GaAs Chips Help VSAT Systems

A family of Ka-band GaAs chipsets has been developed by TriQuint Semiconductor for use invery-small-aperture-terminal (VSAT) satellite communications systems. The family includes a variable-gain amplifier, a 1-W power amplifier (PA), a subharmonic frequency upconverter, and a block frequency downconverter.

A family of Ka-band GaAs chipsets has been developed by TriQuint Semiconductor for use invery-small-aperture-terminal (VSAT) satellite communications systems. The family includes a variable-gain amplifier, a 1-W power amplifier (PA), a subharmonic frequency upconverter, and a block frequency downconverter. The model TGA4541-SM variable-gain driver amplifier operates from 28 to 31 GHz with 33-dB maximum gain and +23-dB output power at 1-dB compression. It offers an output third-order intercept point of +31 dBm. The gain can be varied over a 30-dB range. The model TGA4539-SM power amplifier supplies +30-dBm output power (1 W) from 28 to 30 GHz with 20-dB gain and output third-order intercept point of +33 dBm. The model TGC4408-SM block downconverter has an input range of 18.3 to 20.2 GHz and an intermediate-frequency (IF) range of 950 to 1950 MHz with conversion gain of 8.5 dB and noise figure of 6.5 dB. The downconverter has phase noise of -73 dBc/Hz offset 10 kHz from the carrier and -126 dBc/Hz offset 1 MHz from the carrier. It is supplied in a 32-pin 5 x 6-mm QFN package.

The model TGC4407-SM subharmonic upconverter has an integrated local-oscillator (LO) buffer amplifier with an input frequency range of 21.5 to 32.5 GHz, wide IF range of DC to 7 GHz, and subharmonic LO frequency of 11 to 16 GHz. It accepts LO signals from 0 to +7.5 dBm and yields conversion gain of -9 dB.

TriQuint Semiconductor, Inc., 2300 NE Brookwood Pkwy., Hillsboro, OR 97124; (503) 615-9000, FAX: (503) 615-8900, www.triquint.com.

Discuss this Article 3

niki13ser
on Apr 15, 2013

I have been exploring this topic for a some long time. You have offered great information in your post and some things I have not seen in other content I have read by my friends.
How To Blog

teri19orel
on Apr 21, 2013

This conent is simply exciting and creative. I have been deciding on a institutional move and this has helped me with one aspect. Cheers!
new york rug cleaning facebook

grover
on May 15, 2013

When there are impurities in semiconductor, the impurities will conduct electricity until no more free electron in the semiconductor? spelautomaterna

Please or Register to post comments.

Newsletter Signup

Webcasts

GaN Roundtable: The State of GaN Reliability Today

Wednesday, April 3rd, 2013, 2:00 pm ET. Gallium nitride (GaN) has come a long way over the past few years in terms of affordability, industry acceptance and, in particular, reliability. In this webcast roundtable, a panel of expert speakers will assess the current state of GaN reliability, along with offering predictions for its future.

Click here to register!

Whitepapers

New App Note: Best Practices for Making the Most Accurate Radar Pulse Measurements
Sponsored by Agilent Technologies
Download this app note

Agilent Technologies Complex Modulation Generation with Low Cost Arbitrary Waveform Generators - Agilent's Trueform Architecture for Wireless Applications
Sponsored by Agilent Technologies
Download this white paper

Browse more white papers from Microwaves and RF

Connect With Us