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In the rapidly developing digital world around the world, accurate clock signals are as crucial as pulses. The SG2016VHN factory coded X1G006121000515 frequency 156.25MHz differential crystal oscillator under Epson Crystal oscillator company has unique advantages, leading the pace of this digital world with its excellent stability and accuracy. The 156.25MHz differential crystal oscillator is a precision timing frequency component, and its uniqueness lies in its use of differential signal output, which can effectively suppress power noise and electromagnetic interference, improve signal anti-interference ability, and ensure accurate clock signal transmission. This type of differential imported crystal oscillator is widely used in various high-precision, high-frequency electronic devices, first in the field of communication. Crystal oscillators play a crucial role in high-speed data transmission in optical fiber communication, which requires highly stable clock signals for synchronization, SG2016VHN original factory code X1G00612100515 frequency 156.25MHz differential crystal oscillator can provide high-precision clock signals, ensuring the stability and accuracy of data transmission in optical fibers.
In the field of wireless communication, such as 5G communication, satellite communication, etc., high-speed transmission of large amounts of data needs to be processed. The SG2016VHN 156.25MHz differential crystal oscillator can also provide stable and accurate clock signals, ensuring the reliability of communication. Secondly, in the field of medical equipment, The SG2016VHN 156.25MHz differential crystal oscillator also demonstrates its unique advantages. In electrocardiography, it is necessary to accurately record changes in cardiac electrical signals, and a stable clock signal is the key to achieving this goal. The 156.25MHz differential crystal oscillator can provide high-precision clock signals, ensuring the accuracy and readability of electrocardiogram recording. In addition, in ultrasound diagnostic instruments, stable clock signals can improve the quality and clarity of images, providing doctors with more accurate diagnostic results. In addition, the 156.25MHz differential crystal oscillator also plays an important role in the field of industrial control. In automated production lines, robots and other industrial equipment, precise control of the time and actions of each link is required, and stable clock signals are the key to achieving this goal. The sentence is:, The SG2016VHN 156.25MHz differential crystal oscillator can provide high-precision clock signals, ensuring the stability and reliability of industrial equipment.
In addition to the aforementioned applications, the SG2016VHN 156.25MHz differential crystal oscillator has also demonstrated its unique value in many other fields. For example, in the field of automotive electronics, with the increasing richness and complexity of automotive functions, a large amount of data and signals need to be processed. The SG2016VHN 156.25MHz differential crystal oscillator can provide stable and accurate clock signals to ensure the normal operation of automotive electronic devices. As a precise rhythm driver of the future digital world, the 156.25MHz differential crystal oscillator is leading the development of electronic devices with its unique frequency and application value. With the continuous progress of technology and the expansion of application fields, the 156.25MHz differential crystal oscillator will continue to play an important role, bringing more possibilities and surprises to our digital world. The sentence is:.
料号 | 型号 | 频率 | 输出 | 电压 | 工作温度 | 精度 |
X1G0061210001 | SG2016VHN | 156.250000MHz | LVDS | 3.135 to 3.465 V | -40 to +85 C |
+/-20 ppm |
X1G0061210003 | SG2016VHN | 156.250000MHz | LVDS | 3.135 to 3.465 V | -40 to +105 ℃ |
+/-20 ppm |
X1G0061210004 | SG2016VHN | 156.250000MHz | LVDS | 1.710 to 1.890V | -40 to+105 ℃ |
+/-20 ppm |
X1G0061210005 | SG2016VHN | 156.250000MHz | LVDS | 1.710 to 1.890V | -40 to+85 ℃ |
+/-20 ppm |
X1G0061210601 | SG2016VHN | 491.520000MHz | LVDS | 3.135 to 3.465 V | -40 to +85 C |
+/-20 ppm |