Part #/ Keyword
All Products

LM317LZ-TR: Features, Specs & More

2024-10-09 14:45:38Mr.Ming
twitter photos
twitter photos
twitter photos
LM317LZ-TR: Features, Specs & More

In the world of electronics, voltage regulation is crucial for ensuring the reliability and performance of circuits. The STMicroelectronics LM317LZ-TR is a versatile adjustable voltage regulator that stands out for its ability to deliver stable output across a wide range of applications. In this comprehensive article, we'll delve into the intricacies of the LM317LZ-TR, uncovering its definition, key features, specifications, applications, and a closer look at its manufacturer.

 

Catalog

LM317LZ-TR's Overview

Key Features

Specifications

Applications

LM317LZ-TR's Manufacturer

Conclusion

 

LM317LZ-TR's Overview

The LM317LZ-TR is a standard positive voltage regulator that can adjust output voltages from 1.2V to 37V, making it ideal for various electronic applications. It is designed to provide a maximum output current of 0.2A and comes in a compact 3-Pin TO-92 package, suitable for through-hole mounting.

 

Key Features

Let's delve into the standout features that make the LM317LZ-TR a standout in the world of electronics:

· With an output range of 1.2V to 37V, it allows for flexibility in voltage regulation.

· It supports a maximum output current of 0.2A, making it suitable for many low to medium power applications.

· With a line regulation of 0.04%/V, it ensures consistent voltage output despite fluctuations in input voltage.

· The load regulation of 0.5% guarantees stable output even with varying loads.

· The LM317LZ-TR includes built-in short circuit protection and thermal protection, safeguarding your circuits from potential damage.

 

Specifications

Now, let's take a closer look at the technical specifications that define the capabilities of the LM317LZ-TR:

Type

Parameter

Type

Standard

Number of Outputs

1

Polarity

Positive

Output Type

Adjustable

Output Voltage (V)

1.2 to 37

Maximum Output Current (A)

0.2(Typ)

Reference Voltage (V)

1.3

Line Regulation

0.04%/V

Load Regulation

0.5%

Special Features

Short Circuit Protection|Thermal Protection

Minimum Operating Temperature (°C)

0

Maximum Operating Temperature (°C)

125

Packaging

Tape and Reel

Mounting

Through Hole

Package Height

4.95(Max)

Package Width

3.94(Max)

Package Length

4.95(Max)

PCB changed

3

Standard Package Name

TO

Supplier Package

TO-92

Pin Count

3

Lead Shape

Formed

 * LM317LZ-TR's Datasheet

 

Applications

The LM317LZ-TR is widely used in various applications, including:

· Power Supplies: Ideal for adjustable power supplies in electronics, ensuring the correct voltage is delivered to components.

· Battery Chargers: Its adjustable output makes it perfect for charging batteries with varying voltage requirements.

· LED Drivers: Useful in driving LEDs, where precise voltage control is needed for optimal brightness and longevity.

· Test Equipment: Often found in laboratory test equipment for voltage regulation during experiments.

 

LM317LZ-TR's Manufacturer

STMicroelectronics, often abbreviated as ST, is a global semiconductor manufacturer with a long-standing reputation for producing innovative and high-quality electronic components. With headquarters in Geneva, Switzerland, and a strong international presence, STMicroelectronics is a leading player in the semiconductor industry. They specialize in designing and manufacturing a wide range of semiconductor devices, including microcontrollers, sensors, power management solutions, and more. STMicroelectronics is trusted by industries worldwide, including automotive, consumer electronics, industrial, and telecommunications, for their cutting-edge technology and commitment to advancing the field of electronics.

 

Conclusion

The STMicroelectronics LM317LZ-TR voltage regulator is a robust and reliable choice for anyone involved in electronics. Its adjustable output, protective features, and compact design make it an essential component in various applications.

* Solemnly declare: The copyright of this article belongs to the original author. The reprinted article is only for the purpose of disseminating more information. If the author's information is marked incorrectly, please contact us to modify or delete it as soon as possible. Thank you for your attention!