NB3F8L3010CMNG Allicdata Electronics
Allicdata Part #:

NB3F8L3010CMNGOS-ND

Manufacturer Part#:

NB3F8L3010CMNG

Price: $ 5.36
Product Category:

Integrated Circuits (ICs)

Manufacturer: ON Semiconductor
Short Description: IC CLK BUFFER 3:10 200MHZ 32QFN
More Detail: Clock Fanout Buffer (Distribution), Multiplexer IC...
DataSheet: NB3F8L3010CMNG datasheetNB3F8L3010CMNG Datasheet/PDF
Quantity: 1000
1 +: $ 4.87620
10 +: $ 4.40244
100 +: $ 3.64455
500 +: $ 3.17362
1000 +: $ 2.76413
Stock 1000Can Ship Immediately
$ 5.36
Specifications
Series: --
Packaging: Tube 
Part Status: Active
Type: Fanout Buffer (Distribution), Multiplexer
Number of Circuits: 1
Ratio - Input:Output: 3:10
Differential - Input:Output: Yes/No
Input: HCSL, LVDS, LVPECL, SSTL, Crystal
Output: LVCMOS, LVTTL
Frequency - Max: 200MHz
Voltage - Supply: 2.375 V ~ 3.465 V
Operating Temperature: -40°C ~ 85°C
Mounting Type: Surface Mount
Package / Case: 32-VFQFN Exposed Pad
Supplier Device Package: 32-QFN (5x5)
Base Part Number: NB3F8L3010C
Description

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Clock Buffers, Drivers, and other Clock/Timing devices are an integral part of any digital system. These devices provide the clocks and other signals that synchronize the various operations within a digital system. The NB3F8L3010CMNG is a high-performance, low-power, low-glitch buffer featuring advanced design techniques. This part has been designed to provide a cost effective solution in various market segments. This article explores its application fields and working principles.

The NB3F8L3010CMNG is suitable for a variety of applications in the fields of telecommunications, high-speed digital storage and computing, automotive electronics, and other industrial applications. The device utilizes a push-pull architecture and is designed for use in 2.3V to 3.3V logic interfaces. It features high drive strength, low noise board layout, and low power consumption. As a buffer, it is capable of driving signals from high input frequency to high output frequency. It also features a high speed level shift from 1.8V to 3.3V.

As for its working principle, the NB3F8L3010CMNG is designed to increase the speed of a clock signal by driving it from a high input frequency to a high output frequency. The device utilizes a pair of transistors connected via an inductor. A clock signal is applied to the input of the device and is then passed through the inductor to the two transistors. The transistors act as buffers and then drive the clock signal to the output. This process creates an amplified version of the clock signal, which is faster than the original input signal.

In addition to its buffering capabilities, the NB3F8L3010CMNG also has high speed level shifting capabilities. It is capable of level shifting a 1.8V input clock signal to 3.3V. This is achieved by driving the clock signal through a pair of transistors connected in series. As the clock signal passes through the transistors, its voltage is boosted from 1.8V to 3.3V. This allows the device to be compatible with both 1.8V and 3.3V logic types.

The NB3F8L3010CMNG has many features that makes it suitable for a variety of market segments. It features low power consumption, low glitch level, high frequency drive strength, and a high speed level shift from 1.8V to 3.3V. This makes the NB3F8L3010CMNG an ideal choice for applications in telecommunications, automotive electronics, and other industrial applications.

In conclusion, the NB3F8L3010CMNG is a high-performance, low-power, low-glitch buffer that is specifically designed for use in 2.3V to 3.3V logic interfaces. It is suitable for a variety of applications in the fields of telecommunications, digital storage, computing, and automotive electronics. Its advanced design allows it to provide a cost effective solution while providing reliable performance and reduced power consumption. The device features a push-pull architecture, high drive strength, low noise board layout, and high-speed level shifting from 1.8V to 3.3V. This makes the NB3F8L3010CMNG an ideal choice for Clock Buffers, Drivers, and other Clock/Timing devices.

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

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