The 9FGL0641BKILF has a total of 32 pins. The pin configuration is as follows:
| Pin Number | Pin Name | Description | |------------|----------|-------------| | 1 | VDD | Power supply voltage | | 2 | GND | Ground | | 3 | OUT0P | Differential output 0 positive | | 4 | OUT0N | Differential output 0 negative | | ... | ... | ... | | 29 | OUT7P | Differential output 7 positive | | 30 | OUT7N | Differential output 7 negative | | 31 | VDDO | Output power supply voltage | | 32 | GND | Ground |
Advantages: - High-frequency range allows for versatile applications - Low jitter ensures precise timing synchronization - Compact QFN package saves board space
Disadvantages: - Limited output options (differential only) - Requires a stable power supply for optimal performance
The 9FGL0641BKILF is commonly used in electronic devices that require accurate clock signals, such as: - Communication equipment - Networking devices - Data storage systems - Test and measurement instruments
The 9FGL0641BKILF utilizes an internal crystal oscillator to generate a stable reference frequency. This frequency is then multiplied and divided to produce the desired output frequency. The differential outputs help minimize noise interference and ensure reliable signal transmission.
Q: What is the maximum operating temperature of the 9FGL0641BKILF? A: The component can operate within a temperature range of -40°C to +85°C.
Q: Can I use this clock generator for wireless communication systems? A: Yes, the 9FGL0641BKILF is suitable for various communication applications, including wireless systems.
Q: Does the component support single-ended outputs? A: No, the 9FGL0641BKILF only provides differential outputs.
Q: What is the typical power consumption of the clock generator? A: The component has low power consumption, typically around X watts.
Q: Can I use this clock generator in automotive applications? A: Yes, the 9FGL0641BKILF can be used in automotive systems that operate within the specified temperature range.
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