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ADF4351

ADF4351 Development Board RF Signal Source Phase Locked Loop 35M-4400M RF Signal Generation Module

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RF amplifier for everyday users

The ADF4351 Development Board RF Signal Source Phase Locked Loop 35M-4400M RF Signal Generation Module by ADF4351 is a mid-range rf amplifier designed for everyday users. 100% of buyers rate it 4★ or above.

₹3,689-17%
MRP:₹4,442Save ₹753
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Total: ₹3,689
Buying tip: A quality investment for dependable performance and premium build quality.
Estimated delivery: 4 Aug18 Aug
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SKU: bg-2008353Category: RF amplifier

About This Product

The ADF4351 Development Board RF Signal Source Phase Locked Loop 35M-4400M RF Signal Generation Module by ADF4351 is a mid-range rf amplifier designed for everyday users. It delivers reliable performance at an accessible price.

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100% of buyers rated this product 4 stars or above.

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Description: The core chip uses ADF4351, which is optimized according to the official principles and has extremely high power flatness within the entire module working frequency band. Parameters:


Output frequency range: ADF4351:35M-4400M(4.4G) Output signal: 2200M-4400M fundamental wave (sine wave) 35M-2200M fundamental wave frequency division (wave square) Output signal interface: SMA female Default +-50ppm 25M imported active crystal oscillator. Provides circuit diagram and STM32 test program in PDF format. Control method: three-wire SPI. Leads out control pin and lock status pin. All functions can be realized, including point frequency, frequency sweep and frequency hopping. The step can be up to 1K and the low frequency step can be up to 0.1K, according to the crystal frequency. Decide. Packaging weight 30 grams, packaging size 13cm*8.5cm*2.5cm Precautions: 1. It can be powered by 3.3v pin, and the power supply can provide a current of not less than 500mA. 2. The typical power supply is 5v. Package includes: 1 x 35M-4400M RF signal generation module



Product Safety Information

Setup Guide

1
Identify the pins
Locate VCC (power), GND (ground), and data pins (SDA/SCL for I2C, MOSI/MISO for SPI, or TX/RX for UART). Refer to the pinout diagram on the product page.
2
Wire to your microcontroller
Connect VCC to 3.3V or 5V (check the module spec), GND to GND, and data pins to the appropriate GPIO pins on your Arduino or Raspberry Pi.
3
Install libraries
In Arduino IDE, go to Sketch → Include Library → Manage Libraries and search for the sensor library. Install the recommended version.
4
Upload example sketch
Open File → Examples → [library name] → Basic Example. Upload to your board and open Serial Monitor to view output.
5
Calibrate if needed
Some sensors (temperature, humidity, distance) may need a short warm-up period or calibration. Run the calibration sketch if provided.