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SI5335D-B06470-GMR

SI5335D-B06470-GMR

Product Overview

  • Category: Integrated Circuit (IC)
  • Use: Clock Generator and Multiplier
  • Characteristics:
    • High-performance clock generator with low jitter
    • Supports multiple output frequencies
    • Flexible configuration options
    • Small form factor
  • Package: 64-pin Quad Flat No-Lead (QFN)
  • Essence: Provides precise clock signals for various electronic devices
  • Packaging/Quantity: Tape and Reel, 250 units per reel

Specifications

  • Input Voltage Range: 2.375V to 3.63V
  • Output Frequency Range: 1kHz to 350MHz
  • Number of Outputs: 12
  • Output Types: LVCMOS, LVDS, HCSL
  • Operating Temperature Range: -40°C to +85°C
  • Supply Current: 150mA (typical)

Detailed Pin Configuration

The SI5335D-B06470-GMR has a total of 64 pins. The pin configuration is as follows:

  1. VDDO_0
  2. VDDO_1
  3. VDDO_2
  4. VDDO_3
  5. VDDO_4
  6. VDDO_5
  7. VDDO_6
  8. VDDO_7
  9. VDDO_8
  10. VDDO_9
  11. VDDO_10
  12. VDDO_11
  13. GND
  14. XAXB
  15. XAXC
  16. XDXB
  17. XDXC
  18. XAXB
  19. XAXC
  20. XDXB
  21. XDXC
  22. XAXB
  23. XAXC
  24. XDXB
  25. XDXC
  26. XAXB
  27. XAXC
  28. XDXB
  29. XDXC
  30. XAXB
  31. XAXC
  32. XDXB
  33. XDXC
  34. XAXB
  35. XAXC
  36. XDXB
  37. XDXC
  38. XAXB
  39. XAXC
  40. XDXB
  41. XDXC
  42. XAXB
  43. XAXC
  44. XDXB
  45. XDXC
  46. XAXB
  47. XAXC
  48. XDXB
  49. XDXC
  50. XAXB
  51. XAXC
  52. XDXB
  53. XDXC
  54. XAXB
  55. XAXC
  56. XDXB
  57. XDXC
  58. XAXB
  59. XAXC
  60. XDXB
  61. XDXC
  62. XAXB
  63. XAXC
  64. GND

Functional Features

  • Precise clock generation with low jitter
  • Configurable output frequencies and types
  • Integrated loop filter for improved performance
  • Spread Spectrum Clocking (SSC) support for EMI reduction
  • I2C interface for easy configuration

Advantages and Disadvantages

Advantages: - High-performance clock generation - Flexible configuration options - Small form factor - Low jitter for improved signal integrity - Support for multiple output frequencies and types

Disadvantages: - Requires external power supply - Limited to a specific temperature range (-40°C to +85°C)

Working Principles

The SI5335D-B06470-GMR is a clock generator IC that utilizes a phase-locked loop (PLL) to generate precise clock signals. It takes an input reference clock and uses the PLL to multiply and divide the frequency to generate multiple output clocks with different frequencies and types. The integrated loop filter ensures stable and accurate clock generation, while the I2C interface allows for easy configuration of the device.

Detailed Application Field Plans

The SI5335D-B06470-GMR is widely used in various electronic systems where precise clock signals are required. Some of its application fields include:

  1. Telecommunications equipment
  2. Networking devices
  3. Data centers
  4. Industrial automation systems
  5. Test and measurement instruments
  6. Consumer electronics

Detailed and Complete Alternative Models

  1. SI5338A-B-GM: Similar clock generator IC with 8 outputs and extended temperature range.
  2. SI5341B-B-GM: Clock generator and jitter attenuator IC with 4 outputs and advanced features.
  3. SI5368A-B-GM: Multi-channel clock generator IC with 16 outputs and low phase noise performance.

These alternative models offer similar functionality and can be considered

10 domande e risposte comuni relative all'applicazione di SI5335D-B06470-GMR nelle soluzioni tecniche

Sure! Here are 10 common questions and answers related to the application of SI5335D-B06470-GMR in technical solutions:

  1. Q: What is the SI5335D-B06470-GMR? A: The SI5335D-B06470-GMR is a clock generator and jitter attenuator IC designed for high-performance timing applications.

  2. Q: What are the key features of the SI5335D-B06470-GMR? A: Some key features include multiple outputs, low phase noise, programmable frequency synthesis, and integrated voltage regulators.

  3. Q: How many outputs does the SI5335D-B06470-GMR have? A: The SI5335D-B06470-GMR has a total of 12 differential clock outputs.

  4. Q: Can I program the output frequencies of the SI5335D-B06470-GMR? A: Yes, the SI5335D-B06470-GMR allows you to program each output frequency independently using its configuration software.

  5. Q: What is the input voltage range for the SI5335D-B06470-GMR? A: The SI5335D-B06470-GMR operates with an input voltage range of 1.8V to 3.3V.

  6. Q: Does the SI5335D-B06470-GMR support spread spectrum modulation? A: Yes, the SI5335D-B06470-GMR supports spread spectrum modulation for reducing electromagnetic interference (EMI).

  7. Q: Can I synchronize the SI5335D-B06470-GMR to an external reference clock? A: Yes, the SI5335D-B06470-GMR can be synchronized to an external reference clock using its synchronization inputs.

  8. Q: What is the typical phase noise performance of the SI5335D-B06470-GMR? A: The SI5335D-B06470-GMR offers low phase noise performance, typically below -150 dBc/Hz at 100 kHz offset.

  9. Q: Is the SI5335D-B06470-GMR suitable for high-speed data communication applications? A: Yes, the SI5335D-B06470-GMR is designed to meet the requirements of high-speed data communication systems.

  10. Q: What are some typical applications for the SI5335D-B06470-GMR? A: Some typical applications include telecommunications equipment, networking devices, industrial automation, and test and measurement instruments.

Please note that these answers are general and may vary depending on specific use cases and requirements.