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SI5338N-B06180-GMR

SI5338N-B06180-GMR

Basic Information Overview

  • Category: Integrated Circuit (IC)
  • Use: Clock Generator and Multiplier
  • Characteristics: Low jitter, high frequency accuracy, programmable output frequencies
  • Package: 48-pin QFN (Quad Flat No-Lead)
  • Essence: Clock generation and multiplication for various electronic devices
  • Packaging/Quantity: Tape and Reel, 250 units per reel

Specifications and Parameters

  • Input Voltage Range: 2.375V to 3.63V
  • Output Frequency Range: 1kHz to 945MHz
  • Output Format: LVCMOS, LVDS, HCSL, or LVPECL
  • Programmable Features: Output frequency, spread spectrum modulation, phase offset, etc.
  • Operating Temperature Range: -40°C to +85°C

Detailed and Complete Pin Configuration

  1. VDDO: Output Power Supply
  2. VDDI: Input Power Supply
  3. GND: Ground
  4. XAXB0: Differential Clock Input
  5. XAXB1: Differential Clock Input
  6. XAXB2: Differential Clock Input
  7. XAXB3: Differential Clock Input
  8. XAXB4: Differential Clock Input
  9. XAXB5: Differential Clock Input
  10. XAXB6: Differential Clock Input
  11. XAXB7: Differential Clock Input
  12. XAXB8: Differential Clock Input
  13. XAXB9: Differential Clock Input
  14. XAXB10: Differential Clock Input
  15. XAXB11: Differential Clock Input
  16. XAXB12: Differential Clock Input
  17. XAXB13: Differential Clock Input
  18. XAXB14: Differential Clock Input
  19. XAXB15: Differential Clock Input
  20. XAXB16: Differential Clock Input
  21. XAXB17: Differential Clock Input
  22. XAXB18: Differential Clock Input
  23. XAXB19: Differential Clock Input
  24. XAXB20: Differential Clock Input
  25. XAXB21: Differential Clock Input
  26. XAXB22: Differential Clock Input
  27. XAXB23: Differential Clock Input
  28. XAXB24: Differential Clock Input
  29. XAXB25: Differential Clock Input
  30. XAXB26: Differential Clock Input
  31. XAXB27: Differential Clock Input
  32. XAXB28: Differential Clock Input
  33. XAXB29: Differential Clock Input
  34. XAXB30: Differential Clock Input
  35. XAXB31: Differential Clock Input
  36. VDDO: Output Power Supply
  37. VDDI: Input Power Supply
  38. GND: Ground
  39. SDA: I2C Serial Data Input
  40. SCL: I2C Serial Clock Input
  41. VDDO: Output Power Supply
  42. VDDI: Input Power Supply
  43. GND: Ground
  44. OUT0: Programmable Output Clock
  45. OUT1: Programmable Output Clock
  46. OUT2: Programmable Output Clock
  47. OUT3: Programmable Output Clock
  48. GND: Ground

Functional Characteristics

  • Generates multiple output clocks with programmable frequencies
  • Supports various output formats (LVCMOS, LVDS, HCSL, or LVPECL)
  • Low jitter and high frequency accuracy for precise timing requirements
  • Spread spectrum modulation capability for EMI reduction
  • Phase offset adjustment for synchronization purposes

Advantages and Disadvantages

Advantages: - Wide range of programmable output frequencies - High accuracy and low jitter for reliable timing - Flexible output format options - Spread spectrum modulation for EMI control

Disadvantages: - Complex pin configuration with many inputs and outputs - Requires I2C interface for programming

Applicable Range of Products

  • Telecommunications equipment
  • Networking devices
  • Data storage systems
  • Industrial automation
  • Consumer electronics

Working Principles

The SI5338N-B06180-GMR is a clock generator and multiplier IC that takes an input clock signal and generates multiple output clocks with programmable frequencies. It utilizes a phase-locked loop (PLL) to multiply the input frequency and generate precise timing signals for various electronic devices. The IC also provides options for spread spectrum modulation and phase offset adjustment to meet specific application requirements.

Detailed Application Field Plans

  1. Telecommunications Equipment: The SI5338N-B06180-GMR can be used in base stations, routers, and switches to provide accurate clock signals for data transmission and synchronization.
  2. Networking Devices: It can be employed in network switches, routers, and servers to ensure precise timing for efficient data processing and communication.
  3. Data Storage Systems: The IC can be utilized in storage arrays and disk drives to generate reliable clock signals for data read/write operations. 4