HMC558ALC3BTR-R5
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Analog Devices Inc. HMC558ALC3BTR-R5

Manufacturer No:
HMC558ALC3BTR-R5
Manufacturer:
Analog Devices Inc.
Package:
Tape & Reel (TR)
Description:
IC MMIC MIXER DBL-BAL 12SMD
Delivery:
Payment:
iso14001
iso45001
iso9001
iso13485

Product Introduction

Overview

The HMC558ALC3BTR-R5 is a general-purpose double-balanced mixer designed and manufactured by Analog Devices Inc. This RF mixer IC is housed in a leadless RoHS-compliant SMT package and is suitable for use as an upconverter or downconverter in various RF and microwave applications. It operates within a frequency range of 5.5 GHz to 14 GHz, making it versatile for different wireless and communication systems.

Key Specifications

ParameterValue
Frequency Range5.5 GHz ~ 14 GHz
Package Type12-CLCC (2.9x2.9 mm)
RoHS ComplianceYes
Operating Temperature-40°C to +85°C
Supply VoltageTypically 5V (LO and IF ports)

Key Features

  • Double-balanced mixer design for high isolation and low distortion
  • Wide frequency range of operation (5.5 GHz to 14 GHz)
  • Leadless RoHS-compliant SMT package for compact and environmentally friendly design
  • High conversion gain and low noise figure
  • Suitable for both upconversion and downconversion applications

Applications

  • Wireless communication systems
  • Microwave and RF transceivers
  • Satellite communication systems
  • Radar and surveillance systems
  • Test and measurement equipment

Q & A

  1. What is the frequency range of the HMC558ALC3BTR-R5? The frequency range is 5.5 GHz to 14 GHz.
  2. What type of package does the HMC558ALC3BTR-R5 come in? It comes in a 12-CLCC (2.9x2.9 mm) package.
  3. Is the HMC558ALC3BTR-R5 RoHS compliant? Yes, it is RoHS compliant.
  4. What are the typical supply voltages for the HMC558ALC3BTR-R5? Typically 5V for both LO and IF ports.
  5. What are the primary applications of the HMC558ALC3BTR-R5? It is used in wireless communication systems, microwave and RF transceivers, satellite communication systems, radar and surveillance systems, and test and measurement equipment.
  6. Can the HMC558ALC3BTR-R5 be used as both an upconverter and a downconverter? Yes, it can be used for both upconversion and downconversion applications.
  7. What is the operating temperature range of the HMC558ALC3BTR-R5? The operating temperature range is -40°C to +85°C.
  8. What are the key benefits of the double-balanced mixer design in the HMC558ALC3BTR-R5? High isolation and low distortion.
  9. Where can I find detailed specifications and datasheets for the HMC558ALC3BTR-R5? Detailed specifications and datasheets can be found on the official Analog Devices website and through distributors like Digi-Key and Mouser Electronics.
  10. Is the HMC558ALC3BTR-R5 available in stock? Availability can vary; check with authorized distributors for current stock status.

Product Attributes

RF Type:- 
Frequency:5.5GHz ~ 14GHz
Number of Mixers:1
Gain:- 
Noise Figure:8.5dB
Secondary Attributes:- 
Current - Supply:- 
Voltage - Supply:- 
Mounting Type:Surface Mount
Package / Case:12-CLCC Exposed Pad
Supplier Device Package:12-CLCC (2.9x2.9)
0 Remaining View Similar

In Stock

$43.54
20

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Same Series
EV1HMC558ALC3B
EV1HMC558ALC3B
EVAL BOARD FOR HMC558ALC3B
HMC558ALC3B
HMC558ALC3B
IC MMIC MIXER DBL-BAL 12SMD
HMC558ALC3BTR-R5
HMC558ALC3BTR-R5
IC MMIC MIXER DBL-BAL 12SMD

Similar Products

Part Number HMC558ALC3BTR-R5 HMC558LC3BTR-R5 HMC553ALC3BTR-R5 HMC554ALC3BTR-R5
Manufacturer Analog Devices Inc. Analog Devices Inc. Analog Devices Inc. Analog Devices Inc.
Product Status Active Obsolete Active Active
RF Type - General Purpose - VSAT
Frequency 5.5GHz ~ 14GHz 5.5GHz ~ 14GHz 7GHz ~ 14GHz 11GHz ~ 20GHz
Number of Mixers 1 1 1 1
Gain - - - -
Noise Figure 8.5dB 8.5dB 8dB 8dB
Secondary Attributes - Up/Down Converter - -
Current - Supply - - - -
Voltage - Supply - - - -
Mounting Type Surface Mount Surface Mount Surface Mount Surface Mount
Package / Case 12-CLCC Exposed Pad 12-VFCQFN Exposed Pad 12-CLCC Exposed Pad 12-CLCC Exposed Pad
Supplier Device Package 12-CLCC (2.9x2.9) 12-CSMT (3x3) 12-CLCC (2.9x2.9) 12-CLCC (2.9x2.9)

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