Thursday, December 1, 2011

FCC Grants Secondary Service Allocation to Wireless Broadband Medical Micropower Networks

In their regular meeting on Wednesday, November 30, the four FCC Commissioners unanimously agreed to allocate spectrum and adopt service and technical rules for the utilization of new implanted medical devices that operate on 413-457 MHz (70 cm). These devices will be used on a secondary basis as part of the Medical Data Radiocommunication Service in Part 95 of the FCC rules. The Amateur Radio Service also has a secondary allocation on the 70 cm band. These new rules are the result of a Notice of Proposed Rule Making (NPRM) that the FCC released in March 2009.
According to the FCC, these devices would greatly expand the use of functional electric stimulation to restore sensation, mobility and function to those persons with paralyzed limbs and organs; they would be implanted in a patient and function as wireless broadband medical micropower networks (MMNs).
Calling the new rules an “advance[ment of] its mobile broadband agenda,” the FCC said this will create “a new generation of wireless medical devices that could be used to restore functions to paralyzed limbs. Medical Micropower Networks (MMNs) are ultra-low power wideband networks consisting of multiple transmitters implanted in the body that use electric currents to activate and monitor nerves and muscles.” The Commission also noted that its National Broadband Plan -- released in 2010 -- observed “that the use of spectrum-agile radios and other techniques can significantly increase the efficient use of radio spectrum to meet growing demand for this valuable resource. MMNs illustrate how advanced technology can enable the more efficient use of spectrum to deliver innovative new services.”
Researchers with the Alfred Mann Foundation -- a leading medical research organization located in Santa Clarita, California -- have developed a wireless medical micro-power network to tie together tiny devices implanted in victims of paralysis, creating an artificial nervous system to restore sensation, mobility, and function to paralyzed limbs and organs. “The Mann Foundation argues that the frequency range just above 400 MHz is optimum for their application, which requires no more than 1 mW of RF spread across about 5 MHz of bandwidth,” ARRL Chief Executive Officer David Sumner, K1ZZ, wrote in “It Seems to Us: Coexistence,” published in the June 2009 issue of QST. “However, recognizing the presence of a variety of incumbent radio services in that range, specifically including the amateur service, they have proposed four channels for flexibility in avoiding localized interference. Two of the four channels are 426-432 and 438-444 MHz; the other two are above and below the 420-450 MHz band.”
In August 2009, the ARRL filed comments in response to the NPRM, stating that it believes that the choice of frequency bands for MMNs as proposed is “unfortunate and unnecessary” and that “the WMTS [Wireless Medical Telemetry Service] offers a far more suitable solution than does the 413-457 MHz band for MMNs.” Though the Mann Foundation has proposed that MMNs would be secondary to incumbent licensed operations in the subject bands, the Amateur Service is presently secondary to government radiolocation in this band; this represents a cooperative sharing arrangement that is satisfactory to both government agencies and the Amateur Service, the League maintained.
The ARRL noted in its comments that there is Part 90 spectrum above 450 MHz available for low-power biomedical telemetry, but “the Alfred Mann Foundation argues that bands between 450 and 470 MHz are unsuitable due to the fact that the band is ‘congested and populated with commercial, high-power transmitters that could preclude reliable operation of lower-power, wireless medical implant devices.’” This, the ARRL said, “is a very worrisome contention, and not the argument that should be made by the proponent of a new service that is secondary to other incumbent licensees. ARRL contends that if the 450-470 MHz band hosts services that are incompatible with reliable operation of MMNs, then the 420-450 MHz band, and especially the segment proposed for MMNs at 438-444 MHz, is equally incompatible with MMNs.”
“As part of our mobile broadband agenda, the Commission has already taken a number of actions to seize the opportunities of mHealth,” explained FCC Chairman Julius Genachowski in a press release after the November 30 meeting. “We entered an unprecedented partnership with the Food and Drug Administration to help ensure that communications-related medical innovations can swiftly and safely be brought to market. We’ve also taken steps to facilitate spectrum sharing and to improve and expand our experimental licensing program, proposing to ease testing restrictions on universities and research organizations and proposing a new program to speed development of new health-related devices that use spectrum.”
Genachowski went on to say that MMNs have been shown “to reliably operate in spectrum shared with other services and are a model for making more efficient use of radio spectrum by using advanced technologies such as monitoring the quality of the radio link, switching frequency bands, notching out of interfering signals and error correction coding. Testing also demonstrates that the Medical Micropower Network devices developed by the Alfred Mann Foundation are able to operate reliably in spectrum shared with federal government and commercial services.”
FCC Commissioner Michael Copps agreed: “Today’s action allocates 24 megahertz of spectrum in four band segments for the MedRadio service on a secondary basis. The band here -- 400 MHz -- is well suited for propagation inside the body. These devices employ the latest techniques for efficient use of spectrum and interference mitigation -- tools like spectrum sensing and dynamic frequency selection. The devices’ low power means that they themselves won’t pose interference to their neighbors.”
Sumner, in his June 2009 QST editorial, said that the FCC’s proposed rules raise two concerns: “First and foremost, the devices would be required to accept interference only from stations authorized to operate on a primary basis. The Mann Foundation has assured us that amateur stations will not cause its system to malfunction, so we see no reason why this cannot be reflected in the rules, even though our allocation is on a secondary basis. Second, while the Mann Foundation researchers appear to have done their homework, others who try to take advantage of the new rules may not be as rigorous.”
The ARRL did acknowledge in its comments that it thought the FCC was correct when it stated in the NPRM that “[g]iven the low transmitter power and duty cycle limits that would typically be used by either the implanted MMN device or the external MCU, we expect that the risk of interference from MMNs to incumbent operations in these frequency bands would be negligibly small.” The ARRL pointed out, however, that no testing has been done to verify this conclusion and “such testing should be concluded and the results analyzed before this anticipatory conclusion can be relied upon.”
While the ARRL is concerned about interference from the MMNs affecting radio amateurs, it is also concerned about RF from these radio amateurs affecting the MMNs. “The Amateur Service has a practical inability to protect patients wearing RF susceptible MMNs from interference from ongoing amateur operations in the 420-450 MHz band, and therefore all MMN operation is going to have to be conditioned on the ability to withstand and operate in the presence of such high-power signals, and thus subordinate in allocation status to the Amateur Service,” the ARRL said in its comments. “Unless this interference rejection capability is demonstrated by MMN proponents in advance, the devices should not be allowed to operate anywhere in the 420-450 MHz band.”

Wednesday, November 30, 2011

The ARRL 10 Meter Contest: Get On While the Bands Are Hot!

 Ten meters -- in case you haven’t heard, it’s alive in a big way! That means that the ARRL 10 Meter Contest -- coming up the weekend of December 10-11 -- is going to be the one of the best we’ve seen in years! During this event, many propagation modes will be available: Sporadic-E will help you work stateside stations, a touch of meteor scatter in the morning will give you split-second chances to work stations -- you’d better be quick, though! -- and DX stations will be plentiful, thanks to the return of F2 propagation.
Pictured: Austin KK4DAK and Sam W4KUM

Yes, 10 meters is back. During the CQ World Wide DX CW Contest this past Thanksgiving weekend, many stations worked more than 100 DXCC entities on 10 meters. ARRL Contest Branch Manager Sean Kutzko, KX9X, said that he keeps hearing from numerous hams who have been licensed only three or four years, telling him that they’ve never experienced a 10 meter opening before because they weren’t licensed during the last solar cycle peak: “A common phrase I’m hearing is, ‘Now I understand what all the Old-Timers in my club were talking about -- 10 meters is great!’ With a concentration of activity for the contest, there will be an opportunity for the first time in several years to experience the beauty of a wide-open 10 meter band. With so much excitement worldwide over the great conditions, the 2011 ARRL 10 Meter Contest could see the highest level of participation in a very long time!”
Single Operator entrants can use CW only, SSB only -- or a mixture of both. They can choose between High Power, Low Power (150 W or less) or QRP (5 W or less). Want to share the fun with your friends? Invite them over and enter in the Multioperator category. US Novice and Technician class operators can get in on the fun, too. Both classes are permitted SSB operation between 28.3-28.5 MHz with 150 W. You don’t have an antenna for 10 meters? Why not build one yourself! A dipole for 28.4 MHz is about 16.5 feet long -- build it and get it up in the air as high as you possibly can. According to Kutzko, it’s an easy construction project and you will work stations, especially with band conditions like this! Quite simply, this is a weekend not to miss!
In 2010, the ARRL added the 32 Mexican states as multipliers to the 10 Meter Contest. “Activity from our friends in XE spiked in 2010 as a result of the inclusion of Mexican states, and there’s every indication there will be even more activity from the XE’s in 2011, providing even more stations to work and increase your score,” Kutzko said. For a list of the Mexican states, download a free map, provided by Grupo DXXE.
The ARRL 10 Meter Contest runs from 0000 UTC Saturday, December 10 through 2359 UTC Sunday, December 11. Logs must be e-mailed or postmarked no later than 0000 UTC Wednesday, January 11, 2012. Paper logs should be sent to ARRL 10 Meter Contest, 225 Main St, Newington, CT 06111.

Tuesday, November 29, 2011

HAM RADIO CLASS



This introduction Seminar is FREE.

We have had an amazing degree of interest in HAM RADIO and the independence it provides for citizens to communicate with one another. As such we will be hosting a HAM RADIO class. This will be a combination of Lectures, Online Study and Test Review Sessions. We will have several test dates so participants can test when they feel prepared. We want everyone interested to achieve their license.
Schedule : DEC. 13th 7PM. KICK OFF - At this meeting we will have a lecture and orientation into the world of Amateur Radio. Radio equipment of all sizes, shapes and capabilities will be displayed and discussed. There will also be a Power Point and a live computer “overview” of how the online study guide works.
Cost: $20.00 There is not a charge to take the Technician Level exams (30 questions). If you prefer to buy a book to study with instead of using the internet those books are available from various resources for around $30.00. We have been offered a limited number of “scholarships” (free access) to the online study guide based on the number of folks who pay the discounted $20.00 online access fee. If you require free access to make this work financially, please submit your request by email to [masked]. These will be limited. If you would like to “sponsor” a scholarship, should the need arise, you may let me know that as well. Requests for, or offers to provide, scholarships will be kept in confidence.

We will have a couple of “study groups” in December (Dates to be announced)

Testing will begin towards the end of December but Definitely after the 1st of January.

Expectation – All interested persons should attend the DECEMBER 13, Regular Meeting of the Lakeland Tea Party and 9/12 Project at Liberty Hall (Special Guest Speaker) Ernie (KG4YNI) __________ on HAM RADIO. Sign-up sheets will be completed at the meeting and when submitted the internet access codes will be provided.

Tuesday, November 22, 2011

Ham Radio on Fox News

The newest trend in American communication isn't another smartphone from Apple or Google but one of the elder statesmen of communication: Ham radio licenses are at an all time high, with over 700,000 licenses in the United States, according to the Federal Communications Commission.
Ham radio first took the nation by storm nearly a hundred years ago. Last month the FCC logged 700,314 licenses, with nearly 40,000 new ones in the last five years. Compare that with 2005 when only 662,600 people hammed it up and you'll see why the American Radio Relay League -- the authority on all things ham -- is calling it a "golden age."

"Over the last five years we've had 20-25,000 new hams a year," Allen Pitts, a spokesman for the group, told FoxNews.com.
The unusual slang term -- a "ham" is more properly known as an amateur radio operator -- described a poor operator when the first wireless operators started out in the early 1900s. At that time, government and coastal ships would have to compete with amateurs for signal time, because stations all battled for the same radio wavelength. Frustrated commercial operators called the amateurs “hams” and complained that they jammed up the signal.
People like John Pritchett have used the slang term ever since.
“It takes an inquisitive mind that wants the challenge to speak with the rest of the world,” Pritchett told FoxNews.com. “I meet a lot of people as a result amateur radio. It’s a fascinating experience to meet somebody who you’ve talked to for years -- when you finally meet them and go, wow, that’s you.”
Pritchett has been a ham for over 35 years. He sits in his ham shack slowly turning the dial on his amateur radio and listening attentively for a voice through the high radio frequency. But he’s not looking for aliens: Pritchett is dialing in to make contact with someone around the world.
“W6JWK, This is John in Fresno, California,” he says.
Pritchett can communicate with people around the globe or even astronauts in space by talking through his microphone or using Morse code.
With more people joining the hobby, local ham radio businesses are growing as well. Amateur Electronics Supply in Las Vegas sells everything to do with ham radios, from transceivers, amplifiers and antennas to handhelds.
“We have clientele from all walks of life," manager Luke Rohn told FoxNews.com. "We have church groups who are interested in ham radio for a viable source of communication in times of natural disaster. We have young kids that find ham radio interesting. Maybe they’ve heard about it through their father and grandfather and it’s a lot of fun for them.”
According to the American Radio Relay League, retirees and emergency groups are among the main reasons for the nearly 30,000 new hams that pick up the hobby each year.
Ham is a boon for safety as well as a fun pastime: When normal communications methods fail and cellphone towers are jammed, ham radios will still work and can help out in disaster situations, because they don’t require towers to relay the signal.
“Amateur radio came into play very much during the major earthquake in the Bay Area in 1989. The only thing I had was a little handheld radio. Nothing else worked, telephones didn’t work, cellphones didn’t work, amateur radio just kept right on working,” Pritchett said.
Looking to ham it up a bit with some friends? Try a fox hunt -- the radio equivalent of ham-to-ham combat. In a fox hunt, local amateur radio clubs search for a transmitter (called the fox) using their homemade antennas.
“The fox hunting is really fun -- the thrill of the chase, the competition of being the first to find the transmitter,” said Rob Mavis, president of the Clovis Amateur Radio Pioneers club in Clovis, Calif.
Ham radio is inexpensive fun, as well: All you need is a couple hundred bucks to get started and a FCC license -- which is free, but requires a $10 to $12 fee to cover expenses.
So join the latest craze -- no iPhone app required.


Read more: http://www.foxnews.com/scitech/2011/11/17/radio-days-are-back-ham-radio-licenses-at-all-time-high/?test=faces#ixzz1eUOsN3xK

Sunday, November 20, 2011

Changes to 60M band are a GO!!!

On November 18, 2011 the FCC published its approval of changes to the US 60 meter band.

http://www.fcc.gov/document/amateur-radio-service-5-mhz

http://transition.fcc.gov/Daily_Releases/Daily_Business/2011/db1118/FCC-11-171A1.pdf

Summary:

(1) Use of the existing 5366.5 kHz (carrier) is removed, replaced by 5357.0 kHz (carrier).

(2) Maximum ERP raised from 50 to 100 watts PEP.

(3) Three emission modes (CW, RTTY, Data) are authorized in addition to the existing USB mode.

Changes go into effect 30 days after publication in the Federal Register.

Monday, November 14, 2011

Society for the Preservation of Amateur Radio

SPAR Announces Winter Field Day 2012

Not only during Field Day in June, do the bands come alive with improvised signals proving the ability to respond to emergencies. Since emergencies and natural disasters don't always happen in the summer, during Winter Field Day, frigid winds, icy limbs and bitter cold replace the thunderstorms and blistering heat of summer. In 2007 SPAR established a Winter Field Day event and invited all Amateur Radio operators to participate. The event was repeated in 2008 and was considered a success, so it was then designated an annual event to be held the last full weekend each January. In 2007 - 2011 the event was enjoyed by many, but it is time to issue the invitation for the Sixth Annual SPAR Winter Field Day!

The 2012 Winter Field Day will be held from 1700 UCT (12:00 noon EST) Saturday January 28, 2011 through 1700 UCT (12:00 noon EST) Sunday January 29, 2012. The object of the event is familiar to most Amateur Radio operators: set up emergency-style communications and make as many contacts as possible during the 24 hour period. The rules encourage as many contacts on as many bands and modes as possible, because during a real emergency, the most important factor is the ability to communicate, regardless of band, mode or distance.

The official rules can be found at the SPAR web site. The event is open to all amateurs, although we encourage everyone to join in the discussions and other activities sponsored by SPAR. Information about SPAR can be found on the SPAR Home Page. Membership is free and open to all amateurs who want to encourage technical and operating skills. You can register by going to the SPAR Forum and registering, using your amateur callsign as your user name.

Please join with SPAR in promoting amateur radio and keeping our bands alive!

Saturday, October 22, 2011

Emergency Alert System Nationwide Test

At the Federal Communications Commission's June 9, 2011 Agenda meeting, Public Safety and Homeland Security Bureau Chief Jamie Barnett, joined by representatives from FEMA and the National Weather Service, announced that the first nationwide test of the Emergency Alert System (EAS) would take place at 2:00 PM (Eastern Standard Time) on November 9, 2011. The purpose of the test is to assess the reliability and effectiveness of the EAS as a public alert mechanism. EAS Participants currently participate in state-level monthly tests and local-level weekly tests, but no top-down review of the entire system has ever been undertaken. The Commission, along with the Federal Emergency Management Agency, will use the results of this nationwide test to assess the reliability and effectiveness of the EAS as a public alert mechanism, and will work together with EAS stakeholders to make improvements to the system as appropriate.

Outreach Materials

FEMA Resources

  • Nationwide EAS Test Information and FAQs: Link
  • EAS Discussion Forum: Link

Helpful Information Concerning the EAS & the First Nationwide EAS Test

The Emergency Alert System (EAS) is a media communications-based alerting system that is designed to transmit emergency alerts and warnings to the American public at the national, state and local levels. The EAS has been in existence since 1994, and its precursor, the Emergency Broadcast System (EBS), began in 1963. Television and radio broadcasters, satellite radio and satellite television providers, as well as cable television and wireline video providers all participate in the system (collectively, EAS Participants). EAS Participants broadcast thousands of alerts and warnings to the American public each year regarding weather threats, child abductions, and many other types of emergencies. As such, the EAS will continue to function as one key component of a national alert and warning system that will provide alerts over multiple communications platforms, including mobile communications devices.
How does the EAS work?
An EAS alert is based on an audio protocol defined in the FCC’s rules. In the EAS, an alert originator at the local, state, or national level inputs an EAS alert into the system using specific encoding equipment. Specially designated stations then broadcast this alert to the public in their listening areas. Other EAS Participants (television and other radio broadcasters, cable and wireline video service providers, radio and television satellite service providers, and others) monitor the specially-designated stations for EAS alerts. When these other EAS Participants receive the EAS alert, they, in turn, broadcast it to the public in their listening areas. This group of EAS Participants may be monitored by other EAS Participants too far away to receive the EAS message from the first group of transmitting broadcasters. This next group of EAS Participants, in turn, broadcasts the alert to the public in the vicinity of their stations, as well as to any other stations that may be monitoring them.
When is the EAS used? When would a national EAS alert be sent?
The EAS alerting architecture is frequently used by state and local emergency managers to send alerts to the public about emergencies and weather events. While the requirements for carrying a national-level EAS alert differ in some respects from state and local alerts, the national EAS test will test the underlying architecture that also supports state and local alerting. Ensuring that the EAS architecture functions properly will benefit emergency alerting at all levels of government.
The EAS provides the ability to send messages regionally or nationally, though it has never been activated at these levels. But a major disaster like an earthquake or tsunami could necessitate the use of the EAS on a regional or national basis to send life-saving information to the public. We cannot anticipate which communications infrastructure will withstand a particular disaster, but the EAS is one of the tools we have to send alerts, warnings, and information to the American people. The national EAS test will help us improve its capabilities should it ever be needed at the regional or national level in an actual emergency.
Why do we need a nationwide test of the EAS?
Pursuant to the FCC’s rules, local and state components of the EAS are tested on a weekly and monthly basis, respectively. Although the EAS has been in existence for over 15 years, there has never been an end-to-end, nationwide test of the system, and we need to know that the system will work as intended should public safety officials ever need to send an alert or warning to a large region of the United States. Only a top-down, simultaneous test of all components of the EAS can provide an appropriate diagnosis of system-wide performance.
How will the national EAS test be conducted?
The national EAS test will be conducted jointly by the Department of Homeland Security (DHS) through its Federal Emergency Management Agency (FEMA), the Federal Communications Commission (FCC), and the National Oceanic and Atmospheric Administration’s (NOAA) National Weather Service (NWS), the three federal agencies that have EAS management responsibilities. FEMA is the arm of the DHS primarily responsible for developing national alert and warning functions. The FCC is an independent agency that grants licenses to or otherwise oversees EAS Participants. FCC rules regulate the transmission of EAS alerts. The NWS is a key player in the dissemination of local warnings via the EAS. The great majority of EAS alerts are NWS weather-related alerts.
On November 9, at 2 PM EST, FEMA will transmit the EAS code for national level emergencies to Primary Entry Point (PEP) stations in the national level of the EAS. The PEP stations will then rebroadcast the alert to the general public in their broadcast vicinity, as well as to the next level of EAS Participants monitoring them. This should continue through all levels of the system, until the national alert has been distributed throughout the entire country.
Pursuant to the FCC’s rules, all EAS Participants must report back to the FCC on the results of this test, including whether, and from whom, they received the alert message and whether they rebroadcast it. FEMA and the FCC will study these results to determine if there are problems with the system and, if so, how best to remedy them. We anticipate that a national test will be conducted periodically to ensure that the EAS is, and remains, functional.
FEMA and the FCC have already twice tested the EAS national code on a more limited basis, in the state of Alaska. The lessons learned from the Alaska tests will inform how the agencies conduct the national test.
What will people hear and see during the test?
During the test, viewers will hear a message indicating that “This is a test.” Although the National EAS Test may resemble the periodic, monthly EAS tests that most Americans are already familiar with, there will be some differences in what viewers will see and hear, which is one reason for conducting a national EAS test. The audio message will be the same for all EAS Participants; however, due to limitations in the EAS, the video test message scroll may not be the same or indicate that “This is a test.” This is due to the use of a “live” national code – the same code that would be used in an actual emergency. In addition, the background image that appears on video screens during an alert may indicate that “This is a test,” but in some instances there might not be an image at all. FEMA and the FCC plan to conduct outreach to organizations representing people with hearing disabilities to prepare that community for the national EAS test. Outreach will include specific information tailored to the needs of those with hearing disabilities that will be readily available at online sites.
In addition, FEMA and the FCC will work with EAS Participants to explore whether there are solutions to address this limitation. The text at the bottom of the television screen may indicate that an “Emergency Alert Notification has been issued.” This notification is used to disseminate a national alert and in this case, the test.
How long will the test last?
We anticipate that the test will last approximately3 minutes. While state and local EAS messages are limited to 2 minutes, there is no time limit for national EAS alerts. To evaluate whether the system properly interprets the national message code in the national EAS test, the message duration must be longer than two minutes.
Why is the national test being conducted at this particular date and time?
While EAS tests may be disruptive, they are important to ensure that the EAS is functional and that EAS Participants are prepared to issue alerts, and it is our intent to minimize disruption and confusion to the extent possible. The November 9 date is near the end of hurricane season and before the severe winter weather season begins in earnest. The 2 PM EST broadcast time will minimize disruption during rush hours, while ensuring that the test occurs during working hours across the United States.
What is the source of FEMA’s and the FCC’s authority for conducting the national EAS test?
Pursuant to the FCC’s rules, EAS Participants must take part in nationwide tests of the EAS. The Department of Homeland Security (DHS), which administers the EAS, has the authority to ensure the conduct of training, tests, and exercises of the EAS by Executive Order.
Are broadcasters and other EAS Participants ready for the test? What if their equipment does not function properly?
FEMA and the FCC will work with EAS Participants to prepare for the national test and provide technical assistance and best practices with respect to equipment configuration. We expect that all EAS Participants will participate in the national test and that they will have equipment in place to conduct the national EAS test that they already test regularly pursuant to the FCC’s rules governing required weekly and monthly EAS tests. We would therefore expect such equipment to be in good working order.
Where does media communications-based alerting fit within the development of next generation alerting systems like PLAN and the availability of social networking sites as tools for emergency alerting?
Because we cannot anticipate what systems might be affected by an emergency, it is important to have a redundant, multi-platform alerting system. The EAS is designed to work when other methods of disseminating emergency alerts are unavailable. While there is no guarantee that any form of communications will withstand major disasters, various elements of the EAS are hardened to withstand such calamities. Moreover, the EAS uses technology that is widely accessible to the public. Almost everyone has access to a radio (for example, in a car or via a battery-powered handheld device) and/or a television receiver.
While our ultimate goal is to have an integrated public alert and warning system that will use multiple communications technologies, the EAS will serve as a primary method for transmitting national emergency alerts and warnings for the foreseeable future.

Thursday, October 13, 2011

US Amateurs Now 700,000 Strong!

As the third quarter of 2011 came to a close, ARRL VEC Manager Maria Somma, AB1FM, began calculating the number of licensed Amateur Radio operators in the US, as well as the number of new licensees. “At the end of September, I saw that the number of hams in the US was high,” she said. “When I started comparing that number with other years, I found that it was an all-time high.” For the first time, there are more than 700,000 radio amateurs in the US.


“When looking at the three current license classes -- Technician, General and Amateur Extra -- these numbers are impressive,” Somma explained. “The number of Technicians peaked in March 2011 at 342,572, while in September 2011, we saw both Generals and Extras peak at 159,861 and 125,661, respectively. As new Technicians earn their Amateur Radio licenses, and current Technician licensees move on to General and Generals upgrade to Extra, this can cause up-and-down fluctuations for these totals.”

Somma said these high numbers mean that hams are upgrading and renewing in larger numbers and staying interested in hobby: “These are compelling statistics and I am thrilled to see the highest number of amateur radio licensees ever! When I began working at the ARRL back in the mid 1980s, there were approximately 450,000 amateurs in the US. Our VEC program conducted an average of 55 sessions a week. Today, we administer approximately 150 exam sessions each week, and our total number of licensees across all three license classes continues to grow each year.”

In the past 40 years, the number of Amateur Radio operators in the US has grown at a remarkable rate:

•December 1971: 285,000

•December 1981: 433,000

•December 1991: 494,000

•December 2001: 683,000

•September 2011: 700,221

Source: 1971, 1981, 1991: print editions of Radio Amateur Callbook. 2001, 2011: www.ah0a.org/FCC/Graphs.html. Please note: While the number of licensees has grown considerably over the years, we realize that these numbers include some who are no longer active in Amateur Radio. A recent survey of ARRL members, however, indicates that more than 80 percent of those responding are active.

“As technology changes and advances, it is especially vital to keep up or be at the forefront,” Somma said. “I believe that Amateur Radio has done just that! The measurable results are our indisputable license numbers. It amazes me after all these years how important and relevant Amateur Radio remains. I am proud to be one of the 700,221 licensees and to see this historic and important milestone.”

Tuesday, October 4, 2011

Comet Hits Sun; Is Brilliant Explosion Related?

SpaceWeather.com says most solar physicists would likely say that a "puny comet" couldn't set off a "coronal mass ejection" of solar particles.

But check out this video from over the weekend, when a comet struck the sun. The images were animated by Helioviewer.org, "an open-source project for the visualization of solar and heliospheric data" that is funded by the European Space Agency and NASA.


Saturday, October 1, 2011

Belgian radio enthusiasts make rockfall on Rockall

Rockall/Pic: Rockall 2011 Belgian Expedition The crew landed on what they say is the world's smallest, isolated ocean rock

Belgian radio enthusiasts have succeeding in their attempt to land on the remote North Atlantic islet of Rockall.
The volcanic rock is 100ft wide and 70ft high and a 250-mile boat trip from Stornoway on the Western Isles.
The group has been trying to get onto Rockall for much of the week but were defeated by high winds and huge seas.
They hope to transmit using amateur radio equipment. The UK annexed Rockall in 1955, but its ownership is disputed.
Two days ago the Rockall 2011 Belgian Expedition crew making the attempt were so seasick they withdrew to St Kilda to recover.
But with conditions improving they said team member Patrick Godderie managed to secure a line to the rock, clamber ashore and reach the top of Rockall.
'We have landed!'
Another of the seven man team has also made it onto the rock.
A message on the group's website said: "We have landed!! Patrick, ON4HIL is the first to land on Rockall!"
In the past Ireland, Iceland and Denmark have lain claim to the rock and to the possible oil and gas reserves surrounding it.
Ownership is now being examined by the United Nations in the light of competing claims from Iceland, the Faroes and Ireland.
The earliest recorded landing on Rockall was believed to be in 1810, by an officer called Basil Hall from the HMS Endymion