Part #/ Keyword
All Products

LM5163DDAR: Features, Specs & More

2024-07-01 15:54:30Mr.Ming
twitter photos
twitter photos
twitter photos
LM5163DDAR: Features, Specs & More

In the fast-evolving world of electronics, staying ahead of the curve requires a deep understanding of key components that drive innovation. One such component is the TI LM5163DDAR, a highly versatile synchronous step-down converter. In this comprehensive article, we'll delve into the intricacies of the LM5163DDAR, uncovering its definition, key features, specifications, applications, and a closer look at its manufacturer.

 

Catalog

LM5163DDAR's Overview

Key Features

Specifications

Applications

LM5163DDAR's Manufacturer

Conclusion

 

LM5163DDAR's Overview

The TI LM5163DDAR is a synchronous step-down DC-DC converter designed to deliver high performance and efficiency in a compact package. This device is capable of converting input voltages ranging from 6V to 100V to a stable output voltage between 1.2V and 90V. With a maximum output current of 0.6A, it is well-suited for a wide range of applications, making it a go-to choice for engineers and designers.

 

Key Features

Let's delve into the standout features that make the LM5163DDAR a standout in the world of electronics:

· The converter can handle input voltages from 6V to 100V, providing flexibility for various power supply designs.

· It offers an adjustable output voltage range from 1.2V to 90V, accommodating different requirements.

· Operating at a switching frequency of 1000 kHz, it ensures efficient power conversion and minimizes the size of external components.

· With a typical quiescent current of only 10.5 µA, it is highly efficient, especially in low-power applications.

· The device operates over a wide temperature range of -40°C to 150°C, making it suitable for harsh environments.

 

Specifications

Now, let's take a closer look at the technical specifications that define the capabilities of the LM5163DDAR:


Type

Parameter

Type

Synchronous Step Down

Output Type

Adjustable

Switching Frequency (kHz)

1000

Switching Regulator

Yes

Number of Outputs

1

Output Voltage (V)

1.2 to 90

Maximum Output Current (A)

0.6

Minimum Input Voltage (V)

6

Maximum Input Voltage (V)

100

Operating Supply Voltage (V)

6 to 100

Typical Switch Current (A)

0.75

Typical Quiescent Current (uA)

10.5

Minimum Operating Temperature (°C)

-40

Maximum Operating Temperature (°C)

150

Packaging

Tape and Reel

Mounting

Surface Mount

Package Height

1.55(Max)

Package Width

4(Max)

Package Length

5(Max)

PCB changed

8

Standard Package Name

SO

Supplier Package

HSOIC EP

Pin Count

8

Lead Shape

Gull-wing

 * LM5163DDAR's Datasheet

 

Applications

The versatility of the TI LM5163DDAR makes it ideal for a broad spectrum of applications. Here are some of the most common use cases:

· Industrial Power Supplies: Its wide input voltage range and robust design make it perfect for industrial environments.

· Telecommunications Equipment: Ensures reliable power conversion in communication devices.

· Automotive Systems: Suitable for automotive power supplies due to its high efficiency and wide temperature range.

· Consumer Electronics: Ideal for use in various consumer electronic devices requiring efficient power management.

 

LM5163DDAR's Manufacturer

Texas Instruments (TI),established in 1930, is a global leader in semiconductor and technology solutions, known for its pioneering contributions to the electronics industry. Specializing in the design and manufacture of analog and digital circuits, microcontrollers, and processors, TI has played a pivotal role in shaping technological advancements across diverse sectors, including industrial, automotive, consumer electronics, and communication.

 

Conclusion

The TI LM5163DDAR synchronous step-down DC-DC converter is a versatile and efficient solution for high-voltage applications. Its robust design, high efficiency, and adjustable output voltage make it an excellent choice for various industries, from industrial automation to consumer electronics.

* 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!