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DS15BR401TSQ

DS15BR401TSQ

Product Overview

  • Category: Integrated Circuit
  • Use: High-speed Serializer/Deserializer (SerDes) for data communication
  • Characteristics:
    • High-speed data transmission up to 12.5 Gbps
    • Supports various protocols such as DisplayPort, HDMI, and Ethernet
    • Low power consumption
    • Small form factor
  • Package: QFN (Quad Flat No-Lead)
  • Essence: Enables high-speed data communication in a compact and efficient manner
  • Packaging/Quantity: Available in tape and reel packaging, quantity per reel varies based on customer requirements

Specifications

  • Data Rate: Up to 12.5 Gbps
  • Protocol Support: DisplayPort, HDMI, Ethernet
  • Power Supply Voltage: 1.8V
  • Operating Temperature Range: -40°C to +85°C
  • Package Dimensions: 4mm x 4mm

Pin Configuration

The DS15BR401TSQ has a total of 32 pins arranged as follows:

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Pin Name Function

1 VCC Power Supply 2 GND Ground 3 RXIN0 Receiver Input 0 4 RXIN1 Receiver Input 1 5 RXIN2 Receiver Input 2 6 RXIN3 Receiver Input 3 7 RXIN4 Receiver Input 4 8 RXIN5 Receiver Input 5 9 RXIN6 Receiver Input 6 10 RXIN7 Receiver Input 7 11 RXIN8 Receiver Input 8 12 RXIN9 Receiver Input 9 13 RXIN10 Receiver Input 10 14 RXIN11 Receiver Input 11 15 RXIN12 Receiver Input 12 16 RXIN13 Receiver Input 13 17 RXIN14 Receiver Input 14 18 RXIN15 Receiver Input 15 19 RXIN16 Receiver Input 16 20 RXIN17 Receiver Input 17 21 RXIN18 Receiver Input 18 22 RXIN19 Receiver Input 19 23 RXIN20 Receiver Input 20 24 RXIN21 Receiver Input 21 25 RXIN22 Receiver Input 22 26 RXIN23 Receiver Input 23 27 RXIN24 Receiver Input 24 28 RXIN25 Receiver Input 25 29 RXIN26 Receiver Input 26 30 RXIN27 Receiver Input 27 31 RXIN28 Receiver Input 28 32 RXIN29 Receiver Input 29 ```

Functional Features

  • High-speed data transmission: The DS15BR401TSQ supports data rates up to 12.5 Gbps, enabling fast and efficient communication.
  • Protocol support: It is compatible with various protocols such as DisplayPort, HDMI, and Ethernet, making it versatile for different applications.
  • Low power consumption: The integrated circuit is designed to minimize power consumption, ensuring energy efficiency.
  • Small form factor: With its compact package size, the DS15BR401TSQ can be easily integrated into space-constrained designs.

Advantages and Disadvantages

Advantages: - High-speed data transmission capability - Versatile protocol support - Low power consumption - Compact form factor

Disadvantages: - Limited pin count (only receiver inputs)

Working Principles

The DS15BR401TSQ is a high-speed Serializer/Deserializer (SerDes) IC that converts parallel data into a serial stream for transmission and vice versa. It utilizes advanced signal processing techniques to achieve reliable data communication at high speeds. The receiver inputs are used to receive the serialized data, which is then deserialized and converted back into parallel form.

Application Field Plans

The DS15BR401TSQ can be used in various applications that require high-speed data communication, including:

  1. DisplayPort interfaces in computer monitors and video projectors
  2. HDMI interfaces in televisions, set-top boxes, and gaming consoles
  3. Ethernet interfaces in networking equipment and data centers

Alternative Models

  • DS15BR401T: Similar functionality but with a different package (TSSOP)
  • DS15BR402TSQ: Dual-channel version of DS15BR401TSQ
  • DS15BR403TSQ: Quad-channel version of DS15BR401TSQ

These alternative models offer similar features and performance but may have variations in pin configuration and package options.

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Lista 10 Vanliga frågor och svar relaterade till tillämpningen av DS15BR401TSQ i tekniska lösningar

Sure! Here are 10 common questions and answers related to the application of DS15BR401TSQ in technical solutions:

  1. Question: What is DS15BR401TSQ?
    - Answer: DS15BR401TSQ is a high-speed quad-channel repeater/redriver IC designed for signal conditioning and extending the reach of high-speed serial links.

  2. Question: What is the maximum data rate supported by DS15BR401TSQ?
    - Answer: DS15BR401TSQ supports data rates up to 12.5 Gbps per channel, making it suitable for various high-speed applications.

  3. Question: Can DS15BR401TSQ be used for both transmit and receive functions?
    - Answer: Yes, DS15BR401TSQ can be used for both transmit and receive functions, allowing bidirectional signal conditioning.

  4. Question: What kind of interfaces does DS15BR401TSQ support?
    - Answer: DS15BR401TSQ supports various industry-standard interfaces such as LVDS, SubLVDS, and Mini-LVDS.

  5. Question: Is DS15BR401TSQ compatible with different voltage levels?
    - Answer: Yes, DS15BR401TSQ supports a wide range of supply voltages from 1.8V to 3.3V, providing flexibility in different system designs.

  6. Question: Can DS15BR401TSQ compensate for signal degradation over long transmission lines?
    - Answer: Yes, DS15BR401TSQ incorporates equalization and de-emphasis techniques to compensate for signal attenuation and distortion, enabling reliable signal transmission over longer distances.

  7. Question: Does DS15BR401TSQ support hot-plugging capability?
    - Answer: Yes, DS15BR401TSQ features hot-plug support, allowing devices to be connected or disconnected without disrupting the system operation.

  8. Question: Can DS15BR401TSQ be cascaded to extend the reach further?
    - Answer: Yes, DS15BR401TSQ can be cascaded with other repeaters or redrivers to extend the reach of high-speed signals over even longer distances.

  9. Question: Does DS15BR401TSQ have built-in diagnostic features?
    - Answer: Yes, DS15BR401TSQ provides built-in diagnostic features such as eye monitoring and loopback testing to aid in system debugging and troubleshooting.

  10. Question: What are some typical applications of DS15BR401TSQ?
    - Answer: DS15BR401TSQ is commonly used in applications such as high-speed data communication, video transmission, industrial automation, and automotive systems where signal integrity and extended reach are crucial.

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