AM3036 – Tunable Filter: 330 to 700 MHz Highpass

Digitally Tunable 330 to 700 MHz Highpass
AM3036

Digitally Tunable 330 to 700 MHz Highpass

Function:
Tunable Filter
Package:
4mm QFN
ECCN:
EAR99

AM3036 is a miniature digitally tunable highpass filter covering the 330 MHz to 700 MHz frequency range.

The filter provides 16 selectable highpass cutoff states with 4 digital control bits. The tunable highpass filter can be combined with one of Mercury’s tunable lowpass filters to provide a flexible tunable bandpass filter solution. AM3036 is packaged in a 4mm QFN package and operates over the -40C to +85C temperature range.

Evaluation board includes SMA input and output connectors and SMA voltage input unless otherwise requested. AM3036 evaluation board also includes DIP switch for control of the filter settings. This switch is included with the evaluation board unless otherwise requested. Evaluation board includes AM3036.

1
Insertion Loss (dB)
50
Typical Rejection (dB)
4mm
Package

We’re here to help. How can we assist?

Products formerly Atlanta Microwave

Purpose-Built MMIC Components

Enable Portable Platforms

Leverage the latest in solid-state GaAs technology with off-the-shelf, broadband MMIC devices that operate at high frequency to enable portable and low-power platforms. 

LEARN MORE

DISCOVER MORE

Mercury Rugged Servers – Built for Every Inhospitable Corner of the Globe

Mercury's rugged #edge servers accelerate Artificial Intelligence (#AI), #Cybersecurity, Signals...

Read More

White Paper: Building an Agile Future: How Defense Edge Networks stand to benefit from the Open Compute Project

Learn how Mercury Systems is helping the DOD bridge the gap between its MOSA mandate and commercial...

Read More

Case Study: Navy CDS, Simultaneously and Securely Processing Classified Data at Sea

Discover how the U.S. Navy utilizes Mercury's scalable and configurable HD modular blade servers to...

Read More

White Paper: Real-Time Defense Systems Response Will Require PCIe 5.0

PCIe 5.0 protocol benefits a new generation of rugged, deployable application platforms with...

Read More