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MC10H174P

MC10H174P

Product Overview

Category

MC10H174P belongs to the category of integrated circuits (ICs).

Use

This IC is commonly used in electronic devices for signal processing and data transmission.

Characteristics

  • High-speed operation
  • Low power consumption
  • Wide operating voltage range
  • Compact size

Package

MC10H174P is available in a small outline package (SOP) or dual in-line package (DIP).

Essence

The essence of MC10H174P lies in its ability to process and transmit signals efficiently within electronic devices.

Packaging/Quantity

MC10H174P is typically packaged in reels or tubes, with quantities varying based on customer requirements.

Specifications

  • Supply Voltage: 2.0V to 6.0V
  • Operating Temperature Range: -40°C to +85°C
  • Input Voltage Range: -0.5V to VCC + 0.5V
  • Output Voltage Range: -0.5V to VCC + 0.5V
  • Maximum Clock Frequency: 250MHz

Detailed Pin Configuration

  1. CLK (Clock Input)
  2. D (Data Input)
  3. Q (Data Output)
  4. GND (Ground)
  5. VCC (Power Supply)

Functional Features

  • High-speed clocked flip-flop
  • Synchronous operation
  • Edge-triggered design
  • Non-inverting output

Advantages and Disadvantages

Advantages

  • Fast operation speed
  • Low power consumption
  • Wide operating voltage range allows for flexibility in different applications
  • Small size enables integration into compact electronic devices

Disadvantages

  • Limited input and output voltage range
  • Requires external clock signal for proper functioning

Working Principles

MC10H174P operates as a clocked flip-flop, where the input data is synchronized with the clock signal. The flip-flop stores the input data and outputs it on the rising edge of the clock signal.

Detailed Application Field Plans

MC10H174P finds applications in various electronic devices, including: - Communication systems - Data transmission equipment - Signal processing units - High-speed digital circuits

Detailed and Complete Alternative Models

  1. MC100EP174: Similar functionality with enhanced performance.
  2. MC74HC174: Lower power consumption with reduced operating voltage range.
  3. MC14584: Hex inverter with similar pin configuration but different functionality.

Note: This list is not exhaustive, and there are several alternative models available in the market.

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10個與MC10H174P在技術方案中應用相關的常見問題與解答

Sure! Here are 10 common questions and answers related to the application of MC10H174P in technical solutions:

  1. Q: What is MC10H174P? A: MC10H174P is a high-speed ECL (Emitter-Coupled Logic) quad D-type flip-flop with differential outputs.

  2. Q: What are the key features of MC10H174P? A: The key features of MC10H174P include high-speed operation, low power consumption, differential outputs, and compatibility with ECL logic families.

  3. Q: What is the typical operating voltage range for MC10H174P? A: The typical operating voltage range for MC10H174P is between -5.2V and -4.5V.

  4. Q: Can MC10H174P be used in high-frequency applications? A: Yes, MC10H174P is designed for high-speed operation and can be used in high-frequency applications.

  5. Q: How many flip-flops are there in MC10H174P? A: MC10H174P consists of four individual D-type flip-flops.

  6. Q: What is the maximum clock frequency supported by MC10H174P? A: The maximum clock frequency supported by MC10H174P is typically around 250 MHz.

  7. Q: Is MC10H174P compatible with other ECL logic families? A: Yes, MC10H174P is compatible with other ECL logic families such as MECL 10K and MECL 100K.

  8. Q: Can MC10H174P be used in both single-ended and differential mode? A: Yes, MC10H174P can be used in both single-ended and differential mode, depending on the application requirements.

  9. Q: What is the power supply voltage required for MC10H174P? A: The power supply voltage required for MC10H174P is typically between -5.2V and -4.5V.

  10. Q: Are there any specific applications where MC10H174P is commonly used? A: MC10H174P is commonly used in applications such as high-speed data communication systems, clock distribution networks, and digital signal processing circuits.

Please let me know if you have any more questions!