HTCCG Allicdata Electronics
Allicdata Part #:

HTCCG-ND

Manufacturer Part#:

HTCCG

Price: $ 271.31
Product Category:

Integrated Circuits (ICs)

Manufacturer:
Short Description: IC GENERATOR CRYSTAL CLOCK 14DIP
More Detail: N/A
DataSheet: HTCCG datasheetHTCCG Datasheet/PDF
Quantity: 1000
1 +: $ 246.64500
Stock 1000Can Ship Immediately
$ 271.31
Specifications
Ratio - Input:Output: 1:4
Supplier Device Package: 14-CDIP
Package / Case: 14-CDIP (0.300", 7.62mm)
Mounting Type: Through Hole
Operating Temperature: -55°C ~ 225°C
Voltage - Supply: 4.5 V ~ 5.5 V
Divider/Multiplier: Yes/No
Frequency - Max: 20MHz
Differential - Input:Output: No/No
Series: HTMOS™
Number of Circuits: 1
Output: CMOS, TTL
Input: Clock, Crystal
PLL: No
Type: Clock Generator
Part Status: Active
Packaging: Tube 
Description

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High-performance and low-cost timing solutions have become increasingly important in many digital designs, such as high-speed serial interconnects and communication systems. The recently developed high-speed clock generator/control generator (HTCCG) technology is well-positioned to meet these demands, providing a way to generate highly accurate clock signals at frequencies of up to 40 MHz. This article will provide an overview of the technology, its application field, and how it works.

HTCCG is suitable for a variety of timing applications, including high-speed serial data interconnects and communication systems. It can also be used for clock synchronization across multiple networks, as well as clock generation and control circuits in various computer systems. HTCCG is a type of phase-locked loop (PLL) whose purpose is to generate a consistent and high-quality clock signal that is synchronized with a reference input signal. The purpose of the HTCCG is to provide accurate and stable clock frequencies, even under rapidly changing conditions. This is accomplished by controlling the phase and frequency of the generated clock relative to the reference input, thus avoiding any potential errors or delays that would otherwise occur.

At the core of the HTCCG is a digital frequency synthesizer that is used to generate a wide range of clock frequencies. It works by locking onto a reference signal and generating an output signal whose phase and frequency match that of the reference signal. This allows the generated clock to stay in sync with the reference signal, regardless of any changes that may occur in the reference signal. The frequency of the resulting clock signal is controlled by adjusting the frequency of the digital frequency synthesizer. In order to maintain synchronization, the HTCCG also contains a feedback loop that allows it to detect and adjust for any differences between the reference and generated signals.

In addition to its ability to maintain synchronization with a reference signal, the HTCCG also offers improved power efficiency compared to other types of clocks. This is due to the fact that the clock is not continuously generated, but rather only when necessary. This reduces the amount of power used, as well as the amount of heat generated by the clock. Additionally, because the HTCCG uses a digital frequency synthesizer, it has excellent accuracy and stability compared to other forms of clock generation.

The HTCCG is also more reliable than traditional clock generators due to its built-in self-calibration features. This feature allows the HTCCG to adjust its output based on environmental conditions, resulting in fewer errors and improved stability. Additionally, the HTCCG can be used in multiple clock domains to provide more than one frequency, making it ideal for high-speed systems that need multiple frequencies and clocks. Finally, the HTCCG can be used in systems with large numbers of inputs, making it suitable for use in highly complex digital systems.

In conclusion, the HTCCG technology is a reliable and cost-effective solution for clock and timing applications. It provides a way to generate highly accurate and stable clock signals at frequencies of up to 40 MHz, and is suitable for use in both high-speed serial data interconnects and communication systems, as well as clock synchronization across multiple networks. Additionally, it offers improved power efficiency compared to traditional clocks, and can be used in systems with multiple clock domains. Finally, its self-calibration features make it more reliable than other forms of clock generation. All of these features make the HTCCG an attractive option for those seeking high-performance and low-cost timing solutions.

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

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