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SI5335D-B02036-GMR
Basic Information Overview
- Category: Integrated Circuit (IC)
- Use: Clock Generator and Jitter Attenuator
- Characteristics: High-performance, low-jitter clock synthesis and distribution
- Package: 20-QFN (Quad Flat No-Lead) package
- Essence: Provides precise clock signals for various electronic devices
- Packaging/Quantity: Tape and Reel, 2500 units per reel
Specifications and Parameters
- Frequency Range: 1 MHz to 350 MHz
- Output Format: LVCMOS, LVDS, HCSL, or LVPECL
- Supply Voltage: 2.375V to 3.63V
- Operating Temperature Range: -40°C to +85°C
- Phase Noise Performance: < 0.5 ps RMS (root mean square)
Detailed and Complete Pin Configuration
The SI5335D-B02036-GMR has a total of 20 pins. The pin configuration is as follows:
- XAXB: Crystal Input
- XAXT: Crystal Input
- VDDO_0: Output Power Supply
- VDDO_1: Output Power Supply
- GND: Ground
- CLKOUT0: Clock Output 0
- CLKOUT1: Clock Output 1
- CLKOUT2: Clock Output 2
- CLKOUT3: Clock Output 3
- CLKOUT4: Clock Output 4
- CLKOUT5: Clock Output 5
- CLKOUT6: Clock Output 6
- CLKOUT7: Clock Output 7
- CLKOUT8: Clock Output 8
- CLKOUT9: Clock Output 9
- CLKOUT10: Clock Output 10
- CLKOUT11: Clock Output 11
- CLKOUT12: Clock Output 12
- CLKOUT13: Clock Output 13
- GND: Ground
Functional Characteristics
- High-frequency clock synthesis and distribution
- Low-jitter performance for improved signal integrity
- Flexible output formats to support various devices
- Wide operating temperature range for versatile applications
- Easy integration into electronic systems
Advantages and Disadvantages
Advantages:
- High-performance clock generation with low jitter
- Multiple output formats for compatibility
- Wide operating temperature range for diverse environments
Disadvantages:
- Limited frequency range compared to some specialized clock generators
- Requires external crystal input for clock synthesis
Applicable Range of Products
The SI5335D-B02036-GMR is suitable for a wide range of electronic devices that require precise clock signals, such as:
- Communication equipment
- Networking devices
- Industrial automation systems
- Test and measurement instruments
- Consumer electronics
Working Principles
The SI5335D-B02036-GMR utilizes advanced PLL (Phase-Locked Loop) technology to generate accurate clock signals. It takes an external crystal input and synthesizes the desired frequencies using internal dividers and multipliers. The generated clocks are then distributed to the output pins in the specified formats.
Detailed Application Field Plans
- Communication Equipment: Use the SI5335D-B02036-GMR to provide synchronized clock signals for data transmission and reception modules.
- Networking Devices: Employ the IC to generate stable clock references for Ethernet switches and routers, ensuring reliable data transfer.
- Industrial Automation Systems: Utilize the device to synchronize timing across multiple control units, enhancing system coordination.
- Test and Measurement Instruments: Incorporate the IC to generate precise clock signals for accurate data acquisition and analysis.
- Consumer Electronics: Integrate the SI5335D-B02036-GMR into audio/video equipment to ensure synchronized operation and minimize signal distortion.
Detailed Alternative Models
- SI5338D-B02036-GMR: Similar clock generator with extended frequency range up to 700 MHz.
- SI5345A-B02036-GMR: Clock generator with integrated jitter attenuator for improved signal quality.
- SI5368B-B02036-GMR: Multi-channel clock generator with advanced synchronization features.
5 Common Technical Questions and Answers
Q: What is the maximum frequency that can be generated by the SI5335D-B02036-GMR?
A: The maximum frequency range is 350 MHz.
Q: Can this IC generate clock signals in LVPECL format?
A: Yes, the SI5335D-B02036-GMR supports LVPECL output format.
Q: What is the typical phase noise performance of this device?
A: The typical phase noise is less than 0.5 ps RMS.
Q: Does the SI5335D-B02036-GMR require an external power supply?
A: Yes, it