Part #/ Keyword
All Products

LTC5541IUH#PBF: Features, Specs & More

2024-11-27 15:29:33Mr.Ming
twitter photos
twitter photos
twitter photos
LTC5541IUH#PBF: Features, Specs & More

In the ever-evolving field of wireless communication, high-performance components are essential to meet the growing demands of speed, reliability, and efficiency. One such component, the ADI LTC5541IUH#PBF, stands out as a versatile up/down converter mixer, designed to excel in wireless infrastructure applications and more. In this comprehensive article, we'll delve into the intricacies of the LTC5541IUH#PBF, uncovering its definition, key features, specifications, applications, and a closer look at its manufacturer.

 

Catalog

LTC5541IUH#PBF's Overview

Key Features

Specifications

Applications

LTC5541IUH#PBF's Manufacturer

Conclusion

 

LTC5541IUH#PBF's Overview

The ADI LTC5541IUH#PBF is a high-linearity, high-dynamic-range up/down conversion mixer, operating on a 3.3V supply. Packaged in a compact 20-pin QFN format, this component is engineered for use in demanding wireless communication systems. With support for frequencies up to 2.3 GHz, it delivers exceptional performance in applications such as LTE, W-CDMA, and point-to-point microwave links. Its robust design ensures reliability in industrial-grade environments.

 

Key Features

Let's delve into the standout features that make the LTC5541IUH#PBF a standout in the world of electronics:

· The mixer provides a typical conversion gain of 7.8 dB, ensuring efficient signal amplification.

· With a typical noise figure of 9.6 dB, it minimizes signal degradation, crucial for sensitive receiver applications.

· Operates with a maximum input frequency of 2.3 GHz and a maximum output frequency of 500 MHz.

· Encased in a QFN EP package with dimensions of 5x5 mm, it’s ideal for space-constrained applications.

· Functions reliably within a temperature range of -40°C to +85°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 LTC5541IUH#PBF:

Type

Parameter

Maximum Input Frequency (MHz)

2300

Maximum Output Frequency (MHz)

500

Maximum Conversion Gain (dB)

7.8

Typical Noise Figure (dB)

9.6

Typical Operating Supply Voltage (V)

3.3

Minimum Operating Temperature (°C)

-40

Maximum Operating Temperature (°C)

85

Supplier Temperature Grade

Industrial

Packaging

Tube

Mounting

Surface Mount

Package Height

0.75(Max)

Package Width

5

Package Length

5

PCB changed

20

Standard Package Name

QFN

Supplier Package

QFN EP

Pin Count

20

Lead Shape

No Lead

 * LTC5541IUH#PBF's Datasheet

 

Applications

The versatility of the LTC5541IUH#PBF makes it ideal for a wide range of wireless and high-frequency applications:

· Wireless Infrastructure Receivers: LTE, W-CDMA, TD-SCDMA, UMTS, and GSM1800 networks benefit from its high dynamic range and low noise performance.

· Point-to-Point Microwave Links: Ensures reliable data transmission in high-frequency microwave links for telecommunications.

· High Dynamic Range Downmixer Applications: Delivers superior signal quality in environments where signal distortion is a concern.

 

LTC5541IUH#PBF's Manufacturer

Analog Devices, Inc. (ADI) stands as a global leader in analog and mixed-signal technology, pioneering transformative solutions since 1965. Renowned for innovation, ADI's diverse portfolio of high-performance integrated circuits spans precision amplifiers, data converters, sensors, and digital signal processing.

 

Conclusion

The ADI LTC5541IUH#PBF is a top-tier choice for engineers seeking reliable, high-performance up/down conversion mixers for wireless infrastructure and high-frequency applications. Its impressive specifications, combined with ADI's reputation for quality, make it an invaluable component for modern communication systems.

* 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!