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MCP1703AT-1802E/MC

MCP1703AT-1802E/MC

Product Overview

Category

The MCP1703AT-1802E/MC belongs to the category of low dropout (LDO) voltage regulators.

Use

It is used to regulate voltage in various electronic devices and circuits, ensuring a stable and reliable power supply.

Characteristics

  • Low dropout voltage
  • High output accuracy
  • Low quiescent current
  • Thermal shutdown protection

Package

The MCP1703AT-1802E/MC is available in a variety of packages including SOT-23, TO-92, and DFN.

Essence

The essence of this product lies in its ability to provide a stable and regulated voltage output, making it suitable for a wide range of applications.

Packaging/Quantity

The MCP1703AT-1802E/MC is typically available in reels or tubes with varying quantities depending on the package type.

Specifications

  • Input Voltage Range: 2.3V to 16V
  • Output Voltage: 1.8V
  • Maximum Output Current: 250mA
  • Dropout Voltage: 178mV at 250mA
  • Quiescent Current: 2 µA
  • Operating Temperature Range: -40°C to 125°C

Detailed Pin Configuration

The MCP1703AT-1802E/MC typically has three pins: 1. VIN (Input Voltage) 2. VOUT (Output Voltage) 3. GND (Ground)

Functional Features

  • Low dropout voltage
  • Stable output voltage
  • Overcurrent and thermal protection
  • Low quiescent current for improved efficiency

Advantages and Disadvantages

Advantages

  • Wide input voltage range
  • Low dropout voltage
  • Low quiescent current
  • Thermal shutdown protection

Disadvantages

  • Limited maximum output current compared to some other regulators
  • Higher cost compared to traditional linear regulators

Working Principles

The MCP1703AT-1802E/MC operates by comparing the output voltage to a reference voltage and adjusting the pass transistor to maintain a constant output voltage, even with variations in input voltage and load conditions.

Detailed Application Field Plans

The MCP1703AT-1802E/MC is commonly used in: - Battery-powered devices - Portable electronics - Sensor modules - Wearable devices - IoT applications

Detailed and Complete Alternative Models

Some alternative models to the MCP1703AT-1802E/MC include: - MCP1700T-1802E/TT - MCP1703AT-3302E/MB - MCP1703AT-5002E/MB

In conclusion, the MCP1703AT-1802E/MC is a versatile low dropout voltage regulator with a wide range of applications, providing stable and reliable power regulation in various electronic devices and circuits.

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技術ソリューションにおける MCP1703AT-1802E/MC の適用に関連する 10 件の一般的な質問と回答をリストします。

  1. What is the input voltage range for MCP1703AT-1802E/MC?
    - The input voltage range for MCP1703AT-1802E/MC is 2.3V to 16V.

  2. What is the output voltage of MCP1703AT-1802E/MC?
    - The output voltage of MCP1703AT-1802E/MC is 1.8V.

  3. What is the maximum output current of MCP1703AT-1802E/MC?
    - The maximum output current of MCP1703AT-1802E/MC is 250mA.

  4. Can MCP1703AT-1802E/MC be used in battery-powered applications?
    - Yes, MCP1703AT-1802E/MC is suitable for battery-powered applications due to its low quiescent current.

  5. Is MCP1703AT-1802E/MC suitable for low-power IoT devices?
    - Yes, MCP1703AT-1802E/MC is suitable for low-power IoT devices due to its low dropout voltage and low quiescent current.

  6. What is the typical dropout voltage of MCP1703AT-1802E/MC?
    - The typical dropout voltage of MCP1703AT-1802E/MC is 178mV at 100mA load.

  7. Can MCP1703AT-1802E/MC operate in harsh environments?
    - Yes, MCP1703AT-1802E/MC is designed to operate in harsh environments with its wide operating temperature range and high reliability.

  8. Does MCP1703AT-1802E/MC require external capacitors for stability?
    - Yes, MCP1703AT-1802E/MC requires input and output capacitors for stability and proper operation.

  9. What are the key features of MCP1703AT-1802E/MC?
    - The key features of MCP1703AT-1802E/MC include low dropout voltage, low quiescent current, and thermal shutdown protection.

  10. Can MCP1703AT-1802E/MC be used in automotive applications?
    - Yes, MCP1703AT-1802E/MC is suitable for automotive applications due to its wide input voltage range and robust design.