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LM385BXZ-1.2/NOPB

LM385BXZ-1.2/NOPB

Product Overview

Category

LM385BXZ-1.2/NOPB belongs to the category of voltage references.

Use

It is commonly used as a precision shunt regulator in various electronic circuits.

Characteristics

  • Voltage Reference: 1.2V
  • Package Type: TO-92
  • Operating Temperature Range: -40°C to +85°C
  • Output Current: 20mA (maximum)
  • Initial Tolerance: ±0.5%
  • Low Dynamic Impedance: 0.2Ω (typical)

Package and Quantity

The LM385BXZ-1.2/NOPB comes in a TO-92 package and is typically sold in reels or tubes containing multiple units.

Specifications

  • Output Voltage: 1.2V
  • Supply Voltage Range: 1.7V to 40V
  • Quiescent Current: 120µA (typical)
  • Line Regulation: 0.02%/V (typical)
  • Load Regulation: 0.04%/mA (typical)
  • Temperature Coefficient: 100ppm/°C (typical)

Pin Configuration

The LM385BXZ-1.2/NOPB has three pins arranged as follows:

```


| | --| V+ |-- --| |-- |____| ```

Pin 1: V+ (Input/Output) Pin 2: GND (Ground) Pin 3: NC (No Connection)

Functional Features

  • Precise Voltage Reference: The LM385BXZ-1.2/NOPB provides a stable and accurate 1.2V reference voltage.
  • Low Power Consumption: With a quiescent current of only 120µA, it minimizes power consumption in battery-powered applications.
  • Low Dynamic Impedance: The low dynamic impedance ensures stable operation even under varying load conditions.

Advantages

  • High Precision: The LM385BXZ-1.2/NOPB offers a tight initial tolerance of ±0.5%, ensuring precise voltage regulation.
  • Wide Supply Voltage Range: It can operate within a wide supply voltage range of 1.7V to 40V, making it suitable for various applications.
  • Low Temperature Coefficient: The temperature coefficient of 100ppm/°C ensures minimal output voltage drift with temperature changes.

Disadvantages

  • Limited Output Voltage: The LM385BXZ-1.2/NOPB provides a fixed output voltage of 1.2V, which may not be suitable for all applications requiring different reference voltages.
  • No Adjustable Output: Unlike some other voltage references, the LM385BXZ-1.2/NOPB does not offer an adjustable output option.

Working Principles

The LM385BXZ-1.2/NOPB utilizes a bandgap voltage reference circuit to generate a stable and accurate 1.2V output voltage. This circuit compensates for temperature variations, ensuring consistent performance over a wide temperature range.

Application Field Plans

The LM385BXZ-1.2/NOPB finds application in various electronic systems that require a precise and stable voltage reference. Some common application areas include: - Analog-to-Digital Converters (ADCs) - Digital-to-Analog Converters (DACs) - Voltage regulators - Battery management systems - Sensor circuits

Alternative Models

If the LM385BXZ-1.2/NOPB does not meet specific requirements, alternative models with similar functionality are available. Some popular alternatives include: - LM4040 series by Texas Instruments - LT1004 series by Linear Technology - REF30xx series by Analog Devices

These alternatives offer different output voltages, package options, and additional features to cater to diverse application needs.

In conclusion, the LM385BXZ-1.2/NOPB is a precision voltage reference with a fixed 1.2V output. It provides accurate and stable voltage regulation in various electronic circuits. Its low power consumption, wide supply voltage range, and high precision make it suitable for a wide range of applications. However, its limited output voltage and lack of adjustability may restrict its use in certain scenarios.

Seznam 10 běžných otázek a odpovědí souvisejících s aplikací LM385BXZ-1.2/NOPB v technických řešeních

  1. What is the LM385BXZ-1.2/NOPB used for?
    - The LM385BXZ-1.2/NOPB is a precision voltage reference used in various technical solutions.

  2. What is the output voltage of the LM385BXZ-1.2/NOPB?
    - The output voltage of the LM385BXZ-1.2/NOPB is 1.2V.

  3. Can the LM385BXZ-1.2/NOPB be used in battery-powered applications?
    - Yes, the LM385BXZ-1.2/NOPB is suitable for battery-powered applications due to its low power consumption.

  4. Is the LM385BXZ-1.2/NOPB suitable for use in temperature measurement circuits?
    - Yes, the LM385BXZ-1.2/NOPB can be used in temperature measurement circuits as a stable voltage reference.

  5. What is the typical operating current of the LM385BXZ-1.2/NOPB?
    - The typical operating current of the LM385BXZ-1.2/NOPB is very low, making it suitable for low-power applications.

  6. Can the LM385BXZ-1.2/NOPB be used in automotive electronics?
    - Yes, the LM385BXZ-1.2/NOPB is suitable for use in automotive electronics due to its stability and reliability.

  7. Is the LM385BXZ-1.2/NOPB available in surface mount packages?
    - Yes, the LM385BXZ-1.2/NOPB is available in surface mount packages for easy integration into PCB designs.

  8. Can the LM385BXZ-1.2/NOPB be used in industrial control systems?
    - Yes, the LM385BXZ-1.2/NOPB is suitable for use in industrial control systems due to its precision and stability.

  9. What is the temperature range for the operation of LM385BXZ-1.2/NOPB?
    - The LM385BXZ-1.2/NOPB has an extended temperature range, making it suitable for harsh environments.

  10. Is the LM385BXZ-1.2/NOPB RoHS compliant?
    - Yes, the LM385BXZ-1.2/NOPB is RoHS compliant, making it environmentally friendly and suitable for modern electronic designs.