CY7C63513-PVC

CY7C63513-PVC


Specifications
SKU
775784
Details

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Low-speed USB Peripheral Controller
Parameter Description Value
Device CY7C63513-PVC
Function USB 2.0 High-Speed Hub Controller with Integrated Transceivers
Package 48-Pin TQFP (PVC)
Operating Voltage (VCC) Supply Voltage 3.3V ± 5%
Operating Temperature Range Industrial -40°C to +85°C
USB Compliance USB 2.0 High-Speed (480 Mbps)
Number of Downstream Ports Number of USB Downstream Ports 4
Integrated Transceivers USB Transceivers Yes
Power Consumption Active Mode (All Ports Enabled) 100 mA
Standby Power Consumption Standby Mode < 1 mA
Overcurrent Protection Per-Port Overcurrent Detection Yes
Bus or Self-Powered Bus-Powered or Self-Powered Yes
Remote Wakeup Support Remote Wakeup Capability Yes
Configuration Storage EEPROM for Configuration Data 512 Bytes
Programming Interface I2C/SMBus Interface Yes
ESD Protection Human Body Model (HBM) ±8 kV
Package Size 7 mm x 7 mm x 1.4 mm

Instructions:

  1. Power Supply:

    • Ensure that the VCC supply is within the specified range of 3.3V ± 5%.
    • Use a stable power source to avoid voltage fluctuations.
  2. Temperature Considerations:

    • Operate the device within the industrial temperature range of -40°C to +85°C to ensure reliable performance.
  3. USB Connection:

    • Connect the device to a USB 2.0 High-Speed host or hub.
    • Ensure that the USB cables used are compliant with USB 2.0 specifications.
  4. Port Configuration:

    • Configure the number of downstream ports as needed (up to 4).
    • Enable or disable each port based on the application requirements.
  5. Power Management:

    • Switch to standby mode when not in use to reduce power consumption.
    • Implement overcurrent protection to prevent damage to the device or connected peripherals.
  6. Remote Wakeup:

    • Enable remote wakeup if the device needs to be activated from a low-power state by a connected peripheral.
  7. Configuration Data:

    • Use the integrated EEPROM to store configuration data such as vendor ID, product ID, and other necessary parameters.
    • Access the EEPROM via the I2C/SMBus interface for programming and reading configuration data.
  8. ESD Protection:

    • Handle the device with care to avoid ESD damage.
    • Use appropriate ESD protection measures during handling and installation.
  9. Mounting:

    • Mount the device on a PCB using standard surface mount technology (SMT) processes.
    • Ensure proper soldering and alignment to avoid mechanical stress on the package.
  10. Testing:

    • Perform functional testing after installation to verify that the device operates correctly.
    • Test the USB connections, power management, and configuration settings to ensure compliance with the application requirements.
(For reference only)

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