Category Archives: New Products

PantronX Titus II DRM receiver update via Wavescan

Many thanks to SWLing Post contributor, Richard Langley, who writes:

There was a segment on the latest episode of AWR’s Wavescan (9 April 2017) about the Titus II DRM receiver recorded during the recent HFCC meeting in Jordan. In it, it was stated that the shipment of the first 1500 units was expected at the end of March or by the first half of April. Included some discussion of added shielding to prevent digital noise and the high-sensitivity of the receiver compared to other DRM units. Streaming and download of the Wavescan episode is available here:

http://awr.org/program/engmi_wav-2/

 Many thanks for the tip, Richard!

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Videos of the Icom IC-R8600 in action

Icom IC-R8600

Many thanks to a number of Post contributors who’ve shared a link to links to  bcloyaji’s YouTube Channel where a few videos of the Icom IC-R8600 have been posted.  (Thank you for your patience, as well, as I’ve been traveling and way behind on posting this!)

I’ve embedded a few videos below, but I encourage you to also check out bcloyaji’s YouTube Channel for more:

IC-R8600 operation

Click here to view on YouTube.

Icom IC-R8600 vs JRC NRD-545 Part 1:

Click here to view on YouTube.

ICOM IC-R8600 vs JRC NRD-545 Part II

Click here to view on YouTube.

I’m looking forward to checking out the IC-R8600 at the 2017 Dayton Hamvention and even potentially reviewing it here on the SWLing Post at some point.

Any Post readers plan to purchase the IC-R8600?

Though we have no US pricing yet, I’ve been checking with Universal Radio regularly for any news.

Follow the tag IC-R8600 for updates.

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The Icom IC-7610 transceiver: a few details emerge

Many thanks to SWLing Post contributor, Mike Hansgen (K8RAT), who shares the following post from Icom UK:

The IC-7610 (Source: Icom UK)

Icom Inc. has released more details about the launch of the IC-7610 HF/50MHz SDR Transceiver and its target price. Icom plans to release this high performance HF SDR transceiver around late May with the product being rolled out across the globe in the following months. We expect that the IC-7610 should be available in the UK early Summer with a suggested retail target price of £2,999.99 ex.VAT. Please note that this target price and UK availability may be subject to change.

We expect demand to be huge for this product. Indeed many back orders are already on our system. So if you want to be one of the first customers in the UK to own one of these eagerly awaited radios, please contact your Icom Amateur radio dealer who will be able to put you in their order books.

More about the IC-7610 HF/50 MHz 100 W SDR transceiver

Following on from the technology incorporated into the IC-7300, the IC-7610 adopts the same RF direct sampling system for signal processing. By converting the analogue signal directly to a digital signal and processing it within the FPGA (Field Programmable Gate Array), it provides improved transmission phase noise and excellent RMDR of 105 dB (at 1 kHz detuning).

The IC-7610 will have two independent receivers, enabling simultaneous reception of two frequencies in different bands/different modes.

The IC-7610 will also feature high-speed, high-resolution performance. The real-time spectrum scope supports different bands and a dual display that can monitor different modes. It will also have a waterfall display function that displays received signals in time sequence. The DIGI-SEL unit will be available to both the main side and the sub side of the receiver. In addition, the IC-7610 adopts a large 7-inch full-colour touch screen panel.

Main features include:

• Further evolved RF direct sampling method.
• Excellent RMDR: 105 dB realized.
• Dual watch function can receive simultaneously in different bands and different modes.
• DIGI-SEL unit that eliminates excessively strong signals is installed in the main and sub of the receiving section.
• High-speed real-time spectrum scope and waterfall display function.
• 7-inch full-colour touch panel, outstanding operation and visibility

As mentioned earlier, demand is going to be enormous for this model, so get into contact with your authorised Icom Amateur radio dealer today.

Click here to read this full post at Icom UK.

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USB Battery Pack Keep-Alive Load Kit

(Source: Southgate ARC)

USB power banks are a convenient way of powering low power USB devices in the field. Unfortunately, as they are designed for charging phones and tablets, many have an internal electronic cut out circuit that switches power off below a certain current draw. The exact current that they switch off at varies from pack to pack.

Although there are circuits on the internet that purport to solve this problem by applying a pulsed load, we found this did not work with all power banks. As a result we designed a neat variable electronic load to address this problem.

Available as a kit, using it is easy; just plug it into your power bank, plug your target device into it and adjust the current draw until the pack remains on.

http://www.sotabeams.co.uk/usb-battery-pack-keep-alive-load-kit/

This could be a handy tool for those of us who use USB battery packs for portable work. SotaBeams originally created this simple kit for the WSPRlite.

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Photo of the new Elad FDM-S3

Many thanks to SWLing Post contributor, Rafman, who shares the following photos that were originally posted by Alberto (I2PHD) on the Elad email reflector. Alberto noted:

“Here it is…. shown for the first time today at the Montichiari Ham Fest. Price TBD….”

Many thanks, Rafman, for the tip!

We’ll continue to post FDM-S3 updates as they become available. I will also plan to review the FDM-S3 when it hits the market.

Click here to view the Elad website.

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Cornell engineers invent two-way radio on a single chip

Many thanks to SWLing Post contributor, Tom Ally, who shares the following news via the Cornell Chronicle:

Engineers devise two-way radio on a single chip

Two-way communication requires, of course, both send and receive capabilities. But putting them in the same device requires a filter between the send and receive circuits to provide signal isolation.

Without a significant filter, communication would be impossible.

“Your transmit signal is [10 to the power 14] times stronger than your receive signal,” said Alyosha Molnar, associate professor of electrical and computer engineering (ECE). “That’s 100 trillion times stronger – that’s a really hard problem.”

But researchers in Molnar’s lab have offered up a solution.

Molnar and collaborator Alyssa Apsel, professor of ECE, have devised a method for both transmitting and receiving a radio signal on a single chip, which ultimately could help change the way wireless communication is done.

Their work is described in “A wideband fully integrated software-defined transceiver for FDD and TDD operation,” published online Jan. 27 in the Institute of Electrical and Electronics Engineers’ Journal of Solid-State Circuits. Doctoral student Hazal Yüksel and Dong Yang, Ph.D. ’15, are co-lead authors.

Separating the send and receive bands is difficult enough, but the problem is compounded by the ever-increasing number of bands in the latest devices. From GPS to Bluetooth to Wi-Fi, each band requires a filter to stop the strong transmit signals from drowning out reception.

Molnar and Apsel have come up with an ingenious way to separate the signals. Their idea lies in the transmitter – actually a series of six subtransmitters all hooked into an artificial transmission line. Each sends its signal at regular intervals, and their individually weighted outputs are programmed so that they combine to produce a radio frequency signal in the forward direction, at the antenna port, while canceling out at the receive port.

The programmability of the individual outputs allows this simultaneous summation and cancellation to be tuned across a wide range of frequencies, and to adjust to signal strength at the antenna.

“In one direction, it’s a filter and you basically get this cancellation,” Apsel said. “And in the other direction, it’s an amplifier.”

“You put the antenna at one end and the amplified signal goes out the antenna, and you put the receiver at the other end and that’s where the nulling happens,” Molnar said. “Your receiver sees the antenna through this wire, the transmission line, but it doesn’t see the transmit signal because it’s canceling itself out at that end.” […]

Continue reading on the Cornell Chronicle.

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pantronX Titus II quick update

Many thanks to SWLing Post contributor, Ed, who notes:

I just received a status update on the pantronX Titus II portable SDR from Mike, their chief engineer.

Mike said the self-contained SDR portable will include “SoapySDR as the interface to make it much easier to roll your own SDR app.” Here’s some info about SoapySDR:

https://github.com/pothosware/SoapySDR/wiki

Mike also said, “To be 100% truthful, our biggest push right now is for the international MW & SW broadcasters. They want to go DRM digital is the worst way!”

You might want to share this news with SWLing Post readers.

Thank you for the update, Ed! Click here to view the pantronX website.

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