ADF4351BCPZ-RL7 belongs to the category of integrated circuits (ICs).
This product is commonly used in various electronic devices and systems for frequency synthesis and phase-locked loop (PLL) applications.
ADF4351BCPZ-RL7 is available in a compact and durable surface-mount package.
The essence of ADF4351BCPZ-RL7 lies in its ability to generate precise and stable frequencies, making it an essential component in many communication and measurement systems.
This product is typically packaged in reels or tubes, with a quantity of 250 units per reel/tube.
The pin configuration of ADF4351BCPZ-RL7 is as follows:
ADF4351BCPZ-RL7 offers the following functional characteristics:
ADF4351BCPZ-RL7 is suitable for a wide range of products and systems, including: - Wireless communication devices - Radar systems - Test and measurement equipment - Satellite communication systems - Frequency synthesizers
The working principle of ADF4351BCPZ-RL7 is based on the fractional-N PLL architecture. It utilizes a voltage-controlled oscillator (VCO) and a phase detector to generate precise and stable frequencies. The device allows for programmable frequency division and multiplication, enabling the synthesis of various output frequencies.
ADF4351BCPZ-RL7 can be applied in the following fields:
Some alternative models to ADF4351BCPZ-RL7 include: - ADF4350BCPZ-RL7 - ADF4355BCPZ-RL7 - ADF4352BCPZ-RL7 - ADF4356BCPZ-RL7 - ADF4353BCPZ-RL7
Q: What is the maximum output frequency of ADF4351BCPZ-RL7? A: The maximum output frequency is 4400 MHz.
Q: Can I adjust the output power level of this device? A: Yes, the output power level is programmable within a specified range.
Q: Does ADF4351BCPZ-RL7 support frequency modulation? A: Yes, it offers flexible frequency modulation capabilities.
Q: What is the typical lock time of this device? A: The typical lock time is very fast, ensuring quick frequency stabilization.
Q: Are there any specific power supply requirements for ADF4351BCPZ-RL7? A: Yes, it requires a supply voltage between 3.0 V and 3.6 V, with proper decoupling.
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