MC100ES6014DT Overview
The MC100ES6014DT is a high-performance dual 1:4 clock driver designed to meet the demanding needs of modern digital applications. With its low skew and high-speed capabilities, this device ensures reliable clock distribution across various systems. The part is optimized for low power consumption while maintaining a robust output capability, making it ideal for integration into complex electronic designs. For detailed specifications, visit IC Manufacturer.
MC100ES6014DT Key Features
- Low Skew: The MC100ES6014DT offers minimal output skew, which is crucial for synchronous systems, ensuring accurate timing and reducing potential errors in digital signal processing.
- High Speed: Capable of operating at elevated frequencies, this clock driver supports high-speed applications, benefiting users by enhancing overall system performance.
- Low Power Consumption: Designed with efficiency in mind, this device minimizes power usage, allowing for reduced thermal output and extended battery life in portable applications.
- Flexible Output Configurations: The dual 1:4 configuration provides versatility in design, enabling easy integration into various circuit layouts without sacrificing performance.
MC100ES6014DT Technical Specifications
| Parameter | Value |
|---|---|
| Supply Voltage (VCC) | 3.3V |
| Output Skew | 150 ps (max) |
| Operating Frequency | Up to 1 GHz |
| Output Drive | ??24 mA |
| Input Voltage High (VIH) | 2.0V (min) |
| Input Voltage Low (VIL) | 0.8V (max) |
| Propagation Delay | 3.5 ns (typ) |
| Temperature Range | -40??C to 85??C |
MC100ES6014DT Advantages vs Typical Alternatives
When compared to typical alternatives, the MC100ES6014DT excels in low skew and high-speed clock distribution, ensuring better synchronization across circuits. Its low power consumption and robust output capabilities make it a reliable choice for engineers looking to optimize performance and efficiency in their designs.
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Typical Applications
- Telecommunications Equipment: This clock driver is well-suited for telecommunications systems, where accurate timing is essential for signal integrity and data transmission efficiency across various network components.
- Data Communication: Ideal for applications involving high-speed data transfer, the device ensures reliable clock signals that enhance performance in communication protocols.
- Digital Signal Processing: The part plays a critical role in digital signal processing applications, where precise clock management is vital for effective data handling and processing.
- Consumer Electronics: The MC100ES6014DT is also applicable in consumer electronics, providing stable clock signals that improve the overall user experience in devices like smartphones and tablets.
MC100ES6014DT Brand Info
The MC100ES6014DT is manufactured by a leading semiconductor company known for its commitment to high-quality electronic components. This device reflects the brand’s dedication to innovation and reliability, offering engineers a robust solution for their clock distribution needs.
FAQ
What is the maximum operating frequency of the MC100ES6014DT?
The maximum operating frequency of this clock driver is up to 1 GHz, making it suitable for high-speed applications that require efficient clock distribution.
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How does the MC100ES6014DT achieve low skew?
This device achieves low skew through its advanced design and manufacturing processes, ensuring that output signals remain synchronized, which is crucial for timing-sensitive applications.
What is the power supply voltage for the MC100ES6014DT?
The MC100ES6014DT operates at a supply voltage of 3.3V, providing compatibility with various digital systems and enhancing its integration potential.
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Can the MC100ES6014DT be used in automotive applications?
Yes, the MC100ES6014DT is rated for a temperature range of -40??C to 85??C, making it suitable for use in automotive environments where temperature fluctuations can occur.
What types of outputs does the MC100ES6014DT provide?
This clock driver features a dual 1:4 output configuration, allowing it to distribute clock signals to multiple components effectively, enhancing design flexibility.




