 High-speed (480 Mbps) as well as SuperSpeed USB (5 Gbps). A SuperSpeed peripheral is required to evaluate SuperSpeed data transfer.
  • Wi-Fi Camera Application for SimpleLink Wi-Fi CC3200 Launchpad
    TIDC-CC3200CAMBOOST: This SimpleLink Wi-Fi CC3200 Launchpad & Camera BoosterPack based design brings Wi-Fi camera capability to new applications as well as existing ones such as door bells. It enables the capture, remote control and transmission of JPEG (VGA or QVGA) images via Wi-Fi.
  • TIDEP0078 OPC UA Data Access Server for AM572x Reference Design | TI.com
    TIDEP0078: OPC UA is an industrial machine-to-machine protocol designed to allow interoperability and communication between all machines connected under Industry 4.0. The TIDEP0078 TI Design demonstrates use of the MatrikonOPC™ OPC UA server development kit (SDK) to allow communications using an OPC UA data access (DA) server running embedded in a project or design. The OPC UA DA deals with real-time data and is best suited for industrial automation applications where time is an important aspect of the data. A reference OPC UA server implementation is provided that accesses the GPIO capabilities of the AM572x IDK. The reference code can be extended to provide an OPC UA interface to any data the AM572x IDK board can access including data acquired through Profibus, RS-485, CAN bus, and industrial Ethernet-based protocols such as EtherCAT™ or PROFINET™ using the Programmable Real-time Unit Industrial Communication Subsystems (PRU-ICSS).

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