Allicdata Part #: | 9DB833AFILF-ND |
Manufacturer Part#: |
9DB833AFILF |
Price: | $ 0.00 |
Product Category: | Integrated Circuits (ICs) |
Manufacturer: | IDT, Integrated Device Technology Inc |
Short Description: | IC CLK FANOUT/BUFF ZD 48SSOP |
More Detail: | N/A |
DataSheet: | 9DB833AFILF Datasheet/PDF |
Quantity: | 1000 |
Series: | -- |
Packaging: | Tube |
Part Status: | Active |
PLL: | Yes |
Main Purpose: | PCI Express (PCIe) |
Input: | HCSL |
Output: | HCSL |
Number of Circuits: | 1 |
Ratio - Input:Output: | 1:8 |
Differential - Input:Output: | Yes/Yes |
Frequency - Max: | 166MHz |
Voltage - Supply: | 3.135 V ~ 3.465 V |
Operating Temperature: | -40°C ~ 85°C |
Mounting Type: | Surface Mount |
Package / Case: | 48-BSSOP (0.295", 7.50mm Width) |
Supplier Device Package: | 48-SSOP |
Base Part Number: | ICS9DB833 |
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9DB833AFILF clock/timing, or application specific environment, is the sector of industry that specializes in the development, design and optimization of the 9DB833AFILF technology. 9DB833AFILF has revolutionized the way we think about and deploy timing-critical systems. It provides scalability and flexibility to meet stringent requirements in mission-critical applications, such as those with stringent latency requirements. 9DB833AFILF not only provides the capabilities to meet these requirements, but also the optimization and implementation needed to ensure that the system is performing optimally.
9DB833AFILF technology offers tremendous advantages in application specific fields, such as aerospace, automotive, industrial, medical, and much more. Its flexibility allows for customization of the timing spans and sequencing of the data, enabling rapid prototyping and rapid response development. Its low power usage and scalability make it attractive for battery-driven applications, and its small form factor makes it attractive for smaller scale deployments. With the ability to quickly integrate and customize the design, 9DB833AFILF has become the go-to technology for many mission-critical systems.
The working principle of 9DB833AFILF is relatively straightforward. 9DB833AFILF relies on a variety of implementations to keep track of time, depending on the application. The most common implementation utilizes an oscillator crystal and counter, which can count the number of cycles that occur over a given period of time. The count can then be used to create a clock signal in the system. This approach allows the application to manipulate the timing of the clock, as well as its accuracy. This is accomplished by adjusting the frequency of the oscillator. The oscillator frequency is usually adjusted by adding or subtracting capacitance, with higher capacitance yielding higher frequency. Low frequency oscillators, such as those used in automotive applications, increase capacitance as the frequency decreases, thus producing a regular and consistent clock signal throughout the system.
The challenge with 9DB833AFILF is ensuring the reliability and accuracy of the clock signal, as well as its synchronization. This is accomplished through the use of phase alignment and synchronized signals, as well as digital synchronization, which allows the system to match the 9DB833AFILF clock signal with other signals in the system. This ensures that any hardware components that require synchronization are operating with the correct timing, thus ensuring the accuracy and reliability of the system.
In addition to the traditional clock synchronization and phase-adjustment methods, 9DB833AFILF also utilizes time-stamping to ensure that the timing of the clock can be accurately tracked and monitored. This is useful in applications that need to be able to accurately measure time such as automotive and industrial applications, where rapid response and precise timing is critical. Time-stamping provides the ability to quickly monitor and adjust the clock in order to ensure that it is running in sync with other systems in the application.
9DB833AFILF is an incredibly powerful technology and has revolutionized the field of timing and clock synchronization. Its scalability and flexibility ensure that it can be used in a variety of different applications and its small form factor makes it ideal for small deployments. Its low power consumption, excellent synchronization capabilities, and ability to quickly integrate make it the go-to technology for mission-critical systems in application specific fields.
The specific data is subject to PDF, and the above content is for reference
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