Allicdata Part #: | 5T9302EJGI8-ND |
Manufacturer Part#: |
5T9302EJGI8 |
Price: | $ 0.00 |
Product Category: | Integrated Circuits (ICs) |
Manufacturer: | IDT, Integrated Device Technology Inc |
Short Description: | IC CLOCK BUFFER MUX 2:2 24-TSSOP |
More Detail: | Clock Fanout Buffer (Distribution), Multiplexer IC... |
DataSheet: | 5T9302EJGI8 Datasheet/PDF |
Quantity: | 1000 |
1 +: | 0.00000 |
Series: | TeraBuffer™ II |
Packaging: | Tape & Reel (TR) |
Part Status: | Obsolete |
Type: | Fanout Buffer (Distribution), Multiplexer |
Number of Circuits: | 1 |
Ratio - Input:Output: | 2:2 |
Differential - Input:Output: | Yes/Yes |
Input: | CML, eHSTL, HSTL, LVDS, LVEPECL, LVPECL, LVTTL |
Output: | LVDS |
Frequency - Max: | 450MHz |
Voltage - Supply: | 2.3 V ~ 2.7 V |
Operating Temperature: | -40°C ~ 85°C |
Mounting Type: | Surface Mount |
Package / Case: | 20-TSSOP (0.173", 4.40mm Width) Exposed Pad |
Supplier Device Package: | 20-TSSOP |
Base Part Number: | IDT5T9302 |
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Clock/Timing - Clock Buffers, Drivers represent a set of Circuits that amplify signals and supply them to multiple output locations, while maintaining the original timing relationship of the signals. 5T9302EJGI8 is a clock buffer found in many embedded systems.
A clock/timing buffer, such as 5T9302EJGI8, alters the timing relationship between an input signal and the signals it transmits to multiple outputs. This allows for the signals to maintain their original timing relationship; for instance, a signal sent out of one output may be sent out of another output at the same time, or it can be delayed. This is an essential function for many embedded systems, as it can allow for more efficient use of resources, or to reduce the number of clock buffers needed in a design. In some cases, it also allows a system to remain in sync while transmitting data to multiple locations.
The 5T9302EJGI8 clock buffer works by taking a single input signal and buffering it and supplying it to multiple destinations. This allows the signal to be distributed to various locations simultaneously. For example, if a master clock signal is supplied to the buffer, the same signal can be sent to the various outputs of the buffer in the same time. This is useful in applications such as high speed clocks, where the symmetric nature of the buffer allows an efficient distribution of the signal.
The 5T9302EJGI8 is composed of two parts: a reference clock driver and a phase-locked loop. The reference clock driver is used to delay the signal provided to the outputs of the buffer, thus creating the desired delay. The phase-locked loop is used to synchronize the input signal to the clock signal. By using the reference clock driver and the phase-locked loop, the 5T9302EJGI8 is able to create a symmetric timing regardless of the input signal.
The 5T9302EJGI8 clock/timing buffer is used in many types of embedded system designs, including FPGAs, microcontrollers, and ICs. This type of buffer is especially useful in high speed clock distribution, as it is able to distribute the same clock signal to various destinations simultaneously and keep them in sync. Furthermore, they are used in applications that require synchronization between multiple devices, as they allow for the distribution of the same clock signal to each device.
Due to their ability to provide the same signal to multiple destinations simultaneously, 5T9302EJGI8 clock/timing buffers are used in many applications such as network processing, distributed computing, and digital signal processing. They are also used in data communications systems for sending signals over long distances. Moreover, these buffers are also used in advanced applications such as medical imaging systems.
In summary, the 5T9302EJGI8 clock/timing buffers are a multi-purpose device used in many types of embedded systems. By using these buffers, designers can create effective clock distribution networks in order to ensure synchronization between multiple devices. Furthermore, this type of buffer can also be used for sending signals over long distances and for various advanced applications such as medical imaging systems.
The specific data is subject to PDF, and the above content is for reference
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