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Application advantages of VG3225EFN crystal oscillator in wireless modules
1.Ensure communication stability: High frequency stability enables the VG3225EFN crystal oscillator to provide stable clock signals for wireless modules, ensuring the stability and reliability of data transmission and reception. This is particularly important for applications that require high-precision communication, such as 5G communication, Wi Fi, Bluetooth, etc.
2.Extending device battery life: Low power design helps reduce the overall energy consumption of wireless modules and extends the battery life of battery powered devices. This is crucial for applications such as IoT devices and smart wearable devices, improving user experience.
3.Supporting device miniaturization design: The compact packaging design makes the VG3225EFN crystal oscillator very suitable for integration into wireless modules, assisting in device miniaturization and lightweighting. This is of great significance for the design of modern electronic devices, meeting the market's demand for portability and space utilization.
4.Enhanced equipment reliability: The high reliability and long lifespan characteristics enable the VG3225EFN crystal oscillator to operate stably in wireless modules for a long time, reducing the frequency of equipment failures and maintenance, improving the reliability and service life of the equipment, and making it suitable for various harsh application environments.
5.Adaptable to various environments: The wide temperature range enables the VG3225EFN crystal oscillator to operate stably under various environmental conditions, maintaining good performance in both outdoor and industrial environments, ensuring the normal use of wireless modules.
产品编码 | 型号 | 频率 | 尺寸 | 输出波 | 电源电压 |
X1G005361000100 | VG3225EFN | 122.880000MHz | 3.20x2.50x1.05mm | LV-PECL | 3.135 to 3.465V |
X1G005361001100 | VG3225EFN | 148.352000MHz | 3.20x2.50x1.05mm | LV-PECL | 3.135 to 3.465V |
X1G005361001200 | VG3225EFN | 148.500000MHz | 3.20x2.50x1.05mm | LV-PECL | 3.135 to 3.465V |
X1G005361001300 | VG3225EFN | 153.600000MHz | 3.20x2.50x1.05mm | LV-PECL | 3.135 to 3.465V |
X1G005361001400 | VG3225EFN | 76.800000MHz | 3.20x2.50x1.05mm | LV-PECL | 3.135 to 3.465V |
X1G005361001500 | VG3225EFN | 200.000000MHz | 3.20x2.50x1.05mm | LV-PECL | 3.135 to 3.465V |
X1G005361001600 | VG3225EFN | 125.000000MHz | 3.20x2.50x1.05mm | LV-PECL | 3.135 to 3.465V |
X1G005361001700 | VG3225EFN | 122.880000MHz | 3.20x2.50x1.05mm | LV-PECL | 3.135 to 3.465V |
X1G005361060200 | VG3225EFN | 245.760000MHz | 3.20x2.50x1.05mm | LV-PECL | 3.135 to 3.465V |
X1G005361060400 | VG3225EFN | 208.000000MHz | 3.20x2.50x1.05mm | LV-PECL | 3.135 to 3.465V |
X1G005361060600 | VG3225EFN | 204.800000MHz | 3.20x2.50x1.05mm | LV-PECL | 3.135 to 3.465V |
Quartz crystal oscillators, as a highly stable frequency source, are widely used in various instruments and equipment. Among them, VCXO oscillator has become an indispensable key component in various receivers and transceivers due to its adjustable frequency. In these devices, in order to compensate for factors such as long-term aging of crystal oscillators and Doppler frequency shift between transmitting and receiving signals, voltage controlled crystal oscillators are usually required to have a wide voltage control range; And in order to adapt to the working environment in the wild and space, it is also required to have good frequency and temperature stability over a wide temperature range.