Infineon BGT24LTR11N16E6327XTSA1 RF Transceiver IC, 16-Pin TSNP-16-9

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£8,340.00

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£10,020.00

(inc. VAT)

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3000 - 3000£2.78£8,340.00
6000 - 6000£2.674£8,022.00
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RS Stock No.:
219-5960
Mfr. Part No.:
BGT24LTR11N16E6327XTSA1
Brand:
Infineon
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Brand

Infineon

Technology

RF Transceiver

Package Type

TSNP-16-9

Pin Count

16

Mounting Type

Surface Mount

Dimensions

2.4 x 2.4 x 0.73mm

Length

2.4mm

Width

2.4mm

Height

0.73mm

Maximum Operating Band 1 Frequency

24.25MHz

Maximum Operating Supply Voltage

3.6 V

Maximum Operating Temperature

+85 °C

Minimum Operating Band 1 Frequency

24MHz

Minimum Operating Temperature

-40 °C

Minimum Operating Supply Voltage

-0.3 V

Infineon RF Transceiver IC, 2.4mm Length, Surface Mount - BGT24LTR11N16E6327XTSA1


This RF transceiver IC provides a modern solution for precise radar applications and operates efficiently within the 24GHz frequency range, suitable for automation, electronics, and mechanical industries. The device features low power consumption and robust temperature compensation, ensuring effective performance across various conditions.

Features & Benefits


• Operates from 24 GHz to 24.25 GHz for diverse applications
• Integrated VCO stabilisation enhances frequency accuracy
• Advanced ESD protection supports operational integrity
• Compact TSNP-16-9 package allows for space-efficient designs
• Low power requirements enable sustainable designs
• High-temperature functionality ensures adaptability in challenging environments

Applications


• Utilised in precision radar systems for automation
• Integrated into wireless communication devices for efficient signal processing
• Employed in electronic monitoring solutions for enhanced accuracy
• Suitable for surface mount technology within compact assemblies

What is the voltage supply range for operation?


The voltage supply range for operation is -0.3V to 3.6V, ensuring compatibility with various systems.

How does temperature affect the performance?


This transceiver IC maintains functionality from -40°C to +85°C, using built-in temperature compensation to reduce frequency drift.

Can it be used for RF signal amplification?


Yes, the integrated low noise amplifier improves incoming RF signals, enhancing system sensitivity and performance.

What type of matching structures are required for optimal performance?


Specific matching structures and footprints are recommended for maximum efficiency, as outlined in application note AN472.