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PI6LC4840ZHE

PI6LC4840ZHE

Overview

Category

PI6LC4840ZHE belongs to the category of integrated circuits.

Use

It is primarily used for signal conditioning and clock distribution in electronic systems.

Characteristics

  • Signal conditioning capabilities
  • Clock distribution functionality
  • Compact package size
  • High reliability

Package

PI6LC4840ZHE is available in a small form factor package, suitable for surface mount technology (SMT) applications.

Essence

The essence of PI6LC4840ZHE lies in its ability to provide efficient signal conditioning and clock distribution solutions.

Packaging/Quantity

This product is typically packaged in reels or trays, with varying quantities depending on customer requirements.

Specifications and Parameters

  • Input voltage range: 2.5V - 3.3V
  • Operating temperature range: -40°C to +85°C
  • Output frequency range: 1MHz - 200MHz
  • Supply current: 10mA (typical)

Pin Configuration

For detailed and complete pin configuration information, please refer to the datasheet provided by the manufacturer.

Functional Characteristics

  • Signal conditioning: PI6LC4840ZHE offers various signal conditioning features such as amplification, filtering, and impedance matching.
  • Clock distribution: It provides multiple clock outputs with low skew and jitter, ensuring accurate synchronization across the system.
  • EMI reduction: The integrated circuit includes measures to minimize electromagnetic interference (EMI) generated by the signals.

Advantages and Disadvantages

Advantages

  • Versatile signal conditioning capabilities
  • Precise clock distribution
  • Compact size for space-constrained designs
  • Reliable performance

Disadvantages

  • Limited output frequency range
  • Requires external power supply

Applicable Range of Products

PI6LC4840ZHE is suitable for a wide range of electronic systems, including but not limited to: - Communication equipment - Data storage devices - Industrial automation systems - Consumer electronics

Working Principles

The working principle of PI6LC4840ZHE involves receiving input signals, conditioning them according to the specified parameters, and distributing synchronized clock signals to various components within the system.

Detailed Application Field Plans

  1. Communication Equipment: PI6LC4840ZHE can be used in routers and switches to ensure accurate signal timing and reduce EMI.
  2. Data Storage Devices: It can be employed in solid-state drives (SSDs) and hard disk drives (HDDs) to enhance signal integrity during data transfer.
  3. Industrial Automation Systems: The integrated circuit can be utilized in programmable logic controllers (PLCs) and motor control systems for precise synchronization and noise reduction.
  4. Consumer Electronics: PI6LC4840ZHE finds application in smartphones, tablets, and gaming consoles to improve signal quality and minimize interference.

Detailed Alternative Models

  1. PI6LC4820ZHE: Similar to PI6LC4840ZHE but with a lower output frequency range.
  2. PI6LC4860ZHE: Offers extended functionality with additional signal conditioning features.
  3. PI6LC4880ZHE: Provides higher output frequency range for specialized applications.

5 Common Technical Questions and Answers

  1. Q: What is the maximum operating temperature of PI6LC4840ZHE? A: The maximum operating temperature is -40°C to +85°C.

  2. Q: Can PI6LC4840ZHE be powered by a 5V supply? A: No, it requires an input voltage range of 2.5V - 3.3V.

  3. Q: How many clock outputs does PI6LC4840ZHE provide? A: It offers multiple clock outputs for distribution within the system.

  4. Q: Can PI6LC4840ZHE be used in automotive applications? A: No, it is not designed for automotive environments.

  5. Q: What is the typical supply current of PI6LC4840ZHE? A: The typical supply current is 10mA.

This encyclopedia entry provides an overview of PI6LC4840ZHE, including its category, use, characteristics, package, specifications, pin configuration, functional characteristics, advantages and disadvantages, applicable range of products, working principles, detailed application field plans, alternative models, and common technical questions and answers.