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HMC410AMS8GE

Analog Devices

HMC410AMS8GE by Analog Devices

Analog Devices' HMC410AMS8GE is a RF/Microwave Mixer with 20 dBm CW input power, 11 dB conversion loss, and 50 ohm impedance. It operates b/w -40 to 85 °C and covers frequencies from 9-15 GHz. Ideal for high-frequency applications requiring double balanced mixers.

Median Price

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Lifecycle Status

Suppliers In-Stock

4

In-Stock Inventory

1k+

Distributors (In-Stock)

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Vyrian

USA . 7,412 parts In-Stock

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7,412

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Digiode

USA . 639 parts In-Stock

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Cogito LLC

Ukraine . 8 parts In-Stock

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8

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J2 Sourcing AB

Sweden . 7 parts In-Stock

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Parana Technologies

USA . 494 parts In-Stock

1+ parts

$0.966

100+ parts

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$0.899

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494

$0.966

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$0.899

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IDEA Electronic Components Group

UK . 2,256 parts In-Stock

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$1.039

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$0.987

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2,256

$1.039

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$0.987

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DigiPath Technology Company

USA . 1,692 parts In-Stock

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$1.621

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$1.556

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1,692

$1.621

$1.556

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Semicontronic

India . 1,647 parts In-Stock

1+ parts

$4.000

100+ parts

$3.900

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$3.880

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1,647

$4.000

$3.900

$3.880

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AZTECH Wire

Italy . 479 parts In-Stock

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$5.466

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479

$5.466

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One Stop Electronics

USA . 1,372 parts In-Stock

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$33.000

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$33.000

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QUARKTWIN TECHNOLOGY LTD

USA . 15,441 parts In-Stock

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Metaverse IC Inc.

Canada . 5,880 parts In-Stock

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5,880

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Corphita

USA . 774 parts In-Stock

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774

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Perfect Parts

USA . 30 parts In-Stock

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30

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Overview

Elevate your RF/Microwave applications with the HMC410AMS8GE by Analog Devices. Crafted with precision and expertise, this double balanced mixer offers unparalleled quality and performance. From 9 to 15 GHz, experience seamless operations with a maximum input power of 20 dBm and minimum conversion loss of 11 dB. Whether you're in telecommunications, aerospace, or radar systems, this component is designed to elevate your projects to new heights. Trust Analog Devices for cutting-edge technology that delivers value, reliability, and innovation. Experience excellence with the HMC410AMS8GE today.

Feature Benefit Bullets

Maximum Input Power (CW): 20 dBm

With a high maximum input power, this mixer can handle strong signals without getting damaged, ensuring reliability and longevity.

Construction: COMPONENT

The component-based construction makes this mixer easy to integrate into existing systems or circuits, allowing for flexibility and customization.

Maximum Operating Temperature: 85 °C

The high maximum operating temperature ensures that this mixer can perform effectively in a wide range of environmental conditions, making it suitable for various applications.

Minimum Operating Temperature: -40 °C

With a low minimum operating temperature, this mixer can operate in cold environments without any loss of performance, making it versatile and reliable.

Terminal Finish: MATTE TIN

The matte tin terminal finish provides good conductivity and corrosion resistance, ensuring stable connections and long-term performance.

RF or Microwave Device Type: DOUBLE BALANCED

The double balanced design helps in reducing unwanted signals and provides better performance in terms of conversion loss, making this mixer ideal for high-frequency applications.

Characteristic Impedance: 50 ohm

With a standard characteristic impedance of 50 ohm, this mixer can easily interface with other RF components and systems, ensuring compatibility and ease of integration.

Maximum Conversion Loss: 11 dB

The low maximum conversion loss indicates minimal signal degradation during the mixing process, resulting in high efficiency and signal integrity.

Minimum Operating Frequency: 9000 MHz

With a high minimum operating frequency, this mixer is suitable for high-frequency applications where precision and accuracy are crucial, making it a reliable choice for demanding tasks.

Maximum Operating Frequency: 15000 MHz

The high maximum operating frequency allows this mixer to be used in a wide range of RF and microwave systems, providing versatility and flexibility for various applications.

Technical Specifications

RF/Microwave Mixers HMC410AMS8GE attributes and parameters. Explore more RF/Microwave Mixers devices from Analog Devices

Specs

Characteristic Impedance:

50 ohm

Construction:

COMPONENT

Maximum Conversion Loss:

11 dB

Maximum Input Power (CW):

20 dBm

JESD-609 Code:

e3

Maximum Operating Frequency:

15000 MHz

Minimum Operating Frequency:

9000 MHz

Maximum Operating Temperature:

85 Cel

Minimum Operating Temperature:

-40 Cel

RF or Microwave Device Type:

Terminal Finish:

MATTE TIN

Trade Compliance

HMC410AMS8GE RF & Microwave trade compliance attributes, and parameters.

ECCN

EAR99

ECCN Governance

EAR

HTS

8542.39.00.01

SB

8542.39.00.00

Manufacturer Highlights

Analog Devices

Analog Devices Inc. (ADI) is one of the leading companies in the areas of integrated circuit (IC) design, manufacturing, testing, and marketing. ADI is known for their high-performance semiconductor solutions which enable customers to create innovative systems that solve critical challenges. The company has over 40 years of experience in the industry and has been consistently recognized as an industry leader for its innovation as well as its commitment to quality products and services. They have garnered numerous awards throughout the years including awards from Gartner Magic Quadrant for Industrial IoT Platforms; Frost & Sullivan’s Global Product Leadership Award; and various awards relating to automotive safety technology such as JESD209-3 Automotive Grade Certifications from AEC-Q100.

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Management team

CEO

Vincent Roche

Interim CFO

James Mollica

CAO

Michael Sondel

Manufacturer fab locations 5

Fab name Location Fab Initiation Wafer Capacity

Limerick Fab

Fabrication

Fab Initiation

1977

Ireland

Limerick

Wafer Capacity

30,000

1977

30,000

Hillview Fab

Fabrication

Fab Initiation

2001

USA

Milpitas

Wafer Capacity

15,000

2001

15,000

Wilmington Fab

Fabrication

Fab Initiation

1967

USA

Wilmington

Wafer Capacity

50,000

1967

50,000

Camas Fab

Fabrication

Fab Initiation

1997

USA

Camas

Wafer Capacity

18,000

1997

18,000

Beaverton-Portland

Fabrication

Fab Initiation

1987

USA

Beaverton

Wafer Capacity

14,000

1987

14,000

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