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PI7C9X1170BCLE

PI7C9X1170BCLE

Product Overview

  • Category: Integrated Circuit (IC)
  • Use: High-speed signal switching and routing
  • Characteristics:
    • Supports multiple high-speed serial protocols
    • Low power consumption
    • Compact package size
  • Package: QFN (Quad Flat No-leads)
  • Essence: Efficient signal management for high-speed data transfer
  • Packaging/Quantity: Available in reels of 250 units

Specifications

  • Number of Pins: 64
  • Supply Voltage: 3.3V
  • Operating Temperature Range: -40°C to +85°C
  • Data Rate: Up to 10 Gbps
  • Supported Protocols: PCIe, USB, SATA, Ethernet, DisplayPort, etc.

Detailed Pin Configuration

  1. VDD33
  2. VDD33
  3. VDD33
  4. VDD33
  5. GND
  6. GND
  7. GND
  8. GND
  9. REFCLKP0
  10. REFCLKN0
  11. REFCLKP1
  12. REFCLKN1
  13. REFCLKP2
  14. REFCLKN2
  15. REFCLKP3
  16. REFCLKN3
  17. REFCLKP4
  18. REFCLKN4
  19. REFCLKP5
  20. REFCLKN5
  21. REFCLKP6
  22. REFCLKN6
  23. REFCLKP7
  24. REFCLKN7
  25. REFCLKP8
  26. REFCLKN8
  27. REFCLKP9
  28. REFCLKN9
  29. REFCLKP10
  30. REFCLKN10
  31. REFCLKP11
  32. REFCLKN11
  33. REFCLKP12
  34. REFCLKN12
  35. REFCLKP13
  36. REFCLKN13
  37. REFCLKP14
  38. REFCLKN14
  39. REFCLKP15
  40. REFCLKN15
  41. REFCLKP16
  42. REFCLKN16
  43. REFCLKP17
  44. REFCLKN17
  45. REFCLKP18
  46. REFCLKN18
  47. REFCLKP19
  48. REFCLKN19
  49. REFCLKP20
  50. REFCLKN20
  51. REFCLKP21
  52. REFCLKN21
  53. REFCLKP22
  54. REFCLKN22
  55. REFCLKP23
  56. REFCLKN23
  57. REFCLKP24
  58. REFCLKN24
  59. REFCLKP25
  60. REFCLKN25
  61. REFCLKP26
  62. REFCLKN26
  63. REFCLKP27
  64. REFCLKN27

Functional Features

  • High-speed signal switching and routing
  • Support for multiple high-speed serial protocols
  • Low power consumption for energy efficiency
  • Compact package size for space-constrained designs
  • Robust signal integrity and data transfer reliability

Advantages

  • Versatile compatibility with various high-speed protocols
  • Efficient signal management for reliable data transfer
  • Low power consumption for energy-efficient operation
  • Compact package size for flexible integration into different designs

Disadvantages

  • Limited pin count may restrict the number of supported interfaces
  • Higher cost compared to lower-end signal switching ICs
  • Requires careful PCB layout and signal routing for optimal performance

Working Principles

The PI7C9X1170BCLE is designed to efficiently switch and route high-speed signals between different interfaces. It utilizes advanced signal conditioning techniques to ensure reliable data transfer at speeds up to 10 Gbps. The IC incorporates a high-performance clocking system that enables precise synchronization of signals across multiple channels. By supporting various high-speed protocols, it provides flexibility for different application requirements.

Detailed Application Field Plans

The PI7C9X1170BCLE is widely used in applications that require high-speed signal switching and routing. Some common application fields include:

  1. Data Centers: Used in network switches, servers, and storage systems to manage high-speed data traffic.
  2. Communication Systems: Integrated into routers, switches, and network interface cards for efficient data transmission.
  3. Consumer Electronics: Utilized in high-speed interfaces like USB hubs, docking stations, and external storage devices.
  4. Industrial Automation: Incorporated into industrial control systems and equipment for reliable signal management.
  5. Automotive Electronics: Integrated into infotainment systems, advanced driver-assistance systems (ADAS), and in-vehicle networks.

Alternative Models

  1. PI7C9X1170BCLF
  2. PI7C9X1170BCLG
  3. PI7C9X1170BCLI

Перечислите 10 распространенных вопросов и ответов, связанных с применением PI7C9X1170BCLE в технических решениях.

Sure! Here are 10 common questions and answers related to the application of PI7C9X1170BCLE in technical solutions:

  1. Q: What is PI7C9X1170BCLE? A: PI7C9X1170BCLE is a PCIe-to-USB bridge controller chip designed for high-speed data transfer between PCI Express (PCIe) and Universal Serial Bus (USB) interfaces.

  2. Q: What are the key features of PI7C9X1170BCLE? A: Some key features include support for USB 3.0 SuperSpeed, backward compatibility with USB 2.0/1.1, low power consumption, and advanced power management capabilities.

  3. Q: What are the typical applications of PI7C9X1170BCLE? A: PI7C9X1170BCLE is commonly used in various applications such as docking stations, USB hubs, industrial automation, embedded systems, and other devices requiring PCIe-to-USB conversion.

  4. Q: How many USB ports can be supported by PI7C9X1170BCLE? A: PI7C9X1170BCLE supports up to four downstream USB ports, allowing multiple USB devices to be connected simultaneously.

  5. Q: Does PI7C9X1170BCLE require any external components for operation? A: Yes, PI7C9X1170BCLE requires external components such as crystal oscillators, capacitors, resistors, and voltage regulators for proper functioning.

  6. Q: What operating systems are compatible with PI7C9X1170BCLE? A: PI7C9X1170BCLE is compatible with various operating systems including Windows, Linux, and macOS.

  7. Q: Can PI7C9X1170BCLE support USB Power Delivery (PD)? A: No, PI7C9X1170BCLE does not have built-in support for USB Power Delivery. However, it can be used in conjunction with external PD controllers to enable PD functionality.

  8. Q: What is the maximum data transfer rate supported by PI7C9X1170BCLE? A: PI7C9X1170BCLE supports USB 3.0 SuperSpeed, which has a maximum data transfer rate of 5 Gbps (gigabits per second).

  9. Q: Can PI7C9X1170BCLE be used in low-power applications? A: Yes, PI7C9X1170BCLE features advanced power management capabilities, allowing it to operate efficiently in low-power scenarios.

  10. Q: Are there any reference designs or application notes available for PI7C9X1170BCLE? A: Yes, the manufacturer provides reference designs and application notes that can help developers integrate PI7C9X1170BCLE into their technical solutions effectively.

Please note that these answers are general and may vary depending on specific implementation requirements and product documentation.