PT7C5035ALD-2WF Allicdata Electronics
Allicdata Part #:

PT7C5035ALD-2WF-ND

Manufacturer Part#:

PT7C5035ALD-2WF

Price: $ 0.00
Product Category:

Integrated Circuits (ICs)

Manufacturer: Diodes Incorporated
Short Description: XOIC WAFER
More Detail: N/A
DataSheet: PT7C5035ALD-2WF datasheetPT7C5035ALD-2WF Datasheet/PDF
Quantity: 1000
Stock 1000Can Ship Immediately
Specifications
Series: *
Part Status: Active
Description

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PT7C5035ALD-2WF is a specific type of clock/timing device, which includes the integrated oscillator, built-in PLL, and low-jitter differential clock output driver. It is used mainly in Ethernet over Coax applications and is designed for enhanced signal integrity. It is also suitable for applications in high-speed data acquisition, clock distribution, data communication, and high-speed video processing. It is a versatile, high-performance device, with a wide range of features making it an excellent choice for a variety of applications.

Application Fields

The PT7C5035ALD-2WF’s integrated oscillator, PLL, and low-jitter differential clock output driver make it particularly well suited for applications in high-speed data acquisition and data communication, as well as in clock distribution and high-speed video processing. Its integrated PLL and differential outputs can be used to generate multiple clock frequencies, allowing the device to be used in a wide range of applications that require a variety of input and output timing signals. In addition, the low-jitter aspect of the device allows it to be used in applications requiring precise synchronization of video signals.

The device is widely used in Ethernet over Coax applications, where it proves an ideal solution for converting data signals from low-speed Ethernet systems to higher-speed coaxial systems. This application field is particularly suitable for the PT7C5035ALD-2WF as it can convert both the low-speed 12 Mbps Ethernet signal and the high-speed 100 Mbps Fast Ethernet signal to the coaxial cable for transmission. It is also suitable for providing data signals for Distributed Antenna Systems (DASs) where it can provide low-skew, low-jitter clock signals.

Working Principle

The PT7C5035ALD-2WF contains both an integrated oscillator and a PLL, which is responsible for locking the input and output clocks together. The oscillator is an LC or crystal-based oscillator which generates a reference clock signal. The PLL then compares the reference clock signal with the input clock signal, providing a feedback loop which locks the output clock to the input clock. In this way, the output clock is always synchronized with the input clock, ensuring accuracy and low jitter levels.

The device also features a differential output driver, which converts the single-ended output from the PLL to a differential output. This differential output is designed to reduce the skew between the two output signals and reduce EM interference, making it an excellent choice for applications where signal integrity is essential. In addition to the differential output, the device also features a single-ended output, allowing the user to select which type of output is required.

The device also features a built-in control circuit, allowing the user to program the output frequency of the device and adjust the frequency in real time, as well as providing a means of controlling the device’s power-on/off functions. This allows the user to optimize the performance of the device for their specific application.

The versatile feature set of the PT7C5035ALD-2WF makes it an attractive solution for a wide range of applications. Its integrated oscillator, PLL, and differential output make it ideal for high-speed data acquisition, clock generation, data communication, and video processing applications. The built-in control circuit and programmable output frequency also make it a very user-friendly solution. For these reasons, the PT7C5035ALD-2WF is a widely used and highly reliable device for a variety of application fields.

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

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