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ICL7660SIBAZT

ICL7660SIBAZT

Product Overview

Category

The ICL7660SIBAZT belongs to the category of voltage converters or charge pumps.

Use

It is commonly used to generate a negative voltage from a positive input voltage.

Characteristics

  • Input Voltage Range: 1.5V to 10V
  • Output Voltage Range: -1.5V to -10V
  • Low Quiescent Current: 100µA
  • Package Type: SOIC (Small Outline Integrated Circuit)
  • Operating Temperature Range: -40°C to 85°C

Package

The ICL7660SIBAZT is available in a small outline integrated circuit (SOIC) package.

Essence

The essence of the ICL7660SIBAZT is its ability to efficiently convert positive input voltages into negative output voltages.

Packaging/Quantity

It is typically packaged in reels and available in quantities suitable for production runs.

Specifications

  • Input Voltage Range: 1.5V to 10V
  • Output Voltage Range: -1.5V to -10V
  • Output Current: 20mA
  • Quiescent Current: 100µA
  • Package Type: SOIC-8

Detailed Pin Configuration

The ICL7660SIBAZT has the following pin configuration: 1. GND 2. C1- 3. C1+ 4. V- 5. V+ 6. OSC 7. C2+ 8. C2-

Functional Features

  • Voltage Conversion: Converts positive input voltages to negative output voltages.
  • Low Quiescent Current: Consumes minimal current when not actively converting voltages.
  • Wide Input Voltage Range: Can accept input voltages ranging from 1.5V to 10V.

Advantages and Disadvantages

Advantages

  • Efficient voltage conversion
  • Low quiescent current
  • Wide input voltage range

Disadvantages

  • Limited output current capacity
  • Requires external capacitors for operation

Working Principles

The ICL7660SIBAZT utilizes a charge pump architecture to invert the input voltage and generate a negative output voltage. It uses switched capacitor techniques to achieve this voltage conversion.

Detailed Application Field Plans

The ICL7660SIBAZT finds applications in various fields, including: - Portable electronics - Battery-powered devices - Industrial control systems - Test and measurement equipment - Audio amplifiers

Detailed and Complete Alternative Models

Some alternative models to the ICL7660SIBAZT include: - MAX1044 - LTC1044 - ICL7660A

In conclusion, the ICL7660SIBAZT is a versatile voltage converter with wide-ranging applications in various electronic systems.

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Seznam 10 běžných otázek a odpovědí souvisejících s aplikací ICL7660SIBAZT v technických řešeních

  1. What is the ICL7660SIBAZT?

    • The ICL7660SIBAZT is a monolithic CMOS voltage converter that can be used to generate negative voltage from positive voltage input.
  2. What is the input voltage range for the ICL7660SIBAZT?

    • The input voltage range for the ICL7660SIBAZT is typically 1.5V to 10V.
  3. What is the output voltage range for the ICL7660SIBAZT?

    • The output voltage range for the ICL7660SIBAZT is typically -1.5V to -10V.
  4. What are the typical applications of the ICL7660SIBAZT?

    • The ICL7660SIBAZT is commonly used in applications such as RS-232 line drivers, LCD bias generators, and voltage doublers.
  5. What is the maximum output current of the ICL7660SIBAZT?

    • The maximum output current of the ICL7660SIBAZT is typically around 40mA.
  6. What is the operating temperature range of the ICL7660SIBAZT?

    • The operating temperature range of the ICL7660SIBAZT is typically -40°C to 85°C.
  7. Can the ICL7660SIBAZT be used in battery-powered applications?

    • Yes, the ICL7660SIBAZT is suitable for use in battery-powered applications due to its low power consumption.
  8. Does the ICL7660SIBAZT require external components for operation?

    • Yes, the ICL7660SIBAZT typically requires a few external capacitors for proper operation.
  9. Is the ICL7660SIBAZT available in a surface-mount package?

    • Yes, the ICL7660SIBAZT is available in a surface-mount SOIC package, making it suitable for compact designs.
  10. Are there any common issues or limitations when using the ICL7660SIBAZT?

    • One common limitation is that the ICL7660SIBAZT may not be suitable for high-current applications, and care should be taken to ensure proper decoupling and layout for optimal performance.