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SN74LVC1G80DBVRE4

SN74LVC1G80DBVRE4

Product Overview

  • Category: Integrated Circuit (IC)
  • Use: Logic Gate
  • Characteristics: Single Positive Edge-Triggered D-Type Flip-Flop
  • Package: SOT-23-6
  • Essence: Flip-flop circuit for storing a single bit of data
  • Packaging/Quantity: Tape and Reel, 3000 pieces per reel

Specifications

  • Supply Voltage Range: 1.65V to 5.5V
  • High-Level Input Voltage: 0.7 x VCC
  • Low-Level Input Voltage: 0.3 x VCC
  • High-Level Output Voltage: 0.9 x VCC
  • Low-Level Output Voltage: 0.1 x VCC
  • Maximum Operating Frequency: 100 MHz
  • Propagation Delay Time: 2.8 ns
  • Set-Up Time: 1.5 ns
  • Hold Time: 0.5 ns

Detailed Pin Configuration

The SN74LVC1G80DBVRE4 has the following pin configuration:

  1. CLK (Clock Input)
  2. D (Data Input)
  3. Q (Flip-Flop Output)
  4. GND (Ground)
  5. NC (No Connection)
  6. VCC (Power Supply)

Functional Features

  • Single positive edge-triggered D-type flip-flop
  • Data is stored on the rising edge of the clock signal
  • Provides a stable output even with slow input transitions
  • Supports high-speed operation up to 100 MHz
  • Low power consumption
  • Schmitt-trigger inputs for noise immunity

Advantages and Disadvantages

Advantages: - Compact size and low power consumption make it suitable for portable devices - High-speed operation allows for efficient data processing - Schmitt-trigger inputs provide noise immunity, ensuring reliable operation

Disadvantages: - Limited storage capacity (can only store a single bit of data) - Not suitable for applications requiring complex logic operations

Working Principles

The SN74LVC1G80DBVRE4 is a single positive edge-triggered D-type flip-flop. It stores a single bit of data and updates the output on the rising edge of the clock signal. The input data (D) is transferred to the output (Q) when the clock transitions from low to high. The flip-flop remains in this state until the next rising edge of the clock.

The device operates within a specified supply voltage range and provides stable outputs even with slow input transitions. It incorporates Schmitt-trigger inputs, which help eliminate noise and ensure reliable operation.

Detailed Application Field Plans

The SN74LVC1G80DBVRE4 can be used in various applications, including:

  1. Digital communication systems
  2. Microcontrollers and microprocessors
  3. Data storage devices
  4. Signal processing circuits
  5. Battery-powered devices
  6. Industrial automation systems
  7. Automotive electronics

Detailed and Complete Alternative Models

Some alternative models that offer similar functionality to the SN74LVC1G80DBVRE4 are:

  1. SN74LVC1G80DCKR
  2. SN74LVC1G80DRLR
  3. SN74LVC1G80DCKRG4
  4. SN74LVC1G80DRLRG4
  5. SN74LVC1G80DCKT
  6. SN74LVC1G80DRLT
  7. SN74LVC1G80DCKTG4
  8. SN74LVC1G80DRLTG4

These models have comparable specifications and pin configurations, providing alternatives for different packaging options or quantities.

In conclusion, the SN74LVC1G80DBVRE4 is a single positive edge-triggered D-type flip-flop IC. It offers high-speed operation, low power consumption, and noise immunity. While it has limitations in storage capacity and complex logic operations, it finds applications in various fields such as digital communication, microcontrollers, and signal processing. Alternative models with similar functionality are available to suit different packaging and quantity requirements.

Maglista ng 10 karaniwang tanong at sagot na nauugnay sa aplikasyon ng SN74LVC1G80DBVRE4 sa mga teknikal na solusyon

Sure! Here are 10 common questions and answers related to the application of SN74LVC1G80DBVRE4 in technical solutions:

Q1: What is SN74LVC1G80DBVRE4? A1: SN74LVC1G80DBVRE4 is a single positive-edge-triggered D-type flip-flop with clear, designed for 1.65-V to 5.5-V VCC operation.

Q2: What is the purpose of SN74LVC1G80DBVRE4? A2: SN74LVC1G80DBVRE4 is used as a basic building block in digital circuits to store and manipulate binary information.

Q3: What is the voltage range supported by SN74LVC1G80DBVRE4? A3: SN74LVC1G80DBVRE4 supports a voltage range from 1.65V to 5.5V.

Q4: How many inputs does SN74LVC1G80DBVRE4 have? A4: SN74LVC1G80DBVRE4 has one data input (D), one clock input (CLK), and one clear input (CLR).

Q5: What is the maximum clock frequency supported by SN74LVC1G80DBVRE4? A5: The maximum clock frequency supported by SN74LVC1G80DBVRE4 is typically 100 MHz.

Q6: Can SN74LVC1G80DBVRE4 be used in battery-powered applications? A6: Yes, SN74LVC1G80DBVRE4 can be used in battery-powered applications as it operates within a wide voltage range.

Q7: Does SN74LVC1G80DBVRE4 have any power-saving features? A7: Yes, SN74LVC1G80DBVRE4 has a low-power consumption design, making it suitable for power-sensitive applications.

Q8: Can SN74LVC1G80DBVRE4 be cascaded to create larger flip-flop configurations? A8: Yes, multiple SN74LVC1G80DBVRE4 flip-flops can be cascaded together to create larger flip-flop configurations.

Q9: What is the output voltage level of SN74LVC1G80DBVRE4? A9: The output voltage level of SN74LVC1G80DBVRE4 is compatible with both 3.3V and 5V logic levels.

Q10: Are there any specific application notes or reference designs available for SN74LVC1G80DBVRE4? A10: Yes, Texas Instruments provides application notes and reference designs that showcase the usage of SN74LVC1G80DBVRE4 in various technical solutions. These resources can be found on their official website.