NB3N1200KMNTXG Allicdata Electronics
Allicdata Part #:

NB3N1200KMNTXG-ND

Manufacturer Part#:

NB3N1200KMNTXG

Price: $ 3.05
Product Category:

Integrated Circuits (ICs)

Manufacturer: ON Semiconductor
Short Description: IC CLOCK ZDB FANOUT BUFFER 64QFN
More Detail: N/A
DataSheet: NB3N1200KMNTXG datasheetNB3N1200KMNTXG Datasheet/PDF
Quantity: 1000
1000 +: $ 2.76413
Stock 1000Can Ship Immediately
$ 3.05
Specifications
Differential - Input:Output: Yes/Yes
Base Part Number: NB3N1200
Supplier Device Package: 64-QFN (9x9)
Package / Case: 64-VFQFN Exposed Pad
Mounting Type: Surface Mount
Operating Temperature: 0°C ~ 70°C
Voltage - Supply: 3.135 V ~ 3.465 V
Divider/Multiplier: No/No
Frequency - Max: 133MHz
Series: --
Ratio - Input:Output: 1:12
Number of Circuits: 1
Output: HCSL
Input: Clock
PLL: Yes with Bypass
Part Status: Active
Packaging: Tape & Reel (TR) 
Description

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NB3N1200KMNTXG oscillators are high-performance, low-jitter clock generators that provide an output frequency range of 12 to 1200MHz. They are widely used in various applications such as networking and digital audio/video systems, allowing users to take advantage of their advanced features to get the best performance possible. In this article, we\'ll take a closer look at the application fields and working principle behind NB3N1200KMNTXG oscillators.

The NB3N1200KMNTXG oscillators are widely used in the fields of communications, industrial automation, medical, automotive, audio/video broadcast and communications, aerospace, defense, and other technological areas. These oscillators are especially suitable for low-jitter clock systems, since their low noise and jitter make them ideal for a variety of applications such as high-speed synchronizers, high-speed mixed-signal designs, data converters, sampling receivers, SDR processors, and more.

In terms of its working principle, the NB3N1200KMNTXG oscillators are a type of clock generator that use a wide range of technologies to generate a frequency output that is either fixed or adjustable over a certain range. These include: HCMOS, HBT, and HCSL technologies. They use PLLs, dual-modulus dividers, frequency dividers, voltage-controlled oscillators (VCOs), and programmable logic chips to generate the desired frequency output.

The NB3N1200KMNTXG oscillators use a variety of control signals to generate the frequency output, such as the following: an internal clock buffer, an internal PLL, an optional external feedback loop, an on-board programmable divider, and a voltage-controlled frequency. These control signals can be used to adjust the frequency output according to the user\'s needs, making it ideal for applications where flexibility and accuracy are important.

Another key feature of NB3N1200KMNTXG oscillators is the use of phase-locked loops (PLLs) for frequency synthesis. This type of system is used to reduce jitter, create a clean sine wave output, and provide a wide frequency range. The PLLs in the NB3N1200KMNTXG oscillators are integrated into the chip and can be programmed to generate frequencies anywhere between 12 and 1200MHz.

The NB3N1200KMNTXG oscillators also have an onboard programmable divider that allows the user to adjust the frequency output further. This divider can also be used to generate pulses at different frequencies, allowing the user to create complex patterns. These patterns can be used to create complex digital audio or video signals, or to produce frequencies for synchronization purposes.

In conclusion, the NB3N1200KMNTXG oscillators are high-performance, low-jitter clock generators that are widely used in communications, industrial automation, medical, automotive, audio/video broadcast and communications, aerospace, defense, and other technological areas. They use a combination of technologies to generate a frequency output that is either fixed or adjustable over a certain range, and use phase-locked loops and programmable dividers to provide a wide range of frequencies. The NB3N1200KMNTXG oscillators are ideal for applications where a clean, low-jitter output is required, such as in high-speed synchronizers and mixed-signal designs. Thanks to their high-performance and low-jitter features, they can be used to get the best possible performance in any application.

The specific data is subject to PDF, and the above content is for reference

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