553MILFT Allicdata Electronics

553MILFT Integrated Circuits (ICs)

Allicdata Part #:

800-1804-2-ND

Manufacturer Part#:

553MILFT

Price: $ 0.00
Product Category:

Integrated Circuits (ICs)

Manufacturer: IDT, Integrated Device Technology Inc
Short Description: IC CLK BUFFER 1:4 200MHZ 8SOIC
More Detail: Clock Fanout Buffer (Distribution) IC 1:4 200MHz 8...
DataSheet: 553MILFT datasheet553MILFT Datasheet/PDF
Quantity: 24000
Stock 24000Can Ship Immediately
Specifications
Series: ClockBlocks™
Packaging: Tape & Reel (TR) 
Part Status: Active
Type: Fanout Buffer (Distribution)
Number of Circuits: 1
Ratio - Input:Output: 1:4
Differential - Input:Output: No/No
Input: CMOS
Output: CMOS
Frequency - Max: 200MHz
Voltage - Supply: 2.375 V ~ 5.25 V
Operating Temperature: -40°C ~ 85°C
Mounting Type: Surface Mount
Package / Case: 8-SOIC (0.154", 3.90mm Width)
Supplier Device Package: 8-SOIC
Base Part Number: ICS553
Description

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Clock/Timing - Clock Buffers, Drivers, is an important field of circuits and digital design, utilizing fast and accurate clocks to drive reliable digital signals. The 553MILFT (Multiple Interleaved Low Frequency Timer) application, based on the concept of clock buffering, offers a powerful solution for electronic devices. This article will discuss the basics of the 553MILFT application field, as well as key aspects of its working principle.

Basics of the 553MILFT Application Field

The 553MILFT circuit, also referred to as the milft, is based on the original principle of clock buffering. The term clock buffering refers to the process of driving a clock signal along multiple lines to increase its accuracy. By driving a clock along multiple lines, the signal is less likely to be affected by environmental factors and it is therefore more accurate.

Clock buffering has been applied in the 553MILFT to develop a solution for electronic devices that must maintain fast, accurate and stable clock signals. The 553MILFT includes three components – a clock buffer, a low-frequency timer and a bridge controller. Clock buffering is used to distribute the clock signal across four different lines, providing each line with its own signal. The four signals are then interleaved and sent to the low-frequency timer.

Once the clock signal is sent to the low-frequency timer, it is then integrated with the bridge controller. The bridge controller allows the 553MILFT to monitor the clock signal and to adjust it if necessary. If the clock signal is not in sync with the device’s requirements, the bridge controller will adjust the signal accordingly. This ensures that all devices connected to the 553MILFT receive an accurate clock signal.

Working Principle of the 553MILFT

The 553MILFT application is based on the principle of clock buffering, which allows for the transmission of an accurate and reliable clock signal. When the clock signal is transmitted on the clock buffer, it is then sent to the low-frequency timer. This is where the clock signal is interleaved and then sent to the bridge controller. The bridge controller is responsible for monitoring and adjusting the clock signal if necessary. This helps ensure that all devices connected to the 553MILFT receive an accurate clock signal. The bridge controller will also adjust the signal in order to meet the requirements of the device. At the same time, the bridge controller will also monitor the clock signal to make sure it is not affected by environmental factors.The combination of the clock buffer, low-frequency timer, and bridge controller results in a reliable and accurate clock signal. The 553MILFT system is designed to meet the needs of devices that require accuracy, speed and stability. The ability of the 553MILFT to adjust the signal according to the device’s requirements ensures that all devices connected to the 553MILFT receive the best possible signal.

Conclusion

The 553MILFT application is an important field of circuits and digital design. It applies the principle of clock buffering to provide an accurate and reliable clock signal for electronic devices. The 553MILFT includes three components – a clock buffer, a low-frequency timer and a bridge controller. These components work together to ensure that all connected devices receive the best possible signal. By using the 553MILFT, engineers can make sure the accuracy, speed and stability of their devices meet the required standards.

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

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