Allicdata Part #: | NB6LQ572MNG-ND |
Manufacturer Part#: |
NB6LQ572MNG |
Price: | $ 8.01 |
Product Category: | Integrated Circuits (ICs) |
Manufacturer: | ON Semiconductor |
Short Description: | IC CLK MULTIPLEXR 4:2 5GHZ 32QFN |
More Detail: | Clock Multiplexer, Translator IC 4:2 5GHz 32-VFQFN... |
DataSheet: | NB6LQ572MNG Datasheet/PDF |
Quantity: | 74 |
1 +: | $ 7.27650 |
10 +: | $ 6.68745 |
100 +: | $ 5.64795 |
500 +: | $ 5.02425 |
1000 +: | $ 4.60845 |
Series: | ECLinPS MAX™ |
Packaging: | Tube |
Part Status: | Active |
Type: | Multiplexer, Translator |
Number of Circuits: | 1 |
Ratio - Input:Output: | 4:2 |
Differential - Input:Output: | Yes/Yes |
Input: | CML, LVDS, LVPECL |
Output: | LVPECL |
Frequency - Max: | 5GHz |
Voltage - Supply: | 2.375 V ~ 3.6 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: | NB6LQ572 |
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The NB6LQ572MNG belongs to the category of clock buffers, drivers, and is employed in numerous commercial and consumer applications. Its applications include use in clock trees, frequency synthesisers, clock and data distribution networks, server clock trees, etc., in addition to consumer oriented consumer products such as PC motherboards, TV sets, and home appliances. Its features and properties make it a viable choice for these applications.
NB6LQ572MNG is based on a differential clock architecture. This architecture allows for low-voltage logic that is compatible with high-speed logic. The design also offers low-power consumption, as well as reduced jitter and crosstalk. It has a maximum clock frequency of 600 MHz and a single ended output voltage of 3.3V. It can drive up to four different digital chips, each with a separate clock source, allowing for a great degree of flexibility and scalability.
In terms of clock-buffering, the NB6LQ572MNG is designed to provide a reliable data transmission and low-power draw, compared to other clock distributors. The output is generated by an internal oscillator and distributed by three main active components. The first is the main clock buffers, which comprises two resistors and two RC networks that buffer the clock tree. The second active component is the phase-locked loop (PLL). This component converts the incoming clock signal into a higher and lower frequency, which is then used to regulate the output frequency. Finally, the third component is the Output Driver. This component is responsible for switching the output signals, thus ensuring that the output remains consistent.
The NB6LQ572MNG provides a number of features to make it suitable for use in high-speed communication networks. These features include a Multi-GHz frequency, programmable slew rate, programmable rise and fall times and adjustable duty cycle. Additionally, the device supports a wide range of digital protocols like Universal Serial Bus (USB), LVDS, PCIe, and DDR. In addition, it supports both synchronous and asynchronous clocking.
The NB6LQ572MNG also employs safety mechanisms to help protect system-level components from internal or external faulty data. It is designed to buffer both its inputs and outputs, allowing for a greater level of protection. In addition, it can also detect any incorrect data being sent or received and then adjust the output accordingly. As a result, it provides a level of accuracy and reliability for system-level components.
To ensure its performance, the NB6LQ572MNG has been tested and certified by an independent third-party laboratory. It has passed a series of environment and reliability tests to ensure its performance and reliability. The NB6LQ572MNG also features error-reporting features, which can flag any potential errors. This allows technicians to troubleshoot any issues before they become more serious.
The NB6LQ572MNG is an aged and versatile clock buffer, driver and controller, which is ideal for applications that require low-power, high-speed clock distribution. Its multi-GHz frequency and programmable slew rate, rise and fall times and adjustable duty cycle make it a viable choice for system-level applications. Furthermore, the device performs well in a variety of environments and has been tested and certified by an independent third-party laboratory. For these reasons, it is often the device of choice for clock distribution in commercial and consumer products.
The specific data is subject to PDF, and the above content is for reference
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