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LT1009 2.5V Reference: Datasheet, Applications, Pinout [Video&FAQ]

  • Contents

Product Overview

The LT®1009 is a precision trimmed 2.5V shunt regulator diode featuring a maximum initial tolerance of only ±5mV. The low dynamic impedance and wide operating current range enhances its versatility. The 0.2% reference tolerance is achieved by on-chip trimming which not only minimizes the initial voltage tolerance but also minimizes the temperature drift.

 

This blog will introduce LT1009 systematically from its features, pinout to its specifications, applications, also including LT1009 datasheet and so much more.

 

Catalog

Product Overview

LT1009 Features

LT1009 Pinout

LT1009 Applications

LT1009 Schematic Diagram

LT1009 Circuit Diagram

LT1009 Package

LT1009 Specification

LT1009 Manufacturer

LT1009 Datasheet

Using Warnings

LT1009 FAQ

 

LT1009 Features

  • Maximum Initial Tolerance: 0.2%
  • Guaranteed Temperature Stability
  • Maximum 0.6Ω Dynamic Impedance
  • Wide Operating Current Range
  • Directly Interchangeable with LM136 for ImprovedPerformance
  • No Adjustments Needed for Minimum TemperatureCoefficient
  • Available in 8-Lead SO and MSOP Packages and3-Lead TO-92 Package

 

LT1009 Pinout

The following figure is the diagram of LT1009 pinout.

 

LT1009 Pinout

LT1009 Pinout

 

LT1009 Applications

  • Reference for 5V Systems
  • 8-Bit A/D and D/A Reference
  • Digital Voltmeters
  • Current Loop Measurement and Control Systems
  • Power Supply Monitor

 

LT1009 Schematic Diagram

The following is the schematic diagram of LT1009.

 

LT1009 Schematic Diagram

LT1009 Schematic Diagram

 

LT1009 Circuit Diagram

The following is the circuit diagram of LT1009.

 

Switchable ±1.25V Bipolar Reference

Switchable ±1.25V Bipolar Reference

 

Wide Supply Range, Adjustable Reference

Wide Supply Range, Adjustable Reference

 

Low Noise 2.5V Buffered Reference

Low Noise 2.5V Buffered Reference

 

LT1009 Package

The following diagram shows the LT1009 package.

 

LT1009 Package

LT1009 Package

 

LT1009 Specification

Reverse Current 20mA
Forward Current  10mA
Storage Temperature Range  –65°C to 150°C
Lead Temperature (Soldering, 10 sec)  300°C
Operating Temperature Range  0°C to 70°C
Manufacturer: Linear Technology
Analog IC - Other Type: ANALOG CIRCUIT
Terminal Finish: Tin/Lead (Sn/Pb)

 

LT1009 Manufacturer

Analog Devices has built one of the longest standing, highest growth companies within the technology sector utilizing cultural pillars such as innovation, performance, and excellence. Acknowledged industry-wide as the world leader in data conversion and signal conditioning technology, Analog Devices serves over 100,000 customers, representing virtually all types of electronic equipment. Celebrating over 50 years as a leading global manufacturer of high-performance integrated circuits used in analog and digital signal processing applications, Analog Devices is headquartered in Norwood, Massachusetts, with design and manufacturing facilities throughout the world. Analog Devices' is included in the S&P 500 Index.

 

LT1009 Datasheet

You can download LT1009 datasheet from the link given below:

LT1009 Datasheet

 

Using Warnings

Note: Please check their parameters and pin configuration before replacing them in your circuit.

 

LT1009 FAQ

What is precision voltage reference?

A voltage reference is a precision device specifically designed to maintain a constant output voltage, even as parameters such as ambient temperature or supply voltage change. The precision of a voltage reference enables its use in several differ- ent types of applications beyond a data converter.

 

What is used to control the precision of electric voltage?

A voltage regulator is a system designed to automatically maintain a constant voltage. A voltage regulator may use a simple feed-forward design or may include negative feedback. It may use an electromechanical mechanism, or electronic components.

 

How does a shunt regulator work?

The shunt regulator works by providing a path from the supply voltage to ground through a variable resistance (the main transistor is in the "bottom half" of the voltage divider).

 

PCB Symbol, Footprint & 3D Model

 

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