ADG901
Info: : PRODUCTION
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ADG901

0 Hz to 4.5 GHz, 40 dB Off Isolation at 1 GHz, 17 dBm P1dB at 1 GHz SPST Switches

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Info: : PRODUCTION tooltip
Info: : PRODUCTION tooltip
Part Details
Part Models 5
1ku List Price Starting From $1.63
Features
  • Absorptive switch
  • Enables user to pass dc signals up to 0.5 V without dc blocking capacitor
  • Operational from 0 Hz up to 4.5 GHz at −3 dB frequency
    40 dB off isolation at 1 GHz typical
    0.8 dB insertion loss at 1 GHz typical
    17 dBm P1dB at 1 GHz typical
  • Available in 3 mm × 3 mm, 8-lead MSOP and 8-lead LFCSP
  • <1 μA power consumption
  • CMOS/LVTTL control logic
  • Specified at 1.65 V to 2.75 V
ADG901-EP supports defense and aerospace applications (AQEC standard)
  • Download ADG901-EP data sheet (pdf)
  • Military temperature range: −55°C to +125°C
  • Controlled manufacturing baseline
  • 1 assembly/test site
  • 1 fabrication site
  • Enhanced product change notification
  • Qualification data available on request
  • V62/16613 DSCC Drawing Number
Additional Details
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The ADG901/ADG902 are wideband switches that use a complementary metal-oxide semiconductor (CMOS) process to provide high isolation and low insertion loss to 1 GHz. The ADG901 is an absorptive (matched) switch with 50 Ω terminated shunt legs, while the ADG902 is a reflective switch. These devices are designed such that the isolation is high over the dc to 1 GHz frequency range. These switches enable the user to pass dc signals up to 0.5 V without the use of a dc blocking capacitor. They have on-board CMOS control logic, thus eliminating the need for external controlling circuitry. The control inputs are both CMOS and LVTTL compatible. The low power consumption of these CMOS devices makes them ideally suited to wireless applications and general-purpose high frequency switching.

Product Highlights

  1. 40 dB Off Isolation at 1 GHz
  2. 0.8 dB Insertion Loss at 1 GHz
  3. 17 dBm P1dB at 1 GHz

Applications

  • Wireless communications
  • General purpose RF switching
  • Dual-band applications
  • High speed filter selection
  • Digital transceiver front-end switch
  • IF switching
  • Tuner modules
  • Antenna diversity switching list
Part Models 5
1ku List Price Starting From $1.63

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Documentation

Documentation

Video

Part Model Pin/Package Drawing Documentation CAD Symbols, Footprints, and 3D Models
ADG901BCPZ-500RL7
  • HTML
  • HTML
ADG901BRMZ
  • HTML
  • HTML
ADG901BRMZ-REEL7
  • HTML
  • HTML
ADG901SCPZ-EP
  • HTML
  • HTML
ADG901SCPZ-EP-RL7
  • HTML
  • HTML

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Part Models

Product Lifecycle

PCN

Jul 25, 2017

- 17_0068

CANCELLED: Addition of ASE Korea as an Alternate Assembly Site for Select 3x3mm and 4x4mm Body Sizes LFCSP Devices

Feb 13, 2014

- 14_0038

Conversion of 3x3mm body Size LFCSP Package Outlines from Punch to Sawn and Transfer of Assembly Site to Amkor Philippines.

Oct 26, 2009

- 09_0202

Inclusion of Banding Tape for LFCSP REEL7 parts.

Jan 5, 2015

- 14_0246

Qualification of ASE Chungli, as an Alternate Assembly Site for Select MSOP Devices

May 15, 2012

- 10_0006

Halogen Free Material Change for mini SOIC Products

Filter by Model

reset

Reset Filters

Part Models

Product Lifecycle

PCN

Jul 25, 2017

- 17_0068

arrow down

CANCELLED: Addition of ASE Korea as an Alternate Assembly Site for Select 3x3mm and 4x4mm Body Sizes LFCSP Devices

Feb 13, 2014

- 14_0038

arrow down

Conversion of 3x3mm body Size LFCSP Package Outlines from Punch to Sawn and Transfer of Assembly Site to Amkor Philippines.

Oct 26, 2009

- 09_0202

arrow down

Inclusion of Banding Tape for LFCSP REEL7 parts.

Jan 5, 2015

- 14_0246

arrow down

Qualification of ASE Chungli, as an Alternate Assembly Site for Select MSOP Devices

May 15, 2012

- 10_0006

arrow down

Halogen Free Material Change for mini SOIC Products

Software & Part Ecosystem

Software & Part Ecosystem

Evaluation Kit

Evaluation Kits 1

EVAL-ADG901

ADG901 Evaluation Board

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EVAL-ADG901

ADG901 Evaluation Board

ADG901 Evaluation Board

Product Detail

The ADG901 evaluation board allows designers to evaluate the high-performance wideband switches with a minimum of effort. To prove that these devices meet the user's requirements, the user only requires a power supply and a network analyzer.

Tools & Simulations

Tools & Simulations 1

Reference Designs

Reference Designs 4

Figure 1. CN0521 Simplified Block Diagram

USB-Powered, 2.4 GHz RF Low Noise Amplifier Receiver with Overpower Protection Circuit

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CN0521

USB-Powered, 2.4 GHz RF Low Noise Amplifier Receiver with Overpower Protection Circuit

CN0521

Circuits from the lab

tooltip Info:Circuits from the lab
USB-Powered, 2.4 GHz RF Low Noise Amplifier Receiver with Overpower Protection Circuit

Features and Benefits

  • +26 dB of Rx Signal Gain
  • 50 ohm Input and Output Impedance
  • Overvoltage Input Protection
  • SMA Input and Output Connectors
  • USB Powered
View Detailed Reference Design external link

Design & Integration Tools

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ZIP

8.71 M

Figure 1. CN0518 Simplified Block Diagram

USB-Powered, 915 MHz RF Low Noise Amplifier Receiver with Overpower Protection Circuit

zoomopens a dialog

CN0518

USB-Powered, 915 MHz RF Low Noise Amplifier Receiver with Overpower Protection Circuit

CN0518

Circuits from the lab

tooltip Info:Circuits from the lab
USB-Powered, 915 MHz RF Low Noise Amplifier Receiver with Overpower Protection Circuit

Features and Benefits

  • +25 dB of Rx Signal Gain
  • 50 ohm Input and Output Impedance
  • Overvoltage Input Protection
  • SMA Input and Output Connectors
  • USB Powered
View Detailed Reference Design external link

Design & Integration Tools

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ZIP

8.21 M

Figure 1. CN0555 Simplified Block Diagram

USB-Powered, 433.92 MHz RF Low Noise Amplifier Receiver with Overpower Protection

zoomopens a dialog

CN0555

USB-Powered, 433.92 MHz RF Low Noise Amplifier Receiver with Overpower Protection

CN0555

Circuits from the lab

tooltip Info:Circuits from the lab
USB-Powered, 433.92 MHz RF Low Noise Amplifier Receiver with Overpower Protection

Features and Benefits

  • Optimized to Receive the 433MHz ISM Band
  • Receive Gain of 40dB
  • Overvoltage Protection Circuit with Automatic Turn off/on
  • Powered from a USB cable
View Detailed Reference Design external link

Design & Integration Tools

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ZIP

3.54 M

Figure 1. CN0551 Simplified Block Diagram

USB-Powered, 433.92 MHz RF Power Amplifier with Overtemperature Management

zoomopens a dialog

CN0551

USB-Powered, 433.92 MHz RF Power Amplifier with Overtemperature Management

CN0551

Circuits from the lab

tooltip Info:Circuits from the lab
USB-Powered, 433.92 MHz RF Power Amplifier with Overtemperature Management

Features and Benefits

  • +35 dB Gain
  • 433 MHz ISM Band Optimized
  • 50 Ohm Input and Output Impedance Matched
  • Overtemperature Monitoring
  • Automatic Thermal Shutoff & Turn on
View Detailed Reference Design external link

Design & Integration Tools

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ZIP

3.72 M

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