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LTC5541 Datasheet

LTC5541 Datasheet

1.3GHz to 2.3GHz High Dynamic Range Downconverting Mixer
Part No.: LTC5541
Page: 16 Pages
Size: 239 KB
Manufacturer: Linear Technology
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Views: 1
Update Time: 2023-09-19 17:28:47
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LTC5541 Datasheet Applicable Part

Part No. Packing SPQ Marking MSL Pins Temp Range Package Description Buy
LTC5541IUH#PBF Tube 73 5541 1 20 -40°C ~ 85°C 20-Lead (5mm x 5mm) Plastic QFN  
LTC5541IUH#TRPBF Reel 2500 5541 1 20 -40°C ~ 85°C 20-Lead (5mm x 5mm) Plastic QFN  
LTC5541IUH#TRMPBF Reel 500 5541 1 20 -40°C ~ 85°C 20-Lead (5mm x 5mm) Plastic QFN  
SPQ:Standard Pack Quantity;MSL:Moisture Sensitivity Level

LTC5541 Datasheet(PDF)

LTC5541 Datasheet(Picture)

LTC5541 Features

  • Conversion Gain: 7.8dB at 1950MHz
  • IIP3: 26.4dBm at 1950MHz
  • Noise Figure: 9.6dB at 1950MHz
  • 16dB NF Under +5dBm Blocking
  • High Input P1dB
  • 3.3V Supply, 630mW Power Consumption
  • Shutdown Pin
  • 50Ω Single-Ended RF and LO Inputs
  • LO Inputs 50Ω Matched when Shutdown
  • High Isolation LO Switch
  • 0dBm LO Drive Level
  • High LO-RF and LO-IF Isolation
  • Small Solution Size
  • 20-Lead (5mm × 5mm) QFN package

LTC5541 Applications

  • Wireless Infrastructure Receivers
    (LTE, W-CDMA. TD-SCDMA, UMTS, GSM1800)
  • Point-To-Point Microwave Links
  • High Dynamic Range Downmixer Applications

LTC5541 Description

The LTC5541 is part of a family of high dynamic range passive, high gain downconverting mixers covering the 600MHz to 4GHz frequency range. The LTC5541 is optimized for 1.3GHz to 2.3GHz RF applications. The LO frequency must fall within the 1.4GHz to 2.0GHz range for optimum performance. A typical application is a LTE or W-CDMA receiver with a 1.7GHz to 2.2GHz RF input and low-side LO.

The LTC5541 is designed for 3.3V operation, however; the IF amplifier can be powered by 5V for the highest P1dB. An integrated SPDT LO switch with fast switching accepts two active LO signals, while providing high isolation.

The LTC5541's high conversion gain and high dynamic range enable the use of lossy IF filters in high-selectivity receiver designs, while minimizing the total solution cost, board space and system-level variation.

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